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- W3172882580 abstract "Thermoplastic materials are widely used engineering plastics for manufacturing of numerous household and industrial products. Acrylonitrile butadiene styrene (ABS) is one of the most widely used polymers to fabricate such consumer products. The present scenario of additive manufacturing (AM) has observed ABS as a very useful material for development of low cost and durable products. This article reports the wear properties of composite prepared by reinforcement of graphene in ABS. The ABS-graphene (ABSG) composite was prepared by mechanical blending (MB) and chemical assisted mechanical blending (CAMB) process. The MB and CAMB of ABSG composites reported in present study has varying proportion of nano reinforcement particles from 10% to 20% by weight proportions. The cylindrical shaped pins of MB-ABSG and CAMB-ABSG composites were investigated for wear properties like: wear rate, coefficient of friction and friction force to ascertain the best blending process that can help in increasing wear resistance of the proposed composite. The results of the study outlined that wear resistance of ABS can be increased by using it as ABSG composite prepared by CAMB. The CAMB-ABSG20 has least wear rate 74 µm, low friction force of 0.6 N and coefficient of friction=0.088 as compared to MB-ABSG20. The result outcomes are supported by morphological analysis performed by Tool Maker’s microscope at ×30 magnification. The surface of CAMB-ABSG pins has shown uniform wear along the wear tracks due to close packing of blended nano-reinforcements whereas poorly bonded particles of Graphene was observed in MB-ABSG samples. The proposed ABSG composite can be used as a consumable tool with acceptable wear resistance for friction stir welding applications of ABS sheets." @default.
- W3172882580 created "2021-06-22" @default.
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- W3172882580 date "2022-01-01" @default.
- W3172882580 modified "2023-09-25" @default.
- W3172882580 title "On Wear Properties of Mechanical Blended and Chemical Assisted Mechanical Blended ABS-Graphene Reinforced Composites" @default.
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- W3172882580 doi "https://doi.org/10.1016/b978-0-12-820352-1.00109-7" @default.
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