Hydrogen compression prying body with built-in lifting device
By installing a lifting device inside the hydrogen compression skid, including lifting components, rails, and Y-axis and X-axis moving components, the automated installation and disassembly of the hydrogen compression module is achieved, solving the problem of difficult manual operation in the prior art and improving the convenience and safety of installation.
Patent Information
- Application Number
- CN202520115380.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2035-01-17
AI Technical Summary
Existing hydrogen compression skid equipment has limited internal space, resulting in heavy key components such as the compression module. Installation and maintenance can only be carried out manually, making it difficult to achieve convenient installation and disassembly.
A hydrogen compression skid with a built-in lifting device was designed, comprising a skid, a lifting assembly, a track, a Y-axis moving assembly, and an X-axis moving assembly. The mechanized lifting assembly enables automated installation and disassembly of the hydrogen compression module, while the X-axis and Y-axis moving assemblies are used for position adjustment and transportation within the skid.
The mechanized handling of the hydrogen compression module was realized, which simplified the installation process, improved construction safety, saved manpower, and enhanced the convenience and efficiency of equipment maintenance.
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Figure CN223674159U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to hydrogenation technical field especially hydrogen compression pry body of built -in hoisting device. BACKGROUND
[0002] In the hydrogenation technical field nowadays, the high integration of equipment has become a trend, and the hydrogen compression pry equipment that we can commonly see in the market is just such a trend. These devices can only be installed, maintained and disassembled manually due to limited internal space, and the key equipment such as compression module is relatively heavy, which requires opening the side door of the pry body and manually carrying it to the inside of the pry body during installation, resulting in difficulty in installation and maintenance of the device. SUMMARY
[0003] In view of the above situation, in order to overcome the defects of the prior art, the purpose of the utility model is to provide a hydrogen compression pry body with built-in hoisting device, which solves the problem of hydrogen compression pry equipment in the prior art. These devices can only be installed, maintained and disassembled manually due to limited internal space, and the key equipment such as compression module is relatively heavy, which will cause difficulty in installation and maintenance of the device.
[0004] The technical solution solved is a hydrogen compression pry body with built-in hoisting device, comprising:
[0005] a pry body and a hydrogen compression module installed inside the pry body;
[0006] a hoisting assembly for hoisting the hydrogen compression module;
[0007] two rails, each of which is fixedly installed on the inner wall of the two sides of the pry body;
[0008] a Y-axis moving assembly, the hoisting assembly is installed on the Y-axis moving assembly, and the Y-axis moving assembly is used to drive the hoisting assembly to move in the Y-axis direction;
[0009] an X-axis moving assembly, the X-axis moving assembly is slidably arranged on the two rails, the Y-axis moving assembly is slidably arranged on the X-axis moving assembly, and the X-axis moving assembly is used to drive the Y-axis moving assembly and the hoisting assembly to move in the X-axis direction.
[0010] Preferably, the Y-axis moving assembly comprises two first vertical rods, two first horizontal rods fixedly installed on the two first vertical rods, a first I-shaped pulley installed at both ends of the first vertical rod, and a first driving motor fixedly installed on each first vertical rod.
[0011] Preferably, the middle part of the first I-shaped pulley is fixedly provided with a first rotating shaft, and the two ends of the first rotating shaft on one of the first I-shaped pulleys are rotatably provided on the first vertical rod through bearings.
[0012] The other end of the first rotating shaft on the other of the first I-shaped pulleys penetrates through the other side of the first vertical rod and is fixedly connected with the output end of the first driving motor.
[0013] Preferably, the lifting assembly is arranged on the two first horizontal rods.
[0014] Preferably, the X-axis moving assembly comprises two second horizontal rods which are respectively slidably arranged on two tracks, two second vertical rods which are fixedly arranged on the two second horizontal rods, two second I-shaped pulleys which are arranged at the two ends of the second horizontal rods, and driving mechanisms which are arranged on each second horizontal rod.
[0015] Preferably, the driving mechanism comprises a second driving motor, a driving wheel which is fixedly arranged on the output end of the second driving motor, a driven wheel which is arranged outside the second horizontal rod, and a transmission belt which realizes the transmission connection between the driving wheel and the driven wheel.
[0016] Preferably, the middle part of the second I-shaped pulley is fixedly provided with a second rotating shaft, and the two ends of the second rotating shaft on one of the second I-shaped pulleys are rotatably provided on the second horizontal rod through bearings.
[0017] The other end of the second rotating shaft on the other of the second I-shaped pulleys penetrates through the other side of the second horizontal rod and is fixedly connected with the driven wheel.
[0018] Preferably, the driving wheel, the driven wheel and the transmission belt are externally sleeved with the same protective cover, and the protective cover is fixedly arranged on the second horizontal rod, and the second driving motor is fixedly arranged on the side of the protective cover which is away from the second horizontal rod.
[0019] Preferably, the two second vertical rods are fixedly provided with first sliding rails which are matched with the first I-shaped pulleys, and the first I-shaped pulleys are slidably arranged on the first sliding rails.
[0020] The two ends of the two first vertical rods are fixedly arranged on the two second horizontal rods.
[0021] Preferably, the two tracks are fixedly provided with second sliding rails which are matched with the second I-shaped pulleys, and the second I-shaped pulleys are slidably arranged on the second sliding rails.
[0022] Compared with the prior art, the present application has the following beneficial effects:
[0023] The utility model discloses when installing hydrogen compression module, first open the side door of pry body, X axis moving assembly drive Y axis moving assembly and hoist subassembly move in X axis direction, until Y axis moving assembly and hoist subassembly from the inside of pry body remove to hydrogen compression module top, then through Y axis moving assembly adjust the position of hoist subassembly in Y axis direction, until hoist subassembly is located in the hoisting position of hydrogen compression module top, then through hoist subassembly hoist hydrogen compression module, then again through X axis moving assembly drive Y axis moving assembly and hoist subassembly move in X axis direction to the inside of pry body, until hydrogen compression module is located at the installation position, through hoist subassembly hydrogen compression module falls to the inside bottom wall of pry body, then can install hydrogen compression module in the inside of pry body, and the transport of hydrogen compression module is converted into mechanized handling by manpower, thereby making the installation of hydrogen compression module simple and convenient. BRIEF DESCRIPTION OF DRAWINGS
[0024] Figure 1 It is the three-dimensional schematic diagram of the utility model.
[0025] Figure 2 It is the front view schematic diagram of the utility model.
[0026] Figure 3 It is the side view schematic diagram of the utility model.
[0027] Figure 4 It is the schematic diagram of hoist subassembly from the inside of pry body.
[0028] Figure 5 It is the three-dimensional structure schematic diagram of Y axis moving assembly of the utility model.
[0029] Explanation of the reference numerals in the schematic diagram:
[0030] 1, pry body;2, hydrogen compression module;3, hoist subassembly;4, track;5, Y axis moving assembly;6, X axis moving assembly;7, first slide rail;501, first vertical rod;502, first cross bar;503, first I-shaped pulley;504, first drive motor;601, second cross bar;602, second vertical rod;603, second I-shaped pulley;604, second drive motor;605, protective cover. DETAILED DESCRIPTION
[0031] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by the person skilled in the art without creative labor fall within the scope of the utility model.
[0032] The specific embodiment is a hydrogen compression pry body with a built-in lifting device, a structure diagram of which is shown in the figure and comprises a pry body 1, a hydrogen compression module 2 installed inside the pry body 1, a lifting assembly 3, two tracks 4, a Y-axis moving assembly 5, and an X-axis moving assembly 6. The lifting assembly 3 is used to lift the hydrogen compression module 2. The two tracks 4 are fixedly installed on the inner walls of the two sides of the pry body 1. The lifting assembly 3 is installed on the Y-axis moving assembly 5, and the Y-axis moving assembly 5 is used to drive the lifting assembly 3 to move in the Y-axis direction. The X-axis moving assembly 6 is slidingly arranged on the two tracks 4. The Y-axis moving assembly 5 is slidingly arranged on the X-axis moving assembly 6, and the X-axis moving assembly 6 is used to drive the Y-axis moving assembly 5 and the lifting assembly 3 to move in the X-axis direction. Figures 1-5
[0033] When the hydrogen compression module 2 is installed, first, the side door of the pry body 1 is opened. The X-axis moving assembly 6 drives the Y-axis moving assembly 5 and the lifting assembly 3 to move in the X-axis direction until the Y-axis moving assembly 5 and the lifting assembly 3 are moved out of the interior of the pry body 1 to above the hydrogen compression module 2. Then, the position of the lifting assembly 3 in the Y-axis direction is adjusted by the Y-axis moving assembly 5 until the lifting assembly 3 is located at a lifting position above the hydrogen compression module 2. Then, the hydrogen compression module 2 is lifted by the lifting assembly 3. Then, the Y-axis moving assembly 5 and the lifting assembly 3 are driven by the X-axis moving assembly 6 to move in the X-axis direction to the interior of the pry body 1 until the hydrogen compression module 2 is located at an installation position. The hydrogen compression module 2 is lowered to the inner bottom wall of the pry body 1 by the lifting assembly 3. Then, the hydrogen compression module 2 can be installed in the interior of the pry body 1. The transportation of the hydrogen compression module 2 is changed from manual transportation to mechanical transportation. Therefore, the installation of the hydrogen compression module 2 is simple and convenient. The lifting assembly 3 integrated in the pry body 1 transports the hydrogen compression module 2. Compared with the manual transportation mode, the construction safety of equipment maintenance personnel can be ensured, and manpower can be saved.
[0034] The lifting assembly 3 can adopt an electric hoist to realize the lifting of the hydrogen compression module 2.
[0035] The Y-axis moving assembly 5 comprises two first vertical rods 501, two first horizontal rods 502 fixedly installed on the two first vertical rods 501, a first I-shaped pulley 503 installed on both ends of the first vertical rod 501, and a first driving motor 504 fixedly installed on each first vertical rod 501. The lifting assembly 3 is installed on the two first horizontal rods 502.
[0036] A first rotating shaft is fixedly installed in the middle of the first I-shaped pulley 503. The two ends of the first rotating shaft on one of the first I-shaped pulleys 503 are rotatably installed on the first vertical rod 501 through bearings.
[0037] One end of the first rotating shaft of the other first I-shaped pulley 503 is rotatably installed on one side of the first vertical rod 501 through a bearing, and the other end of the first rotating shaft of the other first I-shaped pulley 503 penetrates the other side of the first vertical rod 501 and is fixedly connected with the output end of the first driving motor 504;
[0038] The first driving motor 504 drives the first rotating shaft of the other first I-shaped pulley 503 to rotate, so that the other first I-shaped pulley 503 rotates synchronously. The first I-shaped pulley 503 drives the first vertical rod 501 to move in the Y-axis direction during rotation. The first vertical rod 501 drives the other first I-shaped pulley 503 to move synchronously. The first vertical rod 501 drives the first horizontal rod 502 to move in the Y-axis direction during rotation of the two first I-shaped pulleys 503. The first horizontal rod 502 drives the lifting assembly 3 to move in the Y-axis direction when moving in the Y-axis direction, so as to adjust the position of the lifting assembly 3 in the Y-axis direction.
[0039] The X-axis moving assembly 6 includes two second horizontal rods 601 slidably arranged on the two tracks 4, two second vertical rods 602 fixedly installed on the two second horizontal rods 601, two second I-shaped pulleys 603 installed on both ends of the second horizontal rods 601, and a driving mechanism installed on each second horizontal rod 601.
[0040] The driving mechanism includes a second driving motor 604, a driving wheel fixedly installed with the output end of the second driving motor 604, a driven wheel arranged outside the second horizontal rod 601, and a transmission belt achieving transmission connection between the driving wheel and the driven wheel.
[0041] The second rotating shaft of the second I-shaped pulley 603 is fixedly installed in the middle part, and the two ends of the second rotating shaft of one of the second I-shaped pulleys 603 are rotatably installed on the second horizontal rod 601 through bearings.
[0042] One end of the second rotating shaft of the other second I-shaped pulley 603 is rotatably installed on one side of the second horizontal rod 601 through a bearing, and the other end of the second rotating shaft of the other second I-shaped pulley 603 penetrates the other side of the second horizontal rod 601 and is fixedly connected with the driven wheel.
[0043] The second driving motor 604 drives the driving wheel to rotate, and the driving wheel drives the driven wheel to rotate through the transmission belt in the rotating process, and the driven wheel drives the second rotating shaft on the other second I-shaped pulley 603 to rotate in the rotating process, so that the other second I-shaped pulley 603 rotates, and the second horizontal rod 601 moves in the X-axis direction in the rotating process of the other second I-shaped pulley 603, and the second horizontal rod 601 drives one of the second I-shaped pulleys 603 to move synchronously in the X-axis direction, and the second horizontal rod 601 drives the second vertical rod 602 to move in the X-axis direction in the rotating process, and the second vertical rod 602 drives the Y-axis moving assembly 5 and the lifting assembly 3 to move synchronously in the X-axis direction in the rotating process, so that the position of the lifting assembly 3 in the X-axis direction can be adjusted.
[0044] Therefore, the lifting assembly 3 in the pry body 1 can move in the X-axis and Y-axis directions, the hydrogen compression module 2 can be transported to each position in the pry body 1 for installation, and the pry body 1 has strong versatility.
[0045] The driving wheel, the driven wheel and the transmission belt are externally sleeved with the same protective cover 605, and the protective cover 605 is fixedly installed on the second horizontal rod 601, the second driving motor 604 is fixedly installed on the side of the protective cover 605 away from the second horizontal rod 601, and a through hole for the output shaft of the second driving motor 604 to rotate is formed in the side of the protective cover 605 away from the second horizontal rod 601.
[0046] The two second vertical rods 602 are fixedly installed with the first sliding rails 7 matched with the first I-shaped pulley 503, and the first I-shaped pulley 503 is slidingly installed on the first sliding rails 7, and the first sliding rails 7 and the first I-shaped pulley 503 cooperate to guide the movement of the Y-axis moving assembly 5 and the lifting assembly 3 in the Y-axis direction.
[0047] The two ends of the two first vertical rods 501 are fixedly installed on the two second horizontal rods 601, respectively.
[0048] The two rails 4 are fixedly installed with the second sliding rails matched with the second I-shaped pulley 603, and the second I-shaped pulley 603 is slidingly installed on the second sliding rails, and the second sliding rails and the second I-shaped pulley 603 cooperate to guide the movement of the Y-axis moving assembly 5 and the lifting assembly 3 in the X-axis direction.
[0049] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to the embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. A hydrogen compression sled with built-in lifting device, characterized in that, Include: The pry body (1) and the hydrogen compression module (2) installed inside the pry body (1); Hoisting assembly (3), the hoisting assembly (3) is used for lifting hydrogen compression module (2); Track (4), the track (4) is provided with two, and two tracks (4) are respectively fixedly installed on the inner wall of both sides of the pry body (1); Y axis moving assembly (5), the hoisting assembly (3) is installed on Y axis moving assembly (5), and Y axis moving assembly (5) is used to drive the hoisting assembly (3) to move in Y axis direction; X axis moving assembly (6), the X axis moving assembly (6) is slidably arranged on the two tracks (4), the Y axis moving assembly (5) is slidably arranged on the X axis moving assembly (6), and the X axis moving assembly (6) is used to drive the Y axis moving assembly (5) and the hoisting assembly (3) to move in X axis direction.
2. The in-line lifting device-equipped hydrogen compression sled of claim 1, wherein, The Y axis moving assembly (5) includes two first vertical rods (501), two first horizontal rods (502) fixedly installed on the two first vertical rods (501), a first I-shaped pulley (503) installed on both ends of the first vertical rod (501), and a first drive motor (504) fixedly installed on each first vertical rod (501).
3. The in-line lifting device-equipped hydrogen compression sled of claim 2, wherein, The middle part of the first I-shaped pulley (503) is fixedly installed with a first rotating shaft, and the two ends of the first rotating shaft on one of the first I-shaped pulleys (503) are rotatably installed on the first vertical rod (501) through bearings; The one end of the first rotating shaft on the other first I-shaped pulley (503) is rotatably installed on one side of the first vertical rod (501) through a bearing, and the other end of the first rotating shaft on the other first I-shaped pulley (503) penetrates the other side of the first vertical rod (501) and is fixedly connected with the output end of the first drive motor (504).
4. The in-line lifting device hydrogen compression pry bar of claim 3, wherein, The hoisting assembly (3) is installed on the two first horizontal rods (502).
5. The in-line lifting device hydrogen compression sled of claim 4, wherein, The X axis moving assembly (6) includes two second horizontal rods (601) slidably arranged on the two tracks (4) respectively, two second vertical rods (602) fixedly installed on the two second horizontal rods (601), a second I-shaped pulley (603) installed on both ends of the second horizontal rod (601), and a drive mechanism installed on each second horizontal rod (601).
6. The in-line lifting device hydrogen compression sled of claim 5, wherein, The drive mechanism includes a second drive motor (604), a driving wheel fixedly installed with the output end of the second drive motor (604), a driven wheel arranged outside the second horizontal rod (601), and a transmission belt achieving transmission connection between the driving wheel and the driven wheel.
7. The in-line lifting device-equipped hydrogen compression ram body according to claim 6, characterized by The middle part of the second I-shaped pulley (603) is fixedly installed with a second rotating shaft, and the two ends of the second rotating shaft on one of the second I-shaped pulleys (603) are rotatably installed on the second horizontal rod (601) through bearings; The one end of the second rotating shaft on the other second I-shaped pulley (603) is rotatably installed on one side of the second horizontal rod (601) through a bearing, and the other end of the second rotating shaft on the other second I-shaped pulley (603) penetrates the other side of the second horizontal rod (601) and is fixedly connected with the driven wheel.
8. The in-line lifting device-equipped hydrogen compression ram body according to claim 7, characterized by The outer part of the driving wheel, the driven wheel and the transmission belt is provided with the same protective cover (605), and the protective cover (605) is fixedly installed on the second horizontal rod (601); the second driving motor (604) is fixedly installed on the side of the protective cover (605) away from the second horizontal rod (601).
9. The in-line lifting device hydrogen compression sled of claim 8, wherein, First sliding rails (7) matched with the first I-shaped pulleys (503) are fixedly installed on the two second vertical rods (602); the first I-shaped pulleys (503) are slidingly installed on the first sliding rails (7). The two ends of the two first vertical rods (501) are fixedly installed on the two second horizontal rods (601) respectively.
10. The in-line lifting device hydrogen compression sled of claim 9, wherein, Second sliding rails matched with the second I-shaped pulleys (603) are fixedly installed on the two tracks (4); the second I-shaped pulleys (603) are slidingly installed on the second sliding rails.