孙乐葳, 郝亮, 熊玮, 李妍. 基于选择性激光熔化技术(SLM)的首饰设计应用研究[J]. 宝石和宝石学杂志(中英文), 2020, 22(5): 49-56. DOI: 10.15964/j.cnki.027jgg.2020.05.007
引用本文: 孙乐葳, 郝亮, 熊玮, 李妍. 基于选择性激光熔化技术(SLM)的首饰设计应用研究[J]. 宝石和宝石学杂志(中英文), 2020, 22(5): 49-56. DOI: 10.15964/j.cnki.027jgg.2020.05.007
Lewei SUN, Liang HAO, Wei XIONG, Yan LI. Selective Laser Melting (SLM) Technology for Jewelry Design and Its Application[J]. Journal of Gems & Gemmology, 2020, 22(5): 49-56. DOI: 10.15964/j.cnki.027jgg.2020.05.007
Citation: Lewei SUN, Liang HAO, Wei XIONG, Yan LI. Selective Laser Melting (SLM) Technology for Jewelry Design and Its Application[J]. Journal of Gems & Gemmology, 2020, 22(5): 49-56. DOI: 10.15964/j.cnki.027jgg.2020.05.007

基于选择性激光熔化技术(SLM)的首饰设计应用研究

Selective Laser Melting (SLM) Technology for Jewelry Design and Its Application

  • 摘要: 随着3D打印技术的蓬勃发展,其在首饰设计领域的应用也随之增加。选择性激光熔化技术(SLM)是其中的一种重要途径,它使得一次性打印制造金属首饰成为现实。在首饰设计方面,SLM技术可以打印制造几乎任何形状的作品,包括空壳结构、活动结构和特殊结构。但目前该技术的应用还存在着很多需要注意的设计原则,如支撑结构、内部结构设计、执模抛光难度及后期处理。本文重点研究支撑结构设计和活动性结构设计,突出了SLM技术对首饰制造和加工流程等方面带来的巨大影响。基于该技术进行首饰设计和相关探索,首饰设计可以既满足于传统首饰的审美需求,在制造上体现3D打印的技术优势,又可以更高效地满足生产中遇到的实际需求。

     

    Abstract: With the rapid development of 3D printing technology, applications in jewelry design and the other fields are also increasing. Selective Laser Melting (SLM) technology is also one of the important ways to make metal jewelry by one-time printing. In terms of jewelry design, it can print almost any shape of works, including empty shell structure, movable structure and special structure. However, there are still many design principles that need to pay attention to in the application of SLM technology in jewelry design. For example support structure design, internal structure design, mold polishing difficulty and post-processing design. This paper focuses on the support structure design and movable structure design, highlighting the great impact of SLM technology on jewelry manufacturing and processing process. Based on this technology, jewelry design and related exploration can not only meet the aesthetic needs of traditional jewelry, but also reflect the technical advantages of 3D printing in manufacturing, and can meet the actual needs in production more efficiently.

     

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