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    • 52. 发明公开
    • 플러그 밸브 밀봉 요소의 재료 특성을 검증하기 위한 장치및 방법
    • 用于验证插头阀密封元件的材料特性的装置和方法
    • KR1020010101301A
    • 2001-11-14
    • KR1020017007672
    • 2000-10-16
    • 제너널 밸브, 인코포레이티드
    • 스미스고든엠.
    • F16K5/04
    • F16K5/0278F16K5/0478F16K5/0684G01N2203/0244G01N2203/0664
    • 본발명은시험쿠폰을슬립의면 안에끼워넣어서플러그밸브밀봉부를시험하는방법에관한것이다. 슬립의중간부분에시험쿠폰을두게되면열 에너지조차도평균된다. 본드접착이행해지는동안, 모든접착가능한표면은동일한시간프레임과동일한환경에서인가되는동일한접착제를갖는다 (기계적으로또는화학적으로부착되는것이방지되어야하는시험쿠폰탭인경우는제외). 밀봉그루브에대해제공되는엘라스토머는동일하며, 시험쿠폰과동일한묶음으로준비되며, 모두개별적으로동일한접합제로설치된다. 밀봉부의단면은밀봉시험쿠폰의시험단면과동일하다. 그런다음후 경화가밀봉부및 시험쿠폰상에서동일하게이루어진다. 냉각이행해진후에, 시험쿠폰시험탭(초기에기계적으로또는화학적으로부착되는것이방지된탭)은방출되고당기기탭 고정부안에놓이며, 여러가지공지된하중이인가된다. 연신이관측되고, 스트레스/스트레인곡선이발생되어재료특성을검증할수 있다. 파손이일어날때까지더욱더 잡아당기게되면, 밀봉그루브부착이검증된다. 제거된시험탭은시험을받은압축세트가될 수있고, 여러가지다양한시험이행해질수 있다. 재료및 성능의검증은각각의슬립밀봉부에대해이루어질수 있다.
    • 通过将试样嵌入到滑动面中来测试旋塞阀密封件的方法。 即使通过将试样放置在滑移的中间部分来平均热能。 在粘合剂粘合剂施加期间,所有适用的表面在相同的环境中在相同的时间范围内具有相同的粘合剂(除了应该防止机械或化学粘附的试样片下)。 为密封槽制备的弹性体是相同的,并且以与试样相同的批次制备,并且都由相同的个体安装相同的增粘剂。 密封截面与密封试样的试验部分相同。 后期固化接下来在密封和试样上同样完成。 在发生冷却之后,将试样试片(其防止机械或化学更早地粘附)被释放并放置在拉片固定装置中,并施加变化的已知载荷。 监测伸长率,并产生应力/应变曲线,验证材料性能。 进一步的失效,确认了密封槽的附着力。 然后可以对已移除的测试片进行压缩设定测试,并可进行各种其他测试。 可以为每个滑动密封产生材料和性能认证。
    • 53. 发明申请
    • VALVE WITH REPLACEABLE TEFLON CARTRIDGE
    • WO2018109506A1
    • 2018-06-21
    • PCT/HR2017/000017
    • 2017-12-11
    • ROGINEK, Stjepan
    • ROGINEK, Stjepan
    • F16K5/02F16K31/60
    • F16K5/025F16K5/0278F16K31/602
    • A valve with a replaceable conical cartridge is intended for use in the food and chemical industries and in individual user systems. It is mainly used for pouring liquids out of containers and for the transport of media. All metal parts are made of stainless steel aimed for use in the food industry, but only partly suitable for use in the chemical industry. Non-metallic parts are made of glass fibre reinforced teflon and doped with MoS 2 . The characteristic of the valve is the brace of a steel body (1) and a stem assembly with integrated handle head, where the stem assembly consisting of longitudinally splined steel stem body (22), into which, during the assembly, when inserting into the conical bore (2) in the valve body (1), the replaceable conical cartridge (19) is pressed. This assembly is then screwed tight, from the outside, with a self-locking steel nut (29), over a teflon washer (27) and a steel washer (28), to the exactly determined precise position on the body. This enables firm, reliable and long-lasting sealing of the internals of the valve. The teflon washer reduces friction in the turning of the cartridge and makes valve handling easier. The simple valve design enables fast servicing by replacing the teflon cartridge with minimum manipulation to disassemble. The specially shaped flow channels in the valve allow for a smooth flow of media at normal gravitational pressures as well as at pressures increased up to 6 bar. Also, the specially shaped channel at the inlet side Improves the closing effect of the valve which is particularly important in valves of smaller sizes. Careful selection of materials and the application of modern production technologies (micro casting of steel parts and teflon pressing) enable high product quality with regard to functionality, environmental safety, saving material and time for product manufacture.
    • 54. 发明申请
    • 回転弁と鉄道車両用急速排気弁
    • 旋转阀和快速排气阀
    • WO2016093271A1
    • 2016-06-16
    • PCT/JP2015/084508
    • 2015-12-09
    • 株式会社キッツ
    • 青木 和弘大野 弘喜
    • F16K5/06F16K3/22F16K5/02F16K5/16F16K5/20
    • F16K11/0856B61D19/00F16K5/0278F16K5/0684F16K5/162F16K5/204F16K11/0836F16K11/0873F16K31/602
    •  弁体開閉時の高シール性と操作性とを確保し、簡単な構造で耐久性を向上しつつ経済性にも優れ、流体による弁体やシール部材の劣化や流体の流出入時の損失を最小限に抑えた回転弁と鉄道車両用急速排気弁とを提供する。 ボデー2内の内周の一部に形成した球面部15或はテーパ面部131を有する弁体収納部16に流出入口10、11と排出口12とを形成し、弁体収納部より開口させた開口部22より弁体3を回転自在に挿入した。球面部或はテーパ面部との対向位置に球状面部28或はテーパ状面部132を形成し、流出入口又は排出口と連通する複数の貫通口30~32と、貫通口との交差方向に流出入口と対向する装着溝33とを形成し、装着溝にシール部材5を装着し、開口部を蓋部材6で被蓋したときに、シール部材で何れか1つの流出入口又は排出口を密封閉止し、流出入口と排出口或は流出入口同士を貫通口を介して連通可能に設けた。
    • 提供一种用于铁路车辆的旋转阀和快速排气阀,其中:确保阀体打开和关闭期间的高质量密封和可操作性; 经济效益是特殊的,而使用简单的结构提高了耐久性; 并且由于流体导致的阀体和密封构件的劣化被最小化,如流体流入期间的损失。 流入口10,11和排出口12形成在具有锥面部131,球面部15和阀体容纳部的球面部15或阀体容纳部16中 16形成在主体2的内周的一部分中,并且阀体3通过由阀体容纳部打开的开口22可旋转地插入。 球面部分28或锥形表面部分132形成在面对球体表面部分或锥形表面部分的位置; 与流入口或排出口连通的多个贯通孔30-32也形成在与通孔相交的方向上与流入口相对的嵌合槽33, 密封构件5装配在装配槽中; 并且当开口被盖构件6覆盖时,流入/流出端口或排出口中的任何一个被密封构件气密地封闭,并且流入口和排出口能够经由通孔 或者流入/流出端口能够经由通孔相互连通。
    • 56. 发明申请
    • AN APPARATUS AND METHOD FOR VERIFYING THE MATERIAL PROPERTIES OF A PLUG VALVE SEALING ELEMENT
    • 用于验证插头阀密封元件的材料特性的装置和方法
    • WO01029459A1
    • 2001-04-26
    • PCT/US2000/041206
    • 2000-10-16
    • F16K5/02F16K5/04F16K5/06F16K51/00G01N3/02G01N3/06
    • F16K5/0278F16K5/0478F16K5/0684G01N2203/0244G01N2203/0664
    • A method to test a plug valve seal by embedding a test coupon into the face of the slip. Even the heat energy is averaged by placing the test coupon at the midsection of the slip. During the bond adhesive application all applicable surfaces have the same adhesive applied during the same time frame in the same environment (except under test coupon tab which shall be prevented from adhering mechanically or chemically). The elastomer prepared for the seal groove is identical and is prepared in the same batch as that for the test coupon and all installed with the same tackifying agent by the same individual. The seal cross-section is the same as the test section of the seal test coupon. The post cure is next completed equally on seal and test coupon. After cool down occurs, the test coupon test tab (which was prevented from adhering mechanically or chemically earlier) is released and placed into a pull tab fixture and a varying known load is applied. The elongation is monitored and a stress/strain curve can be generated, verifying material properties. Further pulled to failure, the seal groove adhesion is verified. The removed test tab can then be compression set tested and a variety of other tests can be performed. Material and performance certifications can be generated for each slip seal.
    • 通过将试样嵌入到滑动面中来测试旋塞阀密封件的方法。 即使通过将试样放置在滑移的中间部分来平均热能。 在粘合剂粘合剂施加期间,所有适用的表面在相同的环境中在相同的时间范围内具有相同的粘合剂(除了应该防止机械或化学粘附的试样片下)。 为密封槽制备的弹性体是相同的,并且以与试样相同的批次制备,并且都由相同的个体安装相同的增粘剂。 密封截面与密封试样的试验部分相同。 后期固化接下来在密封和试样上同样完成。 在发生冷却之后,将试样试片(其防止机械或化学更早地粘附)被释放并放置在拉片固定装置中,并施加变化的已知载荷。 监测伸长率,并产生应力/应变曲线,验证材料性能。 进一步的失效,确认了密封槽的附着力。 然后可以对已移除的测试片进行压缩设定测试,并可进行各种其他测试。 可以为每个滑动密封产生材料和性能认证。