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Development of SVM rapid prototyping for scaffold fabrication

机译:用于支架制造的SVM快速原型开发

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Purpose - This paper aims to introduce selective vacuum manufacturing (SVM), a powder-based rapid prototyping (RP) technique, and the ongoing development to improve its capability to apply in temporary scaffold fabrication. Design/methodology/approach - SVM employs a combination of sand casting and powder sintering process to construct a prototype layer by layer. A dense layer of support material is prepared and selectively removed to create a cavity where part material is filled and sintered to form a solid layer. In order for SVM to be considered for scaffold fabrication, besides preparing poly-lactic acid (PLA) for part material, support material preparation and process parameters identification have been studied. Redesigning of SVM machine to be more suitable for the real usage has also been presented. Findings - Particle size of salt has been controlled, and its suitable composition with flour and water has been determined. Process parameters have been identified to scale down the size of scaffolds to meso-scale and to achieve mechanical requirement. Properties of fabricated scaffolds have been enhanced and can be used for soft tissue applications. A prototype of the medical SVM machine has been constructed and tested. An examination of scaffolds fabricated on this new machine also showed their qualification for soft tissue application. Research limitations/implications - Further study will be on conducting a direct cytotoxicity test to provide the evidence for tissue growth before the clinical usage, on continuing to scaling down the scaffold size, and on improving SVM to meet the requirement of hard tissue. Originality/value - This simple, inexpensive RP technique demonstrates its viability for scaffold fabrication.
机译:目的-本文旨在介绍选择性真空制造(SVM),基于粉末的快速原型制作(RP)技术以及正在进行的开发,以提高其在临时支架制造中的应用能力。设计/方法/方法-SVM采用砂型铸造和粉末烧结工艺相结合的方式逐层构建原型。制备致密的支撑材料层,并有选择地将其去除以形成空腔,在该空腔中填充并烧结零件材料以形成固体层。为了考虑将SVM用于支架制造,除了制备零件材料的聚乳酸(PLA)外,还研究了支撑材料的制备和工艺参数的识别。还提出了重新设计SVM机器以使其更适合实际使用的情况。发现-盐的粒径得到控制,并且确定了其与面粉和水的合适组成。已经确定了工艺参数以将支架的尺寸缩小至中等尺寸并达到机械要求。制成的脚手架的性能已得到增强,可用于软组织应用。医疗SVM机器的原型已构建并经过测试。对在这台新机器上制造的脚手架的检查还显示出其在软组织应用中的资格。研究的局限性/意义-进一步的研究将进行直接的细胞毒性测试,以为临床使用之前的组织生长提供证据,继续缩小支架的尺寸,以及改善SVM以满足硬组织的需求。原创性/价值-这种简单,廉价的RP技术证明了其在脚手架制造中的可行性。

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