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Double pipe condenser

A condenser and bushing technology, applied in the field of bushing condensers, can solve problems such as complex structure, affecting production operation, compressor failure, etc., and achieve the effect of simple structural design, direct condensation effect, and smooth condensation process

Pending Publication Date: 2019-07-05
XINCHANG KANGLIDE REFRIGERATION FITTINGS
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0002] Industrial refrigeration equipment will generate heat when it is running, especially the continuous operation of refrigeration compressors will continue to increase the temperature, which will directly reduce the refrigeration efficiency of the compressor, and may even cause the compressor to fail, greatly affecting production and operation, and affecting the cooling of the compressor. The refrigerant is mainly a low-temperature liquid refrigerant that is sent to components such as compressors that need heat dissipation. The normal-temperature or low-temperature liquid refrigerant absorbs heat and evaporates into a gaseous state and its temperature rises. The gaseous refrigerant that absorbs heat passes through the condenser. There are many types of condensers for liquid refrigerants at room temperature or low temperature, which circulate continuously. The principle is to use various methods to dissipate heat and condense gaseous refrigerants. The current condensers are generally large in size, complex in structure, and have multiple detours in the condensing pipeline. , the condensation efficiency is greatly lost. Therefore, a condenser with smooth condensation pipeline, less pipeline circulation interference and large heat dissipation area is required.

Method used

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Examples

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Embodiment example

[0026] The higher-temperature gaseous refrigerant enters the storage bin 1 through the input main pipe 10 connected with the copper joint 11, and the gaseous refrigerant in the storage bin 1 flows through a plurality of connected shunt inlet pipes 2 and enters each shunt inlet pipe 2 relative to the connected heat dissipation and condensation sleeve. 5 in one-way spiral flow, in the process of one-way spiral flow in the heat dissipation condensation sleeve 5, the higher temperature gaseous refrigerant gradually releases heat, which is transmitted to the outside through the heat dissipation condensation sleeve 5, and the temperature of the gaseous refrigerant in circulation Gradually reduce and convert into liquid refrigerant at normal temperature or low temperature, the liquid refrigerant at normal temperature or low temperature flows through the return flow output pipe 7 connected to each cooling condensing sleeve 5 and is sent to the collection bin 8, and the liquid refrigeran...

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Abstract

The invention discloses a double pipe condenser. The double pipe condenser comprises a storage cabin, shunt input pipes, heat dissipation condensation double pipes, bottom feet, backflow output pipes,collection cabins, an output total pipe, an input total pipe, copper connectors and the like, inlet ends of the heat dissipation condensation double pipes are connected with the shunt input pipes, outlet ends of the heat dissipation condensation double pipes are connected with the backflow output pipes, the groups of heat dissipation condensation double pipes are mounted together in a stacking mode and placed on the bottom feet of the bottom, the shunt input pipes at the inlet ends of the groups of heat dissipation condensation double pipes communicate with the storage cabin, the backflow output pipes at the outlet ends of the groups of heat dissipation condensation double pipes communicate with the collection cabins, the storage cabin is externally connected with the input total pipe, the collection cabins are externally connected with the output total pipe, and the copper connectors are arranged at heads of the input total pipe and the output total pipe. According to the double pipecondenser, high-temperature gaseous state refrigerant enters the groups of heat dissipation condensation double pipes from the input total pipe and is converted to liquid state after circling flow heat dissipation condensing, then is output from a connector of the output total pipe, the condensing process is unobstructed, the structural design is simple, and the condensing effect is direct.

Description

technical field [0001] The invention relates to the technical field of condensers, in particular to sleeve condensers. Background technique [0002] Industrial refrigeration equipment will generate heat when it is running, especially the continuous operation of refrigeration compressors will continue to increase the temperature, which will directly reduce the refrigeration efficiency of the compressor, and may even cause the compressor to fail, greatly affecting production and operation, and affecting the cooling of the compressor. The refrigerant is mainly a low-temperature liquid refrigerant that is sent to components such as compressors that need heat dissipation. The normal-temperature or low-temperature liquid refrigerant absorbs heat and evaporates into a gaseous state and its temperature rises. The gaseous refrigerant that absorbs heat passes through the condenser. There are many types of condensers for liquid refrigerants at room temperature or low temperature, which...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F28D7/10
CPCF28D7/106
Inventor 何康袁超平张伟锋何灿阳何灿连李前辉石刚峰
Owner XINCHANG KANGLIDE REFRIGERATION FITTINGS