• 采用稳定耐用熔接方式熔合封口使封口加密合。

    With a stable and durable way to fusion weld heat sealed together to make sealing more encryption.

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  • 焊接方法连接接头称为焊接接头,焊缝熔合影响及其邻近母材组成。

    The joint which is connected by welding method is called the welding joint, which is composed of welding seam, fusion zone, heat affected zone and its adjacent base metal.

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  • 焊接中心裂纹处于焊缝影响之间熔合区。

    Central crack for the welded plate was located in the fusion zone between welding seam and heat-affected zone.

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  • 熔合线部位模拟试件证明h_2s应力腐蚀性能最差。

    Two kinds of heat simulated specimens of fusion line are made that their resistance to H2S stress corrosion is proved to be the minimum.

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  • 焊接方法为脉冲熔化混合气体保护焊焊接中心裂纹处于焊缝影响之间熔合区。

    The welding method used was a PC-GMAW process with mixture gases shielding. Central crack for the welded plate was located in the fusion zone between welding seam and heat-affected zone.

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  • 熔合线影响区的低温冲击功相比显著降低

    The impact energies in fuse line (FL) and heat-affected zone were evidently lower than the values of base metals.

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  • 进行跑车试验,先检查焊接质量,如焊接接头包括焊缝熔合影响区等,以设定整个工艺流程

    The frame material and the welding procedure can be set according to the pre-judgement carried out by combining the CAE analysis with the residual stress distribution before welding.

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  • TCS不锈钢前期焊接试验发现其焊接接头影响区的冲击吸收功值在熔合线附近较低,原因接头影响区晶粒粗大所致。

    In welding test of TCS stainless steel, it was found that impact absorbing energy of heat-affected zone (HAZ) near bond line in welded joint was low.

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  • 应力应变测试表明焊缝熔合残余应力比较集中地方,影响区的残余应力比较

    Stress-strain tests show that: the weld residual stress and the fusion zone is relatively concentrated, the residual stress of the heat affected zone is relatively small.

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  • TCS不锈钢前期焊接试验发现焊接接头影响区的冲击吸收功值在熔合线附近低,原因接头影响区晶粒粗大所致。

    In welding test of TCS stainless steel, it was found that impact absorbing energy of heat-affected zone (HAZ) near bond line in welded joint was low. The reason is coarse grain in HAZ.

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  • TCS不锈钢前期焊接试验发现焊接接头影响区的冲击吸收功值在熔合线附近低,原因接头影响区晶粒粗大所致。

    In welding test of TCS stainless steel, it was found that impact absorbing energy of heat-affected zone (HAZ) near bond line in welded joint was low. The reason is coarse grain in HAZ.

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