Refrigeration equipment and shutdown control method of compressor of refrigeration equipment

A technology of refrigeration equipment and control method, which is applied in the field of compressor control, can solve problems such as movement bias, large jitter, noise, etc., and achieve the effect of avoiding noise problems

Active Publication Date: 2020-04-03
HISENSE(SHANDONG)REFRIGERATOR CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

For refrigeration equipment such as refrigerators and air conditioners that are refrigerated by compressors, the internal compressors will stop directly when the internal temperature reaches the set temperature. Since the core of the compressor stops at high speed, there will be a large rotational inertia. That is, the movement is in an unbalanced state. In this case, there will be asynchronous movement between the movement and the casing of the compressor, causing the compressor to vibrate, resulting in noise
In addition, in practice, in order to ensure the dynamic balance of the compressor during operation, a balance block will be installed on the crankshaft of the compressor to ensure the dynamic balance of the compressor core during operation, but the core stops from a high-speed state. At this time, the balance weight is eccentr

Method used

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  • Refrigeration equipment and shutdown control method of compressor of refrigeration equipment
  • Refrigeration equipment and shutdown control method of compressor of refrigeration equipment
  • Refrigeration equipment and shutdown control method of compressor of refrigeration equipment

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0070] Example 1: The target speed of a certain series of compressors is 4100R, the starting speed of the compressor (oiling speed) is 2400R, and the minimum speed of this series of compressors is 1200R. Two stopping methods are used for stopping tests. The two stopping methods are respectively. It is: Plan one, reduce to 2400R with a large acceleration and then reduce to the preset shutdown speed with a smaller acceleration and then maintain for 3 seconds; Plan two, directly reduce to the preset shutdown speed and maintain for 3 seconds.

[0071] Before using the above-mentioned scheme 1 and scheme 2 for the shutdown test, the preset shutdown speed and the second preset acceleration can be determined through the shutdown test. The specific determination method is shown in the following scheme 3:

[0072] Scheme 3. It is preliminarily determined that the preset shutdown speed is the minimum compressor speed of 1200R, and the first preset acceleration is 180R / S, which is 3r / s. 2 (Acc...

Embodiment 2

[0085] Embodiment 2: The target speed of a certain series of compressors is 4100R, the starting speed of the compressor (oiling speed) is 2400R, and the minimum speed of this series of compressors is 1200R. The compressor shutdown control method provided by this application is also implemented In Example 1, the program provided in the first scenario is used for 30 sets of shutdown tests, and the test results are as follows:

[0086] Table 1

[0087] Number of groups 123456 Stop vibration value (m / s 2 )

0.160.170.160.170.220.20 Number of groups 789101112 Stop vibration value (m / s 2 )

0.150.180.170.190.170.16 Number of groups 131415161718 Stop vibration value (m / s 2 )

0.170.150.150.180.140.21 Number of groups 192021222324 Stop vibration value (m / s 2 )

0.170.150.160.150.180.18 Number of groups 252627282930 Stop vibration value (m / s 2 )

0.180.160.170.160.160.18

[0088] It can be seen from the data in the table that if the compressor shutdown control method provided by the ...

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PUM

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Abstract

The invention provides refrigeration equipment and a shutdown control method of a compressor of the refrigeration equipment, and relates to the field of compressor control. According to the refrigeration equipment and the shutdown control method of the compressor of the refrigeration equipment, the shutdown stability of the compressor is improved, and the problem that noise is generated due to thefact that the compressor shakes when the compressor is shut down in a high-rotating-speed state can be solved. The refrigeration equipment comprises a compressor, a temperature detection device and acontrol device; the temperature detection device is used for detecting the temperature of a temperature control area of the refrigeration equipment; the control device is configured to control the compressor to be decelerated to a first preset rotating speed at a first preset acceleration if it is determined that the rotating speed of the compressor is greater than the first preset rotating speedwhen a shutdown instruction is received or the detection temperature of the temperature detection device reaches a set temperature; then the compressor is controlled to be decelerated to a preset shutdown rotating speed at a second preset acceleration; the second preset acceleration is smaller than the first preset acceleration; and the compressor is controlled to to stop after maintaining the target duration at the preset stop rotating speed.

Description

Technical field [0001] This application relates to the field of compressor control, and in particular to a refrigeration equipment and a method for controlling shutdown of a compressor of the refrigeration equipment. Background technique [0002] With the improvement of people's living standards, people have higher and higher requirements for the quality of life, especially in the use of electrical appliances, paying more and more attention to the feature of low noise. For refrigerators, air conditioners, and other refrigeration equipment that are cooled by compressors, their internal compressors will stop directly when their internal temperature reaches the set temperature. Because the compressor's movement is stopped at a high speed, there will be great rotational inertia. That is to say, the movement is in an unbalanced state. In this case, asynchronous movement between the movement and the compressor casing will occur, causing the compressor to shake and generate noise. In a...

Claims

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Application Information

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IPC IPC(8): F25B49/02
CPCF25B49/022F25B2500/12
Inventor 张海鹏丁龙辉孙敬龙潘毅广李秀军
Owner HISENSE(SHANDONG)REFRIGERATOR CO LTD
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