Not applicable.
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Not applicable.
1. Field of the Invention
The present invention relates generally to a maintenance device for a totally hermetic compressor, and more particularly to a refrigeration oil replacement device of a totally hermetic compressor in a refrigeration recycling system.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98.
As shown in
However, after a long period of usage, the refrigeration oil used for operation of the totally hermetic compressor 9 will deteriorate. In particular, when used for electronic component performance testing, because both high-temperature testing and low-temperature testing are needed, under the hot and cold impact, the refrigeration oil will deteriorate and become filthy more quickly, leading to lower lubrication effect and capillary clogging, which will directly cause shortened lifecycle of the totally hermetic compressor 9. Therefore, the refrigeration oil must be replaced regularly to ensure smooth operation of the totally hermetic compressor 9 and longer operational lifecycle.
The existing method to replace deteriorated refrigeration oil for the totally hermetic compressor 9 normally requires complicated disassembly to dismantle both the low-pressure-end refrigerant output pipeline 92 and the high-pressure-end refrigerant output pipeline 94, and the whole hermetic compressor 9 shall be tumbled to pour out the deteriorated refrigeration oil. Moreover, the dismantled pipelines shall be thoroughly cleaned. After the disassembly and cleaning, the low-pressure-end refrigerant output pipeline 92 and high-pressure-end refrigerant output pipeline 94 shall be assembled again by welding. After assembly, the totally hermetic compressor 9 shall be filled with refrigerant and refrigeration oil again to recover normal operation of the hermetic compressor 9. The above-mentioned disassembly and cleaning operations are time-consuming, complicated, and will take a lot of labor and material costs. Hence, the maintenance of totally hermetic compressors 9 apparently needs a method to replace the refrigeration oil more easily.
Thus, to overcome said problems of the prior art, it would be an advancement in the art to provide an improved structure that can significantly improve the efficacy.
Therefore, the inventor has provided the present invention of practicability after deliberate design and evaluation based on years of experience in the production, development and design of related products.
The objective of the present invention is to provide a refrigeration oil replacement device of a totally hermetic compressor in a refrigeration recycling system which can replace the refrigeration oil without having to disassemble the piping.
The present invention is a refrigeration oil replacement device of a totally hermetic compressor in a refrigeration recycling system. The totally hermetic compressor forms a hermetic chamber with a low-pressure end a high-pressure end, and comprises an input pipeline connected from the low-pressure end to the hermetic chamber, and an output pipeline connected from the high-pressure end to the hermetic chamber. The output pipeline comprises a compression working section extending into the hermetic chamber. When the totally hermetic compressor works, the refrigerant mixed with the refrigeration oil is delivered from the output pipeline to the condenser, passing through the refrigerant controller and enters the evaporator, and then flows back from the input pipeline to the hermetic chamber.
The refrigeration oil replacement device comprises a gas charging pipeline connected to the hermetic chamber to fill gas into the hermetic chamber, and a drainage pipeline connected to the hermetic chamber. The refrigeration oil in the totally hermetic compressor is to permeate into various moving parts for lubrication. When the totally hermetic compressor is turned off to stop operation, and pressurized gas is input from the gas charging pipeline, the deteriorated refrigeration oil inside the hermetic chamber will flow into the drainage pipeline under the pressure, and subsequently be discharged from the drainage pipeline. When the deteriorated refrigeration oil inside the hermetic chamber is smoothly and thoroughly discharged, new refrigeration oil and refrigerant can be filled in again from the gas charging pipeline to complete the refrigeration oil replacement operation, so that the totally hermetic compressor can continue smooth operation.
Efficacy of the present invention: by additionally providing a drainage pipeline, pressurized gas can be input from the gas charging pipeline, and the gas pressure can push the deteriorated refrigeration oil inside the hermetic chamber to flow into the drainage pipeline and be discharged. Thus, new refrigeration oil can be filled in again from the gas charging pipeline to complete the refrigeration oil replacement operation, without having to disassemble any pipeline.
Other features and advantages of the present invention will be readily apparent from the description of embodiments when taken in conjunction with the accompanying drawings, wherein:
Before reading detailed description of the present invention, it is to be noted that, in the following description, like components are designated by like reference numerals.
To replace the deteriorated refrigeration oil inside the totally hermetic compressor 2, shut off the input valve 12 and the output valve 13, and pump in gas from the gas charging pipeline 11. With the gas pressurizing the hermetic chamber 200, the deteriorated refrigeration oil will flow into the drainage pipeline 14. Next, open the on-off valve 15, the refrigeration oil flowing from the hermetic chamber 200 into the drainage pipeline 14 will be discharged from the drainage pipeline 14, and drip into an oil tank 4 for collective disposal. In particular, the drainage pipeline 14 comprises a transparent window 141 for observing the flow of the refrigeration oil inside the drainage pipeline 14. When the deteriorated refrigeration oil inside the drainage pipeline 14 is smoothly and thoroughly discharged, new refrigeration oil and refrigerant can be filled in again from the gas charging pipeline 11 to complete the refrigeration oil replacement operation, so that the totally hermetic compressor 2 can continue to operate smoothly.
When using the first embodiment to the third embodiment to replace refrigeration oil of a hermetic compressor 2, there is no need to dismantle the input pipeline 21 and the output pipeline 22, and also no need to tumble totally hermetic compressor 2. Simply using pressure difference and pipeline drainage, the deteriorated refrigeration oil inside the hermetic chamber 200 can be thoroughly removed, and new refrigeration oil can be filled in again from the gas charging pipeline 11 to complete the refrigeration oil replacement operation. In this way, the refrigeration oil replacement operation for a totally hermetic compressor 2 becomes much easier and convenient.
To summarize, when using the first embodiment to the third embodiment to replace refrigeration oil of a totally hermetic compressor 2, there is no need to dismantle the input pipeline 21 and the output pipeline 22. By pumping in gas from the gas charging pipeline 11 to pressurize the hermetic chamber 200, and through pipeline drainage, the deteriorated refrigeration oil inside the hermetic chamber 200 can be thoroughly discharged, and new refrigeration oil can be filled in from the gas charging pipeline 11. The refrigeration oil replacement operation for a totally hermetic compressor 2 can be completed more easily. Therefore, the object of the present invention is truly attained.
Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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105100876 | Jan 2016 | TW | national |