• 压力容器设计中,求得最低制造成本常常容器壳体进行优化设计。

    The optimum design of shell surface structure is often used in pressure vessel manufacture to reduce the cost.

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  • 结构可靠性分析验证荷载应用于压力容器壳体研究设计,给出了具体方法及步骤

    The procedures of the test load method used for the reliability analysis of the pressure vessel shell are presented.

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  • 法兰所在容器图样容器壳体检验要求未能满足上述要求时,要求图样标明

    When the flange vessel pattern has not been able to satisfy the above requirements in the check of the pressure vessel shell, then this requirement should be marked in the pattern.

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  • 模型考虑容器壳体材料弹性、塑性变形,适用容器外壳塑性变形范围内发生破裂问题

    The elastic-plastic deformation of the vessel shell is taken into account in the model to suit for the crack problem of the vessel shell in the plastic deformation range.

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  • 介绍立式容器壳体刚性支座构件组合截面近似计算过程地脚螺栓中心直径选择作简要分析。

    This paper introduces the approximate calculation of components and compound section of vertical vessel lug support with stiffening ring and the selection of anchor bolt circle diameter.

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  • 用于固体火箭发动机壳体工业贮罐纤维缠绕压力容器爆破压强重要设计参数

    The burst pressure of filament wound pressure vessels which is applied to solid rocket motor case and gas tank in industry is an important design parameter.

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  • 买方有要求设备口容器支架附件周围壳体局部应力加以计算及估测。

    Local stresses at shell around attachments such as nozzle, vessel support and lifting lug and so on, shall be calculated and evaluated when requested by Purchaser.

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  • 反应压力容器壳体历来常常成型钢板焊接而美国日本尤其如此

    The shell parts of reactor pressure vessels have been often fabricated with formed plates welded together, especially in USA and Japan.

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  • 成形过程中,壳体赤道环焊缝处极易收缩,从而引发该处稳起皱严重影响球形容器质量

    But in the forming process, equator of the shell tends to withdraw inwards and therefore creates wrinkles here, which badly affects the quality of the vessel.

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  • 反应堆压力容器包括顶盖肋管板,壳体(外壳底部壳体)部分

    The pressurized vessel of a nuclear reactor consists of three parts: the top cap, the ribbed tube-plate and the shells (the external shell and the bottom shell).

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  • 发明涉及一种用于储存保护实验室物质容器单元,包括:保护壳体至少一个配料单元。

    The invention relates to a container unit for storing and protecting laboratory substances, comprising a protective housing and at least one metering unit.

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  • 介绍特殊夹层压力容器制造夹层壳体壁上进行开孔翻边冲压成形工艺技术

    This article describes a hot pressing formation technology to make flanged openings on special jacketed vessel shells.

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  • 连体球形壳体整体成形技术成果,此类容器制造提供了简便易行的高能成形的新方法

    The integral forming technology of conjugated spherical pressure vessels presented in this paper provides a novel and simple manufacturing method for such structures.

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  • 本文压力容器几何非线性分析结果表明方向影响纤维缠绕壳体强度最大因素

    The results of geometrical nonlinear analysis show that the effect of layer orientation on the strength of fiber-winding case is the most significant factor.

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  • 扁平高压容器筒、交错缠绕在内筒、端盖封头等组成的新型壳体结构

    A flat ribbon wound pressure vessel is made up of a thin inner shell, flat steel ribbon layers that are cross-helically wound outside the inner shell, a top cover and a bottom cover, etc.

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  • 提出了曲率多面壳体高温胀形制造球形容器工艺基本思想

    The basic idea of single curvature polyhedron high temperature bulging technology for manufacturing spherical tanks is put forward.

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  • 发明涉及一种用于流体输送容器内的系统,该系统包括构造固定容器壳体

    The invention relates to a system for delivering a fluid into a container includes a housing configured to be secured to the container.

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  • 介绍双合环高压容器设计计算应用基于壳体理论的应力分析方法

    Design calculation of dual semi-ring (DSR) high pressure vessel is introduced in this paper. It USES the method of stress analysis based on the theory of shells.

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  • 本文壳体理论应用一定工作条件压力容器

    The attempt of the present paper is to extend the application of the shell theory to the pressure vessel under a modified working condition.

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  • 结果发现,单纯增加壳体厚度不能有效提高容器抗外压失稳能力,又使设备制造成本明显提高

    Results show that increasing the thickness of the vessel only cannot effectively increase its anti-instability and on the opposite, the total weight will increase substantially.

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  • 结果发现,单纯增加壳体厚度不能有效提高容器抗外压失稳能力,又使设备制造成本明显提高

    Results show that increasing the thickness of the vessel only cannot effectively increase its anti-instability and on the opposite, the total weight will increase substantially.

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