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Journal articles on the topic 'Ballend milling'

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1

Wang, Xiao Yan, Jian Li, Rui Fen Wu, and Wei Pan. "Effect of Ball Milling on Microstructure and Flexural Strength of Ti(C,N)-Ni Cermets." Key Engineering Materials 434-435 (March 2010): 76–78. http://dx.doi.org/10.4028/www.scientific.net/kem.434-435.76.

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Ti(C,N) cermets were prepared by SPS method. The effects of nickel salt coating as well as ball milling times on the microstructure and mechanical properties of the cermets were investigated. SEM images shows that the nickel was coated homogeneously on the surface of Ti(C,N) powders by mixing Ni salt and Ti(C,N) powder. The grains of Ti(C,N)-based cermets became finer with increasing ball milling time. The flexural strength increased when the balling milling was below 48h, and then decreased with increasing of ball milling time, which was due to the decrease of the flake structure in cermets.
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2

Zhao, Zhong Min, De Jun Yin, Long Zhang, Shuan Jie Wang, and Min Quan Wang. "Effects of Ball Milling Processing on Solidified TiC-TiB2 Composites Prepared by Combustion Synthesis in High Gravity Field." Key Engineering Materials 602-603 (March 2014): 467–72. http://dx.doi.org/10.4028/www.scientific.net/kem.602-603.467.

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By combining ball milling processing with combustion synthesis in ultrahigh gravity field, the solidified TiC-TiB2 composite was achieved with fine-grained and ultrafine-grained microstructure. It is considered that taking balling milling processing to mechanically activate powder blend promotes thermal explosion to occur in ultrahigh gravity field by reducing ignition temperature, increases sharply the actual temperature of full-liquid product, thereby not only accelerating liquid-liquid separation of TiC-TiB2 liquid and Al2O3 droplets, but also refining the solidified microstructure by enhan
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3

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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4

Zhang, Haipo, Daokuan Wang, Xingyu Li, et al. "Towards Selective Laser Melting of High-Density Tungsten." Metals 13, no. 8 (2023): 1431. http://dx.doi.org/10.3390/met13081431.

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Selective laser melting (SLM) of tungsten (W) is challenging due to its high melting point and brittleness, resulting in defects including balling phenomenon, porosity and cracks. In this work, high-density crack-free SLM W was fabricated by employing cost-effective powders modified through air jet milling. The influence of the SLM processing parameters on microstructure, density, crack formation and the resulting mechanical properties of SLM W was investigated. Laser energy density and hatch distance were found to be the most important parameters in controlling porosity and crack formation of
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5

Sun, Xiaogang, Jian Xu, Lian Huang, et al. "Achieving Tunable Microwave Absorbing Properties by Phase Control of NiCoMnSn Alloy Flakes." Metals 12, no. 9 (2022): 1542. http://dx.doi.org/10.3390/met12091542.

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Microwave absorption performance of metal alloys are highly dependent on their phase structures. However, the phase control of Ni–Mn-based alloys to achieve effective microwave absorption properties has been rarely reported. In this work, Ni43Co7Mn39Sn11 alloy flakes were fabricated by balling milling method, and the contents of γ phase in the flakes were tuned by the subsequent heat treatment process. The as-fabricated Ni43Co7Mn39Sn11 alloy flakes exhibited excellent tunable microwave absorption by control of their phase structures. The optimal reflection loss was lower, up to −56.4 dB at 8.8
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6

Ma, Longzhou, Bruce S. J. Kang, Mary A. Alvin, and C. C. Huang. "Characterization of Oxide-Dispersion-Strengthened (ODS) Alloy Powders Processed by Mechano-Chemical-Bonding (MCB) and Balling Milling (BM)." KONA Powder and Particle Journal 31 (2014): 146–55. http://dx.doi.org/10.14356/kona.2014004.

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7

Zhao, Tong, Marius Dahmen, Wangcan Cai, et al. "Laser metal deposition for additive manufacturing of AA5024 and nanoparticulate TiC modified AA5024 alloy composites prepared with balling milling process." Optics & Laser Technology 131 (November 2020): 106438. http://dx.doi.org/10.1016/j.optlastec.2020.106438.

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8

Shurkin, Pavel, Torgom Akopyan, Alexey Prosviryakov, Alexander Komissarov, and Natalia Korotkova. "Single track scanning experiment on the hypereutectic aluminium alloy Al-8%Zn-7%Ni-3%Mg." MATEC Web of Conferences 326 (2020): 07001. http://dx.doi.org/10.1051/matecconf/202032607001.

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Solidification path, hot tearing susceptibility and processability by L-PBF of the hypereutectic aluminium alloy Al-8%Zn-7%Ni-3%Mg were investigated. It was shown that the alloy has an advantageous hot tearing resistance due to formation of an adequate amount of the [(Al)+Al3Ni] eutectic and a reduced effective solidification range. In that sense, it may be valid for L-PBF. To prepare a feedstock for L-PBF, we produced chips which were subsequently grinded by high-energy ball milling into a 100 µm fine powder batch. The powder contained irregular shape particles that may have led to failure in
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9

Sadílek, M., and R. Čep. "Progressive Strategy of Milling by means of Tool Axis Inclination Angle." May 21, 2009. https://doi.org/10.5281/zenodo.1082915.

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This work deals with problems of tool axis inclination angles in ball-end milling. Tool axis inclination angle contributes to improvement of functional surface properties (surface integrity - surface roughness, residual stress, micro hardness, etc.), decreasing cutting forces and improving production. By milling with ball-end milling tool, using standard way of cutting, when work piece and cutting tool contain right angle, we have zero cutting speed on edge. At this point cutting tool only pushes material into the work piece. Here we can observe the following undesirable effects - chip contrac
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10

Park, Kyung-Hee, Brent Ewald, and Patrick Y. Kwon. "Effect of Nano-Enhanced Lubricant in Minimum Quantity Lubrication Balling Milling." Journal of Tribology 133, no. 3 (2011). http://dx.doi.org/10.1115/1.4004339.

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Minimum quantity lubrication (MQL) has been used as an alternative solution for flood cooling as well as dry machining. However, the benefit of MQL is only realized in mild machining conditions as the heat generation during more aggressive machining conditions cannot be effectively eliminated by the small amount of oil mist being applied during MQL process. To extend the applicability of MQL to more aggressive machining conditions, we have developed a potential additive to MQL lubricant. After the preliminary wetting angle measurement of the various lubricants, one commercially available MQL v
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11

Guo, Qixian, Yanshuang Wang, and Jianghai Lin. "Effect of additive and subtractive hybrid manufacturing process on the surface quality of 18Ni300 maraging steel." Materials Research Express, April 24, 2023. http://dx.doi.org/10.1088/2053-1591/accfe8.

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Abstract The effect of process parameters on the surface quality of 18Ni300 maraging steel formed by selective laser melting (SLM) was investigated. The surface modification of SLM specimens was carried out using milling as a subtraction method to study the effect of milling process parameters on the surface quality of SLM specimens processed by milling. Comparing and analyzing the surface quality after additive and subtractive, the results of the study show that the increase of laser power during SLM can improve the surface morphology, but there is always a balling effect. The surface quality
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12

Wang, Chunmei, Qianqian Xie, Xiaomin Dou, Lanxi Zhang, and Xiao Yang. "Conversion of carbonaceous materials into solid acids for tylosin mitigation: effect of preprocessing methods on the reactivity of sulfonation reaction." Biochar 5, no. 1 (2023). http://dx.doi.org/10.1007/s42773-023-00230-0.

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AbstractCarbon-based solid acids have been successfully employed as acidic catalysts for pollutant mitigation in wastewater. To fully tap the potentials of commercially viable carbons for the preparation of solid acids and enhance their catalytic performances is a challenging problem. In this work, three commercialized carbons including biochar, activated carbon and graphite were preprocessed (ball-milling, Hummer exfoliation, HNO3 soaking, and microwave heating in HNO3, etc.), sulfonated, and evaluated as solid-acid catalysts for tylosin mitigation. Graphite-originated solid acid performed th
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13

Sun, Jingjia, Meng Guo, Keyu Shi, and Dongdong Gu. "Influence of powder morphology on laser absorption behavior and printability of nanoparticle-coated 90W-Ni-Fe powder during laser powder bed fusion." Materials Science in Additive Manufacturing 1, no. 2 (2022). http://dx.doi.org/10.18063/msam.v1i2.11.

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In this work, mesoscopic simulation and experimental studies were applied to investigate the influence of powder morphology and characteristics on laser absorption behavior and printability of nanoparticle-coated 90W-Ni-Fe powder during laser powder bed fusion (LPBF). The mechanism of laser-material interaction and the thermal behavior of molten fluid during LPBF were revealed, thereby optimizing the powder preparation parameters. It showed that when the powder preparation parameters were optimized (i.e., ball-to-powder weight ratio of 1:2, milling speed of 250 rpm, and milling time of 6 h), t
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14

Davis, Taylor, Tracy W. Nelson, and Nathan B. Crane. "Impact of zirconia slurry in steel powder on melt pool characteristics in laser powder bed fusion." Rapid Prototyping Journal, September 27, 2022. http://dx.doi.org/10.1108/rpj-05-2022-0145.

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Purpose dding dopants to a powder bed could be a cost-effective method for spatially varying the material properties in laser powder bed fusion (LPBF) or for evaluating new materials and processing relationships. However, these additions may impact the selection of processing parameters. Furthermore, these impacts may be different when depositing nanoparticles into the powder bed than when the same composition is incorporated into the powder particles as by ball milling of powders or mixing similarly sized powders. This study aims to measure the changes in the single bead characteristics with
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15

Zhang, Jiakui, Yu Lei, Lingyun Zhou, et al. "Ball‐Milling Synthesis of Richly Oxygenated Graphene‐Like Nanoplatelets from used Lithium Ion Batteries and Its Application for High Performance Sodium Ion Battery Anode." Advanced Functional Materials, February 21, 2024. http://dx.doi.org/10.1002/adfm.202314160.

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AbstractThe exploration of waste graphite from used lithium ion batteries (LIBs) and its derivatives for versatile applications is an efficient route to promote the environmental and eco‐friendly recycling of used LIBs. Sodium ion batteries (SIBs) are alternative candidates to LIBs mainly due to similar electrochemical mechanism of SIBs to LIBs and rich natural resource of Na. Herein, a holey waste graphite (hGw) with well‐defined porous structure is produced by the annealing of lithiated waste graphite (Li/Gw) from used LIBs under a flow gas of H2O and subsequent lithium leaching in DI water.
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