Mechanical Characterization and Machinability Behavior of Annealed AISI D6 Cold Working Steel

M. K. Nayak, R. Sehgal, R. Sharma
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引用次数: 11

Abstract

Tool steels in metal forming industry are exposed to complex and aggressive conditions due to multiple effects (mechanical, thermal, or tribological loading) and require defined mechanical properties. Also machining of tool steel with poor machinability like AISI D6 to manufacture form tools is an extremely difficult task. This paper investigates the microstructural, mechanical, and machining behavior of AISI D6 steel in annealed and hardened conditions. Various mechanical tests indicated good hardenability, improved surface hardness, and phenomenal improvement in tensile strength but extremely poor resistance to impact in both annealed and hardened condition for this steel. The machining characteristics of AISI D6 steel were evaluated using a 2k unreplicated full factorial design approach and statistical techniques have been used to assess and identify the significant factors, namely, cutting speed, feed, depth of cut, and approach angle, in minimizing surface roughness and main cutting force while machining this steel with a carbide tool. It was found that the depth of cut, feed, and approach angle are the most significant factors affecting the surface roughness and depth of cut and feed affect the main cutting force. Cutting speed has no effect on surface roughness and main cutting force in machining of the steel in annealed condition.
退火AISI D6冷加工钢的力学特性和可加工性行为
金属成形工业中的工具钢由于多种影响(机械,热或摩擦载荷)而暴露于复杂和侵蚀性的条件下,并且需要确定的机械性能。此外,加工加工性差的工具钢,如AISI D6,以制造成形工具是一项极其困难的任务。本文研究了aisid6钢在退火和硬化条件下的显微组织、力学和加工行为。各种机械试验表明,这种钢的淬透性好,表面硬度提高,抗拉强度显著提高,但在退火和硬化条件下抗冲击能力极差。采用2k非重复全因子设计方法对AISI D6钢的加工特性进行了评估,并使用统计技术评估和确定了在使用硬质合金刀具加工该钢时最小化表面粗糙度和主切削力的重要因素,即切削速度、进给量、切削深度和接近角。研究发现,切削深度、进给深度和进给角是影响表面粗糙度最显著的因素,而切削深度和进给深度影响主切削力。在退火条件下,切削速度对钢的表面粗糙度和主切削力没有影响。
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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