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Rapid Fabrication of Large-sized Solid Shape using Variable Lamination Manufacturing and Multi-functional Hotwire Cutting System

机译:使用可变层压制造和多功能热线切割系统快速制造大尺寸实体形状

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Rapid prototyping (RP) technologies have been widely used to reduce the lead-time and development cost of new products. The VLM-ST process has been developed to overcome the currently developed RP technologies such as a large building time, a high building cost, an additional post-processing and a large apparatus cost. However, the VLM-ST process has the limitation of fabricated model size (VLM300: 297x210 mm, VLM400: 420x297 mm) and the limitation of slope angle when the large-sized model more than 600 x 600 x 600 mm or axisymmetric shape is fabricated. The objective of this paper is to develop a multi-functional hotwire cutting system (MHC) using EPS-foam block or sheet as the working material in order to fabricate a large-sized shape more than 600 x 600 x 600 mm. Because the MHC apparatus employs a four-axis synchronized hotwire cutter with the structure of two XY movable heads and a turn-table, it allows the easy fabrication of various 3D shapes, such as (1) an axisymmetric shape or a sweeping cross-sectioned pillar shape using the hot-strip in the form of sweeping surface and EPS foam block on the turn-table, (2) a polyhedral complex shape using the hotwire and EPS foam block on the turn-table, and (3) a ruled surface approximated freeform shape using the hotwire and EPS foam sheet. In order to examine the applicability of the developed MHC apparatus, an axisymmetric shape, a polyhedral shape and a large-sized freeform shape were fabricated by the apparatus.
机译:快速原型(RP)技术已被广泛用于减少新产品的交货时间和开发成本。已经开发出VLM-ST工艺来克服当前开发的RP技术,例如,建造时间长,建造成本高,附加的后处理和装置成本高。但是,VLM-ST工艺具有制造模型尺寸的限制(VLM300:297x210毫米,VLM400:420x297毫米),并且在制造大于600 x 600 x 600毫米的大型模型或轴对称形状时存在倾斜角度的限制。 。本文的目的是开发一种使用EPS泡沫块或板材作为工作材料的多功能热线切割系统(MHC),以制造尺寸超过600 x 600 x 600 mm的大尺寸形状。由于MHC设备采用具有两个XY可移动头和转台结构的四轴同步热线切割机,因此可以轻松制造各种3D形状,例如(1)轴对称形状或横切面柱形使用热条,形式为扫掠表面和转盘上的EPS泡沫块;(2)多面体复杂形状,使用转盘上的热丝和EPS泡沫块,以及(3)直纹表面使用热线和EPS泡沫板来近似自由形状。为了检验所开发的MHC设备的适用性,通过该设备制造了轴对称形状,多面体形状和大尺寸自由形状。

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