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3-D inverse problem continuous model for thermal behavior of mould process based on the temperature measurements in plant trial

机译:基于工厂试验中温度测量的模具过程热行为的3-D反问题连续模型

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摘要

A three-dimensional mathematical model for round billet continuous casting of steel in the mould, adopting the surface revolution theory, together with an appropriate inverse problem method from the measured temperatures by the thermocouples buried in various locations in the mould, has been developed to elucidate the real thermal behavior of mould process in plant production, including the mould heat transfer, steel solidification, and slag film distribution, with the objective of understanding the relationship among them. The results show that the vertical component of heat condition and the slag rim at meniscus decreases mould temperatures and the former also lower the level of the peak temperature, and the minimum thickness of solid slag film about 80 mm below meniscus results in the peak mould heat flux and temperature. The magnitude and profile of mould heat transfer around the perimeter between the shell and mould, having corresponding relationship with solid slag, determines that of shell thickness. And the channel the liquid slag entering at meniscus determines the mould heat transfer to some extent.
机译:开发了一种利用表面旋转理论,结合埋入模具中各个位置的热电偶测得的温度,采用适当的逆问题方法,对模具中的钢进行圆坯连续铸造的三维数学模型目的是了解工厂生产中模具过程的实际热行为,包括模具传热,钢凝固和渣膜分布,目的是了解它们之间的关系。结果表明,弯月面的热工况和炉渣边缘的垂直分量降低了铸模温度,前者也降低了峰值温度水平,弯月面以下约80 mm的固体渣膜的最小厚度导致了铸模热量的峰值。通量和温度。模具在壳体和模具之间的周长周围传热的大小和轮廓与固渣具有对应关系,决定了壳体的厚度。液渣进入弯月面的通道在一定程度上决定了模具的传热。

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