Support structure of water vapor compressor
By designing a support structure that incorporates buffering, support, lifting, and drive mechanisms, the problems of poor versatility and vibration noise in the steam compressor base were solved. This enabled height adjustment and noise reduction, thereby improving the stability and safety of the device.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SKR FLUID TECH (SUZHOU) CO LTD
- Filing Date
- 2025-04-07
- Publication Date
- 2026-04-28
AI Technical Summary
The lack of universality in existing steam compressor bases leads to inconvenient installation heights and generates vibration and noise, affecting the production environment and equipment stability.
A support structure including a buffer, support, lifting and drive mechanism was designed. The buffer mechanism absorbs vibration, the support mechanism provides stability, the lifting mechanism adjusts the height, and the drive mechanism achieves dynamic adjustment. The combination of damping buffer springs and lubricating oil reduces noise.
It enables dynamic adjustment of the height of the steam compressor, reduces vibration and noise, improves the stability and safety of the device, and reduces noise pollution.
Smart Images

Figure CN224174474U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of steam compressor accessories, specifically to a support structure for a steam compressor. Background Technology
[0002] A steam compressor is a mechanical device that compresses low-temperature, low-pressure steam into high-temperature, high-pressure steam, and is widely used in industrial heat energy conversion and process applications. Its core principle is to increase energy output by changing the steam volume or pressure through mechanical structure.
[0003] To ensure the stable operation of steam compressors, direct contact between the steam compressor and the ground is generally avoided, and a metal base is used for isolation.
[0004] Most existing steam compressor bases use a box structure made of metal materials, which only provides simple support. However, in actual use, different application scenarios have different requirements for the installation height of steam compressors, resulting in a lack of good versatility for the base. At the same time, steam compressors generate a certain amount of vibration and noise during production, which not only causes noise pollution to the production environment, but also affects the stability of the support due to continuous vibration. Utility Model Content
[0005] In view of the above-mentioned technical deficiencies, the purpose of this utility model is to provide a support structure for a steam compressor, so as to solve the problems mentioned in the background art, such as the lack of good versatility of the base, the vibration and noise generated by the steam compressor during production and use, which not only causes noise pollution to the production environment, but also affects the stability of the support due to continuous vibration.
[0006] To solve the above-mentioned technical problems, the present invention adopts the following technical solution: The present invention provides a support structure for a steam compressor, comprising:
[0007] Steam compressor;
[0008] A buffer mechanism, located on the bottom side of the steam compressor, is used to provide buffering for the steam compressor;
[0009] The support mechanism is located on the bottom side of the buffer mechanism and works with the buffer mechanism to support the steam compressor.
[0010] The lifting mechanism is located between the buffer mechanism and the support mechanism, and is used in conjunction with the support mechanism to raise the overall height of the steam compressor.
[0011] The drive mechanism, located on the support mechanism, is used to provide driving force for the lifting mechanism.
[0012] Preferably, the buffer mechanism includes:
[0013] Buffer box;
[0014] Install the top plate, located on the bottom side of the steam compressor;
[0015] Multiple movable support rods are arranged on the bottom side of the mounting plate;
[0016] Movable panels are arranged on the inner wall of the buffer box;
[0017] Damping buffer springs are used to absorb vibrations transmitted from the steam compressor to the moving plate.
[0018] Several sliding holes are arranged on the top side of the buffer box, and the movable support rod is inserted into the corresponding sliding hole.
[0019] Preferably, the buffer box is equipped with a noise reduction component for reducing equipment noise.
[0020] Preferably, the noise reduction component includes:
[0021] Lubricating buffer oil, placed inside the buffer tank, is used to lubricate the damping buffer springs and reduce noise;
[0022] Several through holes are provided on the movable plate to facilitate the flow of lubricating buffer oil on both sides of the movable plate.
[0023] Preferably, the support mechanism includes:
[0024] The base plate is located on the bottom side of the buffer box;
[0025] Several limiting plates are arranged on the top side of the base plate, and the buffer box is slidably installed between the limiting plates to limit the range of motion of the buffer box.
[0026] Preferably, the lifting mechanism includes:
[0027] The slider is located on the top side of the base plate;
[0028] Rotate the lifting rod, which is positioned between the buffer box and the slider, to raise the height of the buffer box;
[0029] The rotating hole has two ends for rotating the lifting rod. A rotating shaft is rotatably installed inside the rotating hole. The rotating hole and the rotating shaft work together to convert horizontal force into vertical lifting force.
[0030] Preferably, the drive mechanism includes:
[0031] Lifting motor;
[0032] The drive screw is located at the output end of the lifting motor;
[0033] A limiting component, located on the top side of the base plate, is used to limit the range of motion of the slider;
[0034] A locking component, located on the base plate, is used to limit the rotation of the drive screw;
[0035] The base plate also includes a fixed block, a driven lead screw on the fixed block, and a driven bevel gear on one end of the driven lead screw for driving the slider to move horizontally. The drive lead screw is equipped with a drive bevel gear.
[0036] Preferably, the limiting component includes:
[0037] A limiting groove is provided on the bottom side of the slider;
[0038] The limiting slide rail is fixedly installed on the top side of the base plate and is used in conjunction with the limiting slide groove to limit the range of motion of the slider.
[0039] Several support blocks are arranged on the top side of the base plate to support the drive screw.
[0040] Preferably, the locking component includes:
[0041] A rotating gear is located at the end of the drive screw;
[0042] The movable rod is located on the top side of the base plate;
[0043] A locking block, located on the movable rod, works in conjunction with the rotating gear to lock the drive screw;
[0044] A control lever is also arranged on the movable lever.
[0045] Preferably, an electric push rod is arranged on the top side of the base plate to cooperate with the control rod, the electric push rod being used to control the movable rod to move closer to or away from the rotating gear.
[0046] The beneficial effects of this utility model are as follows:
[0047] This invention, by using a base plate and a limiting plate to restrict the movement range of the buffer box, allows the buffer box to be raised and lowered within the limiting plate by driving a rotating lifting rod via a lifting motor. This allows for dynamic adjustment of the height of the steam compressor by controlling the height of the buffer box, enabling timely adjustments based on the operating environment and avoiding the labor and time costs associated with repeated manual installation. Furthermore, a locking block is used to hold the rotating gear, restricting the rotation of the drive screw and ensuring that the position of the buffer box remains fixed after installation, thus guaranteeing the safe use of the device.
[0048] This invention utilizes a movable support rod and a movable plate to transmit the vibration generated by the steam compressor to the damping buffer spring. The damping buffer spring absorbs part of the vibration, thereby achieving multiple effects of buffering, shock absorption, and noise reduction. Furthermore, the buffer box is filled with a large amount of lubricating buffer oil, which not only seals and assists in buffering and noise reduction but also prevents water vapor from corroding the damping buffer spring and affecting its buffering effect. Attached Figure Description
[0049] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0050] Figure 1 This is a three-dimensional structural diagram of a support structure for a steam compressor provided in an embodiment of the present invention.
[0051] Figure 2 This is a schematic diagram of the buffer box portion of a support structure for a steam compressor provided in an embodiment of the present invention.
[0052] Figure 3 This is a side view of a support structure for a steam compressor provided in an embodiment of the present invention.
[0053] Figure 4 A support structure for a steam compressor provided in this embodiment of the present invention. Figure 3 A schematic diagram of the structure of part A.
[0054] Figure 5 This is a schematic diagram of the rotating gear portion of a support structure for a steam compressor provided in an embodiment of the present invention.
[0055] Figure 6 A support structure for a steam compressor provided in this embodiment of the present invention. Figure 2 A structural diagram of part B in the diagram.
[0056] Explanation of reference numerals in the attached figures:
[0057] 1. Steam compressor; 2. Buffer box; 201. Mounting top plate; 202. Movable support rod; 203. Sliding hole; 204. Movable plate; 205. Damping buffer spring; 206. Lubricating buffer oil; 207. Through hole; 3. Base plate; 301. Limiting plate; 4. Slider; 401. Rotating lifting rod; 402. Rotating hole; 403. Rotating shaft; 5. Lifting motor; 501. Drive screw; 502. Drive bevel gear; 503. Fixed block; 504. Driven screw; 505. Driven bevel gear; 506. Limiting slide groove; 507. Limiting slide rail; 508. Support block; 6. Rotating gear; 601. Movable rod; 602. Locking block; 603. Control rod; 604. Electric push rod. Detailed Implementation
[0058] 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.
[0059] Example 1:
[0060] like Figures 1 to 6 As shown, this utility model provides a support structure for a steam compressor, including a steam compressor 1, a buffer mechanism for providing buffer for the steam compressor 1, a support mechanism for supporting the steam compressor 1 in conjunction with the buffer mechanism.
[0061] The lifting mechanism is located between the buffer mechanism and the support mechanism and works in conjunction with the support mechanism to raise the overall height of the steam compressor 1. The drive mechanism is located in the support mechanism and is used to provide driving force for the lifting mechanism.
[0062] Specifically, the buffer mechanism includes a buffer box 2 disposed on the bottom side of the steam compressor 1, a mounting top plate 201 disposed on the bottom side of the steam compressor 1 and fixedly connected to the bottom side of the steam compressor 1, several movable support rods 202 disposed on the bottom side of the mounting top plate 201 to limit the range of motion of the movable support rods 202, several sliding holes 203 formed on the top side of the buffer box 2, the movable support rods 202 being inserted into the corresponding sliding holes 203 and disposed on the inner wall of the buffer box 2, and the bottom end of the movable support rods 202 being fixedly connected to the top of the movable plate 204. The movable plate 204 on the side, the mounting top plate 201 presses the weight of the damping buffer spring 205 on the movable plate 204 through the movable support rod 202. The damping buffer spring 205 is arranged on the bottom inner wall of the buffer box 2. It is used to support the movable plate 204 and absorb the vibration transmitted to the movable plate 204 by the steam compressor 1. Its top end is connected to the bottom side of the movable plate 204. The damping buffer spring 205 absorbs part of the vibration, thereby achieving multiple effects of buffering, shock absorption and noise reduction. It is arranged in the buffer box 2 to reduce the noise of the equipment.
[0063] Specifically, the noise reduction component includes a damping buffer spring 205 and a noise-reducing lubricating buffer oil 206 arranged inside the buffer box 2. Several through holes 207 are opened on the movable plate 204 to facilitate the flow of the lubricating buffer oil 206 on both sides of the movable plate 204. The buffer box 2 is filled with a large amount of lubricating buffer oil 206, which not only seals and assists in buffering and noise reduction, but also prevents water vapor from corroding the damping buffer spring 205 and affecting the buffering effect of the damping buffer spring 205.
[0064] Example 2:
[0065] Based on Example 1, in order to achieve free lifting and changing of the height of the steam compressor 1, a support mechanism, a lifting mechanism, and a drive mechanism are arranged to achieve the purpose of changing the height of the steam compressor 1.
[0066] The support mechanism includes a base plate 3 arranged on the bottom side of the buffer box 2, and several limiting plates 301 arranged on the top side of the base plate 3 to limit the range of motion of the buffer box 2. The buffer box 2 is slidably installed between the limiting plates 301. The lifting and lowering of the buffer box 2 is limited by the limiting plates 301, which can prevent the buffer box 2 from shifting.
[0067] Specifically, the lifting mechanism includes a slider 4 arranged on the top side of the base plate 3, a rotating lifting rod 401 arranged between the buffer box 2 and the slider 4 for raising the height of the buffer box 2, and rotating holes 402 at both ends of the rotating lifting rod 401 for converting horizontal force into vertical lifting force. A rotating shaft 403 is rotatably installed in the rotating hole 402. The rotating hole 402 needs to be used in conjunction with the rotating shaft 403. The movable slider 4 drives one end of the rotating lifting rod 401 to rotate through the rotating hole 402 and the rotating shaft 403, and the rotating lifting rod 401 also drives the buffer box 2 to rise and fall through another pair of rotating holes 402 and rotating shaft 403.
[0068] Specifically, the drive mechanism includes a lifting motor 5 located on the top side of the base plate 3 to provide lifting driving force, a drive screw 501 located at the output end of the lifting motor 5 to transmit driving force, a drive bevel gear 502 located on the drive screw 501, a fixed block 503 located on the top side of the base plate 3, a driven screw 504 located on the fixed block 503, and a driven bevel gear 505 located at one end of the driven screw 504 and used in conjunction with the drive bevel gear 502 to drive the slider 4 to move horizontally. The output end of the lifting motor 5 drives the drive screw 501 to rotate. The rotating drive screw 501 can drive the driven screw 504 to rotate on the fixed block 503 through the mutual cooperation of the drive bevel gear 502 and the driven bevel gear 505, thereby distributing the driving force of the lifting motor 5 to each component.
[0069] Example 3:
[0070] Based on Embodiment 2, in order to limit the range of motion of the slider 4, a limiting component for limiting the range of motion of the slider 4 is arranged on the top side of the base plate 3, and a locking component for limiting the rotation of the drive screw 501 is also arranged on the base plate 3.
[0071] The limiting component includes a limiting groove 506 formed on the bottom side of the slider 4, a limiting rail 507 used in conjunction with the limiting groove 506 to limit the range of motion of the slider 4, a rotating driven screw 504 to drive the slider 4 to move on the surface of the base plate 3, the moving slider 4 is limited by the limiting groove 506 and the limiting rail 507 and can only move within a fixed range, and several support blocks 508 arranged on the top side of the base plate 3 to support the drive screw 501, the several support blocks 508 can ensure the stability of the drive screw 501;
[0072] The locking assembly includes a rotating gear 6 disposed at the end of the drive screw 501, a movable rod 601 disposed on the top side of the base plate 3, a locking block 602 disposed on the movable rod 601 and used in conjunction with the rotating gear 6 to lock the drive screw 501, a control rod 603 disposed on the movable rod 601, and an electric push rod 604 disposed on the top side of the base plate 3 and used in conjunction with the control rod 603 to control the movable rod 601 to move closer to or away from the rotating gear 6.
[0073] After the height of the buffer box 2 is fixed, the electric push rod 604 can be activated. The output end of the electric push rod 604 drives the movable rod 601 to rotate through the control rod 603, so that the locking block 602 on the movable rod 601 is locked on the rotating gear 6, thereby restricting the rotation of the drive screw 501 through the rotating gear 6.
[0074] Working principle:
[0075] The steam compressor 1 can be used by installing it on the mounting plate 201. When the height needs to be adjusted, the lifting motor 5 can be started. The output end of the lifting motor 5 drives the drive screw 501 to rotate. The rotating drive screw 501 can drive the driven screw 504 to rotate on the fixed block 503 through the mutual cooperation of the drive bevel gear 502 and the driven bevel gear 505, thereby distributing the driving force of the lifting motor 5 to each component. The rotating driven screw 504 can drive the slider 4 to move on the surface of the base plate 3. The movable slider 4 is restricted by the limiting slide groove 506 and the limiting slide rail 507, and can only move within a fixed range. The movable slider 4 drives one end of the rotating lifting rod 401 to rotate through the rotating hole 402 and the rotating shaft 403. Rod 401 also drives the buffer box 2 to rise and fall through another pair of rotating holes 402 and rotating shaft 403. The rise and fall of the buffer box 2 is limited by the limit plate 301, which can prevent the buffer box 2 from shifting. After the height of the buffer box 2 is fixed, the electric push rod 604 can be activated. The output end of the electric push rod 604 drives the movable rod 601 to rotate through the control rod 603, so that the locking block 602 on the movable rod 601 is locked on the rotating gear 6, thereby limiting the rotation of the drive screw 501 through the rotating gear 6. Inside the buffer box 2, the mounting top plate 201 presses the weight onto the damping buffer spring 205 through the movable support rod 202 and the movable plate 204, thereby using the damping buffer spring 205 to absorb part of the vibration, thereby achieving multiple effects of buffering, shock absorption and noise reduction.
[0076] Moreover, the buffer box 2 is filled with a large amount of lubricating buffer oil 206, which not only seals and assists in buffering and noise reduction, but also prevents water vapor from corroding the damping buffer spring 205 and affecting the buffering effect of the damping buffer spring 205.
[0077] Obviously, those skilled in the art can make various modifications and variations to this utility model without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this utility model and their equivalents, this utility model also intends to include these modifications and variations.
Claims
1. A support structure for a steam compressor, characterized in that, include: Steam compressor; A buffer mechanism, located on the bottom side of the steam compressor, is used to provide buffering for the steam compressor; The support mechanism is located on the bottom side of the buffer mechanism and works with the buffer mechanism to support the steam compressor. The lifting mechanism is located between the buffer mechanism and the support mechanism, and is used in conjunction with the support mechanism to raise the overall height of the steam compressor. The drive mechanism, located on the support mechanism, is used to provide driving force for the lifting mechanism.
2. The support structure for a steam compressor as described in claim 1, characterized in that, The buffer mechanism includes: Buffer box; Install the top plate, located on the bottom side of the steam compressor; Multiple movable support rods are arranged on the bottom side of the mounting plate; Movable panels are arranged on the inner wall of the buffer box; Damping buffer springs are used to absorb vibrations transmitted from the steam compressor to the moving plate. Several sliding holes are arranged on the top side of the buffer box, and the movable support rod is inserted into the corresponding sliding hole.
3. The support structure for a steam compressor as described in claim 2, characterized in that, The buffer box is equipped with noise reduction components to reduce equipment noise.
4. The support structure for a steam compressor as described in claim 3, characterized in that, The noise reduction component includes: Lubricating buffer oil, placed inside the buffer tank, is used to lubricate the damping buffer springs and reduce noise; Several through holes are provided on the movable plate to facilitate the flow of lubricating buffer oil on both sides of the movable plate.
5. The support structure for a steam compressor as described in claim 1, characterized in that, The supporting structure includes: The base plate is located on the bottom side of the buffer box; Several limiting plates are arranged on the top side of the base plate, and the buffer box is slidably installed between the limiting plates to limit the range of motion of the buffer box.
6. The support structure for a steam compressor as described in claim 1, characterized in that, The lifting mechanism includes: The slider is located on the top side of the base plate; Rotate the lifting rod, which is positioned between the buffer box and the slider, to raise the height of the buffer box; The rotating hole has two ends for rotating the lifting rod. A rotating shaft is rotatably installed inside the rotating hole. The rotating hole and the rotating shaft work together to convert horizontal force into vertical lifting force.
7. The support structure for a steam compressor as described in claim 1, characterized in that, The drive mechanism includes: Lifting motor; The drive screw is located at the output end of the lifting motor; A limiting component, located on the top side of the base plate, is used to limit the range of motion of the slider; A locking component, located on the base plate, is used to limit the rotation of the drive screw; The base plate also includes a fixed block, a driven lead screw on the fixed block, and a driven bevel gear on one end of the driven lead screw for driving the slider to move horizontally. The drive lead screw is equipped with a drive bevel gear.
8. The support structure for a steam compressor as described in claim 7, characterized in that, The limiting component includes: A limiting groove is provided on the bottom side of the slider; The limiting slide rail is fixedly installed on the top side of the base plate and is used in conjunction with the limiting slide groove to limit the range of motion of the slider. Several support blocks are arranged on the top side of the base plate to support the drive screw.
9. The support structure for a steam compressor as described in claim 8, characterized in that, The locking component includes: A rotating gear is located at the end of the drive screw; The movable rod is located on the top side of the base plate; A locking block, located on the movable rod, works in conjunction with the rotating gear to lock the drive screw; A control lever is also arranged on the movable lever.
10. The support structure for a steam compressor as described in claim 9, characterized in that, An electric push rod is arranged on the top side of the base plate to work with the control rod. The electric push rod is used to control the movable rod to move closer to or away from the rotating gear.