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Effects of Environments on Wear Resistance of SiC-Whisker-Reinforced Aluminum Composite

Effects of Environments on Wear Resistance of SiC-Whisker-Reinforced Aluminum Composite
环境对SiC晶须增强铝复合材料耐磨性的影响
批准号:
04650130
负责人:
IWAI Yoshiro
金额:
$1.34万
依托单位:
依托单位国家:
日本
项目类别:
Grant-in-Aid for General Scientific Research (C)
财政年份:
1992
资助国家:
日本
项目状态:
已结题
起止时间:
1992 至 1993

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中文摘要
翻译
采用针对盘(针对0.45%碳钢,盘对FRM)在不同相对湿度的大气和氩气中试验,研究了环境对sic晶须增强铝合金(基体材料:2024Al,晶须体积分数:22%,称为FRM)磨损性能的影响。对于未增强的基体材料(2024Al),无论相对湿度如何都发生严重磨损,但对于FRM.2,在每个相对湿度下都不会发生严重磨损。2024Al的轻度磨损率随着RH的增加而显著增大,而FRM的轻度磨损率在RH=70%后略有增加。对于2024Al,由于水分的吸附,磨损表面的强度降低,磨损颗粒变大,从而导致磨损率增加。对于FRM,由于基体材料受水分作用容易断裂,磨损颗粒数量增加,尺寸减小,因此轻度磨损率随相对湿度的增加略有不同。在氩气中,2024Al和FRM的轻度磨损率都比在大气中小。这些材料受水分的影响比受氧气的影响大。FRM的摩擦系数大于2024Al在大气和氩气中的摩擦系数。结果表明,铝基复合材料的耐磨性不受环境湿度的影响。
英文摘要
The effects of environments on wear properities of SiC-Whisker-reinforced Aluminum alloy (matrix material : 2024Al ; volume fraction of the whisker : 22%, designated as FRM) were investigated by pin-on-disk tests (pin : 0.45% carbon steel, disk : FRM) in atmosphere and argon gas with various relative humidities.1. The severe wear occured regardless of relative humidity for unreinforced matrix material (2024Al), but didn't occur at every RH for FRM.2. The mild wear rate becomes larger remarkably with an increase of RH for 2024Al, but increase a little from RH=70% for FRM.For 2024Al, since the strength of worn surface decreases because of the adsorption of moisture, wear particle becomes larger and consequently wear rate increases. For FRM, wear particle increases in number but decreases in size because the matrix material is easy to fracture due to the action of moisture, so that mild wear rate slightly differs as RH increases.3. In argon gas, the mild wear rates of both 2024Al and FRM are smaller compared with those in atmosphere. These materials are much affected by moisture rather than oxygen.4. The coefficient of friction of FRM is larger than those of 2024Al in atmosphere and argon gas.From these results, it is found that the wear resistance of aluminum matrix composite is not influenced by moisture in environment.
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