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A Lightweight Structure Redesign Method Based on Selective Laser Melting

机译:基于选择性激光熔化的轻量化结构重新设计方法

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The purpose of this paper is to present a new design method of lightweight parts fabricated by selective laser melting (SLM) based on the “Skin-Frame” and to explore the influence of fabrication defects on SLM parts with different sizes. Some standard lattice parts were designed according to the Chinese GB/T 1452-2005 standard and manufactured by SLM. Then these samples were tested in an MTS Insight 30 compression testing machine to study the trends of the yield process with different structure sizes. A set of standard cylinder samples were also designed according to the Chinese GB/T 228-2010 standard. These samples, which were made of iron-nickel alloy (IN718), were also processed by SLM, and then tested in the universal material testing machine INSTRON 1346 to obtain their tensile strength. Furthermore, a lightweight redesigned method was researched. Then some common parts such as a stopper and connecting plate were redesigned using this method. These redesigned parts were fabricated and some application tests have already been performed. The compression testing results show that when the minimum structure size is larger than 1.5 mm, the mechanical characteristics will hardly be affected by process defects. The cylinder parts were fractured by the universal material testing machine at about 1069.6 MPa. These redesigned parts worked well in application tests, with both the weight and fabrication time of these parts reduced more than 20%.
机译:本文的目的是提出一种基于“蒙皮框架”的通过选择性激光熔化(SLM)制造的轻质零件的新设计方法,并探讨制造缺陷对不同尺寸的SLM零件的影响。一些标准的格架零件是根据中国GB / T 1452-2005标准设计并由SLM制造的。然后将这些样品在MTS Insight 30压缩测试机中进行测试,以研究不同结构尺寸的屈服过程的趋势。还根据中国GB / T 228-2010标准设计了一组标准气缸样品。这些由铁镍合金(IN718)制成的样品也经过SLM处理,然后在通用材料测试机INSTRON 1346中进行测试以获得其拉伸强度。此外,研究了一种轻量级的重新设计方法。然后,使用此方法重新设计了一些常见的零件,例如塞子和连接板。这些重新设计的零件已经制造出来,并且已经执行了一些应用测试。压缩测试结果表明,当最小结构尺寸大于1.5 mm时,机械特性几乎不受工艺缺陷的影响。气缸零件在通用材料试验机上在约1069.6 MPa的压力下断裂。这些重新设计的零件在应用测试中效果很好,这些零件的重量和制造时间均减少了20%以上。

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