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stretching transformation的中文,翻译,解释,例句

stretching transformation

stretching transformation的基本解释
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伸缩变换

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更多 网络例句 与stretching transformation相关的网络例句 [注:此内容来源于网络,仅供参考]

The stretching influence on the near trusses should be considered when using the stretching-twice method, and the construction is hard to be controlled. The Harbin exhibition sports center with a 128m support span, attached to a deep design calculation of the super-large span prestress truss string structure, stretching once in tension bed method is brought forward for the bottom cable of the single truss string structure. From calculation research on the friction force between the tension bed and the truss string structure, the friction influence is considered for the displacement method of the middle of span, with the action of the fixed cable stress. This method, with vertical displacement of the middle of span as its main control target for prestress stretching, is successfully applied in the prestress stretching construction of the project.

二次张拉需考虑张拉对相邻桁架的影响,施工控制难度大,本文结合哈尔滨会展体育中心支座跨度128m的超大跨度预应力张弦桁架结构的深化设计计算,提出了单榀张弦桁架下弦拉索胎架一次张拉法施工方法,通过对张拉阶段胎架与张弦桁架间摩擦力的计算研究,定量索力下跨中位移法考虑摩擦力影响,以跨中竖向位移作为预应力张拉的主要控制指标,成功地完成了该工程预应力张拉施工。

The method includes the steps of gripping the peripheral edge of the fabric in a stretching assembly, activating the stretching assembly to stretch the fabric in a location adjacent to the mold assembly, clamping the stretched fabric against a face of the mold assembly, releasing the peripheral edge of the fabric from the stretching assembly, moving the stretching assembly from the path of the mold assembly, closing the mold assembly on the fabric with the peripheral edge of the fabric terminating in the mold cavity and injecting molten material into the mold cavity to form the frame directly on the peripheral edge of the fabric.

方法包括的步骤为在拉伸装置中夹紧纤维织物的外围边缘、在邻接浇模装置的位置启动拉伸装置来拉伸纤维织物、贴着浇模装置的面夹住已拉伸的纤维织物、从拉伸装置释放纤维织物的外围边缘、从浇模装置的轨迹移动拉伸装置、在纤维织物上闭合浇模装置并使同纤维织物的外围边缘终止在浇模空腔中和将熔化的材料注射到浇模空腔中以在纤维织物的外边缘直接形成框架。

The molecular motion of amorphous region at high-frequency was found to be hardly affected during the stretching processes. In summary, elongation has created major but different influences on the morphology and molecular motion of the aforementioned four series of polymeric elastomers. For those elastomers like natural rubber and poly , elongation has induced crystallization of the noncrystalline or the soft segments. The crytallinitiy and the crystal thicknesses increase monotonously during the course of the stretching; On the other hand, the stretching processes for those semicrytalline copolymers like EMA and POE are rather complex, including the formation of crystal at relatively low λand the destruction of the crystal at the utmost λ. It revealed that stretching process has resulted in a decreasing of the thicknesses and a shortening of 〓C T〓s for the orthorhombic crystalline components.

拉伸对上述四个弹性体体系的聚集态结构都产生了很大影响,但是影响的程度和内容因体系而不同,对于本身存在着化学交联或者是物理交联的体系而言,拉伸导致了其中本来难以结晶组分的结晶,且结晶度随着拉伸比增加而增加,与此同时,体系结晶的晶片厚度也会逐渐增加;而对于结晶性共聚物体系,如EMA和POE,结晶区本来起到了物理交联的作用,在这种情况下拉伸的影响变得比较复杂,拉伸对于不同晶型的影响有所不同,在拉伸比较低的情况下体系总体的结晶度会有所增加,说明有新的结晶产生,当接近或达到断裂伸长比时,体系的结晶度会突然降低,含量占优的结晶会被拉伸所破坏,含量较低的结晶在整个拉伸过程中受的影响较小。

更多网络解释 与stretching transformation相关的网络解释 [注:此内容来源于网络,仅供参考]

stretching transformation:伸缩变换

stress 应力 | stretching transformation 伸缩变换 | strict convexity 严格凸性