首页> 外文会议>2010 International Conference on Intelligent Computation Technology and Automation >Effects of the Properties of Bi-modulus Material on Stiffness Design
【24h】

Effects of the Properties of Bi-modulus Material on Stiffness Design

机译:双模量材料的性能对刚度设计的影响

获取原文

摘要

A bi-modulus material, which tension modulus is different from the compression one along the same direction, is widely used in engineering, e.g., concrete or cast iron. For the sake of the mechanical properties of a bi-material depend on local stress state, many times of structural reanalysis are required to obtain the accurate stress field. To improve the efficiency of topology optimization of a structure with bi modulus material, the reference-interval with material replacement method is used and the effects of the mechanical properties of bi-material on the final material distribution of a structure are discussed. In the method, a reference interval of strain energy density (SED) is adopted to control the update of design variables. The interval changes frequently in iterations to satisfy the active constraints in optimization. On the other hand, a material-replacement scheme in which the bimodulus material is replaced with two types of isotropic materials is suggested to simplify structural analysis. And then, the effective SED field of the structure with original material is obtained according to the stress and strain fields of the structure with replaced materials and the update of design variables can be carried out by comparing the local effective SED and the current reference interval of SED. Numerical results show that the difference between the tension modulus and the compression one of the bi-modulus material in a structure has obvious effects on the final material distribution, which is important for an engineer to find an appropriate initial design in practical engineering.
机译:拉伸模量与沿相同方向的压缩模量不同的双模量材料广泛用于工程中,例如混凝土或铸铁。由于双材料的机械性能取决于局部应力状态,需要多次结构重新分析才能获得准确的应力场。为了提高具有双模量材料的结构的拓扑优化效率,使用了具有材料替换方法的参考间隔,并讨论了双材料的力学性能对结构最终材料分布的影响。在该方法中,采用应变能密度(SED)的参考间隔来控制设计变量的更新。间隔在迭代中频繁更改,以满足优化中的主动约束。另一方面,提出了一种材料替换方案,其中双模材料替换为两种类型的各向同性材料,以简化结构分析。然后,根据被替换材料的结构的应力和应变场,获得具有原始材料的结构的有效SED场,并且可以通过比较局部有效SED和当前的参考间隔来进行设计变量的更新。 SED。数值结果表明,结构中双模量材料的拉伸模量和压缩率之间的差异对最终材料的分布有明显影响,这对于工程师在实际工程中寻找合适的初始设计很重要。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号