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Effects of postcure temperature on mechanical properties of resin mineral composite for precision machine tool

机译:后气温对精密机床树脂矿物复合材料力学性能的影响

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Resin mineral composite has drawn much attention in the field of elementary machine components due to its excellent damping property. The effects of postcure temperature on mechanical properties of resin mineral composite were investigated in this paper. Research results showed that the glass-transition temperature of resin matrix, the surface hardness of resin matrix, the compressive strength of resin matrix, and the compressive strength of resin mineral composite increased with the increasing postcure temperature. If the postcure temperature increased from 30°C to 120°C, the compressive strength of resin mineral composite increased by 17.34%, the compressive strength of resin matrix increased by 6.67%, the surface hardness of resin matrix in-creased by 54.16%, and the glass-transition temperature of resin matrix increased by 49.09%. The postcure process at 120°C for 4 hours can be used to improve the mechanical properties as a mature post-treatment technology for resin mineral composite. Good correlations were obtained between glass-transition temperature of resin matrix and surface hardness of resin matrix, compressive strength of resin matrix, and compressive strength of resin mineral composite. The correlations showed that the glass-transition temperature of resin matrix can be used to define and monitor the mechanical properties of resin mineral composite.
机译:由于其出色的阻尼性,树脂矿物复合材料在基础机组件领域中绘制了很多关注。本文研究了岗位温度对树脂矿物复合材料力学性能的影响。研究结果表明,树脂基质的玻璃化转变温度,树脂基质的表面硬度,树脂基质的抗压强度,树脂矿物复合材料的抗压强度随着效率的增加而增加。如果关键温度从30℃增加至120℃,树脂矿物复合材料的抗压强度增加了17.34%,树脂基质的抗压强度增加了6.67%,树脂基质的表面硬度升级54.16%,树脂基质的玻璃化转变温度增加49.09%。在120℃下的后表面处理4小时可用于改善机械性能作为树脂矿物复合材料的成熟后处理技术。树脂基质的玻璃转变温度与树脂基质的表面硬度,树脂基质的抗压强度和树脂矿物复合材料的抗压强度之间获得了良好的相关性。相关性表明,树脂基质的玻璃化转变温度可用于定义并监测树脂矿物复合材料的机械性能。

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