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Methods to Predict Stresses in Cutting Inserts Brazed Using Iron-Carbon Brazing Alloy

机译:使用铁 - 碳钎焊合金预测切削刀片的应力的方法

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This work describes a method for predicting residual and operating stresses in a flat-form tool insert made of tungsten free carbides brazed using iron-carbon alloy. According to the studies' results it is concluded that the recommendations relating to the limitation of a melting point of tool brazing alloys (950-1100°C according to different data) are connected with a negative impact on tools as a composite made of dissimilar materials rather than on hard alloys as a tool material. Due to the cooling process stresses inevitably occur in the brazed joint of dissimilar materials, and these stresses increase with the higher solidification temperature of the brazing alloy.
机译:该工作描述了一种用于在使用铁 - 碳合金钎焊的钨游离碳化物制成的平板工具插入物中预测残留和操作应力的方法。根据研究的结果,得出的结论是,与工具钎焊合金的熔点(根据不同数据的950-1100°C)有关的建议与工具负面影响,作为由不同材料制成的复合材料而不是用硬质合金作为工具材料。由于冷却过程应力不可避免地发生在不同材料的钎焊接头中,并且这些应力随着钎焊合金的较高凝固温度而增加。

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