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Curcuit board application to additive manufactured components by laser-direct-structuring

机译:通过激光直接成型将电路板应用于增材制造的零件

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With the demand for complex, individualized and functionalized products with respect to constantly decreasing life cycles, additive manufacturing processes such as the process of selective laser sintering (SLS) has increasingly been of industrial interest. These processes are being used more and more to produce models, prototypes and partially finished products made of plastic, metal or ceramic and require neither a tool nor a form. Affected by decreasing installation spaces and increasing functional densities, flexible methods for circuit board application and their combination with additive manufacturing are in the focus of electronic industry research activities. In the context of this article both a thermoplastic polymer polybutylene terephthalate (PBT) which has been prepared to defined powder fractions with cryogenic milling, and the established and commercially available SLS material (PA12, PA2200) were the subject of a dry coating process with LDSadditives. Subsequently, these LDS-powders were processed with SLS to form test specimens. Finally their surface was structured and metallized through the LPKF-LDS-process (Laser-Direct- Structuring). Based on these metallized specimens, the metallization was studied as a function of an LDS-additive filling ratio. To uncover positive synergy effects from additively manufacturing the polymer body, the metallization was analyzed in terms of shape and adhesive strength.
机译:随着对不断降低的寿命周期的复杂,个性化和功能化产品的需求,诸如选择性激光烧结(SLS)工艺之类的增材制造工艺日益引起工业关注。这些过程正越来越多地用于生产由塑料,金属或陶瓷制成的模型,原型和部分成品,而无需任何工具或形式。受减小安装空间和增加功能密度的影响,灵活的电路板应用方法及其与增材制造的结合成为电子行业研究活动的重点。在本文中,通过低温研磨制备的热塑性聚合物聚对苯二甲酸丁二醇酯(PBT)和已建立的可商购的SLS材料(PA12,PA2200)都是采用LDS添加剂进行干涂工艺的主题。随后,将这些LDS粉末用SLS加工以形成试样。最终,它们的表面通过LPKF-LDS工艺(激光直接结构化)进行结构化和金属化。基于这些金属化的样品,研究了金属化与LDS-添加剂填充率的关系。为了发现增材制造聚合物主体产生的积极协同效应,根据形状和粘合强度分析了金属化层。

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