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The fundamentals of automatic washing machine design based upon dynamic constraints.

机译:基于动态约束的自动洗衣机设计基础。

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摘要

The objective of this study is to develop a fundamental resource for appliance engineers to understand the dynamic constraints involved in the design of automatic washing machines. This is accomplished through the development and examination of basic models. The fundamental characteristics of the suspension system are determined for top and bottom mount horizontal axis washers. Similitude is used to discuss the characteristics of vertical axis washers.; The fundamental models developed for the suspension systems show good correlation with the dynamic response of actual washing machines. It is possible to use these fundamental models to determine limits or bounds upon the suspension stiffness of the system for both top and bottom mount suspension designs. The stability of bottom mount suspension systems is discussed. From the analysis of the suspension designs, the need for dynamic balancing of the clothes load during the spin extraction cycle is established.; The need for dynamic balancing is a prominent observation of the suspension system analysis. Hence, a review of auxiliary mass damper designs is presented with emphasis on application to automatic washing machine design. Design criteria for using dynamic balancers are discussed and the limitations of these devises are explained. Liquid ring balancers show the most promise due to cost; however, mechanical balancers are more effective in controlling the system's response. Finally, a new type of dynamic balancer, the elastic mass balancer, is developed.; The dynamic constraints imposed upon the washing machine design are typically tub deflection and walk performance for a given unbalanced load. The theory of walk is established using fundamental models to explore specific environmental interactions. Design criteria are developed from this analysis which will enable the washer suspension engineer to gain valuable insight into the walk response of the washing machine during the spin extraction cycle. It is shown that the spin speed achievable is dependent upon the suspension design. Without a suspension, the washing machine can only achieve spin speeds of 200 RPM while actual machines achieve spin speeds of 1600 RPM. The use of walk as a design constraint is discussed for washing machine design.; Finally, the design observations for a washing machine using dynamic constraints are discussed. Through the use of these observations, a design engineer will be able to determine the benefits and limitations of a suspension design on the dynamic response of a washing machine prior to the actual development of the system. Therefore, this study gives the design engineer insights on the design of washing machine suspension systems based upon the dynamic constraints imposed upon the system by the consumer. The use of these insights should reduce the time required to develop a useful suspension system and improve the quality of the suspension design before actual construction of the product is initiated.
机译:这项研究的目的是为设备工程师开发一种基础资源,以了解自动洗衣机设计中涉及的动态约束。这是通过开发和检查基本模型来完成的。悬挂系统的基本特性是针对顶部和底部安装的水平轴垫圈确定的。相似性用于讨论垂直轴垫圈的特性。为悬挂系统开发的基本模型显示出与实际洗衣机的动态响应的良好相关性。可以使用这些基本模型来确定顶部和底部悬架设计的系统悬架刚度的极限或界限。讨论了底部安装悬挂系统的稳定性。通过对悬架设计的分析,确定了在甩干循环期间动态平衡衣物负荷的需求。动态平衡的需求是对悬架系统分析的主要观察。因此,对辅助质量阻尼器的设计进行了回顾,重点是在自动洗衣机设计中的应用。讨论了使用动态平衡器的设计标准,并解释了这些设计的局限性。液体环形平衡器由于成本而显示出最大的希望;但是,机械平衡器在控制系统响应方面更为有效。最后,开发了一种新型的动平衡器,即弹性质量平衡器。对于给定的不平衡负载,施加在洗衣机设计上的动态约束通常是水桶偏转和行走性能。步行理论是使用基本模型来探索特定的环境相互作用而建立的。根据该分析得出设计标准,这将使洗衣机悬架工程师能够在旋转脱水周期内获得有关洗衣机行走响应的宝贵见解。结果表明,可达到的旋转速度取决于悬架的设计。没有悬架,洗衣机只能实现200 RPM的旋转速度,而实际的洗衣机只能实现1600 RPM的旋转速度。讨论了将步行作为设计约束条件用于洗衣机设计。最后,讨论了使用动态约束的洗衣机的设计观察结果。通过使用这些观察结果,设计工程师将能够在实际开发系统之前确定悬挂设计对洗衣机动态响应的好处和局限性。因此,这项研究根据消费者对系统施加的动态约束,为设计工程师提供了有关洗衣机悬挂系统设计的见识。利用这些见识,应减少开发有用的悬架系统所需的时间,并在开始实际构建产品之前提高悬架设计的质量。

著录项

  • 作者

    Conrad, Daniel Carroll.;

  • 作者单位

    Purdue University.;

  • 授予单位 Purdue University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 1994
  • 页码 261 p.
  • 总页数 261
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

  • 入库时间 2022-08-17 11:49:53

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