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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Effect of thermal treatment and recycling on the tribological behaviour of an AlSiMg-SiCp composite
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Effect of thermal treatment and recycling on the tribological behaviour of an AlSiMg-SiCp composite

机译:热处理和循环利用对AlSiMg-SiCp复合材料的摩擦学性能的影响

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摘要

The tribological behaviour of an AlSiMg-SiCp, composite, produced by the PRIMEX CAST (TM) method (patented by LANXIDE) was studied under dry sliding conditions against a surface hardened AISI 1055 carbon steel, using a slider-on-cylinder tribometer. The effect on the wear resistance of both a T6 thermal treatment and of the use of recycled material in the casting process (50 and 100% recycling) was investigated. At the lowest applied load (10N) a mild wear regime with high coefficients of friction was always found for all the tested composites. At higher loads (20 and 30N) and low sliding speed (0.3 in s(-1)) the as-east composites exhibited a better wear resistance than the T6 aged ones, despite their lower hardness. In fact, their lower matrix hardness and higher ductility prevented conditions for subsurface softening and delamination. On the contrary, the T6 aged composites showed delaminative wear, caused by crack formation and propagation. With increasing sliding speed, even the as-cast materials displayed a transition toward the high wear regime due to a degradation of the matrix properties, probably induced by the high temperature at the contacting surfaces. Regarding the effect of material recycling, the composite with 50% recycled material showed similar wear resistance as the not recycled composite with the same reinforcement percentage. The composites with 100% of recycled material, instead, displayed a slightly higher wear damage both due to the lower reinforcement content (20 vol.%) and to the inhomogeneous particle distribution. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 16]
机译:使用圆筒滑动式摩擦计,在干燥滑动条件下,针对表面硬化的AISI 1055碳钢,研究了通过PRIMEX CAST(TM)方法(由LANXIDE专利)生产的AlSiMg-SiCp复合材料的摩擦学行为。研究了T6热处理和铸造过程中回收材料的使用(50%和100%回收)对耐磨性的影响。在最低的施加载荷(10N)下,对于所有测试的复合材料,总会发现具有高摩擦系数的轻度磨损状态。在较高的载荷(20和30N)和较低的滑动速度(0.3 in s(-1))下,东硬复合材料尽管具有较低的硬度,但仍比T6时效的复合材料具有更好的耐磨性。实际上,它们较低的基体硬度和较高的延展性阻止了地下软化和分层的条件。相反,T6时效复合材料显示出由裂纹形成和扩展引起的分层磨损。随着滑动速度的增加,由于基体性能的下降,甚至铸态材料也表现出向高磨损状态的过渡,这可能是由于接触表面的高温引起的。关于材料回收的效果,具有50%回收材料的复合材料显示出与未回收复合材料(具有相同的增强百分比)相似的耐磨性。取而代之的是,由于补强含量较低(20%(体积))和颗粒分布不均匀,含有100%可回收材料的复合材料显示出稍高的磨损损伤。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:16]

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