Module electrolytic cell equipment support and installation and alignment method thereof
By designing the adjustment mechanism of the module electrolytic cell equipment support, the problems of low installation accuracy and complex process in the prior art are solved, high-precision adjustment of the support and improvement of the installation quality are achieved, and the long-term stable operation of the equipment and environmental safety are ensured.
Patent Information
- Application Number
- CN202510015823.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-06
- Publication Date
- 2025-05-23
AI Technical Summary
When installing existing module electrolytic cell equipment, the adjustment accuracy is limited and the process is complicated, which can easily affect the overall installation quality, resulting in unstable operation of the equipment, which may cause environmental pollution and shorten service life.
A module electrolytic cell equipment support is designed, including independent support and adjustment mechanism. The adjustment mechanism includes nut connectors, adjustment filament bolts and mounting mechanisms, through which the elevation and level of the support can be adjusted quickly and accurately.
It realizes high-precision adjustment of the bearing, improves installation quality, shortens construction period, and ensures long-term stable operation of the equipment and environmental safety.
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Figure CN120026339A_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of module electrolyzer equipment installation, and in particular to a module electrolyzer equipment support and an installation and alignment method of the support. Background Art
[0002] At present, for better transportation, manufacturers decompose the whole set of electrolyzer equipment into several module electrolyzers and carry out on-site module assembly and installation. This results in each module electrolyzer having four supports to be installed on the foundation. The module electrolyzer equipment usually has 12 independent modules, which means that 36 independent supports need to be installed on the foundation. The quality of the installation of the independent supports directly affects the operating stability and life of the equipment after it is put into production.
[0003] When installing existing modular electrolyzer equipment, the common tool is a combination of flat washers and paired inclined washers. After placing the equipment on the combination of flat washers and paired inclined washers, the elevation and horizontality of the equipment are finely adjusted. However, this method has limited adjustment accuracy and complicated procedures. If the installation is not accurate, it will affect the overall installation quality of the modular electrolyzer equipment. In severe cases, it will cause leakage in the tube electrolysis channel, causing environmental pollution, and make the modular electrolyzer equipment fail to meet the manufacturer's requirements for purifying hydrogen, affecting its service life. To this end, we propose a modular electrolyzer equipment support and an installation and alignment method for the support. Summary of the invention
[0004] The object of the present invention is to provide a modular electrolyzer equipment support and a method for installing and aligning the support to solve the problems raised in the above-mentioned background technology.
[0005] To achieve the above object, the present invention provides the following technical solutions:
[0006] A modular electrolyzer equipment support comprises an independent support, the independent support is provided with anchor bolts, and both ends of the bottom of the independent support are provided with adjustment mechanisms for adjusting the elevation and horizontality thereof; wherein:
[0007] The adjustment mechanism comprises:
[0008] Four groups of nut connectors are respectively arranged around the bottom of the independent support. The nut connectors are arranged on the adjusting filament bolts. The ends of the two groups of adjusting filament bolts on the same side away from the nut connectors are commonly connected to a fixing plate.
[0009] A further improvement is that the two groups of nut connectors on the same side are detachably connected to the bottom of the independent support through a mounting mechanism.
[0010] A further improvement is that the nut connector comprises:
[0011] A nut body, with a thread sleeve disposed on the outer wall of the adjusting filament bolt; and
[0012] A connecting sleeve is movably sleeved on one end of the adjusting filament bolt away from the fixing plate, one end of the connecting sleeve is rotatably connected to the nut body, and the other end is hinged to the mounting mechanism.
[0013] A further improvement is that the mounting mechanism comprises:
[0014] An assembly mounting seat is hinged to the other end of the connecting sleeve, and the assembly mounting seat is slidably arranged in a notch opened at the bottom of the independent support, and the outer end of the notch passes through the side wall of the independent support; and
[0015] The fixing part is arranged in the assembly mounting seat and is used for fixing the assembly mounting seat in the slot.
[0016] A further improvement is that the fixing portion comprises:
[0017] An elastic driving rod is movably inserted outside the assembly mounting seat, one end of which extends into the assembly mounting seat, and the movable section of the elastic driving rod rotates and penetrates the bracket fixed in the assembly mounting seat;
[0018] A truncated cone-shaped driving block is fixedly sleeved on the outer wall of the fixed section of the elastic driving rod, and contact rods are slidably abutted on both sides of the outer wall of the truncated cone-shaped driving block, and two groups of contact rods are connected to the opposite ends thereof with a clamping block, one end of the clamping block movably penetrates the side wall of the assembly mounting seat, and a slot for inserting the clamping block is provided on the inner wall of the notch, and an elastic member for driving the contact rod to reset is provided on the outer wall of the contact rod; and,
[0019] A truncated cone shaped positioning block is rotatably sleeved on the outer wall of the fixed section of the elastic driving rod and is located on the outer side of the truncated cone shaped driving block. The outer wall of the truncated cone shaped positioning block is provided with a plurality of groups of arc grooves. The inner wall of the assembly mounting seat is provided with an elastic clamping rod perpendicular to the axis of the elastic driving rod, and an elastic arc-shaped clamping block for clamping into the arc groove is provided at one end of the elastic clamping rod facing the elastic driving rod. When the elastic arc-shaped clamping block is in the arc groove, the end of the clamping block away from the contact rod is disengaged from the slot.
[0020] A further improvement is that a rotating shaft with an axis parallel to its length direction is rotatably provided inside the assembly mounting seat, the rotating shaft is transmission-connected to the movable section end of the elastic driving rod, unwinding drums are provided at both ends of the outer wall of the rotating shaft, the two groups of unwinding drums respectively correspond to the two groups of nut connectors at the bottom of the assembly mounting seat, a cloth for covering the nut connector and adjusting the fine wire bolts is wound around the outer wall of the unwinding drum, the end of the cloth away from the unwinding drum passes through the bottom of the assembly mounting seat and is connected to a connecting plate for detachable connection with a fixed plate.
[0021] A further improvement is that a movable opening is opened at the bottom of the assembly mounting seat for the cloth to pass through, and guide rollers for guiding the cloth and scrapers for fitting with the cloth toward the anchor bolt are respectively provided on both sides of the movable opening.
[0022] A method for installing and aligning a modular electrolyzer equipment support is used to install and align the modular electrolyzer equipment support, comprising the following steps:
[0023] S1: Clean the foundation bolt holes in the foundation to be installed, prepare independent supports and arrange them in a row at the location to be installed, and then draw the vertical and horizontal center lines of the independent supports according to the positioning axis of the module electrolyzer equipment;
[0024] S2: Install and tighten the anchor bolts on each independent support;
[0025] S3: Install adjustment mechanisms on two independent supports every m in each row, adjust their elevation and levelness through a level meter and the adjustment mechanism, and grout the anchor bolts and the foundation bolt holes at the corresponding installation positions once the design requirements are met;
[0026] S4: Use the wire drawing method to align the elevation and levelness of the remaining independent supports every meter in each row. After the elevation and levelness of all independent supports meet the design requirements, grout the foundation bolt holes that have not been grouted and the corresponding anchor bolts.
[0027] S5: After the strength of all primary grouting materials reaches the design requirements, all adjustment mechanisms are removed and secondary grouting is performed between the independent support and the foundation to be installed;
[0028] S6: Remeasure the elevation and horizontality of all independent supports, and hoist and install the module electrolyzers in the installation sequence.
[0029] A further improvement is that the grouting material is epoxy resin grouting material.
[0030] Compared with the prior art, the present invention has the following beneficial effects:
[0031] 1) The modular electrolyzer equipment support of the present invention is provided with an adjustment mechanism, which can quickly and accurately adjust the elevation and levelness of the independent support, with high adjustment accuracy and fast adjustment speed, which can not only ensure the elevation and levelness accuracy of the support, but also improve work efficiency and ensure the overall installation quality of the modular electrolyzer equipment;
[0032] 2) The present invention aligns two independent supports every 10 meters in each row, and then aligns the remaining independent supports between 10 meters by the wire-pulling method, so that the alignment of the independent supports can be completed quickly, the alignment work time is shortened, and the construction period is saved. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Figure 1 This is a schematic diagram of the support structure of the module electrolyzer equipment of the present invention;
[0034] Figure 2 For the present invention Figure 1 Side view of local structure;
[0035] Figure 3 For the present invention Figure 1 A magnified schematic diagram of the structure A;
[0036] Figure 4 It is a schematic diagram of the internal structure of the assembly mounting seat of the present invention;
[0037] Figure 5 This is a distribution diagram of the support of the module electrolyzer equipment of the present invention.
[0038] In the figure: 1. Independent support; 2. Anchor bolt; 3. Fixing plate; 4. Adjusting filament bolt; 5. Nut body; 6. Connecting sleeve; 7. Assembly mounting seat; 8. Elastic driving rod; 9. Cone-shaped driving block; 10. Contact rod; 11. Clamping block; 12. Cone-shaped positioning block; 13. Arc groove; 14. Rotating shaft; 15. Cloth stop; 16. Elastic clamping rod. DETAILED DESCRIPTION
[0039] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0040] Example 1
[0041] Please see attached Figure 1 -Attached Figure 5
[0042] A modular electrolyzer equipment support comprises an independent support 1, on which anchor bolts 2 are arranged, and both ends of the bottom of the independent support 1 are provided with adjustment mechanisms for adjusting the elevation and levelness thereof; wherein:
[0043] The adjustment agencies include:
[0044] Four groups of nut connectors are respectively arranged around the bottom of the independent support 1, and the nut connectors are arranged on the adjusting thread bolts 4. The ends of the two groups of adjusting thread bolts 4 on the same side away from the nut connectors are commonly connected to a fixing plate 3;
[0045] It should be noted that the distance between the independent support 1 and the foundation to be installed is measured in the early stage, and the adjusting thread bolt 4 and the nut connecting piece of appropriate length are selected based on this;
[0046] The fixing plate 3 is selected according to the width of the independent support 1. Every two adjusting filament bolts 4 are welded at both ends of an adjusting fixing plate 3 in the length direction. This is to prevent movement when adjusting the elevation and levelness of the independent support 1, which affects the adjustment accuracy. The fixing plate 3 is in contact with the foundation to be installed, and the elevation and levelness of the independent support 1 can be adjusted by rotating the nut connector.
[0047] Preferably, the two groups of nut connectors on the same side of the present embodiment are detachably connected to the bottom of the independent support 1 through a mounting mechanism, so as to facilitate the reuse of the adjustment mechanism and reduce the use cost.
[0048] Preferably, the nut connector of this embodiment includes:
[0049] The nut body 5 is threadedly sleeved on the outer wall of the adjusting thread bolt 4; and
[0050] The connecting sleeve 6 is movably mounted on the end of the adjusting filament bolt 4 away from the fixing plate 3. One end of the connecting sleeve 6 is rotatably connected to the nut body 5 through a bearing, and the other end is hinged to the mounting mechanism. By rotating the nut body 5, the connecting sleeve 6 can drive the mounting mechanism, and the mounting mechanism drives the independent support 1 to move, thereby adjusting the elevation and horizontality of the independent support 1.
[0051] Preferably, the installation mechanism of this embodiment includes:
[0052] The assembly mounting seat 7 is hinged to the other end of the connecting sleeve 6, and the assembly mounting seat 7 is slidably arranged in the notch opened at the bottom of the independent support 1, and the outer end of the notch penetrates the side wall of the independent support 1. For example, grooves are opened on the outer walls on both sides of the length direction of the assembly mounting seat 7, and the inner walls on both sides of the length direction of the notch are integrated with convex blocks adapted to the grooves, which can not only guide the assembly mounting seat 7 when it enters the notch, but also prevent the assembly mounting seat 7 from moving downward;
[0053] as well as,
[0054] The fixing portion is disposed in the assembly mounting seat 7 and is used to fix the assembly mounting seat 7 in the slot.
[0055] Preferably, the fixing portion of this embodiment includes:
[0056] The elastic driving rod 8 is movably inserted outside the assembly mounting seat 7, and one end thereof extends into the assembly mounting seat 7. The movable section of the elastic driving rod 8 rotates and penetrates the bracket fixed in the assembly mounting seat 7. The elastic driving rod 8 is an elastic telescopic rod widely used in the art, which will not be described in detail here. The movable section of the elastic driving rod 8 is connected to the bracket through a bearing, so that when the fixed section of the elastic driving rod 8 is pulled, the fixed section can move relative to the movable section. Furthermore, a hand wheel is also provided at the outer end of the elastic driving rod 8 for manual operation by the user;
[0057] The truncated cone-shaped driving block 9 is fixedly sleeved on the outer wall of the fixed section of the elastic driving rod 8. Figure 4 It can be seen that the diameter of one end of the truncated cone driving block 9 facing the movable section of the elastic driving rod 8 is smaller than the diameter of the other end; contact rods 10 are slidably abutted on both sides of the inclined outer wall of the truncated cone driving block 9, and balls are embedded in the ends of the contact rods 10 to contact the inclined surfaces of the truncated cone driving block 9. Blocks 11 are connected to the opposite ends of the two groups of contact rods 10. One end of the block 11 movably passes through the side wall of the assembly mounting seat 7. A slot for inserting the block 11 is provided on the inner wall of the notch (not shown in the figure). An elastic member for driving the contact rod 10 to reset is provided on the outer wall of the contact rod 10. The elastic member is, for example, a spring and a vertical frame fixed in the assembly mounting seat 7 for the contact rod 10 to pass through. One end of the elastic member is connected to the vertical frame, and the other end is connected to the block 11. Of course, it is not limited to this method; and,
[0058] The truncated cone shaped positioning block 12 is rotatably sleeved on the outer wall of the fixed section of the elastic driving rod 8 through a bearing and is located outside the truncated cone shaped driving block 9. Figure 4 It can be seen that the diameter of one end of the truncated cone shaped positioning block 12 facing the movable section of the elastic driving rod 8 is larger than the diameter of the other end thereof, the outer wall of the truncated cone shaped positioning block 12 is provided with a plurality of groups of arc grooves 13, the inner wall of the assembly mounting seat 7 is provided with an elastic clamping rod 16 perpendicular to the axis of the elastic driving rod 8, and the end of the elastic clamping rod 16 facing the elastic driving rod 8 is provided with an elastic arc clamping block 11 for clamping into the arc groove 13, the elastic clamping rod 16 is an elastic telescopic rod widely used in the art, and the elastic arc clamping block 11 can be made of rubber material, etc.;
[0059] When the elastic arc-shaped clamping block 11 is in the arc-shaped groove 13 , the end of the clamping block 11 away from the contact rod 10 is separated from the groove.
[0060] When it is necessary to remove the assembly mounting seat 7 from the independent support 1, the fixed section of the elastic driving rod 8 can be pulled to drive the truncated cone driving block 9 and the truncated cone positioning block 12 to move. When the truncated cone driving block 9 moves, the clamping blocks 11 move toward the assembly mounting seat 7 under the action of the contact rod 10 and the elastic member, and at the same time, the elastic clamping rod 16 gradually moves to the truncated cone positioning block 12. When the elastic arc clamping block 11 of the elastic clamping rod 16 corresponds to the arc groove 13, the elastic clamping rod 16 drives the elastic arc clamping block 11 to enter the arc groove 13, thereby fixing the elastic driving rod 8, and the clamping block 11 is disengaged from the slot. At this time, pulling the fixed section of the elastic driving rod 8 again can make the assembly mounting seat 7 move out of the slot. During installation, press the elastic driving rod 8 to move inward.
[0061] Preferably, a rotating shaft 14 with an axis parallel to its length direction is rotatably provided in the assembly mounting seat 7 of the present embodiment, and the rotating shaft 14 is transmission-connected to the end of the movable section of the elastic driving rod 8, for example, a bevel gear set (two sets of meshing bevel gears) can be used for transmission connection, and unwinding drums are provided at both ends of the outer wall of the rotating shaft 14, and the two sets of unwinding drums correspond to the two sets of nut connectors at the bottom of the assembly mounting seat 7 respectively, and a blocking cloth 15 for shielding the nut connector and adjusting the filament bolt 4 is wound on the outer wall of the unwinding drum, and the end of the blocking cloth 15 away from the unwinding drum passes through the bottom of the assembly mounting seat 7 and is connected to a connecting plate for detachable connection with the fixing plate 3, and the blocking cloth 15 can be oilcloth, nylon cloth, etc., and the connecting plate and the fixing plate 3 can be connected by magnetic parts or snap fasteners;
[0062] The user can rotate the elastic driving rod 8 to drive the rotating shaft 14, and the rotating shaft 14 makes the unwinding drum release the blocking cloth 15. After the blocking cloth 15 is released to a preset length, it is fixed to the fixing plate 3 through the connecting plate. At this time, the blocking cloth 15 blocks the nut connector and the adjusting filament bolt 4, so as to effectively prevent the slurry from falling or splashing on the nut connector and the adjusting filament bolt 4 when grouting is performed on the anchor bolt 2 and the foundation bolt hole, affecting the stable use of the nut connector and the adjusting filament bolt 4.
[0063] Preferably, the bottom of the assembly mounting seat 7 of the present embodiment is provided with a movable opening for the blocking cloth 15 to pass through, and the bottom of the assembly mounting seat 7 is provided with guide rollers for guiding the blocking cloth 15 and scrapers for fitting with the side of the blocking cloth 15 toward the anchor bolt 2 on both sides of the movable opening. Through this arrangement, when the user retracts the blocking cloth 15 by rotating the elastic driving rod 8, the blocking cloth 15 can be cleaned, so as to extend the service life of the blocking cloth 15 and prevent slurry and the like from affecting the winding of the blocking cloth 15 on the unwinding drum.
[0064] Example 2
[0065] Please see attached Figure 5The module electrolyzer equipment is divided into 12 modules a in total, and each 6 modules a form a row. Each module electrolyzer equipment requires four independent supports 1, and the module electrolyzer equipment is vertical (as shown in the attached figure) Figure 5 ) Two connected module electrolyzer devices share two independent supports, so that the module electrolyzer is formed with three rows of independent supports 1 in the transverse direction, so a total of 36 independent supports 1 need to be installed. In the past, it was necessary to align the elevation and horizontality of each independent support 1. The alignment method of the present invention uses the method of aligning the independent support 1 in rows and sections, which can shorten the alignment time of the independent support 1;
[0066] A method for installing and aligning a modular electrolyzer equipment support is used to install and align the modular electrolyzer equipment support, comprising the following steps:
[0067] S1: Clean the foundation bolt holes in the foundation to be installed, prepare 36 independent supports 1 and arrange them in a row of 12 at the location to be installed, and then draw the vertical and horizontal center lines of the 36 independent supports 1 according to the positioning axis of the module electrolyzer equipment, which will serve as the ruler of the vertical and horizontal center lines of each independent support 1 during installation;
[0068] S2: Install and tighten the anchor bolts 2 on each independent support 1;
[0069] S3: Install adjustment mechanisms on two independent supports 1 every 10 meters in each row (mainly to perform preliminary alignment of the two independent supports 1 at both ends of three horizontal rows every 10 meters by installing adjustment mechanisms), and adjust their elevation and horizontality by using a level meter and adjustment mechanisms, until all independent supports 1 every 10 meters in a row are aligned and meet the design requirements, and then grout the anchor bolts 2 and the foundation bolt holes at the corresponding installation positions;
[0070] S4: Use the wire drawing method to align the elevation and levelness of the remaining independent supports 1 by row every 10 meters (adjust the adjustment mechanism in the independent supports 1). After the elevation and levelness of all independent supports 1 meet the design requirements, grout the foundation bolt holes that have not been grouted and the corresponding anchor bolts 2.
[0071] S5: After the strength of all primary grouting materials reaches the design requirements, all adjustment mechanisms are removed (the anchor bolts 2 and the foundation have been finally tightened in the early stage, and the removal of the adjustment mechanism does not affect the elevation and horizontality of the independent support 1), and secondary grouting is performed between the independent support 1 and the foundation to be installed;
[0072] S6: Remeasure the elevation and horizontality of all independent supports 1, and hoist and install the module electrolyzer according to the installation sequence.
[0073] Preferably, the grouting material in this embodiment is epoxy resin grouting material.
[0074] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A modular electrolyzer equipment support, comprising an independent support (1), characterized in that: The independent support (1) is provided with anchor bolts (2), and both ends of the bottom of the independent support (1) are provided with adjustment mechanisms for adjusting the elevation and horizontality thereof; wherein: The adjustment mechanism comprises: Four groups of nut connectors are respectively arranged around the bottom of the independent support (1), and the nut connectors are arranged on the adjusting thread bolts (4). The ends of the two groups of adjusting thread bolts (4) on the same side away from the nut connectors are commonly connected to a fixing plate (3).
2. The modular electrolyzer equipment support according to claim 1, characterized in that: The two groups of nut connectors on the same side are detachably connected to the bottom of the independent support (1) via a mounting mechanism.
3. The modular electrolyzer support according to claim 2, characterized in that: The nut connector comprises: A nut body (5) is threadedly sleeved on the outer wall of the adjusting filament bolt (4); and A connecting sleeve (6) is movably sleeved on one end of the adjusting filament bolt (4) away from the fixing plate (3); one end of the connecting sleeve (6) is rotatably connected to the nut body (5), and the other end is hinged to the mounting mechanism.
4. The modular electrolyzer equipment support according to claim 3, characterized in that: The mounting mechanism comprises: An assembly mounting seat (7) is hinged to the other end of the connecting sleeve (6), and the assembly mounting seat (7) is slidably arranged in a slot opened at the bottom of the independent support (1), and the outer end of the slot passes through the side wall of the independent support (1); and The fixing portion is arranged in the assembly mounting seat (7) and is used to fix the assembly mounting seat (7) in the slot.
5. The modular electrolyzer equipment support according to claim 4, characterized in that: The fixing portion comprises: An elastic driving rod (8) is movably inserted outside the assembly mounting seat (7), one end of which extends into the assembly mounting seat (7), and the movable section of the elastic driving rod (8) rotates to penetrate the bracket fixed in the assembly mounting seat (7); A truncated cone-shaped driving block (9) is fixedly sleeved on the outer wall of the fixed section of the elastic driving rod (8), and contact rods (10) are slidably abutted on both sides of the outer wall of the truncated cone-shaped driving block (9), and two groups of contact rods (10) are connected to the opposite ends thereof with a clamping block (11), one end of the clamping block (11) movably penetrates the side wall of the assembly mounting seat (7), and a slot for inserting the clamping block (11) is provided on the inner wall of the notch, and an elastic member for driving the contact rod (10) to reset is provided on the outer wall; and, A truncated cone shaped positioning block (12) is rotatably sleeved on the outer wall of the fixed section of the elastic driving rod (8) and is located outside the truncated cone shaped driving block (9). The outer wall of the truncated cone shaped positioning block (12) is provided with a plurality of groups of arc grooves (13). The inner wall of the assembly mounting seat (7) is provided with an elastic clamping rod (16) perpendicular to the axis of the elastic driving rod (8). The elastic clamping rod (16) is provided with an elastic arc clamping block (11) for clamping into the arc groove (13) at one end thereof facing the elastic driving rod (8). When the elastic arc clamping block (11) is in the arc groove (13), the end of the clamping block (11) away from the contact rod (10) is separated from the slot.
6. The modular electrolyzer equipment support according to claim 5, characterized in that: A rotating shaft (14) with an axis parallel to its length direction is rotatably provided inside the assembly mounting seat (7), and the rotating shaft (14) is drivingly connected to the end of the movable section of the elastic driving rod (8). Unwinding drums are provided at both ends of the outer wall of the rotating shaft (14), and two groups of unwinding drums correspond to two groups of nut connectors at the bottom of the assembly mounting seat (7) respectively. A blocking cloth (15) for shielding the nut connector and adjusting the filament bolt (4) is wound around the outer wall of the unwinding drum, and the end of the blocking cloth (15) away from the unwinding drum passes through the bottom of the assembly mounting seat (7) and is connected to a connecting plate for detachable connection with the fixing plate (3).
7. The modular electrolyzer equipment support according to claim 6, characterized in that: The bottom of the assembly mounting seat (7) is provided with a movable opening for the retaining cloth (15) to pass through, and the bottom of the assembly mounting seat (7) is provided with guide rollers for guiding the retaining cloth (15) and scrapers for fitting with the retaining cloth (15) on the side facing the anchor bolt (2) on both sides of the movable opening.
8. A method for installing and aligning a modular electrolyzer equipment support, used for installing and aligning the modular electrolyzer equipment support according to any one of claims 1 to 7, characterized in that: The following steps are involved: S1: Clean the foundation bolt holes in the foundation to be installed, prepare 36 independent supports (1) and arrange them in rows of 12 at the location to be installed, and then draw the vertical and horizontal center lines of the independent supports (1) according to the positioning axis of the module electrolyzer equipment; S2: Install and tighten the anchor bolts (2) on each independent support (1); S3: Install adjustment mechanisms on two independent supports (1) at intervals of 10m in each row, adjust their elevation and horizontality using a spirit level and the adjustment mechanism, and once the design requirements are met, grout the foundation bolts (2) and the foundation bolt holes at the corresponding installation positions; S4: Use the wire drawing method to align the elevation and levelness of the remaining independent supports (1) every 10 meters in a row. After the elevation and levelness of all independent supports (1) meet the design requirements, grout the foundation bolt holes that have not been grouted and the corresponding anchor bolts (2). S5: After the strength of all primary grouting materials reaches the design requirements, all adjustment mechanisms are removed, and secondary grouting is performed between the independent support (1) and the foundation to be installed; S6: Re-measure the elevation and levelness of all independent supports (1), and hoist and install the module electrolyzers in the installation sequence.
9. The installation and alignment method according to claim 8, characterized in that: The grouting material is epoxy resin grouting material.