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An experimental study of temperature distribution in an autoclave

机译:高压釜内温度分布的实验研究

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In this work, the temperature distribution on an industrial mold tool is monitored during autoclave runs with three settings. In one of the settings, the temperature and pressure follow a scheme used in real moldings, while in the other two cases, the temperature is increased as fast as possible with and without an applied pressure. The temperature difference over the tool is relatively large and varies between 29? and 76? validating a detailed investigation of the temperature at different points. Two results of this are that positions on the up-stream side of the tool are heated faster than positions down-stream and the heating over the tool is symmetric while that within is asymmetric. Roughly estimated heat transfer coefficients reveal that the temperature ramping has no significant effect on the local heat transfer coefficients while the applied pressure more than doubled them. In addition flow field measurements with particle image velocimetry are performed, revealing a very slow flow near the roof of the autoclave and a velocity peak near the floor of it, indicating that the flow profile within the autoclave and variation in heat transfer coefficients should be considered in autoclave simulations.
机译:在这项工作中,在高压釜运行过程中,通过三种设置监控工业模具上的温度分布。在其中一种设置中,温度和压力遵循实际成型中使用的方案,而在另两种情况下,在施加和不施加压力的情况下,温度均尽可能快地升高。工具上的温差相对较大,在29°C至25°C之间变化。和76?验证对不同点温度的详细调查。这样的两个结果是,工具上游侧的位置加热得比下游位置快,并且工具上的加热是对称的,而内部的加热是不对称的。粗略估算的传热系数表明,温度升高对局部传热系数没有显着影响,而施加的压力则使局部传热系数增加了一倍以上。另外,用粒子图像测速仪进行流场测量,揭示了高压釜顶部附近的流速非常缓慢,并且在高压釜底部附近有速度峰值,这表明高压釜内的流动曲线和传热系数的变化应予以考虑。在高压灭菌器模拟中。

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