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原文:
Biological antibacterial diaphragm valve directly in container, the lower end of the cone-shaped cavity is container (reaction kettle) part of the inner chamber, and in the lower part of the container, so you can quickly and thoroughly the liquid discharge within the container. Set the traditional valve cavity vertical to tilt Settings, import in the valve cavity, the highest point of exports is located in the lowest place of the valve cavity, no dead Angle, so there will be no residual fluid retention. Mirror effect on the surface of the body, is not easy to scale, easy cleaning and disinfection, ensure that the bacteria in the land, fundamentally put an end to the breeding of bacteria. Sloping drainage during emptying won't produce turbulent phenomena. The valve structure is compact, can ensure the installation in the narrow space. The diaphragm pneumatic mechanism eliminates the traditional pneumatic device of the piston and cylinder wear drive failure caused by defect, make the life can improve 10 to 20 times. Biological antibacterial diaphragm valve in the design, manufacture and use, etc have certain advancement. Through the optimization of the valve body design, minimize the distance between the sealing surface and the bottom of the reaction kettle, the body structure is compact. The body USES the design of welding ring, directly connected to the reaction kettle body. 生物抗菌隔膜阀的使用。
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以下是参考译文:

译文:
生物抗菌隔膜阀直接位于容器的低端, 其锥形空腔是容器(反应釜) 内腔的一部分, 且处于容器的最下部, 因此可以快速和彻底的将容器内的液料排尽。将传统的阀腔垂直设置改成倾斜设置, 进口位于阀腔的最高处, 出口位于阀腔的最低处, 无死角存在, 所以不会有残液潴留其中。阀体内表面的镜面效果, 不易积垢, 易于清洗消毒, 保证了细菌无生长之地, 从根本上杜绝了细菌的繁殖。倾斜的排液在排空时不会产生湍流现象。阀门结构紧凑, 可以确保在狭小的空间内现场安装。采用薄膜式气动机构排除了传统的气动装置的活塞和气缸磨损而造成的驱动失灵缺陷, 使寿命可以提高 10~20 倍。 生物抗菌隔膜阀在设计、制造和使用等方面具有一定的先进性。通过对阀体的优化设计, 使密封面与反应釜底部之间的距离最小化, 阀体结构紧凑。阀体采用焊接圈的设计, 使阀体直接与反应釜连接。生物抗菌隔膜阀的使用。