Academic literature on the topic 'Abrasive mixture'

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Journal articles on the topic "Abrasive mixture"

1

Zhu, Lin, Peng Hai, and De Ming Xiao. "Experimental Research on Deep Hole Honing of Difficult-to-Cut Materials Based on Mixture-Abrasive Honing Stones." Key Engineering Materials 416 (September 2009): 461–66. http://dx.doi.org/10.4028/www.scientific.net/kem.416.461.

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The deep hole honing is an effective and precise method in deep hole processing. It can remove the machining allowance to ensure the hole size and the shape accuracy, and have better surface quality of a hole. The difficult-to-cut materials such as precipitation-hardening stainless steel, stainless steel (1Cr18Ni9Ti) and titanium alloy have the properties of high hardness, wear resistance, heat resistance, and corrosion resistance. The conventional single-abrasive honing stones can not handle the difficult-to-cut materials effectively because of their single-abrasive property. For higher effic
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2

Hanada, Kotaro, and Hitomi Yamaguchi. "Development of Spherical Iron-Based Composite Powder with Carried Alumina Abrasive Grains by Plasma Spray." Advanced Materials Research 75 (June 2009): 43–46. http://dx.doi.org/10.4028/www.scientific.net/amr.75.43.

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This paper describes the development of spherical iron-based composite powder with carried alumina abrasive grains made by a plasma spray technique. Carbonyl iron powder (7.2 μm average size) and alumina abrasive grains (0.3 μm average size) are sprayed into the plasma flame from the respective nozzles simultaneously, or their mechanical mixture is directly plasma-sprayed. In case of the composite powder obtained by the direct spray method, the alumina abrasives are well carried on the carbonyl iron particles. However, a plasma current of more than 100 A causes melting and vaporizing of the al
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3

Pavloušková, Zina, David Jech, Pavel Komarov, et al. "Characterization of High-Speed Alumina Abrasive Grinding Wheel." Defect and Diffusion Forum 405 (November 2020): 365–69. http://dx.doi.org/10.4028/www.scientific.net/ddf.405.365.

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The high-speed grinding wheel can be defined as a self-sharpening composite structural tool composed from abrasive grains held in a specific binder. The main properties of grinding wheels depend on the type of abrasive elements, grit size, grade, binder and the resulting structure, which is influenced by several crucial technological processing steps. Preparation of an initial mixture of abrasive particles together with permanent binder’s mixture and temporary binder followed by pressing and high-temperature sintering is the essential technological step in the manufacturing of high-quality gri
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4

Zhang, Qin Lan, Zhi Yong Lu, and Xiang Liu. "Magnetic Spectral Analysis Method of Ferromagnetic Mixture." Applied Mechanics and Materials 602-605 (August 2014): 2721–25. http://dx.doi.org/10.4028/www.scientific.net/amm.602-605.2721.

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There are different magnetic property of materials mixed in the mechanical wear of abrasive and powder processing. Depending on different alloy and magnetized material with different magnetic saturation characteristics, some substances reach the magnetic saturation in the magnetization processing soon, while some substances must be in a strong magnetic field to reach saturation, resulting in the magnetic property of combination material mixed with multi-component metal abrasive has multi-ingredient combination characteristics. Based on the PQ excitation measurement method, we analyze the magne
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5

Yasunaga, Nobuo. "Machining Mechanisms of Si Wafers in Mechanochemical Polishing by Soft Abrasives." Key Engineering Materials 291-292 (August 2005): 385–88. http://dx.doi.org/10.4028/www.scientific.net/kem.291-292.385.

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The mechanism of the mechanochemical polishing of Si wafers with BaCO3, CaCO3 and ZnO abrasives was investigated by polishing experiments carried out in air, O2 and Ar gas environments on dry condition and static heat treatment experiments of mixed powder of BaCO3 and Si with various mixture ratios for analyzing the reaction mechanism at the interface in polishing operation. Results obtained were (1) Si wafers were smoothly and effectively polished with these all mechanochemical abrasive whether O2 gas existed in the surrounding environment or not, (2) Heat treatment of the mixed powder sugges
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6

Farkas, Tamás Péter, Attila Orbán, Sándor Szász, András Rapai, Erik Garamvölgyi, and Zoltán Sütő. "Examination of the Usage of a New Beak-Abrasive Material in Different Laying Hen Genotypes (Preliminary Results)." Agriculture 11, no. 10 (2021): 947. http://dx.doi.org/10.3390/agriculture11100947.

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The aim of the experiment was to investigate the use and effect of a new beak-abrasive material not yet examined on mortality of non-beak trimmed laying hens of different genotypes housed in an alternative pen. The study was performed on 636 females belonging to three genotypes of Bábolna TETRA Ltd. (a1 = commercial brown layer hybrid (C); a2 = purebred male line offspring group (maternal); a3 = purebfigure ed female line offspring group (paternal)). A total of 318 hens, i.e., 106 hens/genotype distributed in six pens (53 hens/pen), were evaluated. Cylindrical beak-abrasive blocks of 5.3–5.6 k
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7

Matsuura, Hiroshi, Yasuhiro Kunieda, Nobuhito Yoshihara, Ji Wang Yan, and Tsunemoto Kuriyagawa. "Development of 3R Diamond Wheel by Thermoplastic Resin Bond." Key Engineering Materials 329 (January 2007): 459–64. http://dx.doi.org/10.4028/www.scientific.net/kem.329.459.

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A completely new diamond wheel, named the 3R wheel, has been developed. The 3R wheel has three unprecedented functions, reconfiguration, restoration and recyclability, and is molded from a mixture of special thermoplastic resin filler and diamond powder. The concept of the 3R wheel is to control the quantity and the position of abrasive material by actively using heat. In this study, tungsten carbide (WC) was ground using a thermoplastic resin bonded diamond wheels (radius 1.4 mm) with three different concentrations of 1500 grain size abrasive. As a result, a grinding ratio of over 200 and 18
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8

Petrica, Marcela, Sven Peissl, and Ewald Badisch. "Influence of Coal on the Wear Behavior of Steels in 3-Body Conditions." Key Engineering Materials 604 (March 2014): 75–78. http://dx.doi.org/10.4028/www.scientific.net/kem.604.75.

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Abrasive and erosive properties of coal can lead to serious operational problems in mining industry. Here the abrasive medium is varied, containing often fractions of quartz, pyrite, and contents of coal which can be also mixed with water resulting in an abrasive slurry mixture. A better understanding of the dependence between the environmental and systematic conditions of the tribological processes that happen in ore mining and the wear behaviour of steels can be achieved only by analysing each parameter that forms these tribological processes. The Steel Wheel Abrasion Test (SWAT) represents
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9

Fletcher, A. J., and A. Fioravanti. "Polishing and Honing Processes: An Investigation of the Thermal Properties of Mixtures of Polyborosiloxane and Silicon Carbide Abrasive." Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 210, no. 3 (1996): 255–65. http://dx.doi.org/10.1243/pime_proc_1996_210_195_02.

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The passage of an ultrasonic wave through a mixture of polyborosiloxane and silicon carbide abrasive, when used in a honing process, causes heating due to the attenuation of the said wave. This is critical to the honing process since the temperature in the components being treated must be limited to about 70° C. A numerical model of the heat generation and transfer processes in the polishing medium is being formulated, which requires knowledge of the thermophysical properties of the mixture. This investigation concentrates on the experimental determination of thermal conductivity, specific hea
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10

Singh, Kanwal Jeet, Inderpreet Singh Ahuja, and Jatinder Kapoor. "Optimization of Process Parameters for Surface Roughness in Ultrasonic Machining of Polycarbonate Bullet Proof Glass and Acrylic Heat Resistant Glass by Taguchi and Grey Relational Analysis Approach." Advanced Engineering Forum 23 (July 2017): 21–44. http://dx.doi.org/10.4028/www.scientific.net/aef.23.21.

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Polycarbonate bullet proof glass and acrylic heat resistant glass are used as the functional material in many application. In this research paper, Taguchi modal is utilized for the ultrasonic machining of these material. Surface roughness is significant output parameter, because it define accuracy of the process. Taguchi modal suggest that 40% concentration, mixture of Alumina, Silicon carbide and Boron carbide abrasive in 1:1:1, 600 abrasive grit size and 1.5% HF acid gives best results in polycarbonate bullet proof glass material and for acrylic heat resistant glass, mixture of Silicon carbi
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