Pressure chamber assembling equipment of pressure transmitter
By using pressure chamber assembly equipment for pressure transmitters, and employing positioning components, fixing clamps, and adjustment mechanisms, the problems of accuracy and stability during pressure transmitter installation are solved, achieving efficient and stable fluid pressure measurement.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-22
- Publication Date
- 2026-04-07
AI Technical Summary
During the installation of pressure transmitters, how can we ensure the accuracy and stability of the installation, reduce human error, and improve the stability and reliability of fluid pressure measurement results?
A pressure chamber assembly device for a pressure transmitter is provided, including a positioning component, a fixing clamp, and an adjustment mechanism. It automatically guides the operator to perform the correct installation steps, ensures a perfect match between the pressure chamber and the measuring point, and achieves stable installation through a drive mechanism and an anti-seize mechanism.
It simplifies the installation process, reduces human error, improves the accuracy and stability of measurements, extends the service life of pressure transmitters, and increases installation efficiency.
Smart Images

Figure CN224088355U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the assembly technical field of pressure transmitter, especially relates to a pressure chamber assembly equipment of pressure transmitter. BACKGROUND
[0002] In industrial automation and monitoring systems, pressure transmitters are widely used devices for measuring fluid pressure and converting it into standard signal output. Pressure transmitters are important devices widely used in industrial production, automation control and other fields, and their main function is to accurately measure the pressure of fluids (including gas and liquid) and convert the measured pressure signal into standard signal (such as electrical signal) output for subsequent monitoring, control and data processing. However, in the actual application process, installing pressure transmitters, especially installing pressure chambers, often faces a series of challenges, including ensuring correct installation position and stability, and reducing human error during installation.
[0003] Firstly, the installation position of the pressure transmitter will directly affect its measurement accuracy and reliability. For example, in some specific application scenarios, factors such as fluid flow direction, pressure distribution and temperature change need to be considered to determine the optimal installation position. If the installation position is not properly selected, it may lead to increased measurement error, or even fail to accurately reflect the actual pressure of the fluid.
[0004] Secondly, the pressure chamber needs to be firmly installed at the measurement point to ensure stability when the fluid pressure changes. Otherwise, the pressure chamber may loosen or shift, affecting the stability and reliability of the measurement results.
[0005] In addition, human error during installation is also a factor affecting pressure measurement results. Installing a pressure transmitter needs to be strictly in accordance with the operating procedures, and any negligence or error may lead to deviation of the measurement results. For example, when connecting the pipeline, if the sealing is not tight, it may cause leakage, affecting the accuracy of pressure measurement; when adjusting parameters, if the settings are not proper, the transmitter may not work normally.
[0006] In summary, when installing a pressure transmitter, especially the pressure chamber, how to ensure the accuracy and stability of the installation, reduce human error to improve the stability and reliability of the fluid pressure measurement results is a problem that needs to be solved urgently.
[0007] The description here only provides background information related to the utility model and does not necessarily constitute prior art. CONTENT OF THE UTILITY MODEL
[0008] The utility model discloses a purpose lies in providing a kind of equipment that can accurate positioning, and quickly, firm and stable equipment of the pressure chamber of pressure transmitter assembly, the equipment can simplify installation process and ensure the accuracy and stability of installation while reducing human error, to improve the stability and reliability of fluid pressure measurement result.
[0009] One main advantage of the utility model lies in providing a kind of pressure chamber assembly equipment of pressure transmitter, wherein the equipment can simplify installation process and ensure the accuracy and stability of installation.
[0010] Another advantage of the utility model lies in providing a kind of pressure chamber assembly equipment of pressure transmitter, wherein the assembly equipment can automatically guide operator to carry out correct installation step during installation process, greatly reduces the error caused by human negligence or unfamiliarity with operation procedure.
[0011] Another advantage of the utility model lies in providing a kind of pressure chamber assembly equipment of pressure transmitter, wherein the assembly equipment can accurately position the installation position of pressure chamber, ensure that it is perfectly matched with measuring point, to improve the accuracy of measurement.
[0012] Another advantage of the utility model lies in providing a kind of pressure chamber assembly equipment of pressure transmitter, wherein the assembly equipment includes positioning assembly, fixed clamp and adjusting mechanism, which can ensure that pressure chamber is firm and reliable after installation.
[0013] Another advantage of the utility model lies in providing a kind of pressure chamber assembly equipment of pressure transmitter, wherein the pressure transmitter made by the assembly method not only guarantees the stability and reliability of measurement result, but also prolongs the service life of pressure transmitter.
[0014] Another advantage of the utility model lies in providing a kind of pressure chamber assembly equipment of pressure transmitter, wherein the assembly equipment improves the installation efficiency of pressure transmitter, and reduces human error, ensures the accuracy of installation.
[0015] According to one aspect of the utility model, the pressure chamber assembly equipment of pressure transmitter of the utility model, which can achieve the foregoing objects and other objects and advantages, includes:
[0016] Installation equipment main part;
[0017] Positioning assembly, wherein the sensor of pressure transmitter, pressure chamber and mounting bolt are placed in the positioning assembly, and the positioning assembly is used to determine the installation position and direction of the pressure transmitter;
[0018] A fixed clamp with an adjustable position space, a workpiece to be assembled is positioned in the adjustable position space by the positioning assembly, the fixed clamp is pushed and abuts against two sides of the workpiece, thereby completing the relative fixation of the two pressure chambers; and
[0019] An adjusting mechanism, wherein the positioning assembly, the fixed clamp and the adjusting mechanism are arranged on the installation equipment body, the adjusting mechanism is arranged above the fixed clamp, and the height is adjusted according to different ranges of the sensor.
[0020] According to an embodiment of the utility model, the pressure chamber equipment further includes a driving mechanism, the driving mechanism is connected with the fixed clamp, the driving mechanism is arranged on the installation equipment body, the driving mechanism can drive the fixed clamp to move, the fixed clamp abuts against the workpiece to be processed, and the relative position fixation of the two pressure chambers is completed.
[0021] According to an embodiment of the utility model, the pressure chamber equipment further includes an anti-seizing mechanism, the anti-seizing mechanism is arranged below the positioning assembly, and is used for preventing the positioning assembly from being seized with the mounting bolt due to bolt assembly torque.
[0022] According to an embodiment of the utility model, the driving mechanism includes a first driving mechanism and a second driving mechanism, wherein the first driving mechanism is connected with the fixed clamp, the second driving mechanism is connected with the anti-seizing mechanism, the first driving mechanism can drive the fixed clamp to move, and then the workpiece is fixed by the fixed clamp; the second driving mechanism can drive the anti-seizing mechanism to move, and anti-seizing is realized.
[0023] According to an embodiment of the utility model, the first driving mechanism and the second driving mechanism are air cylinders.
[0024] According to an embodiment of the utility model, the installation equipment body includes a workbench, a support and a base, wherein the support is fixedly connected between the workbench and the base, the base is located below the support, the workbench provides support for the positioning assembly, the fixed clamp, the adjusting mechanism and the anti-seizing mechanism, and the installation equipment body further includes a first support plate and a second support plate, wherein the first support plate and the second support plate are arranged above the workbench, the first support plate and the second support plate are oppositely arranged, and the fixed clamp is arranged on the opposite side of the first support plate and the second support plate.
[0025] According to one embodiment of the present invention, the fixing clamp includes a left baffle, a right baffle, and a push plate, wherein the left baffle is connected to the first support plate, and the right baffle is connected to the second support plate, that is, the left baffle is fixed to the inner side of the first support plate, the right baffle is fixed to the inner side of the second support plate, the push plate is interactively disposed between the left baffle and the right baffle, and the push plate is connected to the second driving mechanism, which can drive the push plate to move between the left baffle and the right baffle.
[0026] According to one embodiment of the present invention, the anti-jamming mechanism is disposed between the first driving mechanism and the positioning component, wherein the anti-jamming mechanism further includes a tightening head, a bolt sleeve, and a floating seat. The tightening head is a tapered connector used to connect the floating seat and the first driving mechanism. The bolt sleeve is disposed on the positioning component and is used to fix the bolt. The floating seat is connected to the bolt sleeve through the corresponding through hole of the worktable, thereby forming the anti-jamming mechanism.
[0027] According to one embodiment of the present invention, the positioning assembly includes a positioning crossbar and a positioning shaft, wherein the positioning crossbar and the positioning shaft are disposed between the left baffle and the push plate of the fixing fixture, the positioning shaft passes vertically through the positioning crossbar, the positioning crossbar can move up and down along the positioning crossbar, and a space-adjustable workpiece positioning chamber is formed between the positioning crossbar and the positioning shaft. The workpiece to be assembled is placed in the workpiece positioning chamber of the positioning assembly, and the positioning crossbar can move up and down along the axial direction of the positioning shaft to position the workpiece.
[0028] According to one embodiment of the present invention, the adjustment mechanism is disposed on the first support plate and connected to the positioning crossbar of the positioning assembly, wherein the adjustment mechanism is detachable and can be adjusted in height according to different ranges.
[0029] According to another aspect of this application, this application further provides an assembly method for a pressure chamber assembly device for a pressure transmitter, wherein the assembly method includes the following steps:
[0030] (a) The workpiece to be processed is positioned in the positioning assembly, wherein the workpiece includes a sensor, two pressure chambers and mounting bolts;
[0031] (b) The first drive mechanism pushes the anti-seize mechanism upward to prevent the positioning component from seizing with the mounting bolt due to bolt assembly torque; and the second drive mechanism pushes the push plate to abut against the two pressure chambers of the workpiece to be processed; and
[0032] (c) A pressure adjustment mechanism is used to adjust the height according to the different ranges of the sensor and adjust the torque according to the process, and to install the pressure chamber to the sensor.
[0033] According to one embodiment of the present invention, the assembly method further includes the following steps:
[0034] After installation, release the adjustment mechanism and retract the first and second drive mechanisms to release the lock between the workpiece and the equipment; and
[0035] Remove the workpiece and complete the assembly of the pressure transmitter.
[0036] The further objectives and advantages of this invention will become fully apparent from the following description and accompanying drawings.
[0037] These and other objects, features and advantages of this invention will be fully apparent from the following detailed description and accompanying drawings. Attached Figure Description
[0038] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and embodiments. In the drawings, unless otherwise specified, the same reference numerals are used to denote the same parts. Wherein:
[0039] Figure 1 This is a structural schematic diagram of a pressure chamber assembly device for a pressure transmitter according to a first preferred embodiment of the present invention.
[0040] Figure 2 This is a schematic diagram of the assembly method steps for the pressure chamber assembly equipment of the pressure transmitter according to the above-described preferred embodiment of the present invention. Detailed Implementation
[0041] Those skilled in the art should understand that, in the disclosure of this utility model, the terms "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on this utility model.
[0042] It is understood that the term "a" should be understood as "at least one" or "one or more", that is, in one embodiment, the number of an element can be one, while in another embodiment, the number of the element can be multiple, and the term "a" should not be understood as a limitation on the number.
[0043] Refer to the accompanying drawings in this application specification. Figure 1 and Figure 2 As shown, a pressure chamber assembly apparatus for a pressure transmitter according to a first preferred embodiment of this application is described below. The pressure chamber assembly apparatus is hereinafter referred to as the pressure chamber assembly apparatus, which is used to assemble the workpiece of the pressure transmitter to be installed, wherein the workpiece of the pressure transmitter to be installed includes a sensor and two pressure chambers, and the pressure chamber assembly apparatus assembles the sensor and the two pressure chambers into the pressure transmitter.
[0044] The pressure chamber assembly equipment includes an installation equipment body 10, a positioning component 20, a fixing clamp 30, and an adjustment mechanism 40 disposed on the installation equipment body 10. The positioning component 20 is designed according to the specifications and dimensions of the pressure transmitter and is used to determine the installation position and orientation of the pressure transmitter to be installed. The fixing clamp 30 is used to securely fix the pressure chamber of the pressure transmitter to prevent movement or twisting during installation. The adjustment mechanism 40 can be adjusted according to the requirements of the installation site to ensure the accuracy and stability of the installation.
[0045] The workpiece and mounting bolts of the pressure transmitter are placed in the positioning assembly 20 and positioned by the positioning assembly 20. The fixing clamp 30 is driven to hold the workpiece to be assembled, thus fixing the relative positions of the two pressure chambers. The fixing clamp 30 has an adjustable position space. The workpiece to be assembled is positioned in the adjustable position space by the positioning assembly 20. The fixing clamp 30 is pushed and abuts against both sides of the workpiece, thereby fixing the two pressure chambers relative to each other.
[0046] The adjustment mechanism 40 is positioned above the fixed fixture 30. After the workpiece to be processed is fixed by the fixed fixture 30, the workpiece height varies depending on the sensor's measurement range. The adjustment mechanism 40 can adjust the height according to the different measurement ranges of the sensors. The torque is adjusted according to the process requirements, and the pressure chamber is installed and fixed.
[0047] The pressure chamber equipment further includes a drive mechanism 50, which is connected to the fixed clamp 30. The drive mechanism 50 is disposed on the main body 10 of the installation equipment. The drive mechanism 50 can drive the fixed clamp 30 to move, and the fixed clamp 30 holds the workpiece to be processed to complete the relative position fixation of the two pressure chambers.
[0048] The pressure chamber equipment further includes an anti-seize mechanism 60, which is disposed below the positioning component 20 to prevent the positioning component 20 from seizing with the mounting bolts due to bolt assembly torque.
[0049] The driving mechanism 50 includes a first driving mechanism 51 and a second driving mechanism 52, wherein the first driving mechanism 51 is connected to the fixing clamp 30, and the second driving mechanism 52 is connected to the anti-jamming mechanism 60. The first driving mechanism 51 can drive the fixing clamp 30 to move, thereby fixing the workpiece by the fixing clamp 30; the second driving mechanism 52 can drive the anti-jamming mechanism 60 to move, thereby achieving anti-jamming.
[0050] The first driving mechanism 51 is disposed on one side of the fixed clamp 30, and the second driving mechanism 52 is disposed below the anti-jamming mechanism 60. The first driving mechanism 51 pushes the fixed clamp 30, and the fixed clamp 30 abuts against the workpiece in the horizontal direction, thereby completing the relative position fixation of the two pressure chambers.
[0051] The second drive mechanism 52 is located below the anti-jamming mechanism 60. During assembly, it pushes the anti-jamming mechanism 60 upward to move it upward. After assembly, the second drive mechanism 52 pushes downward and causes the anti-jamming mechanism to retract downward, locking the workpiece and the equipment.
[0052] As an example, in a preferred embodiment of this application, the first drive mechanism 51 and the second drive mechanism 52 are cylinders. It is understood that the specific types of the first drive mechanism 51 and the second drive mechanism 52 are merely examples and not limitations. In other alternative embodiments of this application, the first drive mechanism 51 and the second drive mechanism 52 may be implemented as motors or hydraulic devices, and this application does not impose any limitations on this.
[0053] like Figure 1 As shown, the main body 10 of the installation equipment includes a workbench 11, a bracket 12, and a base 13. The bracket 12 is fixedly connected between the workbench 11 and the base 13, and the base 13 is located below the bracket 12. The workbench 11 provides support for the positioning component 20, the fixing clamp 30, the adjustment mechanism 40, and the anti-jamming mechanism 60, that is, the positioning component 20, the fixing clamp 30, the adjustment mechanism 40, and the anti-jamming mechanism 60 are arranged on the workbench 11. The bracket 12 is located between the workbench 11 and the base 13 and is a structural strength component, ensuring the stable support of the workbench 11.
[0054] The base 13 is located at the bottom of the workbench 11 and the support 12, which facilitates the installation of the equipment on the workbench 11.
[0055] The main body 10 of the installation equipment further includes a first support plate 14 and a second support plate 15, wherein the first support plate 14 and the second support plate 15 are disposed above the workbench 11, the first support plate 14 and the second support plate 15 are disposed opposite to each other, and the fixing clamp 30 is disposed on the opposite side of the first support plate 14 and the second support plate 15.
[0056] In a specific example of this application, a fixing clamp 30 is disposed on one side of the first support plate 14, and a second driving mechanism 52 is disposed on the second support plate 15 and connected to the fixing clamp 30. The fixing clamp 30 is located between the first support plate 14 and the second support plate 15 and is driven by the second driving mechanism 52 to open and close, thereby fixing the workpiece.
[0057] The fixing fixture 30 includes a left baffle 31, a right baffle 32, and a push plate 33. The left baffle 31 is connected to the first support plate 14, and the right baffle 32 is connected to the second support plate 15. Specifically, the left baffle 31 is fixed to the inner side of the first support plate 14, and the right baffle 32 is fixed to the inner side of the second support plate 15. The push plate 33 is interactively disposed between the left baffle 31 and the right baffle 32, and is connected to the second driving mechanism 52. The second driving mechanism 52 can drive the push plate 33 to move between the left baffle 31 and the right baffle 32. It is understood that in this preferred embodiment of the present application, the left baffle 31 serves as a rigid support surface, providing the left side for the workpiece, and the right baffle 32 provides stable support for the right side of the second driving mechanism 52 for fixed positioning.
[0058] The positioning assembly 20 includes a positioning crossbar 21 and a positioning shaft 22, wherein the positioning crossbar 21 and the positioning shaft 22 are disposed between the left baffle 31 and the push plate 33 of the fixing fixture 30. The positioning shaft 22 passes vertically through the positioning crossbar 21, and the positioning crossbar 21 can move up and down along the positioning crossbar 21, forming a spatially adjustable workpiece positioning chamber between the positioning crossbar 21 and the positioning shaft 22. The workpiece to be assembled is placed in the workpiece positioning chamber of the positioning assembly 20, and the positioning crossbar 21 can move up and down along the axial direction of the positioning shaft 22 to position the workpiece.
[0059] In this preferred embodiment of the present application, the positioning shaft 22 is implemented as a bolt sleeve through which the bolt passes. The positioning shaft 22 is similar to a sleeve for fixing the bolt.
[0060] The positioning shaft 22 of the positioning component 20 is disposed on the worktable 11 of the main body of the installation equipment 10.
[0061] The adjustment mechanism 40 is disposed on the first support plate 14 and connected to the positioning crossbar 21 of the positioning assembly 20. The adjustment mechanism 40 is detachable and can be adjusted in height according to different ranges. The adjustment mechanism 40 can provide downward pressure to the workpiece to be processed, thereby ensuring installation quality.
[0062] In a specific example of this application, the adjustment mechanism 40 is implemented as a lever structure, one end of which is connected to the positioning crossbar 21 of the fixing component 20, and the other end is connected to the first support plate 14. The even-numbered downward adjustment mechanism 40 provides downward pressure to the positioning crossbar 21 to ensure the installation quality of the workpiece.
[0063] The anti-jamming mechanism 60 is disposed between the first drive mechanism 51 and the positioning component 20. The anti-jamming mechanism 60 further includes a tightening head 61, a bolt sleeve 62, and a floating seat 63. The tightening head 61 is a tapered connector used to connect the floating seat 63 and the first drive mechanism 51. The bolt sleeve 62 is disposed on the positioning component 20 and is used to fix the bolt. The floating seat 63 is connected to the bolt sleeve 62 through the corresponding through hole of the worktable 11, thereby forming the anti-jamming mechanism.
[0064] It is worth mentioning that the anti-seize mechanism 60 can prevent the positioning component from seizing with the mounting bolt due to bolt assembly torque. During assembly, the first drive mechanism 51 drives the anti-seize mechanism 60 to move upward, wherein the anti-seize mechanism 60 provides preload pressure to the workpiece to be processed. After assembly is completed, the first drive mechanism 51 retracts and drives the anti-seize mechanism 60 to retract downward to prevent the positioning component from seizing with the mounting bolt.
[0065] The assembly and usage method of the pressure chamber assembly equipment is as follows:
[0066] The workpiece (i.e., the sensor, the two pressure chambers, and the mounting bolts) is positioned in the positioning assembly 20.
[0067] The first drive mechanism 51 and the second drive mechanism 52 are activated, wherein the first drive mechanism 51 pushes the anti-jamming mechanism upward, and the second drive mechanism 52 pushes the push plate 33, and the push plate 33 abuts against the pressure chamber on one side of the workpiece; the workpiece is pushed, and the pressure chamber on the other side abuts against the left baffle 31, thereby completing the relative position fixation of the two pressure chambers;
[0068] According to the required range of the workpiece, press down and tighten the adjustment mechanism 40, and adjust the torque according to the process to install the pressure chamber;
[0069] Release the adjustment mechanism 40 and retract the first drive mechanism 51 and the second drive mechanism 52, wherein the first drive mechanism 51 drives the anti-jamming mechanism 60 to retract downwards, and the corresponding second adjustment mechanism 52 drives the push plate 33 to retract, thereby contacting the locking between the workpiece and the equipment.
[0070] According to another aspect of the application, this application further provides a method for assembling the pressure chamber of a pressure transmitter, wherein the assembly method includes the following steps:
[0071] (a) The workpiece to be processed is positioned in the positioning assembly 20, wherein the workpiece includes a sensor, two pressure chambers and mounting bolts;
[0072] (b) The first drive mechanism 51 pushes the anti-seize mechanism 60 upward to prevent the positioning component from seizing with the mounting bolt due to bolt assembly torque; and the second drive mechanism 52 pushes the push plate 33 to abut against the two pressure chambers of the workpiece to be processed; and
[0073] (c) The pressure adjustment mechanism 40 adjusts the height according to the different ranges of the sensor and adjusts the torque according to the process, and installs the pressure chamber to the sensor.
[0074] In the assembly method of this preferred embodiment of the present application, the assembly method further includes the following steps:
[0075] After installation, release the adjustment mechanism 40 and retract the first drive mechanism 51 and the second drive mechanism 52 to release the lock between the workpiece and the equipment; and
[0076] Remove the workpiece and complete the assembly of the pressure transmitter.
[0077] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the accompanying drawings are merely examples and do not limit the present invention. The purpose of the present invention has been fully and effectively achieved. The functions and structural principles of the present invention have been shown and explained in the embodiments. Without departing from the stated principles, the implementation of the present invention may have any variations or modifications.
[0078] The technical scope of this utility model is not limited to the content described above. Those skilled in the art can make various modifications and variations to the above embodiments without departing from the technical concept of this utility model, and all such modifications and variations fall within the protection scope of this utility model.
Claims
1. Pressure chamber assembly equipment for a pressure transmitter, characterized in that, The pressure chamber assembly equipment includes: Install the main body of the equipment; A positioning assembly, wherein the sensor, pressure chamber, and mounting bolts of a pressure transmitter are placed in the positioning assembly, the positioning assembly being used to determine the installation position and orientation of the pressure transmitter; A fixing fixture having an adjustable position space, wherein the workpiece to be assembled is positioned within the adjustable position space by the positioning component, and the fixing fixture is pushed and abutted against both sides of the workpiece, thereby completing the relative fixation of the two pressure chambers; and An adjustment mechanism is provided, wherein the positioning component, the fixing clamp, and the adjustment mechanism are disposed on the main body of the installation equipment, and the adjustment mechanism is disposed above the fixing clamp to adjust the height according to different ranges of the sensor.
2. The pressure chamber assembly equipment according to claim 1, wherein the pressure chamber assembly equipment further includes a drive mechanism, the drive mechanism is connected to the fixed clamp, the drive mechanism is disposed on the main body of the installation equipment, the drive mechanism can drive the fixed clamp to move, the fixed clamp holds the workpiece to be processed, and completes the relative position fixation of the two pressure chambers.
3. The pressure chamber assembly equipment according to claim 2, wherein the pressure chamber assembly equipment further includes an anti-seize mechanism, the anti-seize mechanism being disposed below the positioning component to prevent the positioning component from seizing with the mounting bolt due to bolt assembly torque.
4. The pressure chamber assembly equipment according to claim 3, wherein the driving mechanism includes a first driving mechanism and a second driving mechanism, wherein the first driving mechanism is connected to the fixed clamp, and the second driving mechanism is connected to the anti-seize mechanism, wherein the first driving mechanism can drive the fixed clamp to move, thereby fixing the workpiece by the fixed clamp; and the second driving mechanism can drive the anti-seize mechanism to move, thereby achieving anti-seize.
5. The pressure chamber assembly equipment according to claim 4, wherein the first drive mechanism and the second drive mechanism are cylinders.
6. The pressure chamber assembly equipment according to claim 4, wherein the main body of the installation equipment includes a workbench, a bracket, and a base, wherein the bracket is fixedly connected between the workbench and the base, the base is located below the bracket, the workbench provides support for the positioning component, the fixing clamp, the adjustment mechanism, and the anti-seize mechanism, and the main body of the installation equipment further includes a first support plate and a second support plate, wherein the first support plate and the second support plate are disposed above the workbench, the first support plate and the second support plate are disposed opposite to each other, and the fixing clamp is disposed on the opposite side of the first support plate and the second support plate.
7. The pressure chamber assembly equipment according to claim 6, wherein the fixing fixture includes a left baffle, a right baffle, and a push plate, wherein the left baffle is connected to the first support plate, and the right baffle is connected to the second support plate, that is, the left baffle is fixed on the inner side of the first support plate, the right baffle is fixed on the inner side of the second support plate, the push plate is interactively disposed between the left baffle and the right baffle, and the push plate is connected to the second driving mechanism, the second driving mechanism being able to drive the push plate to move between the left baffle and the right baffle.
8. The pressure chamber assembly equipment according to claim 7, wherein the anti-seize mechanism is disposed between the first drive mechanism and the positioning component, wherein the anti-seize mechanism further includes a tightening head, a bolt sleeve, and a floating seat, the tightening head being a tapered connector used to connect the floating seat and the first drive mechanism, the bolt sleeve being disposed on the positioning component for fixing bolts, and the floating seat being connected to the bolt sleeve through a corresponding through hole in the worktable, thereby forming the anti-seize mechanism.
9. The pressure chamber assembly equipment according to claim 7, wherein the positioning component includes a positioning crossbar and a positioning shaft, wherein the positioning crossbar and the positioning shaft are disposed between the left baffle and the push plate of the fixed clamp, the positioning shaft passes vertically through the positioning crossbar, the positioning crossbar can move up and down along the positioning crossbar, and a space-adjustable workpiece positioning chamber is formed between the positioning crossbar and the positioning shaft, the workpiece to be assembled is placed in the workpiece positioning chamber of the positioning component, and the positioning crossbar can move up and down along the axial direction of the positioning shaft to position the workpiece.
10. The pressure chamber assembly equipment according to claim 9, wherein the adjustment mechanism is disposed on the first support plate and connected to the positioning crossbar of the positioning assembly, wherein the adjustment mechanism is detachable and can be height adjusted according to different ranges.