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水火弯板自动化的研究需要定量化地确定横向收缩量。
For automation of the line heating work, it needs to evaluate transverse <em>shrinkage</em> generated by line heating quantitatively.
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从粗车后收缩量的判定, 机床刀架角度的重新调整两方面出发,介绍薄壁铜套精车尺寸的确定.
According to <em>shrinkage</em>, angles of lathe saddle are adjusted to ensure precision of thin - wall case.
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后浇带的留设间距与支承结构的刚度、混凝土的收缩量和后浇带的封闭时间有关。
The distance between post-poured strips depends on stiffness of supporting structures, <em>shrinkage</em> value and closure time.
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后浇带的留设间距与支承结构的刚度 、 混凝土的收缩量和后浇带的封闭时间有关.
The distance between post - poured strips depends on stiffness of supporting structures, <em>shrinkage</em> value and closure time.
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本文采用实验和有限元分析相互结合的方法来研究线加热过程中的横向收缩量。
This paper examines the transverse <em>shrinkage</em> in line heating with the technique that line heating experiment together with numerical method using FEM analyses.