涂层硬质合金刀具干式加工AISI 1045材料表面完整性研究

Fransnazoan Sitorus, None Irwansyah, Emil Salim P Siregar
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引用次数: 0

摘要

在金属切削加工过程中,表面完整性偏差的根源是多种因素的综合。表面粗糙度参数(Ra)足以确定产品表面包装的质量水平,因此被广泛用作确定产品表面包装水平的参数。硬质合金刀具在现代金属加工工业中占主导地位,是金属切削加工的首选工具。硬质合金刀具可以通过涂层工艺得到改善。特别是,本研究的目的是在干式加工中使用涂层硬质合金刀具获得AISI 1045材料的表面粗糙度和最佳切削条件,以及在实验室中对学生实习过程的研究设计分析结果进行研究和开发,特别是表面包装材料分析。使用的材料是AISI 1045与PVD TiAlN-TiN涂层硬质合金刀具。组合加工过程的切削条件,即切削速度、进给量和切削深度。在v= 235 m/min切削条件下,未涂层硬质合金刀具表面粗糙度值= 9,042µm的AISI 1045试验材料表面粗糙度测试结果;f = 0.05毫米/放;一个= 0.5毫米;采用PVD涂层硬质合金刀具对AISI 1045试验材料进行表面粗糙度测试,在切削条件下,最佳平均表面粗糙度值= 6135µm: v=235 m/min;f = 0.75毫米/放;一个= 1毫米;tc = 5.30分钟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Surface Integrity Study of AISI 1045 Material in Dry Machining Using Coated Carbide Tool
In metal cutting processes, the source of surface integrity deviation is a combination of several factors. The surface roughness parameter (Ra) is sufficient to determine the quality level of the surface packaging of a product, so it is widely used as a parameter to determine the surface packaging level of a product. Carbide tools dominate modern applications in the metalworking industry and are the preferred choice for metal cutting processes. Carbide tools can be improved through a coating process. In particular, the purpose of this study was to obtain surface roughness and optimum cutting conditions for dry machining of AISI 1045 materials using coated carbide tool when used in dry machining as well as for the development of research and development with research design analysis of the results of student practicum processes in laboratories, especially surface packaging material analysis. The material used is AISI 1045 with PVD TiAlN-TiN coated carbide tool. Combination machining process of cutting conditions, namely cutting speed, feed and depth of cut. Surface roughness test results on AISI 1045 test material with uncoated carbide tool surface roughness value = 9,042µm in cutting conditions: v= 235 m/min; f= 0.05mm/put; a=0.5mm; tc= 5.23 min. And the results of the surface roughness test on the AISI 1045 test material with PVD coated carbide tool with the best average surface roughness value = 6,135µm in cutting conditions: v=235 m/min; f=0.75 mm/put; a=1mm; tc=5.30 min.
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