Adaptive slicing of functionally graded material objects for rapid prototyping

被引:1
作者
M. Y. Zhou
机构
[1] Guilin University of Electronic Technology,Department of Computer Sciences and Engineering
来源
The International Journal of Advanced Manufacturing Technology | 2004年 / 24卷
关键词
Adaptive slicing; Functionally graded material; Rapid prototyping; Solid model ;
D O I
暂无
中图分类号
学科分类号
摘要
Slicing is a fundamental process planning task and an important procedure in rapid prototyping. However, most research currently focuses on the slicing of homogeneous objects and few approaches for slicing of heterogeneous objects have been reported in the literature. In this article, we present an approach for adaptive slicing of functionally graded material objects. Unlike homogeneous objects, functionally graded material objects contain both geometry and material information. The layer thickness is computed by considering not only geometry but also material variation along the build direction. The continuous material distribution in each layer is discretised into step-wise gradings by subdividing the slice into sub-regions, which can be regarded as homogeneous material regions. An algorithm that summarised the slicing procedure is described and an example is also presented.
引用
收藏
页码:345 / 352
页数:7
相关论文
共 23 条
[1]  
Yan TR(1996)Modelling and designing functionally graded material components for fabrication with local composition control Computer Aided Design 28 307-75
[2]  
Chua H(1998)‘Source-based’ heterogeneous solid modelling Int JAdvan Manufac Technol 14 146-55
[3]  
Markworth NM(1995)Adaptive direct slicing with non-uniform cusp heights for rapid prototyping Modelling studies applied to functionally graded materials J Mater Sci 30 2183-27
[4]  
Ilschner EM(1996)undefined J MechPhys Solids 44 647-undefined
[5]  
Mazumder MJ(1997)undefined J Minerals 49 55-undefined
[6]  
Jackson YK(1999)undefined Materials and Design 20 63-undefined
[7]  
Liu ST(2002)undefined Int J Advan Manufac Technol 19 646-undefined
[8]  
Partikalakis MY(1998)undefined JMech Design 120 659-undefined
[9]  
Sachs JT(2002)undefined Computer-Aided Design 34 41-undefined
[10]  
Cima JQ(3)undefined JMater Process Tech 146 396-undefined