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Microstructure and mechanical properties of AM50 alloy according to thickness and forming condition of the products by a high pressure die-casting process

机译:高压压铸工艺根据产品厚度和成型条件对AM50合金的组织和力学性能的影响

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摘要

In recent years, Magnesium (Mg) and its alloys have become a center of special interest in the automotive industry. Due to their high specific mechanical properties, they offer a significant weight saving potential in modern vehicle constructions. Most Mg alloys show very good machinability and processability, and even the most complicated die casting parts can be easily produced. The die casting process is a fast production method capable of a high degree of automation for which certain Mg alloys are ideally suited. Although Mg alloys are fulfilling the demands for low specific weight materials with excellent machining and casting abilities, they are still not used in die casting process to the same extent as the competing material aluminum. One of the reasons is that effects of various forming variables for die casting process is not closely examined from the viewpoint of die design. In this study, step die and flowability tests for AM50 were performed by die casting process according to various combination of casting pressure and plunger velocity. Microstructure, Vickers hardness and tensile tests were examined and performed for each specimen to verify effects of forming conditions.
机译:近年来,镁(Mg)及其合金已成为汽车工业中特别关注的中心。由于其较高的比机械性能,它们在现代车辆结构中具有显着的轻量化潜力。大多数镁合金都具有很好的机械加工性和加工性,甚至最复杂的压铸件也可以轻松生产。压铸工艺是一种快速生产的方法,具有很高的自动化程度,某些Mg合金非常适合。尽管镁合金满足了对低比重材料的需求,并具有出色的机械加工和铸造能力,但它们在压铸工艺中的使用程度仍不及竞争材料铝。原因之一是,从模具设计的角度来看,各种成型变量对压铸工艺的影响并未得到严格检验。在这项研究中,根据压铸压力和柱塞速度的各种组合,通过压铸工艺对AM50进行了阶梯模和流动性测试。检查并对每个样品进行显微组织,维氏硬度和拉伸试验,以验证成形条件的影响。

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