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RAPID MANUFACTURING BY LASER AIDED DIRECT METAL DEPOSITION PROCESS: ISSUES AND EXAMPLES

机译:激光辅助直接金属沉积过程快速制造:问题和实例

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Development of a new product takes several phases - conceptual design, assembly layouts, detail design, prototype, testing, and then production. Competitiveness hinges on reducing these phases in time for new products. Rapid prototyping (RP) and rapid production are the concept that is aimed specifically at that goal. The essence of RP and rapid production is the formation of a solid 3-D object directly from CAD dimensions. Laser aided direct metal/material deposition (LADMD) offers the ability to make a metal component directly from 3-D CAD dimensions. 3-D CAD data can be converted to machine tool code after the 3-D object is sliced down layer by layer. Repeating laser cladding pass layer by layer, a 3-D object can be formed with the help of CAD data. The key of this build-up mechanism is the effective control of powder to be delivered and laser power to be irradiated into the melt-pool. Adaptive deposition associated with varied thickness deposition is more effective to build up layers quickly than uniform thickness deposition. The rational for this deposition strategy is how quickly and how soundly it can be deposited. Fabricated example parts are presented. This paper also reviews important issues regarding geometrical integrity as well as material integrity in developing LADMD process.
机译:开发新产品采用几个阶段 - 概念设计,装配布局,详细设计,原型,测试,然后生产。竞争力铰链在减少新产品时减少这些阶段。快速原型设计(RP)和快速生产是专门针对该目标的概念。 RP和快速生产的本质是直接从CAD尺寸形成固体3-D物体。激光辅助直接金属/材料沉积(LADMD)提供直接从3-D CAD尺寸制作金属部件的能力。 3-D CAD数据可以在将3-D对象按层切片层切片后转换为机床代码。通过层重复激光覆层通过层,可以在CAD数据的帮助下形成3-D对象。这种积聚机构的关键是有效控制粉末被输送和激光功率被照射到熔融池中。与变化厚度沉积相关的自适应沉积更有效地利用比均匀的厚度沉积快速增加层。这种沉积策略的理性是如何存放它的速度和良好。提出了制造的示例性部件。本文还介绍了关于发展Ladmd流程的几何完整性以及物质完整性的重要问题。

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