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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >A study of stored energy in ultra-fined grained aluminum machined by electrical discharge machining
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A study of stored energy in ultra-fined grained aluminum machined by electrical discharge machining

机译:通过电气放电加工加工超罚粒子储存能量的研究

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摘要

Due to light weight and high strength, industrial applications of ultra-fined grain materials are becoming prevalent. Ultra-fined grain materials are produced by severe plastic deformation techniques such as equal channel angular pressing, which impose large strains on ultra-fined grain microstructure, resulting in accumulation of the lattice defects and dislocations and consequently increasing the stored energy. Due to high stored energy of ultra-fined grain materials, they are thermodynamically unstable and prone to microstructural evolutions. In order to manufacture industrials parts, applying machining methods such as electrical discharge machining is necessary. Electrical discharge machining is a thermo-electrical process that erodes the surface of the workpiece by high temperature sparks. The surface of the workpiece is melted and then suddenly quenched into dielectric, and eventually a very hard and brittle layer, known as recast layer, is formed. The recast layer and heat-affected zone are the source of microstructural changes that affect the special properties of the ultra-fined grain materials and their stored energy. In this study, the bulk and local stored energy of electrical discharge machined ultra-fined grain aluminum samples are measured via differential scanning calorimetry technique and micro-hardness test. In the following, the effects of the electrical discharge machining process on ultra-fined grain aluminum are investigated. The results show that electrical discharge machining process alters the stored energy of the ultra-fined grain materials.
机译:由于重量轻,强度高,超罚谷物材料的工业应用变得普遍。通过严重的塑性变形技术(例如等于沟道角压)的严重塑性变形技术生产的超罚粒材料,其对超罚晶粒微观结构施加大的菌株,导致晶格缺陷和脱位的积累,从而增加了储存的能量。由于超罚材料的高储存能量,它们是热力学上不稳定的并且容易达到微观结构的演进。为了制造工业部件,需要施加加工方法,例如电放电加工。电气放电加工是一种热电过程,可通过高温火花侵蚀工件的表面。工件的表面熔化,然后突然淬火到电介质中,并且最终形成了称为倒退层的非常坚硬且脆性层。重量层和热影响区域是影响超罚谷物材料的特殊性质及其储存能量的微观结构变化的来源。在该研究中,通过差示扫描量热法和微硬度测试测量放电加工的超罚粒铝样品的体积和局部存储的能量。在下文中,研究了放电加工过程对超罚粒铝的影响。结果表明,电气放电加工过程改变了超罚谷物材料的储存能量。

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