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首页> 外文期刊>IJIDeM: International Journal on Interactive Design and Manufacturing >Design for additive manufacturing applied for mass reduction of a two-stroke engine cylinder for portable machine
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Design for additive manufacturing applied for mass reduction of a two-stroke engine cylinder for portable machine

机译:适用于适用于便携式机器的两冲程发动机缸的压缩制造的设计

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Metal additive manufacturing is an evolving technology not yet economically feasible for massive scale employment, but already profitable for low production volumes, especially in high-value-added segments, as well as being dominant in the prototyping industry. Since it provides significant design freedom compared to traditional manufacturing methods, it is suitable for lightweight projects with application of optimization software and bold concepts. Combustion engine cylinders for portable machines are complex parts that requires high investments for tooling construction of aluminum casting, which keeps the component geometry under its physical limitations. The advantages offered by the design freedom of the additive manufacturing becomes evident, through the results of this paper, where 27% of mass was reduced in an engine cylinder model by removing the draft angles of the cooling fins and adjusting their thickness, besides the addition of lattice structures into the crankcase flange. The lattice structures design took into account the printing limitations and their mechanical strength was evaluated through structural simulation, keeping a tensile range comparable to the original geometry. Due to its high potential for functional optimizations, additive manufacturing technologies advances should remain under the industry development focus areas, since it could become relevant to the future discussions in the portable machine cylinders production field.
机译:金属添加剂制造是一种不断发展的技术,在大规模的尺度就业,但对于低产量有利可图,特别是在高附加值的细分市场以及原型制作行业的主导地位。由于与传统的制造方法相比,它提供了显着的设计自由,因此适用于具有优化软件和大胆概念的轻量级项目。用于便携式机器的燃烧发动机气缸是复杂的部分,需要高等铝铸件的工具构造的高投资,这使部件几何形状保持在其物理限制下。通过本文的结果,添加剂制造的设计自由度提供的优点是通过本文的结果,其中通过除去散热片的牵伸角度并调节它们的厚度,在发动机缸模型中减少了27%的质量。除了添加晶格结构进入曲轴箱法兰。晶格结构设计考虑了印刷限制,并通过结构模拟评估了它们的机械强度,保持与原始几何形状相当的拉伸范围。由于其具有功能优化的高潜力,添加剂制造技术的进步应留在行业发展焦点领域,因为它可能与便携式机瓶生产领域的未来讨论变得相关。

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