Study of the stress-strain and temperature fields in cutting tools using laser interferometry

IF 0.4 Q4 METALLURGY & METALLURGICAL ENGINEERING
I. Efimovich, I. Zolotukhin
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引用次数: 0

Abstract

Introduction. The efficiency of the metalworking processes highly depends on the performance of the implemented cutting tools that can be increased by studying its stress-strain state and temperature fields. Existing stress analysis methods either have a low accuracy or are inapplicable for research during the operation of the tools made of materials with high mechanical properties. In addition, the study of temperature fields using known methods is difficult due to the small size of the cutting zone, high temperatures, and a heavy temperature gradient appearing during metal cutting. The purpose of this study is to develop new experimental methods for measuring the stress-strain and temperature fields in the cutting tool during its operation using laser interferometry. The methods include: obtaining interference fringe patterns using an interferometer with the original design, obtaining the tool deformation field during the cutting process by recording the changes in interference fringe patterns using a high-speed camera, processing fringe patterns with the separation of deformations caused by heating and cutting forces, and calculating temperature fields and stress distributions using mechanical properties and the coefficient of thermal expansion of the tool material. The advantages of the developed methods include: applicability under real operating conditions of the cutting tool, ability to study the non-stationary stress-strain state and temperatures during an operation, and achievement of a high spatial resolution and a small field of view for the investigated surface. Results and Discussion. The experimental study confirmed the efficiency of the methods. The results of the study included the fields of stresses and temperatures obtained during the orthogonal cutting of heat-resistant steel with a tool made of cemented tungsten carbide WC-8Co. The developed methods can be used to study the cutting tool efficiency at close to real conditions and in obtaining boundary conditions for the study stress-strain state of a workpiece material near the cutting zone.
用激光干涉法研究切削刀具的应力-应变和温度场
介绍。金属加工过程的效率在很大程度上取决于所实施刀具的性能,可以通过研究其应力-应变状态和温度场来提高刀具的性能。现有的应力分析方法要么精度低,要么不适用于高力学性能材料制成的刀具在工作过程中的研究。此外,由于切削区面积小,温度高,金属切削过程中出现较大的温度梯度,使用已知方法研究温度场是困难的。本研究的目的是建立一种新的实验方法,用于激光干涉测量刀具在工作过程中的应力应变场和温度场。方法包括:利用原始设计的干涉仪获取干涉条纹图,利用高速摄像机记录干涉条纹图的变化,获得切削过程中刀具的变形场,将加热和切削力引起的变形分离处理条纹图,利用刀具材料的力学性能和热膨胀系数计算温度场和应力分布。所开发的方法的优点包括:适用于刀具的实际操作条件,能够研究操作过程中的非稳态应力-应变状态和温度,以及实现高空间分辨率和小视野的研究表面。结果和讨论。实验研究证实了该方法的有效性。研究结果包括用硬质合金WC-8Co刀具正交切削耐热钢时的应力场和温度场。所开发的方法可用于研究接近实际条件下的刀具效率,并为研究切削区附近工件材料的应力-应变状态获得边界条件。
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来源期刊
Obrabotka Metallov-Metal Working and Material Science
Obrabotka Metallov-Metal Working and Material Science METALLURGY & METALLURGICAL ENGINEERING-
CiteScore
1.10
自引率
50.00%
发文量
26
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