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    • 4. 发明公开
    • HIGH-PRESSURE-RESISTANT INTEGRATED LEAKAGE-FREE ROTATING COMPENSATOR
    • HOCHDRUCKBESTÄNDIGERLECKAGEFREIER ROTIERENDER KOMPENSATOR
    • EP3153759A1
    • 2017-04-12
    • EP14893874.9
    • 2014-10-11
    • Hong, Lei
    • HONG, LiangZHU, AichunCAO, GuangjinYIN, Minghua
    • F16L51/00F16L57/06F16L27/08
    • F16L27/0824F16L21/04F16L27/08F16L51/00F16L57/06
    • The present invention relates to a high-pressure resistant integrated leak-free rotary compensator, comprising an inner pipe, an outer sleeve, a connecting pipe and a stuffing flange. The outer sleeve is sleeved on the inner pipe. One end of the inner pipe passes through the outer sleeve and is inserted in the connecting pipe. The stuffing flange is sleeved on the inner pipe, with one end extending into the outer sleeve. The outer sleeve is provided with an annular inner projection on the inner surface. Sealing stuffing is disposed between the annular inner projection and one end of the stuffing flange extending into the outer sleeve. The outer sleeve and the connecting pipe are integrally molded to form an integrated structure. An impact plate is disposed between the sealing stuffing and the annular inner projection. Wear-resistant carbon fiber layers are respectively disposed between the sealing stuffing and the outer surface of the inner pipe and between the sealing stuffing and the inner surface of the outer sleeve. The present invention thoroughly solves the problems of difficult operation of weld flaw detection and even failure to perform detection caused by the existing welding mode. Meanwhile, configuration of the wear-resistant carbon fiber layers and the impact plate can effectively reduce losses of the sealing materials, thus further enhancing the sealability of the whole rotary compensator.
    • 本发明涉及一种耐高压综合无泄漏旋转补偿器,包括内管,外套筒,连接管和填料凸缘。 外套筒套在内管上。 内管的一端穿过外套管并插入连接管中。 填料法兰套在内管上,一端延伸到外套管中。 外套筒在内表面上设置有环形内突起。 密封填料设置在环形内部突出部和填充凸缘的延伸到外部套筒中的一端之间。 外套筒和连接管整体模制成一体的结构。 冲击板设置在密封填充物和环形内部突起之间。 耐磨碳纤维层分别设置在密封填料和内管的外表面之间以及密封填料与外套筒的内表面之间。 本发明彻底解决了焊接缺陷检测难以操作,甚至无法进行现有焊接方式的检测的问题。 同时,耐磨碳纤维层和冲击板的配置可以有效减少密封材料的损耗,从而进一步提高整个旋转补偿器的密封性。