An industrial air conditioner operation testing device
By designing an industrial air conditioner operation testing device that includes a testing stabilization component and a drive limit component, the problem of air conditioner deviation during testing was solved, achieving stable fixation and ensuring the accuracy of test data and equipment safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANGZHOU XINGCHENGDA PRECISION REFRIGERATION EQUIP CO LTD
- Filing Date
- 2025-07-04
- Publication Date
- 2026-07-17
AI Technical Summary
Existing industrial air conditioner operation testing equipment lacks effective position fixing measures, which makes the air conditioner prone to displacement during the test, affecting the accuracy of test data and potentially causing equipment failure.
An industrial air conditioner operation testing device was designed, which includes a test stabilization component and a drive limit component. Through structures such as a stabilizing plate, connecting strips, movable rods, and hydraulic rods, the air conditioner is stably fixed and offset.
To ensure that the air conditioner does not shift due to external factors during the test, improve the accuracy of the test data, prevent equipment failure, and enhance the stability of the installation.
Smart Images

Figure CN224518861U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of industrial air conditioning operation testing technology, specifically an industrial air conditioning operation testing device. Background Technology
[0002] Industrial air conditioning is an air conditioning system specifically designed for industrial environments. Unlike ordinary air conditioning systems that serve homes and commercial spaces, it is mainly used to meet the stringent requirements of industrial production processes for environmental parameters such as indoor temperature, humidity, cleanliness, and airflow.
[0003] In the industrial production field, industrial air conditioners are key equipment for ensuring stable temperature and humidity in the production environment. Their performance directly affects production quality and efficiency. Therefore, the operation test of industrial air conditioners before they leave the factory is particularly important.
[0004] The devices available on the market for testing the operation of industrial air conditioners generally have functional defects. Most existing testing devices focus on detecting the performance parameters of the air conditioner, while neglecting the fixed position of the industrial air conditioner during the testing process.
[0005] During actual operation and testing, due to the lack of effective position fixing measures, industrial air conditioners are prone to displacement under the influence of external factors. Once the air conditioner is displaced, it will not only affect the accuracy of the test data and cause deviations in the performance evaluation of the air conditioner, but may also cause the internal pipe connections to loosen and the electrical lines to be pulled due to the position change, leading to equipment failure or even safety hazards.
[0006] Therefore, an industrial air conditioning operation testing device is proposed to address the above problems. Utility Model Content
[0007] To address the problems mentioned in the background section, this utility model provides an industrial air conditioner operation testing device, which has the advantage of being able to fix the position of the industrial air conditioner during operation testing, thus preventing the air conditioner from shifting due to external factors during operation testing.
[0008] To achieve the above objectives, this utility model provides the following technical solution: an industrial air conditioner operation testing device, including an operating table, a testing mechanism mounted on the surface of the operating table, and a testing stabilization component mounted on the surface of the operating table;
[0009] The test stabilization component includes a stabilizing plate. The stabilizing plate is symmetrically arranged on the surface of the operating table. A connecting strip is installed on one side surface of the stabilizing plate. A through groove adapted to the connecting strip is opened on the surface of the operating table. The connecting strip is slidably connected in this through groove and extends to the bottom of the through groove. A movable rod one is installed on the bottom surface of the connecting strip. A support plate is installed on the bottom surface of the operating table. A driving block is slidably connected in a groove opened on the surface of the support plate. A movable rod two is symmetrically installed on the surface of the driving block. A driving rod is hinged between the movable rod one and the movable rod two. A driving limit component is installed on the surface of the operating table.
[0010] Preferably, a soft pad is installed on the side of the two stabilizing plates that are close to each other.
[0011] Preferably, a fixing plate is mounted on the surface of the support plate, and a hydraulic rod is mounted on one side surface of the fixing plate, with the telescopic end of the hydraulic rod connected to the drive block.
[0012] Preferably, the upper surface of the operating table is equipped with an anti-slip plate.
[0013] Preferably, the drive limiting assembly includes a limiting rod, which is slidably connected in the through holes opened on the surfaces of the two connecting strips. Both ends of the limiting rod pass through the connecting strips and are installed in the through grooves opened on the surface of the operating table.
[0014] Preferably, a guide rod is slidably connected in the through hole opened on the surface of the drive block, and both ends of the guide rod pass through the drive block and are installed in the groove opened on the surface of the support plate.
[0015] Compared with the prior art, the beneficial effects of this utility model are as follows:
[0016] 1. This utility model, by setting up a test stabilization component, can fix the position of the industrial air conditioner during operation testing, thus avoiding the air conditioner from shifting due to external factors during operation testing.
[0017] 2. This utility model, by setting a drive limiting component, can limit the movement of the connecting strip, prevent the connecting strip from shifting position during movement, and further improve the stability of clamping and fixing the air conditioner. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0019] Figure 2 This is a schematic diagram of the structure of the operating table and support plate of this utility model;
[0020] Figure 3This is a schematic diagram of the drive block and hydraulic rod of this utility model;
[0021] Figure 4 This is a schematic diagram of the structure of the drive block and drive rod of this utility model.
[0022] In the diagram: 1. Operating platform; 12. Testing mechanism; 2. Testing stabilization component; 21. Stabilizing plate; 22. Connecting strip; 23. Movable rod one; 24. Support plate; 25. Drive block; 26. Movable rod two; 27. Soft pad; 28. Fixed plate; 29. Hydraulic rod; 210. Anti-slip plate; 211. Drive rod; 3. Drive limit component; 31. Limit rod; 32. Guide rod. Detailed Implementation
[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0024] like Figures 1 to 4 As shown, this utility model provides an industrial air conditioner operation testing device, including an operating table 1, a testing mechanism 12 mounted on the surface of the operating table 1, and a testing stabilization component 2 mounted on the surface of the operating table 1.
[0025] The test stabilization component 2 includes a stabilizing plate 21. The stabilizing plate 21 is symmetrically arranged on the surface of the operating table 1. A connecting strip 22 is installed on one side of the stabilizing plate 21. A through groove adapted to the connecting strip 22 is opened on the surface of the operating table 1. The connecting strip 22 is slidably connected in this through groove and extends to the bottom of this through groove. A movable rod 23 is installed on the bottom surface of the connecting strip 22. A support plate 24 is installed on the bottom surface of the operating table 1. A drive block 25 is slidably connected in a groove opened on the surface of the support plate 24. A movable rod 26 is symmetrically installed on the surface of the drive block 25. A drive rod 211 is hinged between the movable rod 23 and the movable rod 26. A drive limiting component 3 is installed on the surface of the operating table 1, so that the position can be fixed during the operation test of the industrial air conditioner, and the air conditioner can be prevented from shifting due to external factors during the operation test.
[0026] Specifically, a soft pad 27 is installed on the side of the two stabilizing plates 21 that are close to each other, so as to clamp and protect the air conditioner and avoid damage to the air conditioner during the clamping process.
[0027] like Figures 1 to 4As shown, a fixing plate 28 is installed on the surface of the support plate 24, and a hydraulic rod 29 is installed on one side of the fixing plate 28. The telescopic end of the hydraulic rod 29 is connected to the drive block 25, so that the operator can easily drive the drive block 25.
[0028] Furthermore, an anti-slip plate 210 is installed on the upper surface of the control panel 1, which allows the air conditioner to be placed. The anti-slip plate 210 can increase the friction between the air conditioner and the control panel 1, and initially prevent the air conditioner from sliding when placed.
[0029] like Figures 1 to 4 As shown, the drive limiting assembly 3 includes a limiting rod 31. The limiting rod 31 is slidably connected in the through holes opened on the surfaces of the two connecting strips 22. Both ends of the limiting rod 31 pass through the connecting strips 22 and are installed in the through slots opened on the surface of the operating table 1. This allows the movement of the connecting strips 22 to be limited, preventing the connecting strips 22 from shifting during movement and further improving the stability of the air conditioner clamping and fixing.
[0030] It is worth noting that a guide rod 32 is slidably connected in the through hole opened on the surface of the drive block 25. Both ends of the guide rod 32 pass through the drive block 25 and are installed in the groove opened on the surface of the support plate 24, thereby guiding the movement of the drive block 25 and further improving the stability of the device.
[0031] The structure of the testing mechanism 12 is the same as that of the published patent, publication number: CN205506429U, which is the air conditioner outdoor unit operation testing system. For specific testing procedures, please refer to the published patent.
[0032] Working principle and process: The industrial air conditioner is placed on the anti-slip plate 210 on the upper surface of the operating table 1. The anti-slip plate 210 can increase the friction between the air conditioner and the operating table 1, and initially prevent the air conditioner from sliding when placed.
[0033] The hydraulic rod 29 on the fixed plate 28 is activated, and the telescopic end of the hydraulic rod 29 pushes the drive block 25 to slide in the groove on the surface of the support plate 24. Since the drive block 25 is symmetrically equipped with movable rods 26, when the drive block 25 slides, the movable rods 26 will pull the drive rod 211 hinged to it. The drive rod 211 will then drive the movable rod 23, thereby causing the connecting bar 22 to slide in the through groove on the surface of the operating table 1. The stabilizing plate 21 connected to the connecting bar 22 will slide accordingly.
[0034] As the stabilizing plate 21 slides, the two stabilizing plates 21 move closer to each other, and the soft pad 27 installed on one side of it comes into contact with the industrial air conditioner. The soft pad 27 can both protect the air conditioner and fit tightly against the surface of the air conditioner, firmly clamping the industrial air conditioner between the two stabilizing plates 21, thus completing the fixation of the position of the industrial air conditioner.
[0035] During the process of the stabilizing plate 21 sliding and fixing the air conditioner, the limiting rods 31 in the through holes on the surfaces of the two connecting strips 22 guide and limit the sliding of the connecting strips 22, ensuring that the connecting strips 22 slide smoothly and avoid shaking; at the same time, the guide rods 32 in the through holes on the surface of the driving block 25 guide the sliding of the driving block 25 in the slide groove, ensuring the stability of the sliding of the driving block 25 and making the whole fixing process more reliable.
[0036] After the industrial air conditioner is fixed, the test mechanism 12 on the surface of the operating table 1 is activated to perform an operation test on the industrial air conditioner. During the test, the fixed industrial air conditioner will not shift due to external factors, ensuring the accuracy of the test data.
[0037] After the test is completed, the hydraulic rod 29 retracts, causing the drive block 25 to slide in the opposite direction. The stabilizing plate 21 is reset through the movable rod 26, the drive rod 211, and the movable rod 23, releasing the industrial air conditioner from its fixation. Then, the tested industrial air conditioner is removed from the operating table 1 to prepare for the next test.
[0038] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.
[0039] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. An industrial air conditioner operation test device comprising an operation table (1), characterized in that: The surface of the operating table (1) is equipped with a testing mechanism (12), and the surface of the operating table (1) is equipped with a testing stabilization component (2); The test stabilization component (2) includes a stabilizing plate (21). The stabilizing plate (21) is symmetrically arranged on the surface of the operating table (1). A connecting strip (22) is installed on one side surface of the stabilizing plate (21). A through groove adapted to the connecting strip (22) is opened on the surface of the operating table (1). The connecting strip (22) is slidably connected in this through groove and extends to the bottom of this through groove. A movable rod (23) is installed on the bottom surface of the connecting strip (22). A support plate (24) is installed on the bottom surface of the operating table (1). A drive block (25) is slidably connected in a groove opened on the surface of the support plate (24). A movable rod (26) is symmetrically installed on the surface of the drive block (25). A drive rod (211) is hinged between the movable rod (23) and the movable rod (26). A drive limiting component (3) is installed on the surface of the operating table (1).
2. The industrial air conditioner operation testing device according to claim 1, wherein: A soft pad (27) is installed on one side of the two stabilizing plates (21) that are close to each other.
3. The industrial air conditioner operation testing device according to claim 1, wherein: A fixing plate (28) is installed on the surface of the support plate (24), and a hydraulic rod (29) is installed on one side surface of the fixing plate (28). The telescopic end of the hydraulic rod (29) is connected to the drive block (25).
4. The industrial air conditioner operation testing device according to claim 1, wherein: The upper surface of the operating table (1) is equipped with an anti-slip plate (210).
5. The industrial air conditioner operation testing device according to claim 1, wherein: The drive limiting component (3) includes a limiting rod (31). The limiting rod (31) is slidably connected in the through holes opened on the surfaces of the two connecting strips (22). Both ends of the limiting rod (31) pass through the connecting strips (22) and are installed in the through groove opened on the surface of the operating table (1).
6. The industrial air conditioner operation testing device according to claim 1, wherein: A guide rod (32) is slidably connected in the through hole opened on the surface of the drive block (25). Both ends of the guide rod (32) pass through the drive block (25) and are installed in the groove opened on the surface of the support plate (24).