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Journal articles on the topic 'Polishing parts'

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1

Tian, Haopeng. "Simulation of Auto Parts Polishing Control Strategy Based on PID Control." Journal of Physics: Conference Series 2528, no. 1 (2023): 012042. http://dx.doi.org/10.1088/1742-6596/2528/1/012042.

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Abstract With the large increase in automobile production, the demand for automobile parts is also increasing day by day. Aluminum alloy is the most widely used material in automobile parts. The production process of aluminum alloy parts has been automated, but the polishing process is still mainly manual. The high cost and low efficiency of manual polishing restrict the development of parts production technology. Therefore, it is imperative to develop a set of automatic polishing systems for aluminum alloy parts. Robot application in the polishing field has become a trend, but the force/bit c
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2

Yin, Xincheng, Youliang Wang, Jianhui Liu, Linfeng Deng, and Shujuan Li. "Micro-arc plasma discharge polishing for multi-material parts." Journal of Physics: Conference Series 2578, no. 1 (2023): 012012. http://dx.doi.org/10.1088/1742-6596/2578/1/012012.

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Abstract Multiple material parts (MMP) have good physical and mechanical properties, which are commonly used in some critical applications such as engine blades. Current polishing techniques for MMP suffer from low efficiency and poor surface quality. To effectively polish MMP with complex shapes, this paper proposes an environmentally friendly micro-arc plasma polishing method that combines electrochemical and electrical discharge machining. The material removal mechanism of micro-arc plasma discharge polishing of MMP is analyzed. The experiments show that the proposed method is feasible by p
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Xie, Mingli, Yipeng Pan, Zijun An, Shijun Huang, and Min Dong. "Review on Surface Polishing Methods of Optical Parts." Advances in Materials Science and Engineering 2022 (May 12, 2022): 1–30. http://dx.doi.org/10.1155/2022/8723269.

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With the extensive application of optical parts in many high-tech fields such as high-power laser, space optics, and aerospace, the requirements for the surface quality of optical parts are also increasing, which requires not only high surface qualities but also low defects including low subsurface damage and strict wavefront errors. As an essential link in the precision and ultraprecision optical manufacturing, various surface polishing methods and techniques have always attracted researchers’ continuous study and exploration. Considering the development of optical part surface polishing tech
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Miwa, Hirotaka, Takayoshi Katagi, Minoru Ota, Keishi Yamaguchi, Kai Egashira, and Toshikazu Nanbu. "Surface Finishing on Arc-Shaped Inner Surface by Ultraviolet Assisted Polishing." Materials Science Forum 874 (October 2016): 133–38. http://dx.doi.org/10.4028/www.scientific.net/msf.874.133.

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Recently, diamonds have been utilized gradually for sliding parts and wear-resistant parts because of their excellent properties. The shape of diamond applied to these parts is not only plane but also arc-shaped inner surface. Therefore, development of diamond polishing technology is required. In this study, ultraviolet assisted polishing was thought to develop to polish polycrystalline diamond (PCD) on arc-shaped inner surface. The authors investigated effect of ultraviolet radiation on polishing efficiency and surface roughness. As a result, the surface roughness Ra of PCD showed less than 1
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Okhlupin, Dmitriy, Albert Korolev, and Il'ya Sinev. "Polishing of polycrystalline diamond coating of parts." Science intensive technologies in mechanical engineering, no. 4 (April 21, 2020): 32–38. http://dx.doi.org/10.30987/2223-4608-2020-4-32-38.

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The results of the experimental investigation of polycrystalline diamond coating polishing in parts by a metal brush are shown. A polishing mode impact upon roughness of the surface obtained is shown. The analysis of results obtained is carried out.
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6

Song, J. F., Ying Xue Yao, D. G. Xie, and Bo Gao. "Experimental Research on Polishing Spot of Bonnet Polishing." Applied Mechanics and Materials 10-12 (December 2007): 385–89. http://dx.doi.org/10.4028/www.scientific.net/amm.10-12.385.

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A new optical manufacturing technology called bonnet polishing has been developed over last decade. During bonnet polishing, the puffed bonnet is flexible and self-reacting against the surface configuration of optical parts. So the same polishing tool can be used in machining the optical parts with different curvature. The mechanism of the bonnet polishing is described in this paper firstly. Since the optical workpiece has been polished in the “polishing spot”, the bonnet polishing experiments have been accomplished on the trial-manufacturing machine to study the effect of technological parame
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7

SHI Yong-jie, 史永杰, 郑堤 ZHENG Di, 王龙山 WANG Long-shan, and 胡利永 HU Li-yong. "Polishing force control in precise NC polishing of aspheric parts." Optics and Precision Engineering 19, no. 5 (2011): 1013–21. http://dx.doi.org/10.3788/ope.20111905.1013.

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8

Meng, Xiangran, Yingpeng Wang, Xiaolong Yin, Haoyu Fu, Shuoxue Sun, and Yuwen Sun. "Investigation of Force-Controlled Polishing of Complex Curved PMMA Parts on a Machining Center." Machines 12, no. 4 (2024): 259. http://dx.doi.org/10.3390/machines12040259.

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During the polishing process of complex curved PMMA parts, the polishing force is an important factor affecting the surface quality and optical performance. In this paper, a force-controlled polishing device integrated into a machining center to maintain the polishing force is investigated. In order to achieve the real-time active control of the polishing force, the linear voice coil motor and force sensors are used for motion and measurement. A compact structure was designed to couple the linear motion of the voice coil motor with the rotation for polishing. The force-controlled polishing sys
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9

Zheng, Di, Bi Da Lv, Jian Ming Zhan, and Li Yong Hu. "Study on Force Control in Abrasive Polishing of Aspheric Parts." Applied Mechanics and Materials 37-38 (November 2010): 1287–91. http://dx.doi.org/10.4028/www.scientific.net/amm.37-38.1287.

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Aspheric parts are attracting many researchers’ attention for their excellent optical properties. The commonly used manufacturing technology for aspheric parts are mainly based on dedicated high precision machines, resulting in high cost and restricted application fields. To polish this kind of parts on general CNC machine tools, however, the surface quality improvement is limited due to the problem of force-position coupling. In order to solve this issue, a force-position decoupling control method for abrasive polishing was studied, a corresponding comliant polishing tool system was developed
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10

O'Brien, John, and Gerard Ryder. "Magnetorheological polishing of rapid tool parts." International Journal of Computational Materials Science and Surface Engineering 2, no. 1/2 (2009): 118. http://dx.doi.org/10.1504/ijcmsse.2009.024930.

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11

Navickaitė, Kristina, Lucia Ianniciello, Jaka Tušek, et al. "Plasma Electrolytic Polishing of Nitinol: Investigation of Functional Properties." Materials 14, no. 21 (2021): 6450. http://dx.doi.org/10.3390/ma14216450.

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A novel, environmentally friendly, fast, and flexible polishing process for Nitinol parts is presented in this study. Nitinol samples with both superelastic and shape memory properties at room temperature were investigated. The chemical contamination and surface roughness of superelastic Nitinol plates were examined before and after plasma electrolytic polishing. The shift in phase transformation temperature and tensile strength before and after the polishing process were analysed using Nitinol wire with shape memory properties. The obtained experimental results were compared to the data obtai
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12

Zhiqiang, Wan, Patrick Teo Hiu Hong, Go Tze Fong, Walisijiang Tayier, and Hua Xia. "Study on Polishing Technologies for Additive Manufacturing Parts." Jurnal Kejuruteraan 37, no. 1 (2025): 13–23. https://doi.org/10.17576/jkukm-2025-37(1)-02.

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Additive manufacturing has a good application prospect in aerospace, medical implantation and other fields, but the molding surface quality is poor, without post processing can not meet the requirements of high service, polishing processing is a key link in the high-performance metal additive manufacturing technology chain. This paper summarizes the characteristics of the ladder effect, the high roughness of the forming surface. In recent years, additive manufacturing technology, also known as 3D printing, has been highly valued by aviation enterprises for its unique advantage in rapid prototy
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13

Obeidi, Muhannad A., Eanna McCarthy, Inam Ul Ahad, and Dermot Brabazon. "Improving the Surface Finish and other Properties of Engineering Metal Parts." Key Engineering Materials 813 (July 2019): 197–202. http://dx.doi.org/10.4028/www.scientific.net/kem.813.197.

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The manufacture of metal parts requires post processing in most cases. These processes include heat treatment for releasing of the residual stresses resulting on the metal surface due to the excessive mechanical forces applies to cut the metal during machining, i.e. milling, turning and drilling. Another example would be the polishing of parts using different techniques. In predominant, polishing is used enhance the part’s roughness to improve the friction coefficient, to give the parts a better view and most important is to adjust the final dimensional accuracy in the microns and sub-microns
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14

Filatov, Yuriy, Volodymyr Sidorko, Sergiy Kovalev, Viktor Kovalev, and Oksana Yurchishin. "Polishing of precision parts from polymer optical materials." International Scientific and Technical conference "The Progressive Technics, Technology and Engineering Education", no. XXIII (June 16, 2023): 216–19. http://dx.doi.org/10.20535/2409-7160.2023.xxiii.278251.

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The conducted research concerns the study of the laws influence of the physicochemical properties the processed material and the polishing dispersion system on the productivity of removing the processed material and the roughness the processed surfaces during the polishing of polymeric optical materials. The research was carried out according to a special methodology, the parameters of the roughness of the polished surfaces were determined using elements of computer modeling. As a result of the study, it was determined that during the polishing precision parts made of polystyrene and polymethy
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15

Hofele, Markus, André Roth, Jochen Schanz, et al. "Laser Polishing of Additive Manufactured Aluminium Parts by Modulated Laser Power." Micromachines 12, no. 11 (2021): 1332. http://dx.doi.org/10.3390/mi12111332.

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In this study a new approach to laser polishing with periodic modulated laser power in the kilohertz regime is introduced. By varying the modulation frequency and modulation time, different periodic laser power curves with varying minimum, peak and average laser power can be created. The feasibility of the method is shown by polishing of vertical built AlSi10Mg L-PBF parts with an initial roughness of Ra = 12.22 µm. One polishing pass revealed a decreasing surface roughness with increasing energy density on the surface up to Ra = 0.145 µm. An increasing energy density results in a rising remel
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16

ZALYUBOVSKYI, Mark. "TECHNICAL AND ECONOMIC RATIONALE FOR THE USE OF TURBULA TYPE MACHINING MACHINES IN POLISHING THE SURFACE OF SMALL POLYMER POLYMERS." Herald of Khmelnytskyi National University. Technical sciences 311, no. 4 (2022): 94–99. http://dx.doi.org/10.31891/2307-5732-2022-311-4-94-99.

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A method of wet polishing of polymer parts using a galvanizing machine with a complex spatial movement of the working tank type «Turbula» is proposed. According to the proposed method, the main stage of polishing the surface of the parts is carried out by abrasive ceramic bodies of complex geometric shape with the addition of fine pumice in the implementation of mixed cascade-waterfall mode of movement of the bulk working medium. This method of processing parts is considered highly productive, the processing time of parts averages 15 hours of continuous operation of the machine, which is sever
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17

Baluyut, Rosa Mae D., Jan Rapaela B. Bartolome, H. Romel B. De Guzman, et al. "Design Optimization of DR3AM Vapor Polishing Device for ABS 3D-Printed Parts." Advance Sustainable Science Engineering and Technology 5, no. 2 (2023): 0230207. http://dx.doi.org/10.26877/asset.v5i2.16271.

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3D printing is an additive manufacturing method that turns digital design into an actual product. A 3D-printed part sometimes requires post-processing to enhance its physical and mechanical properties. Acetone vapor polishing is one of those techniques which is highly beneficial in smoothing ABS 3D-printed parts. Previously, an acetone vapor polishing device has been developed which uses a mist maker. However, for a more efficient polishing method, an optimized vapor polishing device using heat has been fabricated in this study. To assess the efficiency of this device, the researchers test the
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18

Parvez, Mohammad Masud, Sahil Patel, Sriram Praneeth Isanaka, and Frank Liou. "A Novel Laser-Aided Machining and Polishing Process for Additive Manufacturing Materials with Multiple Endmill Emulating Scan Patterns." Applied Sciences 11, no. 20 (2021): 9428. http://dx.doi.org/10.3390/app11209428.

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In additive manufacturing (AM), the surface roughness of the deposited parts remains significantly higher than the admissible range for most applications. Additionally, the surface topography of AM parts exhibits waviness profiles between tracks and layers. Therefore, post-processing is indispensable to improve surface quality. Laser-aided machining and polishing can be effective surface improvement processes that can be used due to their availability as the primary energy sources in many metal AM processes. While the initial roughness and waviness of the surface of most AM parts are very high
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19

Filatov, Yu D. "Material Removal Rate in Polishing Polymethylmethacrylate Parts." Journal of Superhard Materials 46, no. 3 (2024): 212–20. http://dx.doi.org/10.3103/s1063457624030031.

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20

Tesar, Aleta, B. Fuchs, and P. Hed. "Improvement in polishing of fused-silica parts." Applied Optics 30, no. 31 (1991): 4459. http://dx.doi.org/10.1364/ao.30.004459.

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21

Gache, Ciara Catherine, Sherwin Mesa, Thea Clarice Prado, et al. "Fabrication and Testing of a Vapor Polishing Device for ABS 3D-Printed Parts." SciEnggJ 16, no. 1 (2023): 1–7. http://dx.doi.org/10.54645/2023161zyp-27.

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Post-processing plays a significant role in improving the surface and mechanical properties of 3D-printed parts. One of these post-processing methods is vapor polishing which utilizes acetone to polish 3D-printed Acrylonitrile Butadiene Styrene (ABS) specimen. This process is usually done using an improvised vapor polishing setup to achieve the desired surface finish of parts. Hence, in order to accomplish a uniform and standard polishing procedure for laboratory use, a vapor polishing device has been developed in this study. To assess the efficiency of the said device, the resulting surface r
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22

TANABE, Ikuo, Valerio DE SOUSA GAMA, Yoshifumi ISE, Hiromi ISOBE, and Satoshi TAKAHASHI. "DEVELOPMENT OF A HIGH-SPEED MIRROR-LIKE FINISH POLISHING TECHNOLOGY FOR MINUTE PARTS BASED ON A LINEAR MOTOR." Journal of Machine Engineering 19, no. 1 (2019): 71–85. http://dx.doi.org/10.5604/01.3001.0013.0454.

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As high speed, high acceleration and stable drive on machine tools is constantly growing in demand, the use of linear motors in machine tools has increased. On the other hand, in order to achieve a high degree of quality, the need for mirror-like finish surfaces on industrial products has also considerably increased. This research explores the use of linear motors to develop a high-speed fine polishing process that achieves a mirror-like finish surface on small parts. The first stage of this process consisted in developing a polishing device, which was composed of a NC milling machine, a linea
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23

Ying, Xian Gen, Di Zheng, Li Yong Hu, and Jian Ming Zhan. "Ballonet Polishing of Aspheric Part Based on MRF Torque Servo." Applied Mechanics and Materials 201-202 (October 2012): 653–56. http://dx.doi.org/10.4028/www.scientific.net/amm.201-202.653.

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This paper proposed a new ballonet polishing method for the precise polishing of aspheric parts. The method is based on the integration of a MRT (Magnetorheological fluid Torque servo)-based ballonet polishing tool system and a CNC lathe. By using this method, the decoupling control of force-position-posture can be realized in polishing process. The structure and working principle of the polishing tool system were introduced. The material removal model for ballonet polishing was established according to Preston Equation. The main factors affecting the material removal were discussed, and the c
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24

Zhang, Xinyu, and Yuwen Sun. "Development of Pneumatic Force-Controlled Actuator for Automatic Robot Polishing Complex Curved Plexiglass Parts." Machines 11, no. 4 (2023): 446. http://dx.doi.org/10.3390/machines11040446.

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Due to the temperature-sensitive characteristic of plexiglass materials, it is necessary to maintain a constant small contact force to avoid surface burn damage when polishing complex curved plexiglass parts. To handle the issue, in this paper a pneumatic force-controlled actuator was developed to keep the normal contact force between the polishing tool and the workpiece constant during the robotic polishing process. The force-controlled actuator is configured with a double-acting cylinder as the driving element, and two electrical proportional valves are used to control the output force by ad
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Agali Guliyev, Agali Guliyev, Ibrahim Habibov Ibrahim Habibov, Aynur Sharifova Aynur Sharifova, and Zohra Garayeva Zohra Garayeva. "INFLUENCE OF THE METHOD OF ELECTROLYTIC POLISHING, MECHANICAL TREATMENT AND PURITY OF THE BASE METAL SURFACE ON THE STRENGTH OF BONDING BY ELECTROLYTIC DEPOSITS OF IRON." ETM - Equipment, Technologies, Materials 14, no. 02 (2023): 135–46. http://dx.doi.org/10.36962/etm14022023-135.

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In the present work, the influence of the composition of the electrolyte and the duration of electropolishing of the base metal on the strength of adhesion to iron deposits was studied, and the method of mechanical treatment before applying electrolytic coatings was shown to determine not only the microgeometry of the surface, but also the physicochemical state of the metal in the surface layer, thereby affecting the protective properties. oxide film. On the other hand, the type of machining affects the cost of restoring and coating parts. Therefore, it is practically important to determine th
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26

Zalyubovskyi, M. G., I. V. Panasyuk, Y. I. Smirnov, Y. V. Klaptsov, and V. V. Malyshev. "EXPERIMENTAL INVESTIGATION OF THE HANDLING PROCESS OF POLYMERIC UNITS IN A MACHINE WITH A COMPACTED SPACE MOVEMENT OF WORKING CAPACITY." Bulletin of the Kyiv National University of Technologies and Design. Technical Science Series 132, no. 2 (2019): 24–32. http://dx.doi.org/10.30857/1813-6796.2019.2.2.

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An experimental determination of the main technological parameters of polishing small polymer parts with a free abrasive in the form of granules in containers that perform a complex spatial movement. Methodology. An experimental investigation of the processing of small polymeric parts by abrasive in the form of free granules in a machine whose working capacities performs a complex spatial movement to determine rational polishing conditions.
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27

Liu, Weiwei, Qian Lyu, Liming Lei, Yanhao Hou, and Lei Shi. "Study on high quality surface finishing technology of pre-spinning nozzle in additive manufacturing." Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University 39, no. 2 (2021): 334–40. http://dx.doi.org/10.1051/jnwpu/20213920334.

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Through the simulation of abrasive flow in the inner cavity of the superalloy pre-spinning nozzle made by additive manufacturing, the special abrasive polishing tool is optimized and the surface polishing technology of the inner cavity of typical structure test pieceis studied. Through comparison of the surface morphology before and after polishing, it can be concluded that the abrasive flow has a considerable removal effect on the powder sticking effect, spheroidizing effect, step effect, slag hanging phenomenon and residual support on the surface of parts, but it has a limited effect on the
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28

Okhlupin, D. N., A. V. Korolev, and I. V. Sinev. "New material for anti-wear corrosion-resistant coating of agro industrial complex machinery parts." E3S Web of Conferences 222 (2020): 01002. http://dx.doi.org/10.1051/e3sconf/202022201002.

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The article presents the results of an experimental study of the corrosion resistance of the ta-C double coating of parts by PVD method with intermediate and final surface polishing with a discrete tool. The influence of regime factors on the results of polishing the ta-C coating with a discrete tool is shown, and optimal processing modes are proposed. Tests of samples in a salt bath showed that the double ta-C coating by PVD method with intermediate and final polishing ensures the absence of corrosion and coating peeling
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29

Sha, Shu Jing, Long Shan Wang, Di Zheng, and Wei Han. "A Novel Method of Bonnet Polishing for Aspheric Surface." Applied Mechanics and Materials 201-202 (October 2012): 1147–50. http://dx.doi.org/10.4028/www.scientific.net/amm.201-202.1147.

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On the basis of compliant polishing device for aspheric, a new method of bonnet polishing on magneto-rheological of torque servo driver has been proposed. It has introduced the bonnet polishing composition and polishing principle. Polishing tool using the flexible bonnet, it can better adapt to the different curvature change of parts, and the stable polishing force can be get through MRT. Combining the constant torque device on MRF with CNC machine, this embodies high rigidity, higher precision of NC machine and reflects the MRT with adjustable, controllable, rapid response characteristics. Th
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30

Lussenburg, Kirsten, Remi van Starkenburg, Mathijs Bruins, Aimée Sakes, and Paul Breedveld. "Polishing of metal 3D printed parts with complex geometry: Visualizing the influence on geometrical features using centrifugal disk finishing." PLOS ONE 18, no. 8 (2023): e0289730. http://dx.doi.org/10.1371/journal.pone.0289730.

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Parts produced with metal additive manufacturing often suffer from a poor surface finish. Surface finishing techniques are effective to improve the quality of 3D printed surfaces, however they have as downsides that they also slightly change the geometry of the part, in an unpredictable way. This effect on the geometrical features of complex parts has received little attention. In this research, we illustrate a method to visualize the impact of surface finishing techniques on geometrical features, as well as their effectiveness on parts with high shape-complexity, by using centrifugal disk fin
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31

Jain, Srishti, James Hyder, Mike Corliss, and Wayne NP Hung. "Electrochemical Polishing of Extruded and Laser Powder-Bed-Fused Inconel 718." International Journal of Engineering Materials and Manufacture 6, no. 4 (2021): 284–98. http://dx.doi.org/10.26776/ijemm.06.04.2021.04.

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ABSTRACT Electro-chemical polishing (ECP) was utilized to produce sub-micron surface finish on Inconel 718 parts manufactured by Laser Powder-Bed-Fusion (L-PBF) and extrusion methods. The L-PBF parts had very rough surfaces due to semi-welded powder particles, surface defects, and difference layer steps that were generally not found on surfaces of extruded and machined components. This study compared the results of electro-polishing of these differently manufactured parts under the same conditions. Titanium electrode was used with an acid-based electrolyte to polish both the specimens at diffe
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32

Yang, Mo, Zhong Da Guo, and Zhi Qiang Yang. "Arbitrary Curvature Radius of the Optical Parts Precision Polishing Technology." Advanced Materials Research 683 (April 2013): 589–94. http://dx.doi.org/10.4028/www.scientific.net/amr.683.589.

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This paper puts forward a kind of magnetorheological polishing technology of arbitrary curvature radius spherical optical parts and the mechanical structure of its supporting equipment. By changing the position of the intersection point of the spindle unit and pendulum shaft device in the space, it can achieve high quality and rapid processing of an arbitrary curvature radius of the spherical optical parts. The wheel-head structure of our equipment is an endless belt structure. The magnetorheological fluids are added to the endless belt, and the wheel-head structure 15 is powered. Then, it wil
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33

Mahdavinejad, Ramezan Ali. "Barrel Chamber Polishing, Using Electrochemical Theories." Key Engineering Materials 364-366 (December 2007): 272–79. http://dx.doi.org/10.4028/www.scientific.net/kem.364-366.272.

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Electrochemical polishing is a well-known method in finishing of complex shapes with high surface quality. Inner surface polishing of complex parts with high precision can also be easily done by this method. In this research, barrel chamber’s surface, with numerous serial surface angles, is analyzed so that, according to the various set ups, the optimized polishing parameters are obtained. The comparison between electrochemical polishing and conventional methods from this point of view, shows good advantages of this method, so that, the machining time is more than thirty times less and produce
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34

Piskunov, E. G., and D. I. Korolev. "Polishing of the working surfaces of ceramic parts." Refractories 34, no. 5-6 (1993): 342–44. http://dx.doi.org/10.1007/bf01293243.

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35

Filatov, Yu D., A. Y. Boyarintsev, O. V. Kolesnikov, et al. "Polishing of Optotechnical Parts Made of Semiconductor Materials." Journal of Superhard Materials 47, no. 2 (2025): 125–36. https://doi.org/10.3103/s1063457625020029.

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36

Qu, Rui, H. M. Jaber, Zhongxin Li, et al. "Reducing Surface Roughness of Selective Laser Melting of 316 Stainless Steel Component by Electropolishing." Advances in Engineering Technology Research 7, no. 1 (2023): 615. http://dx.doi.org/10.56028/aetr.7.1.615.2023.

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Additive manufacturing (AM) is widely used in the fields of aerospace, automotive, and biomedical. Because it enables to fabricate and customize parts with complex geometrical features. However, due to the layer-by-layer deposition and the partially fused raw material, AM part suffers from the step and balling effects, which shows inadequate and poor surface quality. Conventional polishing methods such as grinding, milling, and sandblasting have been applied to meet the requirement of well surface quality. But these contact polishing techniques usually introduce extra residual stress and surfa
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37

Amit, Tiwari, Vasnani Himanshu, Jain Ritu, Swarnkar Harshita, Tanwar Hariram, and Srivastava Shikha. "Fabrication of low-cost metal polishing machine for preparation of microstructure samples of lightweight alloy and composite material." Global Journal of Engineering and Technology Advances 19, no. 3 (2024): 112–23. https://doi.org/10.5281/zenodo.13691987.

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A metallographic specimen should be performed to determine the microstructure of a material. One of the processes of preparation of metallographic specimen is polishing process. The designing and manufacturing a polishing machine will be very helpful in the process of polishing the metallographic specimen. This apparatus includes a motor, aluminum circular disc, switch and speed controller, and base plate. The polishing machine is constructed from these individual parts. This paper is proposed to design and fabrication a metal polishing machine for laboratory scale. In this paper, several stag
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38

Liu, X. Y., D. W. Yu, and L. J. Wang. "The Investigation of Tool and Mechanism on Non-Abrasive Cryogenic Polishing." Key Engineering Materials 304-305 (February 2006): 325–29. http://dx.doi.org/10.4028/www.scientific.net/kem.304-305.325.

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In non-abrasive cryogenic polishing, ice disk is used as polishing tool .The effects of ice disk characteristics by different water quality on surface roughness of machined parts are investigated. Non-abrasive cryogenic polishing is a plastic transfiguration process based on brittle-plastic transition theory. During machining, higher micro peaks become lower and the number of micro peaks increases which results in lower roughness. Experiments are done to attest to the process.
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Korendiy, Vitaliy, Oleksandr Kachur, Viktor Zakharov, Igor Kuzio, Oleksandr Havrylchenko, and Tetyana Hurey. "Dynamics and control of vibratory finishing machine with translational motion of lapping-polishing plates." Vibroengineering PROCEDIA 44 (August 25, 2022): 8–14. http://dx.doi.org/10.21595/vp.2022.22842.

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The lapping and polishing operations are of the most important ones considering the finishing treatment of machine parts. These operations can be performed by numerous methods, among which the vibration-driven ones are of the most widespread. The present paper is focused on studying the dynamic behavior of the vibratory finishing machine providing the single-sided lapping and polishing of flat surfaces of cylindrical and prismatic parts. The major scientific novelty of this research consists in an improved control technique of generating the translational oscillations of the lapping (polishing
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Lin, Jie Qiong, Tong Huan Ran, and Li Feng. "Research on Contact Force Control in Process of Aspheric Surface Polish." Advanced Materials Research 621 (December 2012): 216–22. http://dx.doi.org/10.4028/www.scientific.net/amr.621.216.

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Contact force control is one of the key technologies of polishing aspheric optical parts, and keeping a stable polishing contact force on the basis of accurate position control is an important condition to obtain high quality aspheric. The paper bases on ideal surface, decouples the contact force that between polishing tool and workpiece in each direction of the drive shaft in process of polish. Then get output force of all sports shaft. Finally, realize the polishing contact force control that take the position as a control goals, and take constant force output as a constraints. Simulation re
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Kodácsy, János. "Finishing of Metal Parts in Magnetic Field Based on Abrasion." Advanced Materials Research 325 (August 2011): 517–22. http://dx.doi.org/10.4028/www.scientific.net/amr.325.517.

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Denomination Magnetism Aided Machining (MAM) comprises a number of relatively new industrial machining processes (mainly finishing and surface improving) developed presently, too. MAM is effective – among others – for polishing, deburring and burnishing ofmetal parts. The magnetic force makes these processes simpler and more productive. Machining force is generated by an adjustable electromagnetic field between two magnetic poles within the working area ensuring the necessary pressure and speed difference between the tools (abrasive grains, pellets or rollers) and the workpieces. The authors g
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Shi, Yong Jie, Di Zheng, Jian Ming Zhan, and Long Shan Wang. "Modeling and Analysis of NC Compliant Abrade Polishing for Surface of Revolution." Advanced Materials Research 97-101 (March 2010): 4057–60. http://dx.doi.org/10.4028/www.scientific.net/amr.97-101.4057.

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In this paper, a compliant tool was designed for abrade polishing parts with surface of revolution on general NC lathe. The tool can adapt itself automatically to the part’s surface. A magnetorheological torque servo driver (MRT) was developed to control independently the polishing force between the tool and the surface which determines the contact pressure and affects the polishing quality. The models of polishing force and contact pressure were established based on Hertz theory. The model of tool head posture was deduced. The impact of tool head posture and position on contact pressure was a
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Arrizubieta, Jon, Magdalena Cortina, Jose Ruiz, and Aitzol Lamikiz. "Combination of Laser Material Deposition and Laser Surface Processes for the Holistic Manufacture of Inconel 718 Components." Materials 11, no. 7 (2018): 1247. http://dx.doi.org/10.3390/ma11071247.

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The present work proposes a novel manufacturing technique based on the combination of Laser Metal Deposition, Laser Beam Machining, and laser polishing processes for the complete manufacturing of complex parts. Therefore, the complete process is based on the application of a laser heat source both for the building of the preform shape of the part by additive manufacturing and for the finishing operations. Their combination enables the manufacture of near-net-shape parts and afterwards removes the excess material via laser machining, which has proved to be capable of eliminating the waviness re
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Yamaguchi, Keishi, Minoru Ota, Kai Egashira, Hirotaka Miwa, Yoshiaki Onchi, and Kenichi Tanada. "Mirror-Like Surface Finishing of PCD by Fixed Abrasive Polishing." Materials Science Forum 874 (October 2016): 139–44. http://dx.doi.org/10.4028/www.scientific.net/msf.874.139.

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Polycrystalline diamond (PCD) has excellent properties such as high hardness, high chemical inertness, high wear resistance and a low friction coefficient. Thus, it has been expected to be applied to used in various mechanical parts such as sliding parts. However, diamond is difficult to machine owing to its high hardness and chemical inertness. Therefore, a highly efficient and high-quality machining process is required for PCD. In this study, the authors developed fixed abrasive polishing tools for the mirror-like surface finishing of PCD that contain mechanochemical abrasive grains with dia
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Obeidi, Muhannad, Eanna McCarthy, Barry O’Connell, Inam Ul Ahad, and Dermot Brabazon. "Laser Polishing of Additive Manufactured 316L Stainless Steel Synthesized by Selective Laser Melting." Materials 12, no. 6 (2019): 991. http://dx.doi.org/10.3390/ma12060991.

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One of the established limitations of metal additive manufacturing (AM) methods, such as selective laser melting (SLM), is the resulting rough surface finish. Laser polishing is one method that can be used to achieve an improved surface finish on AM printed parts. This study is focused on the laser surface polishing of AM parts using CO2 laser beam irradiation. Despite the fact that several researchers have investigated the traditional abrasive polishing method, there is still a lack of information reporting on the laser surface polishing of metal parts. In this study, AM 316L stainless steel
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Pan, G. Q., Z. W. Wang, and Dong Hui Wen. "Situations of Fluid Polishing Processes for Ultra-Smooth Surface." Advanced Materials Research 215 (March 2011): 83–88. http://dx.doi.org/10.4028/www.scientific.net/amr.215.83.

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This paper give some literatures for the technology of fluid polishing. Methods of fluid polishing using for optics curved surface, ultra-smooth plane and inner surface of non-circular curved surface. Each method is explained by above classifications, and some domestic cases which can produce ultra-smooth surface in different conditions, parts and technical parameters is listed and evaluated.
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Guiot, Anthony, Stéphane Pattofatto, Christophe Tournier, and Luc Mathieu. "Modeling of a Polishing Tool to Simulate Material Removal." Advanced Materials Research 223 (April 2011): 754–63. http://dx.doi.org/10.4028/www.scientific.net/amr.223.754.

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In plastic injection mould and prosthesis industries, `mirror-effect` polished surfaces are required for obtaining transparent parts or surfaces without scratches. Traditionally done manually, we have proposed to automate polishing on 5-axis machining centre using a passive elastomeric carrier. One of the main advantages of automatic polishing is the repeatability of the machine movements in order to achieve restricted form deviations. However, the material removal rate (MRR) during polishing depends on parameters such as contact pressure, relative velocity and tool wear. We have thus develope
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Liu, Yuezhi, Fengfeng Xi, and Reza Faieghi. "Path planing for robotic polishing of sheet metal parts." International Journal of Advanced Manufacturing Technology 119, no. 5-6 (2022): 3303–19. http://dx.doi.org/10.1007/s00170-021-08162-4.

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Ukar, E., A. Lamikiz, L. N. Lopez De Lacalle, D. Del Pozo, F. Liebana, and A. Sanchez. "Laser polishing parameter optimisation on selective laser sintered parts." International Journal of Machining and Machinability of Materials 8, no. 3/4 (2010): 417. http://dx.doi.org/10.1504/ijmmm.2010.036148.

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Kuo, Chil-Chyuan, Ci-Ming Chen, and Song-Xuan Chang. "Polishing mechanism for ABS parts fabricated by additive manufacturing." International Journal of Advanced Manufacturing Technology 91, no. 5-8 (2016): 1473–79. http://dx.doi.org/10.1007/s00170-016-9845-0.

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