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In vitro diagnostic reagent preparation tanks have various names based on their applications. In pharmaceutical liquid preparation systems, they are often referred to as preparation tanks, concentrated preparation tanks, diluted preparation tanks, stainless steel preparation tanks, sanitary preparation tanks, injection preparation tanks, and pharmaceutical sanitary preparation tanks, among others. In the food and dairy industry, some are called preparation tanks, blending tanks, or aseptic preparation tanks.
Classified by volume, preparation tanks can be divided into laboratory preparation tanks, pilot-scale preparation tanks, and large-scale preparation tanks. In terms of mobility, they are categorized into fixed preparation tanks, mobile preparation tanks, and some detachable preparation tanks. According to different stirring methods, there are magnetic stirring preparation tanks, stirring blade preparation tanks, and buffer preparation tanks. Based on structural differences, they can be divided into single-layer preparation tanks, thermal insulation stirring preparation tanks, and three-layer thermal insulation preparation tanks.
Description
Introduction
The design of the in vitro diagnostic reagent preparation tank is reasonable and the process is advanced, which meets the national GMP certification requirements. The tank body adopts a vertical double-layer structure, and the inner tank is polished with an accuracy of RaO.45. The inner cylinder is heated by a spiral belt and filled with polyurethane material for insulation. The exterior is insulated with a mirror plate or a frosted plate, and the tank body has a uniform gloss. All parts that come into contact with the liquid are made of 316L material, and the rest are made of 304 material. The bottom head of the inner tank is concave and convex, and the side wall axial flow is used for stirring. The top of the tank body is equipped with a water inlet, a reflux port, a disinfection port, a cleaning ball, a hole filling port, and a breathing port to install a 0.22um air respirator and a stirring system. The bottom of the tank body is equipped with a condensate port, a discharge port, a sewage port, a sampling port, a temperature probe, and a liquid level sensor. It is equipped with a control cabinet operation, and the instrument displays the liquid temperature and liquid level, and provides upper and lower limit alarm functions. According to user requirements, the dilution tank can be equipped with a nitrogen filling device and a pH meter.
Design features
This structure is a combination of upper and lower elliptical heads and honeycomb jackets. The reducer adopts a horizontal worm gear, which has the advantages of small interlayer space, forced circulation, large heating area, high efficiency, high compressive strength, smaller than ordinary interlayer space, forced circulation, large heating area, high efficiency, high compressive strength, energy saving and time saving than ordinary interlayer and coil, and beautiful appearance. Its disadvantages are more welding and complex process. High technical content. The reducer is a worm gear horizontal reducer, which can reduce the height by about 250-330mm compared with the vertical differential reducer.
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