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High-stiffness, lock-and-key heat-reversible locator-snap systems for the design for disassembly.

机译:高刚度,锁键式可逆定位器定位系统,用于拆卸设计。

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摘要

The use of joints that can disengage with minimum labor, part damage, and material contamination is critical to ensure effective service, part reuse, and material recycling. This dissertation develops a general computational method for designing lock-and-key heat-reversible locator-snap systems that satisfy the aforementioned requirements. The lock-and-key concept is like a security code that allows easy disassembly when the right procedure is followed. It is realized by double-latching snaps that require force within a certain range to disengage, and multiple snaps that require heating multiple locations at different temperatures to disengage. During disassembly, thermal expansion constrained by locators and temperature gradient along the wall thickness are exploited to realize the deformation required to release the snaps.; A generic optimization problem is posed to find the orientations, numbers, and locations of locators and snaps, and the numbers, locations, and sizes of heating areas, which realize the release of snaps with minimum heating and maximum stiffness, while satisfying motion and structural requirements. Screw Theory is utilized to pre-calculate the set of feasible orientations of locators and snaps that are examined during optimization.; Multi-Objective Genetic Algorithm (MOGA) is used for solving the posed generic optimization problem. A parallel version, using manager-worker scheme, with active load balancing is developed to solve the generic optimization problem efficiently. The proposed algorithm selects between two parallelization schemes based on the average objective function evaluation time and either divides the population evenly over all processors or sends small patches of the population to the idle workers.; The proposed heat-reversible locator-snap systems are applied to different case studies ranging from automotive bodies to consumer electronics. The first case study deals with joining internal frames and external panels in automotive bodies. Next, the proposed locator-snap systems are applied to a T-shaped DVD player enclosure, an enclosure model with complex mating line geometry, and a flat panel TV enclosure. In the later, the developed Parallel genetic algorithm is used and its performance is analyzed. In all case studies, the resulting Pareto-optimal solutions result in alternative designs with different trade-offs between the design objectives while satisfying all the constraints.
机译:使用能够以最小的人工,零件损坏和材料污染脱离的接头对于确保有效的维修,零件重复使用和材料回收至关重要。本论文开发了一种通用的计算方法,用于设计满足上述要求的锁匙式热可逆定位器-捕捉系统。锁和钥匙的概念就像一个安全代码,可以按照正确的步骤轻松拆卸。它是通过需要一定范围内的力才能脱开的双闩锁卡扣,以及需要在不同温度下加热多个位置以脱开的多个卡扣来实现的。在拆卸过程中,利用定位器限制的热膨胀和沿壁厚的温度梯度来实现释放卡扣所需的变形。提出了一个通用的优化问题,以找到定位器和卡扣的方向,数量和位置,以及加热区域的数量,位置和大小,从而以最小的加热和最大的刚度释放卡扣,同时满足运动和结构要求要求。利用螺杆理论来预先计算在优化过程中检查的定位器和按扣的可行方向的集合。多目标遗传算法(MOGA)用于解决提出的泛型优化问题。使用经理-工人方案并具有主动负载平衡的并行版本被开发出来,可以有效地解决通用优化问题。提出的算法基于平均目标函数评估时间在两种并行化方案之间进行选择,或者将种群在所有处理器上平均分配,或者将种群的小补丁发送给空闲的工人。所提出的热可逆定位器定位系统应用于从汽车车身到消费电子产品的各种案例研究。第一个案例研究涉及车身内部框架和外部面板的连接。接下来,将提议的定位器捕捉系统应用于T形DVD播放器机壳,具有复杂配合线几何形状的机壳模型和平板电视机壳。稍后,将使用改进的并行遗传算法并分析其性能。在所有案例研究中,所得到的帕累托最优解决方案都可以在满足所有约束的同时,在设计目标之间权衡取舍。

著录项

  • 作者

    Shalaby, Mohammed Mounir.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 201 p.
  • 总页数 201
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:38:43

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