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AN INNOVATIVE CHANNEL DESIGN OF THE FREEZING CHUCKER

机译:冻结卡盘的创新通道设计

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摘要

A freezing chucker is a clamp-less mechanism of fixture for easy broken egg-shell, clay, and other ferrousonferrous materials. Typical structure of this mechanism includes a top plate for freezing workpieces, a body with specially designed channels for the coolant flows, and a bottom plate to fasten on the table of other machine. Just by a small amount of liquids on the top surface and by rapidly cool down to 253K, parts can be frozen stationary on the top plate surface and can conduct precision machining on it.rnThere are four steps to design a new freeze chucker by the engineering design process: planning and clarifying the task; conceptual design; embodiment design; detailed design. Some useful tools from the Quality Function Deployment (QFD) technique and the Theory of Inventive Problem Solving (TRIZ) method are used in this design process. Eight concept designs are generated by the conceptual design work and the final design of channel with transverse ribs is selected by decision matrix technique during embodiment design and detailed design stage. This final design is evaluated by numerical modeling of the COMSOL MULTIPHYSICS 3.2 finite-element based package. Performances such as the temperature distribution of top-plate surface temperature and the lowest temperature of a freezing chucker are shown. Numerical results show the success of the innovative channel design by this inventive design process using TRIZ methodology.
机译:冷冻卡盘是一种用于固定易碎蛋壳,粘土和其他铁/非铁材料的无夹钳固定装置。该机构的典型结构包括一个用于冻结工件的顶板,一个带有专门设计的通道用于冷却剂流的主体以及一个固定在另一台机器的工作台上的底板。只需在顶部表面上注入少量液体,然后迅速冷却至253K,就可以将零件冻结固定在顶板表面上,并可以对其进行精密加工。设计过程:计划和澄清任务;概念设计;实施方案设计;详细设计。在此设计过程中,使用了质量功能展开(QFD)技术和创造性问题解决理论(TRIZ)方法的一些有用工具。通过概念设计工作产生了八个概念设计,并且在实施例设计和详细设计阶段中,通过决策矩阵技术选择了带有横向肋的通道的最终设计。通过基于COMSOL MULTIPHYSICS 3.2有限元软件包的数值建模,可以评估最终设计。显示了诸如顶板表面温度的温度分布和冷冻卡盘的最低温度等性能。数值结果表明,通过采用TRIZ方法的本发明设计过程,创新渠道设计取得了成功。

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