b and thickness a of a cut layer, respectively, and the critical stress intensity factor KIIc is determined from the following relationship: where Psh.max is the maximum cutting force.;EFFECT: possibility to increase the critical stress intensity factor determining accuracy for transverse shear by giving the cutting force, id est, the shifting load position with an effect angle equal to zero.;1 cl, 5 dwg"/> METHOD FOR DETERMINING OF THE STRESSES STRENGTH CRITICAL FACTOR WITH A SOLID BODY TRANSVERSE SHEAR
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METHOD FOR DETERMINING OF THE STRESSES STRENGTH CRITICAL FACTOR WITH A SOLID BODY TRANSVERSE SHEAR

机译:确定固体横剪应力强度临界因子的方法

摘要

FIELD: measurement technology.;SUBSTANCE: invention relates to a critical stress intensity factor determining methods for transverse shear, which is realized with cutting of a solid material. To the parallelepiped shaped sample a shear load is applied, which is created by longitudinal cutting of the sample with a cutter with a front angle equal to the given pair of "cutter – processed material" friction angle, which front face width and height exceeds the width b and thickness a of a cut layer, respectively, and the critical stress intensity factor KIIc is determined from the following relationship: where Psh.max is the maximum cutting force.;EFFECT: possibility to increase the critical stress intensity factor determining accuracy for transverse shear by giving the cutting force, id est, the shifting load position with an effect angle equal to zero.;1 cl, 5 dwg
机译:技术领域本发明涉及横向剪切的临界应力强度因子确定方法,其通过切割固体材料来实现。对平行六面体形状的样品施加剪切载荷,该剪切载荷是通过使用刀具进行纵向切割而产生的,该刀具的前角等于给定的一对“刀具-已加工材料”的摩擦角,其前表面的宽度和高度超过了根据以下关系确定切割层的宽度 b 和厚度 a ,以及临界应力强度因子K IIc : file =“ 00000013.JPG” he =“ 12” imgContent =“ undefined” imgFormat =“ JPEG” wi =“ 28” />其中P sh.max 是最大切削力;效果:通过给予切削力id est,作用角等于零的移动负载位置来提高横向应力的临界应力强度因子确定精度的可能性; 1 cl,5 dwg

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