High-temperature-resistant detection device for cabin body of prefabricated cabin
By introducing a mechanism that facilitates material removal, fixing and sealing in the high-temperature resistance testing device for the prefabricated cabin body, the problems of difficulty in removing items, deformation and insufficient sealing after high-temperature testing are solved, and the testing efficiency and accuracy are improved.
Patent Information
- Application Number
- CN202422702421.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-11-06
AI Technical Summary
The existing prefabricated cabin body high temperature resistance testing device cannot quickly remove items after high temperature testing, affecting efficiency. The deformation of the items causes movement, affecting the test results, and insufficient sealing leads to detection deviations.
The design is convenient for taking out the material, fixing mechanism and sealing mechanism, including the placing plate, moving rod, fixing rod, fixing block, rack, gear and other components to achieve quick taking out, positioning and fixing and improve sealing.
It can realize the rapid removal of objects after high temperature testing, prevent deformation and movement, and improve the accuracy and efficiency of testing.
Smart Images

Figure CN223377239U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of prefabricated cabin bodies, in particular to a high-temperature resistance detection device for prefabricated cabin bodies. Background Art
[0002] A prefabricated cabin is a cabin with specific functions that is prefabricated in a factory. It integrates multiple functions such as electrical equipment, control systems, and protective devices to form a closed, intelligent power unit. Containerized prefabricated cabins, in particular, are widely used in modern industrial fields. When a prefabricated cabin is put into use, it is tested for high temperature resistance. To ensure its safety and stability under extreme high temperature conditions, the cabin shell is generally tested for high temperature resistance. There are many different high temperature resistance testing devices for prefabricated cabins currently available on the market, but there are still some shortcomings.
[0003] The existing prefabricated cabin body high temperature resistance detection device detects the detection items by setting the advantages of efficient heating and fast adjustment time. Generally, the items will have a certain temperature after the high temperature detection, and they cannot be taken out immediately, which will affect the efficiency of subsequent detection of the items. At the same time, the items will be deformed during the high temperature detection. If they are not fixed, the items will move, which will affect the detection results. Secondly, the high temperature detection must ensure a certain degree of sealing, otherwise there will be problems such as deviation in the detection of the items. For example, the Chinese utility model patent with the authorization announcement number CN207866676U discloses a high temperature resistance detection device, including: a motor cover, a box body, a box door, an inspection room, casters, and a control surface. board; a door is provided on one side of the box body, and the door is connected to the box body in a folding manner; a hinge is provided on one side of the box body and one side of the door, and the hinge is connected to the box body and the door by bolts; a control panel is provided on the upper outer side of the door, and the control panel is connected to the door by an embedded manner; an observation window is provided in the middle of the door, and the observation window is connected to the door by an inlay manner; a handle is provided on the outer wall on the other side of the door, and the handle is connected to the door by bolts; the utility model has the advantages of efficient heating, fast temperature adjustment, short temperature adjustment time, short detection time and improved detection efficiency through the above structural improvements, thereby effectively solving the problems and shortcomings existing in the existing device. However, this device detects the test items by setting the advantages of high-efficiency heating and fast adjustment time. The items generally have a certain temperature after high-temperature testing and cannot be taken out immediately, which will affect the efficiency of subsequent inspections of the items. At the same time, the items will be deformed during high-temperature testing. If they are not fixed, the items will move, which will affect the test results. Secondly, high-temperature testing must ensure a certain degree of sealing, otherwise there will be deviations in the detection of the items. Therefore, we propose a high-temperature resistant detection device for a prefabricated cabin to solve the above problems. Utility Model Content
[0004] The purpose of the present utility model is to provide a high-temperature resistance detection device for a prefabricated cabin body, so as to solve the problem of the current high-temperature resistance detection device for a prefabricated cabin body proposed in the above background technology. The detection items are detected by setting the advantages of efficient heating and fast adjustment time. Generally, the items will have a certain temperature after the high-temperature detection, and they cannot be taken out immediately, which will affect the efficiency of subsequent detection of the items. At the same time, the items will be deformed during the high-temperature detection. If they are not fixed, the items will move, which will affect the detection results. Secondly, the high-temperature detection must ensure a certain degree of sealing, otherwise there will be deviations in the detection of the items.
[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a high-temperature resistance detection device for a prefabricated cabin body, comprising:
[0006] An operating table, the operating table being directly placed on the ground;
[0007] Also includes:
[0008] The operating table is provided with a convenient material taking mechanism inside, wherein the convenient material taking mechanism includes a placing plate, a moving rod, a fixed rod, a fixed block, a cylindrical pin, a rotating rod and a motor. The operating table is provided with a placing plate inside, and a moving rod is installed below the middle of the placing plate, and a fixed rod is slidably provided inside the moving rod, and the lower part of the fixed rod is fixedly connected to the lower part of the inner part of the operating table;
[0009] A fixing mechanism is provided on the upper right side of the operating table, wherein the fixing mechanism includes a movable plate, a rack, a fixed slide and a gear. A fixed slide is provided on the upper right side of the operating table, and the right side of the fixed slide is fixedly connected to the inner right side of the detection box, and a rack is slidably installed inside the fixed slide.
[0010] Preferably, a detection box is fixedly installed above the operating table, and a controller is installed on the front right side of the detection box. Electric heating wires are arranged around the inside of the detection box, and air outlets are arranged inside the detection box.
[0011] Preferably, a cabin shell is placed above the placement plate, and a fixing plate is tightly fitted on the left side of the cabin shell, and the fixing plate is fixedly installed on the left side above the placement plate.
[0012] Preferably, a fixing block is fixedly provided on the outer side of the movable rod, and cylindrical pins are symmetrically installed on the inner side of the fixing block.
[0013] Preferably, a rotating rod is fixedly connected to the outer side of the cylindrical pin, a motor is connected to the rear right side of the rotating rod, and a support frame is fixedly connected to the right side of the motor.
[0014] Preferably, a gear is meshedly connected above the rack, a motor is connected to the rear middle portion of the gear, and a movable plate is installed on the left side of the rack.
[0015] Preferably, sealing strips are symmetrically arranged on the left and right sides of the operating table, and an electric telescopic rod is installed below the sealing strips.
[0016] Preferably, fixing frames are symmetrically fixedly installed on the left and right sides of the interior of the operating table, and electric fans are arranged at equal distances on the inner sides of the fixing frames.
[0017] Compared with the prior art, the beneficial effects of the present invention are as follows: the prefabricated cabin body high temperature resistance detection device is provided with a convenient material taking mechanism to facilitate the removal of the detection object to prevent burns; at the same time, a fixing mechanism is provided to position and fix the detection object to prevent the object from moving due to deformation; and a sealing mechanism is provided to ensure the sealing of the detection object and improve the accuracy of the detection of the object;
[0018] 1. It is equipped with a test box, a controller, a heating wire and an air outlet. The heating wire is arranged around the inside of the test box, and the controller installed outside the test box can adjust the temperature of the heating wire. At the same time, the air outlet is set on the inside of the test box to accelerate the temperature of the heating wire into the interior of the test box.
[0019] 2. A placing plate, a moving rod, a fixing rod and a fixing block are provided. The cabin shell is placed above the placing plate, and the moving rod is fixedly connected to the lower middle part of the placing plate. A fixing rod is provided inside the moving rod. In addition, a fixing block is installed on the outside of the moving rod, and a cylindrical pin is provided inside the fixed block. A rotating rod is installed on the outside of the cylindrical pin. The motor connected to the rear right side of the rotating rod is turned on, and the motor is connected to the support frame, which fixes and supports it. When the motor is running, the rotating rod will rotate, and the left side of the rotating rod will push the fixed block to drive the moving rod to move up and down on the outside of the fixed rod. That is, when the moving rod moves upward, it will push the placing plate to drive the cabin shell above to move upward, so that the cabin shell can be moved upward and sent to the inside of the inspection box for inspection;
[0020] 3. A movable plate, a rack, a fixed chute and a gear are provided. A fixed plate is provided on the upper left of the placement plate to limit the left side of the capsule shell. When the capsule shell enters the interior of the detection box, the motor connected to the rear side of the middle part of the gear is turned on. The motor will cause the gear to rotate, that is, the gear will push the meshing rack below to move inside the fixed chute. Since a movable plate is installed on the left end of the rack, when the rack moves to the left, the movable plate on the left end of the rack will also move to the left and will fit firmly with the right side of the capsule shell. In this way, the fixed plate and the movable plate will fix the capsule shell.
[0021] 4. Set up an operating table, a fixing frame and an electric fan. The fixing frames are symmetrically installed on the left and right sides of the operating table, and electric fans are set at equal distances inside the fixing frames. When the cabin shell is inspected and moved out of the inspection box, it will be located inside the operating table. That is, the electric fan will be turned on to blow air to cool the cabin shell, avoiding burns when subsequent workers take the cabin shell;
[0022] 5. A sealing strip and an electric telescopic rod are provided. The sealing strips are symmetrically arranged on the inner side of the operating table. When the cabin shell enters the interior of the test box to prepare for high-temperature testing, the electric telescopic rod installed under the sealing strip is opened. The output end of the electric telescopic rod can push the sealing strip to move upward and fit into the gap between the placement plate and the operating table, which greatly improves the sealing performance of the device during testing. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 This is a perspective structural diagram of the motor of the utility model when it is not running;
[0024] Figure 2 This is a perspective cross-sectional structural diagram of the utility model;
[0025] Figure 3 This is a perspective structural diagram of the motor operation of the utility model;
[0026] Figure 4 This is a perspective structural diagram of the rack, fixed chute and gear connection of the utility model;
[0027] Figure 5 This is a perspective structural diagram of the connection between the movable rod, the fixed rod and the fixed block of the utility model;
[0028] Figure 6 This is a perspective diagram of the connection between the operating table, detection box and controller of the utility model.
[0029] In the figure: 1. operating table; 2. detection box; 3. controller; 4. heating wire; 5. placement plate; 6. cabin shell; 7. fixing plate; 8. moving rod; 9. fixing rod; 10. fixing block; 11. cylindrical pin; 12. rotating rod; 13. motor; 14. support frame; 15. moving plate; 16. rack; 17. fixing slide; 18. gear; 19. air outlet; 20. sealing strip; 21. electric telescopic rod; 22. fixing frame; 23. electric fan. DETAILED DESCRIPTION
[0030] 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 embodiments described 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 making creative efforts are within the scope of protection of the present invention.
[0031] See also Figures 1-6 , the utility model provides a technical solution:
[0032] Embodiment 1: In order to solve the problems existing in the prior art, this embodiment adopts the following technical solutions: a prefabricated cabin body high temperature resistance detection device is provided with an operating table 1, and a detection box 2 is fixedly installed above the operating table 1; a material-taking mechanism is arranged inside the operating table 1, which can quickly take out the tested cabin shell 6; a fixing mechanism is arranged on the upper right side of the operating table 1, which can limit the cabin shell 6 and effectively prevent the cabin shell 6 and deformation from moving; a sealing mechanism is arranged on the inner side of the operating table 1, and when the cabin shell 6 enters the interior of the detection box 2, it can move upward to fit the gap after the placement plate 5 is engaged with the operating table 1, which greatly improves The sealing of the device; first, the capsule shell 6 is placed above the placement plate 5, and a fixed plate 7 is set on the left side of the capsule shell 6 for limiting, and then the motor 13 connected to the right rear of the rotating rod 12 is turned on, and the motor 13 will cause the rotating rod 12 to rotate. At the same time, a cylindrical pin 11 is set inside the left side of the rotating rod 12, and the cylindrical pin 11 fits tightly together with the inner side of the fixed block 10, and the fixed block 10 is installed on the outside of the moving rod 8, that is, when the rotating rod 12 rotates, the fixed block 10 will push the moving rod 8 to move upward on the outside of the fixed rod 9. In addition, the placement plate 5 is fixedly connected above the moving rod 8, that is, the upward movement of the moving rod 8 will cause the capsule shell 6 placed above the placement plate 5 to move forward. Enter the interior of the inspection box 2. At this time, the placement plate 5 is tightly fitted with the upper inner part of the operating table 1. At this time, the electric telescopic rod 21 is opened. The output end of the electric telescopic rod 21 can push the sealing strip 20 to move upward and fit with the gap at the connection between the placement plate 5 and the operating table 1 to ensure the sealing of the equipment. Then, the motor 13 connected to the rear side of the middle of the gear 18 is turned on. The motor 13 will cause the gear 18 to rotate. When the gear 18 rotates, it will push the meshing rack 16 below to move to the left inside the fixed slide 17, that is, the movable plate 15 installed on the left side of the rack 16 will fit tightly with the right side of the cabin shell 6, and the fixed plate 7 and the movable plate 15 will limit the cabin shell 6. , then adjust the controller 3 to adjust the temperature of the heating wire 4 arranged around the inside of the detection box 2. The temperature of the heating wire 4 can be accelerated by the air outlet 19 to eject the air, so that the cabin shell 6 can quickly perform high-temperature detection. The detection box 2 is provided with transparent and high-temperature resistant glass, which is convenient for observing and recording the changes in the cabin shell 6. When the detection of the cabin shell 6 is completed, the motor 13 behind the right side of the rotating rod 12 is turned on to move the cabin shell 6 downward out of the interior of the detection box 2. At this time, the electric fans 23 inside the fixing brackets 22 installed on the left and right sides of the inner side of the operating table 1 are turned on. The electric fans 23 can blow air to the cabin shell 6, so that the cabin shell 6 quickly cools down, making it convenient for the operating staff to take the cabin shell 6.
[0033] In existing detection devices, items generally remain at a certain temperature after undergoing high-temperature testing, and cannot be taken out immediately, which will affect the efficiency of subsequent item testing. Figure 1 、 Figure 5 and Figure 6 As shown, the material-taking mechanism includes a placement plate 5 arranged on the inner side of the operating table 1, a cabin shell 6 is placed above the placement plate 5, and a moving rod 8 is fixedly connected to the lower middle part of the placement plate 5, and a fixing rod 9 is arranged inside the moving rod 8. In addition, a fixing block 10 is installed on the outer side of the moving rod 8, and a cylindrical pin 11 is arranged inside the fixing block 10. A rotating rod 12 is installed on the outer side of the cylindrical pin 11. The motor 13 connected to the rear right side of the rotating rod 12 is turned on, and the motor 13 is connected to the support frame 14, which fixes and supports it. When the motor 13 runs, the rotating rod 12 will rotate, and the left side of the rotating rod 12 will push the fixed block 10 to drive the moving rod 8 to move up and down on the outer side of the fixed rod 9, that is, when the moving rod 8 moves upward, it will push the placement plate 5 and drive the cabin shell 6 above to move upward together, so that the cabin shell 6 can be moved upward and sent to the inside of the inspection box 2 for inspection.
[0034] Example 2: In the existing detection device, the object will deform during high temperature detection. If it is not fixed, it will cause the object to move, which will affect the detection results. Figure 2 、 Figure 4 and Figure 5 As shown, the fixing mechanism includes a fixing plate 7 arranged on the upper left of the placement plate 5. The fixing plate 7 limits the left side of the cabin shell 6. When the cabin shell 6 enters the interior of the detection box 2, the motor 13 connected to the rear side of the middle part of the gear 18 is turned on. The motor 13 will cause the gear 18 to rotate, that is, the gear 18 will push the meshing rack 16 below to move inside the fixed slide 17. Since the movable plate 15 is installed at the left end of the rack 16, when the rack 16 moves to the left, the movable plate 15 at the left end of the rack 16 will also move to the left, and will be firmly attached to the right side of the cabin shell 6. In this way, the fixing plate 7 and the movable plate 15 will fix the cabin shell 6.
[0035] Example 3: In existing detection devices, high temperature detection must ensure a certain degree of sealing, otherwise there will be deviations in the detection of objects, such as Figure 1 、 Figure 3 and Figure 6 As shown, the sealing mechanism includes sealing strips 20 symmetrically arranged on the left and right sides of the inner side of the operating table 1. When the cabin shell 6 enters the interior of the detection box 2 to prepare for high-temperature detection, the electric telescopic rod 21 installed below the sealing strip 20 is opened. The output end of the electric telescopic rod 21 can push the sealing strip 20 to move upward and fit into the gap between the placement plate 5 and the operating table 1, which will greatly improve the sealing performance of the device during detection.
[0036] The contents not described in detail in this specification belong to the existing technology known to professional and technical personnel in this field. The standard parts used in this utility model can be purchased from the market. Special-shaped parts can be customized according to the description in the specification and the drawings. The specific connection methods of each part adopt mature conventional means such as bolts, rivets, welding, etc. in the existing technology. The machinery, parts and equipment all adopt conventional models in the existing technology, and the circuit connections adopt conventional connection methods in the existing technology, which will not be described in detail here.
[0037] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A high temperature resistance detection device for a prefabricated cabin, comprising: An operating table (1), wherein the operating table (1) is directly placed on the ground; It is characterized by further comprising: The operating table (1) is provided with a convenient material taking mechanism inside, wherein the convenient material taking mechanism comprises a placing plate (5), a moving rod (8), a fixed rod (9), a fixed block (10), a cylindrical pin (11), a rotating rod (12) and a motor (13); the operating table (1) is provided with a placing plate (5) inside, and a moving rod (8) is installed below the middle of the placing plate (5); a fixed rod (9) is slidably provided inside the moving rod (8), and the lower part of the fixed rod (9) is fixedly connected to the lower part of the inner part of the operating table (1); A fixing mechanism is provided on the upper right side of the operating table (1), wherein the fixing mechanism includes a movable plate (15), a rack (16), a fixed slide (17) and a gear (18); a fixed slide (17) is provided on the upper right side of the operating table (1), and the right side of the fixed slide (17) is fixedly connected to the inner right side of the detection box (2), and a rack (16) is slidably installed inside the fixed slide (17).
2. The high temperature resistance detection device for a prefabricated cabin body according to claim 1, characterized in that: A detection box (2) is fixedly installed above the operating table (1), and a controller (3) is installed on the front right side of the detection box (2). Electric heating wires (4) are arranged around the inside of the detection box (2), and an air outlet (19) is arranged inside the detection box (2).
3. The high temperature resistance detection device for a prefabricated cabin body according to claim 1, characterized in that: A cabin shell (6) is placed above the placement plate (5), and a fixing plate (7) is tightly fitted on the left side of the cabin shell (6), and the fixing plate (7) is fixedly installed on the left side above the placement plate (5).
4. The high temperature resistance detection device for a prefabricated cabin body according to claim 1, characterized in that: A fixed block (10) is fixedly provided on the outer side of the moving rod (8), and cylindrical pins (11) are symmetrically installed on the inner side of the fixed block (10) in a front-to-back manner.
5. The high temperature resistance detection device for a prefabricated cabin body according to claim 4, characterized in that: The outer side of the cylindrical pin (11) is fixedly connected to a rotating rod (12), the right rear side of the rotating rod (12) is connected to a motor (13), and the right side of the motor (13) is fixedly connected to a support frame (14).
6. The high temperature resistance detection device for a prefabricated cabin body according to claim 1, characterized in that: The upper portion of the rack (16) is meshed with a gear (18), the middle rear side of the gear (18) is connected to a motor (13), and a moving plate (15) is installed on the left side of the rack (16).
7. The high temperature resistance detection device for a prefabricated cabin body according to claim 2, characterized in that: The interior of the operating table (1) is symmetrically provided with sealing strips (20), and an electric telescopic rod (21) is installed below the sealing strips (20).
8. The high temperature resistance detection device for a prefabricated cabin body according to claim 7, characterized in that: Fixed frames (22) are symmetrically fixedly installed on the left and right sides of the operating table (1), and electric fans (23) are arranged at equal distances inside the fixed frames (22).
Citation Information
Patent Citations
Device of nai high temperature measurement
CN207866676U