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The stress calculation method and strength condition of PET aerated water bottle were obtained from theory. The strength of PET aerated water bottle was simulated and calculated ANSYS. The stress graphics of the bottle with different thickness was plotted and their stress property was analyzed. The influence of axial load and grooves on bottle stress was also studied.

从理论上得到了聚酯碳酸饮料包装瓶的应力计算方法和强度条件;利用ANSYS对其强度进行了有限元模拟和计算,得到了不同厚度的聚酯碳酸饮料包装瓶的应力图,并分析了其应力特点;同时研究了轴向载荷和瓶体开凹槽对瓶体应力的影响。

The stress calculation method and strength condition of PET aerated water bottle were obtained from theory. The strength of PFT aerated water bottle was simulated and calculated ANSYS. The stress graphics of the bottle with different thickness was plotted and their stress property was analyzed. The influence of axial load and grooves on bottle stress was also studied.

从理论上得到了聚酯碳酸饮料包装瓶的应力计算方法和强度条件;利用ANSYS对其强度进行了有限元模拟和计算,得到了不同厚度的聚酯碳酸饮料包装瓶的应力图,并分析了其应力特点;同时研究了轴向载荷和瓶,婚开凹槽对瓶体应力的影响。

Finally, the pivotal question is expounded for the FLSD and the cruciform biaxial tensile test.

最后对成形极限应力图和十字形双向拉伸试验需要解决的关键问题作了阐述。

During the process of the system researching, A new mesh approach based on advancing front technique for triangle elements was studied. A practical method of generating hexahedron mesh for cellular element method through transfering lines into volumes was worked out. Moreover, a new hidden method for cellular models and a approach of forming stress images were also researched.

在软件研制过程中,提出一种基于前沿生成法的速度快、稳定性好的平面元胞元网格自动生成方法和三维六面体网格的线段转换法;根据元胞元模型的特点,提出一种稳健性较好的三维元胞元模型消隐方法;通过对应力图生成技术的研究,提出一种对等值线、色带图、浓淡图均适用的应力图快速生成算法。

During the process of the system researching, A new mesh approach basedon advancing front technique for triangle elements was studied. A practicalmethod of generating hexahedron mesh for cellular element method throughtransfering lines into volumes was worked out. Moreover, a new hidden methodfor cellular models and a approach of forming stress images were alsoresearched.

在软件研制过程中,提出一种基于前沿生成法的速度快、稳定性好的平面元胞元网格自动生成方法和三维六面体网格的线段转换法;根据元胞元模型的特点,提出一种稳健性较好的三维元胞元模型消隐方法;通过对应力图生成技术的研究,提出一种对等值线、色带图、浓淡图均适用的应力图快速生成算法。

The developed program also has some post-processing functions including structure shape map, discrete structure mesh map, structure displacement map, cracking map, stress map of steel bar, principal stress map of any section, searching displacement of any load step, load-deflection curve map of any node and so on.

包括结构形式图、结构剖分网格图、结构变形图、裂缝开展图、钢筋应力图、任意横截面的主应力图、加载过程中的任意荷载下的位移查询、任意结点的荷载—挠度曲线图等。

On the stress diagram drawn, can be seen the stress-concentratcd area and the distribut -ing situation of global stress.

该分析提供了四通壳体在试验压力下的应力与位移分布,从绘出的应力图中可以看出应力集中区域和全局应力分布状况。

And the forming limit stress diagram which established with limit stress is independent on the strain paths and it is more convenient and practical to use as the criterion of forming limit under complex strain paths.

以极限应力构成的成形极限应力图不受应变路径的影响,作为复杂加载路径的成形极限判据更加方便和实用。

In this paper finite element model was established, transient work condition of wave-proof plate of transportation tank in full load was analyzed in brake condition, the maximum stress map and amplitude diagram in maximal deforming point were plotted. According to the change of the transport medium, the results in variant thickness of wave-proof plate were compared and analyzed.

建立了运输槽罐制动时的有限元模型,并且对制动条件下的满载罐体的防浪板进行了瞬态仿真分析,绘出了制动时防浪板的最大应力图和变形最大点的幅值图,将不同厚度的防浪板按照运输介质的变化得出的不同结果,进行了分析比较。

The forming limit diagram relates to strain paths, then the forming limit diagram made in linear strain path can not be directly used to complex strain paths.

根据试验测定的不锈钢板材成形极限图用理论方法建立了不锈钢板材的成形极限应力图,其真实板材成形极限图和成形极限应力图均是一条直线,只有这样板材成形才能满足塑性变形体积不变条件。

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It is also known as one of the most poisonous naturally occurring substances.

它也被称为一个最自然发生的有毒物质。

The greatest stress is found at the location on the cross section where V is the largest.

最大应力出现在横截面上V为最大的地方。

It is the most important three water problem which our country faces in the 21st century that flood and waterlog, drought and shortage of water, the deterioration of water environment.

洪涝灾害、干旱缺水、水环境恶化是二十一世纪我国面临的三大水问题。