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Direct slicing of surface model for RP of thin-wall objects

机译:薄壁物体RP的表面模型直接切割

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Rapid Prototyping(RP) methods have been widely accepted by industry in recent years. Most rapid prototyping processes build the solid volume layer by layer. This has the disadvantage that tessellation of a solid model to a faceted one is always required for hte slicing process. the present work focuses on eliminating the tessellation step an reducing processing time by direct slicing of the surface model. The slicing process produces piecewise edge information, which is used to generate the loop and path information of the RP process. The edge information can be offset to generate path information for RP of thin-walled objects. The number of entities for sorting is greatly reduced in rearranging the edge information as compared against the point information in seteroelithography(STL) format. This helps to achieve faster slicing and reduce the error in the sorting proess. Projection algorithm, which detects topological change between layers, is introduced during slicing process. With the help of this algorithm, sorting and rearanging of loop information is need only when topological changes are detected which rearanging of loo information is need only when toplogical changes are deteced which reducesthe processing time. The detail ofthe slicing process nd coparison will STL slicing will be discussed in this paper.
机译:近年来,行业广泛接受快速原型(RP)方法。大多数快速的原型工艺按层构建固体体积层。这具有缺点,即HTE切片过程总是需要将固体模型与刻面的细分化曲调。本工作侧重于消除曲面细分步骤通过直接切割表面模型来减少处理时间。切片过程产生分段边缘信息,用于生成RP过程的循环和路径信息。边缘信息可以偏移以生成薄壁对象RP的路径信息。在与SeteroErithographic(STL)格式中的点信息相比,重新排列边缘信息时,分类的实体数量大大减少。这有助于实现更快的切片并减少排序Proess中的错误。在切片过程中引入了检测层之间拓扑变化的投影算法。借助该算法的帮助,仅当检测到拓扑改变时,才需要循环信息的排序和排列,只有在拓扑的改变被提取到哪个ReduceSthe处理时间时,才需要拓扑改变。分切工艺ND Coparison的细节将在本文中讨论STL SliCing。

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