首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Influence of workpiece materials on aerosol emission from die sinking electrical discharge machining process
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Influence of workpiece materials on aerosol emission from die sinking electrical discharge machining process

机译:工件材料对下沉放电加工过程中气溶胶排放的影响

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摘要

Simultaneous investigation of environmental emissions and machining aspects of electrical discharge machining process is essential for achieving hygienic and efficient machining. The main objective of the present work is to experimentally investigate and analyze the aerosol emission rate and the material removal rate from a die sinking electrical discharge machining process for three commonly used work piece materials viz., tool steel, mild steel and aluminum using Taguchi methodology of Experimental Design in order to suggest suitable process conditions for green manufacturing. The aerosol emission profile of all workpiece materials was found to be closely related to the material removal profile. A significant variation in emission and material removal rate was observed for workpiece materials which may be accorded to the variation in melting and vaporization temperatures. It was also observed that majority of aerosol constituents evolved from workpiece materials and that the constituents with low melting points were having high relative concentration in the aerosol emitted. The study introduced a parameter, the relative emission rate for comparing the emission for various process parameters and workpiece-tool material combinations. The favorable machining parameters for each material were then identified by employing signal to noise ratio analysis of the relative emission rate.
机译:对环境排放和放电加工过程的加工方面进行同步研究对于实现卫生高效的加工至关重要。本工作的主要目的是使用田口方法对三种常用的工件材料,即工具钢,低碳钢和铝,通过实验研究和分析气模排放速率和从冲模放电加工过程中去除的材料去除率。为了提出适合绿色制造的工艺条件,请参考“实验设计”。发现所有工件材料的气溶胶排放曲线与材料去除曲线密切相关。对于工件材料,观察到排放和材料去除速率的显着变化,这可能与熔化和汽化温度的变化一致。还观察到大多数气溶胶成分是从工件材料中析出的,并且具有低熔点的成分在排放的气溶胶中具有较高的相对浓度。研究引入了一个参数,相对排放率,用于比较各种工艺参数和工件-工具材料组合的排放。然后通过对相对发射率进行信噪比分析,确定每种材料的有利加工参数。

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