RESEARCH OF THE MICROHARDNESS OF THE SURFACE OF A CYLINDRICAL PART DURING DEFORMATION

N. Veselovska, Yuriy Paladiychuk, Inna Telyatnuk
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引用次数: 1

Abstract

It is known that when processing plastic materials by cutting, chip grinding is a serious problem. The formation of a stable, strong draining chip is a sign of low machinability of the material of the part and requires the use of special means and methods that would ensure the separation of the chip or allowance that is cut. This issue is especially relevant in the case of cutting drawing as a low-speed process, which is characterized by intensive overgrowth and a high coefficient of chip shrinkage, and therefore the strength of the latter. Today, there are a number of original developments of several scientific schools, which implement the idea of preliminary division of the allowance during drawing by creating a network of technological chip-splitting grooves. The process of internal drawing, in particular drawing of round deep holes, must necessarily take place under conditions of forced chip separation or allowance. At the same time, the so-called transverse division of the chips, i.e., division along the perimeter of the hole, is usually carried out due to structural elements on the broach teeth and today is not too difficult a problem. However, there are certain reserves in this direction as well, in particular those related to increasing the stability of the tool. This article considered the technological function of the reliefs, which consists in the forced division of the cut allowance with contour grooves. An analysis of the advantages and disadvantages of the most common processes for obtaining round holes in hollow blanks and parts is carried out. The essence of the group (progressive, variable) stretching scheme is described. Typical combined extension tools are considered. Given formulas for calculating the dimensions of chip grooves. The first component р of the change in the diameter of the hole and the outer diameter of the workpiece after each of the combined drawing operations is characterized.
圆柱形零件变形过程中表面显微硬度的研究
众所周知,在通过切削加工塑料材料时,切屑磨削是一个严重的问题。形成稳定、牢固的排屑是零件材料可加工性低的标志,需要使用特殊的手段和方法来保证切屑或被切割的余量的分离。这个问题在作为低速过程的切削拉拔的情况下特别相关,其特点是密集的过度生长和高切屑收缩系数,因此后者的强度。今天,有几个科学流派的一些原创发展,通过创建一个技术芯片分裂凹槽网络,在绘图过程中实现了津贴的初步划分。内拉深工艺,特别是圆深孔的拉深,必须在强制切屑分离或允许的条件下进行。同时,所谓的切屑横向分割,即沿着孔的周长分割,通常是由于拉刀齿上的结构元件而进行的,今天并不是一个太难的问题。然而,在这个方向上也有一定的储备,特别是那些与提高工具稳定性有关的储备。本文考虑了浮雕的工艺作用,它包括用轮廓槽强制划分切割余量。分析了在空心毛坯和零件中获得圆孔的最常用工艺的优缺点。描述了群(渐进、可变)拉伸方案的实质。考虑了典型的组合扩展工具。给出了计算切屑槽尺寸的公式。描述了每次组合拉伸操作后孔直径和工件外径变化的第一分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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