进口倒吊桶式疏水阀哪家品牌好
进口倒吊桶式疏水阀Product Description:
It includes a rail slider and a clamping mechanism. The rail slider and the lifting rail are connected by sliding cooperation. The clamping mechanism is set at the lower end of the rail slider. The inverted bucket type steam trap is installed by using the design concept of multi-stage adjustment structure. The parallelogram state formed by the structure playing the main clamping role in the clamping mechanism can be applied to clamping the upper end of the valve bodies with different diameters and sizes within a certain range, Further, the applicability of the whole device is improved. The clamping mechanism is also provided with a structure to restrict the turnover movement of the valve body, so as to maintain the overall stability of the valve body during transportation and installation, and at the same time, realize the docking between the valve body and the pipes at different angles.
进口倒吊桶式疏水阀characteristic:
The steam trap is called a steam trap, also known as an automatic drain or a condensate drain, which is divided into steam system use and gas system use. The steam trap is installed at the end of the pipeline heated by steam, and its role is to continuously discharge the condensed water in the pipeline heated by steam outside the pipeline. Most of the steam traps can automatically identify steam and water (excluding the thermal static type), so as to achieve the purpose of automatic steam blocking and drainage. The steam trap is widely used in petrochemical industry, Food, pharmaceutical, power plant and other industries play a great role in energy conservation and emission reduction. Inside the inverted bucket type drain valve, there is an inverted bucket as a liquid level sensitive part. The opening of the bucket is downward. The connecting lever of the inverted bucket drives the valve core to open and close the valve. The inverted bucket type drain valve can exhaust air, is not afraid of water hammer, and has good anti pollution performance.
进口倒吊桶式疏水阀Principle:
The middle of the front end face of the electric slider is provided with a rectangular through-hole, the middle of the inner bottom wall of the rectangular through-hole is provided with a round through-hole, the upper end of the round rod is connected with the round through-hole through a sliding fit, the upper end of the round rod is located in the rectangular through-hole, the upper end of the round rod is installed with a plate, the upper end of the plate is symmetrically connected with a pull rope, and the upper end of the pull rope is wound around the outer end of the drum, The inner end of the drum is connected to the side end face of the electric slider through a bearing. The drum is located above the rectangular through groove. The middle of the outer end face of the drum is provided with a No. 1 square groove. The left and right inner sides of the No. 1 direction groove are provided with a No. 2 square groove. The No. 2 square groove is located on the side end face of the electric slider. The No. 2 square groove is located above the rectangular through groove, The adjacent No. 1 square groove and No. 2 square groove are connected to the inner end of the U-shaped card through sliding cooperation. The top plate is driven to move by controlling the track slider, and the top plate carries the valve body to the installation position. According to the installation height of the pipe, the U-shaped card is manually pulled out and the rotary drum is rotated inward. The rotary drum drives the pull rope to perform synchronous unwinding movement, and the plate drives the round rod to move downward synchronously, The round rod drives the clamping rod to move synchronously, and the clamping rod entrains the valve body to move synchronously until the inlet and outlet ends of the valve body are connected with the corresponding pipes
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