An industrial building convenient for installation

By setting up connecting columns and connection grooves underground, combined with locking mechanisms and control mechanisms, rapid installation and stable connection of industrial plants are achieved, complex problems of foundation construction are solved and installation efficiency is improved.

CN116163564BActive Publication Date: 2025-08-05ANHUI SHANZE CONSTR ENG CO LTD
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Patent Information

Application Number
CN202211099386.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-09-09
Publication Date
2025-08-05
Estimated Expiration
2042-09-09

AI Technical Summary

Technical Problem

In the existing technology, the foundation construction is complex and takes a long time during the installation and construction of the factory, which increases the installation and construction cycle of the factory and is not convenient for rapid installation.

Method used

The connecting column is inserted underground, and the connecting groove is penetrated from the top and bottom surfaces of the connecting columns. The lower installation channel steel is inserted in the connecting groove of the connecting columns. The wall panel is inserted in the lower installation channel steel and the upper installation channel steel. Combined with the locking mechanism and the control mechanism, a stable connection of the wall is achieved.

Benefits of technology

It reduces the foundation construction, improves the convenience and stability of factory installation, shortens the installation time, and facilitates the rapid construction and demolition of factory buildings.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses an industrial plant that is easy to install, including a plant body, the plant body including connecting columns arranged at the connection of the walls and a roof located on the top of the walls, four connecting columns are provided and distributed along a rectangular array, the connecting columns are inserted into the ground, the wall is set between two adjacent connecting columns, the wall includes a plurality of wall panels connected to each other, the connecting columns are provided with connecting grooves on the sides close to the walls, the connecting grooves pass through the top and bottom surfaces of the connecting columns, a lower mounting channel steel with an upward opening is provided between the two connecting columns, the two ends of the lower mounting channel steel are respectively inserted into the connecting grooves of the two channel steels, the bottoms of the wall panels are both inserted into the lower mounting channel steel, an upper mounting channel steel with a downward opening is fixedly connected to the roof, the top of the wall panel is inserted into the upper mounting channel steel, and the side edges of the wall panels close to the connecting columns are inserted into the connecting grooves. The present application has the effect of facilitating the installation and construction of the plant.
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Description

Technical Field

[0001] The present invention relates to the field of industrial plants, and in particular to an industrial plant that is easy to install. Background Art

[0002] The factory is the most important production site in industrial production. The important equipment required for production is placed in the factory, and the staff operate the equipment in the factory to carry out production work.

[0003] In the related art, the Chinese invention patent with announcement number CN113775215A discloses a noise reduction plant for gas production, including a plant body with a bottom embedded in the ground, a sound-absorbing cover plate arranged on the top of the plant body, a mounting groove arranged inside the plant body, and a noise reduction mounting plate arranged inside the mounting groove. The plant body is installed integrally with a sound-absorbing wall; the sound-absorbing wall includes a ladder-shaped support frame, and adsorption plates fixedly installed on both sides of the ladder-shaped support frame, and a concrete layer attached to the outside of the adsorption plate, and sound-absorbing material filled between the two adsorption plates; the sound-absorbing cover plate includes a porous plate, and a water-blocking plate attached to the porous plate; the noise reduction mounting plate includes a bottom plate fixedly installed inside the mounting groove, and an equipment mounting plate connected to the bottom plate by bolts, and elastic shock-absorbing sound-absorbing material filled between the bottom plate and the equipment mounting plate, and a shock-absorbing spring for increasing the elasticity between the bottom plate and the equipment mounting plate.

[0004] With respect to the above-mentioned related technologies, a foundation needs to be built under the wall. During the construction of the factory building, the wall needs to be cast into the foundation to connect the wall to the foundation. However, the comprehensive construction of the foundation usually takes a lot of time and more manpower. Therefore, the complicated foundation construction process increases the installation and construction period of the factory building, which is inconvenient for the installation and construction of the factory building. Summary of the Invention

[0005] In order to facilitate the installation and construction of factory buildings, the present application provides an industrial factory building that is easy to install.

[0006] This application provides an industrial plant that is easy to install and adopts the following technical solutions:

[0007] The top of the wall panel is inserted into the upper mounting groove, and the side edge of the wall panel is inserted into the upper mounting groove.

[0008] By adopting the above technical solution, the connecting column is inserted into the ground, and the connecting groove is opened on the side of the connecting column and connected to the top and bottom surfaces of the connecting column, so that the lower mounting channel steel can insert the two ends of the lower mounting channel steel into the connecting grooves on the two connecting columns from the top of the connecting column, and the lower mounting channel steel can slide up and down along the connecting groove until the bottom surface of the lower mounting channel steel touches the ground, and then the bottom end of the wall panel is inserted into the lower mounting channel steel, and the side edge of the wall panel close to the connecting column is inserted into the connecting groove, so that the wall panel fills the space between the two connecting columns and hinders the movement of the bottom end of the wall panel, and finally the roof is hoisted to the top of the wall, so that the top of the wall panel is inserted into the upper mounting channel steel, thereby hindering the movement of the top end of the wall panel, making the wall more stable, and reducing the construction of the foundation, thereby facilitating the installation and construction of the factory building.

[0009] Preferably, a mounting seat is provided at the bottom of the connecting column, the mounting seat is buried underground, a slot is provided on the top surface of the mounting seat, the connecting column is inserted into the slot, a locking mechanism is provided in the slot for preventing the connecting column from being separated from the slot, a first sliding groove is provided on the inner wall of the slot, a snap-fit groove is provided on the side of the connecting column, the locking mechanism includes a locking pin slidably provided in the first sliding groove, and a thrust component is provided in the first sliding groove that can push one end of the locking pin into the snap-fit groove.

[0010] By adopting the above technical solution, the mounting seat is buried underground, the slot is arranged on the top surface of the mounting seat, the first sliding slot is opened on the inner wall of the slot, the snap-fitting slot is opened on the side of the connecting column, and the locking pin is slidably arranged in the first sliding slot. Therefore, after the connecting column is inserted into the slot, when the snap-fitting slot is flush with the first sliding slot, under the thrust of the thrust assembly, one end of the locking pin can be inserted into the snap-fitting slot, thereby preventing the connecting column from detaching from the slot, thereby improving the stability of the factory building body.

[0011] Preferably, a pulling assembly is also provided in the first sliding groove, and the pulling assembly includes an attraction block fixedly connected to the end face of the locking pin away from the connecting column, and an electromagnet that can generate attraction for the attraction block is fixedly connected to the inner wall of the first sliding groove away from the connecting column, and a control mechanism is provided in the slot, and the control mechanism is used to control the disconnection of the electrical circuit of the electromagnet when the roof is installed on the wall.

[0012] By adopting the above technical solution, the attraction block is fixedly connected to the end face of the locking pin away from the connecting column, and the electromagnet is fixedly connected to the inner wall of the first sliding slot away from the connecting column. When the roof is installed on the wall, the control mechanism controls the electrical circuit of the electromagnet to disconnect, so that the electromagnet loses the attraction of the attraction block, so that the locking pin is inserted into the card slot when the roof is installed on the wall, thereby facilitating the staff to adjust the connecting column before the roof is installed on the wall, and the connecting column can be stably inserted into the slot after the roof is installed on the wall.

[0013] Preferably, an abutment block is fixedly connected to the roof, and the bottom surface of the abutment block is used to abut against the top surface of the connecting column. A second sliding groove is further provided on the inner wall of the slot, and a give-way groove is provided on the bottom surface of the connecting column. The give-way groove is connected to the side surface of the connecting column close to the second sliding groove, and a sliding hole is provided on the top wall of the give-way groove. The sliding hole passes through the top surface of the connecting column, and the control mechanism includes a control block slidably arranged in the second sliding groove and a control rod slidably arranged in the sliding hole. The control block is slidably connected to the side wall of the give-way groove, and an elastic component that can push the top end of the control rod out of the sliding hole is provided on the connecting column. The second sliding groove A first spring is provided inside to prevent the control block from sliding into the second sliding groove, a first inclined surface is provided on the end surface of the control block away from the first spring, the first inclined surface is arranged upward, and a second inclined surface that can be fitted with the first inclined surface is provided at the bottom end of the control rod, a fixed contact piece is embedded on the inner wall of the second sliding groove, a movable contact piece that can be connected with the fixed contact piece is embedded on the side surface of the control block, an installation cavity is provided on the inner wall of the slot, a power supply is provided in the installation cavity, the fixed contact piece is electrically connected to one of the electrodes of the power supply, the other electrode of the power supply is electrically connected to one end of the coil in the electromagnet, and the other end of the coil in the electromagnet is electrically connected to the fixed contact piece.

[0014] By adopting the above technical solution, under the elastic force of the elastic assembly, the top of the control rod extends out of the sliding hole. When the roof is installed on the wall, the abutment block presses against the control rod, causing it to slide downward until the bottom surface of the abutment block presses against the top surface of the connecting post. During the downward sliding process of the control rod, the second inclined surface of the control rod, through the interference of the first inclined surface with the second inclined surface, causes the control block to overcome the elastic force of the first spring and slide into the second sliding groove, thereby disengaging the movable contact piece from the fixed contact piece and disconnecting the electrical circuit of the electromagnet. When the roof is installed on the wall, the locking mechanism can automatically lock the connecting post. When the roof is removed from the wall, the control rod slides upward under the elastic force of the elastic assembly, causing the control block to slide out of the second sliding groove under the elastic force of the first spring, re-engaging the movable contact piece and reconnecting the electrical circuit of the electromagnet. This automatically releases the locking mechanism when the roof is removed from the wall, thereby facilitating the removal of the factory building.

[0015] Preferably, a sliding cavity is provided on the inner wall of the sliding hole, and the elastic component includes a baffle fixedly connected to the control rod and a second spring located in the sliding cavity, the baffle is slidably arranged in the sliding cavity, the top end of the second spring abuts against the bottom surface of the baffle, and the bottom end of the second spring abuts against the bottom wall of the sliding cavity.

[0016] By adopting the above technical solution, the top end of the second spring abuts against the bottom surface of the baffle, and the bottom end of the second spring abuts against the bottom wall of the sliding cavity, so that the second spring can provide an upward thrust to the control rod, so that when the roof is not installed on the wall, the top end of the control rod can extend out of the sliding hole.

[0017] Preferably, a first limiting groove is provided on the inner wall of the second sliding groove, a first limiting block is fixedly connected to the side surface of the control block, and the first limiting block is slidably disposed in the first limiting groove.

[0018] By adopting the above technical solution, the first limiting block is slidably disposed in the first limiting groove, thereby preventing the control block from escaping from the second sliding groove, thereby improving the stability of the control mechanism structure.

[0019] Preferably, a right-angle guard plate is fixedly connected to the bottom surface of the abutment block, and the two inner side surfaces of the right-angle guard plate are used to abut against the side of the connecting column away from the wall. A clamping mechanism is provided between the right-angle guard plate and the connecting column to prevent the roof from separating from the connecting column.

[0020] By adopting the above technical solution, the right-angle guard plate is fixedly connected to the abutment block, and the two inner sides of the right-angle guard plate respectively abut against the sides of the connecting column away from the wall, thereby preventing the connecting column from swinging away from the wall. After the roof is installed on the wall, the structure of the factory building is more stable.

[0021] Preferably, a clamping hole is provided on the right-angle guard plate, a third sliding groove is provided on the connecting column, the clamping mechanism includes a clamping block slidably arranged in the third sliding groove, one end of the clamping block can be inserted in the clamping hole, a fourth spring is provided in the third sliding groove, one end of the fourth spring abuts against the end surface of the clamping block away from the right-angle guard plate, the other end of the fourth spring abuts against the inner wall of the third sliding groove away from the right-angle guard plate, a second limiting groove is provided on the inner wall of the third sliding groove, a second limiting block is fixedly connected to the clamping block, and the second limiting block is slidably arranged in the second limiting groove.

[0022] By adopting the above technical solution, the clamping block is slidably set in the third sliding groove. When the clamping hole and the third sliding groove are flush with each other, one end of the clamping block is inserted into the clamping hole under the elastic force of the fourth spring, thereby preventing the roof from detaching from the connecting column, making the roof more stable after installation.

[0023] Preferably, a third inclined surface is provided on the end surface of the clamping block away from the fourth spring, and the third inclined surface is arranged to face upward.

[0024] By adopting the above technical solution, during the process of hoisting and lowering the roof, when the right-angle guard plate hits the third inclined surface, as the roof continues to fall, the right-angle guard plate can push the clamping strip into the third sliding groove through the third inclined surface, and when the clamping hole and the third sliding groove are flush with each other, the fourth spring can insert one end of the clamping block into the clamping hole, thereby realizing automatic clamping of the clamping mechanism.

[0025] Preferably, the thrust assembly includes a third spring, one end of the third spring is fixedly connected to the side wall of the first sliding groove away from the connecting column, and the other end of the third spring is fixedly connected to the end surface of the locking pin away from the connecting column.

[0026] By adopting the above technical solution, one end of the third spring is fixedly connected to the side wall of the first sliding groove away from the connecting column, and the other end of the third spring is fixedly connected to the end surface of the locking pin away from the connecting column, so that the third spring can prevent the locking pin from sliding into the first sliding groove, so that the locking pin can be stably inserted in the snap-in groove.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. The connecting column is inserted into the ground, and the connecting groove is opened on the side of the connecting column and connected to the top and bottom surfaces of the connecting column, so that the two ends of the lower mounting channel steel can be inserted into the connecting grooves on the two connecting columns from the top of the connecting column, and the lower mounting channel steel can slide up and down along the connecting groove until the bottom surface of the lower mounting channel steel touches the ground. Then, the bottom end of the wall panel is inserted into the lower mounting channel steel, and the side edge of the wall panel close to the connecting column is inserted into the connecting groove, so that the wall panel fills the space between the two connecting columns and prevents the bottom end of the wall panel from moving. Finally, the roof is hoisted to the top of the wall, so that the top of the wall panel is inserted into the upper mounting channel steel, thereby preventing the top end of the wall panel from moving, making the wall more stable and reducing the construction of the foundation, thereby facilitating the installation and construction of the factory building.

[0029] 2. The attraction block is fixedly connected to the end face of the locking pin away from the connecting column, and the electromagnet is fixedly connected to the inner wall of the first sliding slot away from the connecting column. When the roof is installed on the wall, the control mechanism controls the electromagnet's electrical circuit to disconnect, causing the electromagnet to lose its attraction to the attraction block. As a result, the locking pin is inserted into the engaging slot only when the roof is installed on the wall. This facilitates adjustment of the connecting column before the roof is installed on the wall, and the connecting column can be stably inserted into the slot after the roof is installed on the wall.

[0030] 3. Under the elastic force of the elastic assembly, the top of the control rod extends out of the sliding hole. When the roof is installed on the wall, the abutment block presses against the control rod, causing it to slide downward until the bottom surface of the abutment block presses against the top surface of the connecting post. As the control rod slides downward, the second inclined surface of the control rod contacts the first inclined surface, causing the control block to overcome the elastic force of the first spring and slide into the second sliding groove, thereby disengaging the movable contact piece from the fixed contact piece and disconnecting the electrical circuit of the electromagnet. When the roof is installed on the wall, the locking mechanism automatically locks the connecting post. When the roof is removed from the wall, the control rod slides upward under the elastic force of the elastic assembly, causing the control block to slide out of the second sliding groove under the elastic force of the first spring, re-engaging the movable contact piece and reconnecting the electrical circuit of the electromagnet. This automatically releases the locking mechanism when the roof is removed from the wall, facilitating the removal of the factory building. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 It is a schematic diagram of the overall structure of the factory building in the embodiment of this application.

[0032] Figure 2 It is an exploded schematic diagram of the factory building in the embodiment of the present application.

[0033] Figure 3 yes Figure 2 A partial enlarged view of point A in the middle.

[0034] Figure 4 It is a cross-sectional view of the mounting seat in the embodiment of the present application.

[0035] Figure 5 It is a cross-sectional view of the top of the connecting column in an embodiment of the present application.

[0036] Figure 6 It is a cross-sectional view of the bottom of the connecting column in an embodiment of the present application.

[0037] Description of reference numerals:

[0038] 1. Connecting column; 11. Connecting slot; 12. Third sliding slot; 13. Second limiting slot; 14. Giving way slot; 15. Sliding hole; 16. Sliding cavity; 17. Snap-fit slot; 2. Wall; 21. Wall panel; 3. Roof; 31. Upper mounting channel steel; 32. Abutment block; 33. Right-angle guard plate; 331. Snap-fit hole; 4. Lower mounting channel steel; 5. Mounting seat; 51. Slot; 52. First sliding slot; 53. Second sliding slot; 54. First limiting slot; 55. Mounting cavity; 6. Locking mechanism; 61. Locking pin; 62. Thrust assembly 621. Third spring; 63. Tension assembly; 631. Attraction block; 632. Electromagnet; 7. Control mechanism; 71. Control block; 711. First limit block; 712. First inclined plane; 72. First spring; 73. Control rod; 731. Second inclined plane; 74. Elastic assembly; 741. Baffle; 742. Second spring; 75. Moving contact piece; 76. Fixed contact piece; 77. Power supply; 8. Clamping mechanism; 81. Clamping block; 811. Third inclined plane; 82. Fourth spring; 83. Second limit block; 100. Factory building body. DETAILED DESCRIPTION

[0039] The following is combined with Figure 1-6 This application is described in further detail.

[0040] The embodiment of the present application discloses an industrial plant that is easy to install. Figure 1 and Figure 2 As shown, the industrial plant includes a plant body 100, which includes connecting columns 1, walls 2, a roof 3, lower mounting channels 4, and mounting bases 5. Four mounting bases 5 are provided, distributed in a rectangular array and buried underground. Slots 51 are defined on the top surfaces of the mounting bases 5. Four connecting columns 1 are provided, each vertically inserted into the slots 51 of the four mounting bases 5.

[0041] Reference Figure 1 and Figure 2As shown, connecting columns 1 are provided with connecting grooves 11 on both sides thereof adjacent to adjacent connecting columns 1. The connecting grooves 11 extend through the top and bottom surfaces of the connecting columns 1. Four lower mounting channel steels 4 are provided, and the four lower mounting channel steels 4 are respectively located between two adjacent connecting columns 1. The four lower mounting channel steels 4 form a rectangular structure, with the openings of the lower mounting channel steels 4 facing upward, and the two ends of the lower mounting channel steels 4 are respectively inserted into the connecting grooves 11 of two adjacent connecting columns 1. The lower mounting channel steels 4 are slidably provided on the connecting columns 1, and the bottom surfaces of the lower mounting channel steels 4 contact the ground.

[0042] Reference Figure 1 and Figure 2 As shown, the wall 2 is positioned between two adjacent connecting columns 1. The wall panels 21 comprise several interconnected wall panels 21. In this embodiment, each side of the wall 2 has four wall panels 21, and adjacent wall panels 21 are connected via dovetail blocks and dovetail grooves. The bottoms of the wall panels 21 are inserted into the lower mounting channel steel 4, and the inner and outer sides of the wall panels 21 respectively contact the opposing sidewalls of the lower mounting channel steel 4. The side edges of the wall panels 21 of the wall 2 near the connecting columns 1 are inserted into the connecting grooves 11.

[0043] Reference Figure 2 and Figure 3 As shown, the roof 3 is a quadrangular pyramid-shaped shell structure with an open bottom. Four upper mounting channel steels 31 are fixedly connected to the inner side surface of the bottom of the roof 3. The openings of the upper mounting channel steels 31 are set downward. The four upper mounting channel steels 31 are all located on the four inner side surfaces of the roof 3. The four upper mounting channel steels 31 enclose a rectangular structure. Four abutment blocks 32 are also fixedly connected to the bottom surface of the roof 3. The four abutment blocks 32 are located at the butt joints of two adjacent upper mounting channel steels 31. The ends of the upper mounting channel steels 31 are all fixedly connected to the abutment blocks 32. When the roof 3 is installed on the wall 2, the bottom surface of the abutment blocks 32 contacts the top surface of the connecting column 1. At the same time, the top of the wall panel 21 is inserted into the upper mounting channel steel 31. The top surface of the wall panel 21 contacts the inner top wall of the upper mounting channel steel 31. The inner and outer sides of the wall panel 21 respectively contact the two opposite side walls of the upper mounting channel steel 31.

[0044] Reference Figure 2 and Figure 3 As shown, a right-angle guard plate 33 is fixedly connected to the bottom surface of the abutment block 32. When the bottom surface of the abutment block 32 abuts against the top surface of the connecting column 1, the two inner side surfaces of the right-angle guard plate 33 abut against the side surface of the connecting column 1 away from the wall 2.

[0045] Reference Figure 2 and Figure 3As shown, a snap-in hole 331 is provided on the right-angle guard plate 33, and a third sliding groove 12 is horizontally provided on the connecting column 1. The third sliding groove 12 is provided on the side of the connecting column 1 away from the wall panel 21. A second limiting groove 13 is provided on the inner wall of the third sliding groove 12, and the length direction of the second limiting groove 13 is parallel to the length direction of the third sliding groove 12.

[0046] Reference Figure 3 and Figure 4 As shown, the plant body 100 further includes a locking mechanism 6 , a control mechanism 7 and a clamping mechanism 8 .

[0047] Reference Figure 5 As shown, the clamping mechanism 8 includes a clamping block 81, a fourth spring 82, and a second limiting block 83. The clamping block 81 is horizontally slidably disposed in the third sliding slot 12, and the fourth spring 82 is disposed in the third sliding slot 12. One end of the fourth spring 82 abuts against the end surface of the clamping block 81 away from the right-angle guard plate 33, and the other end of the fourth spring 82 abuts against the inner wall of the third sliding slot 12 away from the right-angle guard plate 33. The second limiting block 83 is fixedly connected to the clamping block 81 and slidably disposed in the second limiting slot 13.

[0048] Reference Figure 3 and Figure 5 As shown, a third inclined surface 811 is formed on the end surface of the engaging block 81 away from the fourth spring 82, and the third inclined surface 811 is arranged upward. When the engaging hole 331 is flush with the third sliding groove 12, one end of the engaging block 81 can be inserted into the engaging hole 331 under the elastic force of the fourth spring 82.

[0049] Reference Figure 4 As shown, the locking mechanism 6 is disposed within the slot 51 and includes a locking pin 61, a thrust assembly 62, and a tension assembly 63. A first sliding slot 52 is horizontally defined on the inner wall of the slot 51, and a latching slot 17 is horizontally defined on the side of the connecting post 1. The locking pin 61 slides within the first sliding slot 52. The thrust assembly 62 includes a third spring 621, one end of which is fixedly connected to the side wall of the first sliding slot 52 away from the connecting post 1, and the other end of the third spring 621 is fixedly connected to the end surface of the locking pin 61 away from the connecting post 1.

[0050] Reference Figure 4 As shown, refer to Figure 4 As shown, the tension assembly 63 includes an attraction block 631 and an electromagnet 632. The attraction block 631 is fixedly connected to the end surface of the locking pin 61 away from the connecting column 1, and the electromagnet 632 is fixedly connected to the inner wall of the first sliding slot 52 away from the connecting column 1. The attraction block 631 and the electromagnet 632 are both located inside the third spring 621.

[0051] Reference Figure 4As shown, a second sliding groove 53 is horizontally opened on the inner wall of the slot 51, and a clearance groove 14 is opened on the bottom surface of the connecting column 1. The clearance groove 14 is connected to the side of the connecting column 1 close to the second sliding groove 53. A sliding hole 15 is opened on the top wall of the clearance groove 14, and the sliding hole 15 passes through the top surface of the connecting column 1.

[0052] Reference Figure 4 and Figure 6 As shown, the control mechanism 7 includes a control block 71, a first spring 72, a control rod 73, an elastic assembly 74, a movable contact piece 75, a fixed contact piece 76, and a power supply 77. The control block 71 is slidably disposed within the second sliding slot 53 and is slidably connected to the side wall of the clearance slot 14. The first spring 72 is disposed within the second sliding slot 53, with one end of the first spring 72 contacting the side of the control block 71 away from the connecting column 1, and the other end of the first spring 72 contacting the side wall of the second sliding slot 53 away from the connecting column 1.

[0053] Reference Figure 4 As shown, the fixed contact piece 76 is embedded in the inner wall of the second sliding groove 53, the movable contact piece 75 is embedded in the side of the control block 71, and a mounting cavity 55 is opened on the inner wall of the slot 51. The power supply 77 is arranged in the mounting cavity 55. The fixed contact piece 76 is electrically connected to one of the electrodes of the power supply 77, and the other electrode of the power supply 77 is electrically connected to one end of the coil in the electromagnet 632. The other end of the coil in the electromagnet 632 is electrically connected to the fixed contact piece 76.

[0054] Reference Figure 4 As shown, a first limiting groove 54 is provided on the inner wall of the second sliding groove 53, and the length direction of the first limiting groove 54 is parallel to the length direction of the second sliding groove 53. A first limiting block 711 is fixedly connected to the side of the control block 71, and the first limiting block 711 is slidably set in the first limiting groove 54.

[0055] Reference Figure 4 and Figure 6 As shown, the control rod 73 is vertically slidably arranged in the sliding hole 15, and a first inclined surface 712 is arranged on the end surface of the control block 71 away from the first spring 72, and the first inclined surface 712 is arranged upward, and a second inclined surface 731 is arranged at the bottom end of the control rod 73, and the second inclined surface 731 can be fitted with the first inclined surface 712.

[0056] Reference Figure 4 and Figure 6 As shown, the inner wall of the sliding hole 15 defines a sliding cavity 16, a baffle 741 of the elastic assembly 74, and a second spring 742. The baffle 741 is fixedly connected to the control rod 73 and slides in the sliding cavity 16. The second spring 742 is located in the sliding cavity 16, with the top end of the second spring 742 contacting the bottom surface of the baffle 741 and the bottom end of the second spring 742 contacting the bottom wall of the sliding cavity 16.

[0057] Reference Figure 2 and Figure 6 As shown, when the roof 3 is removed from the wall 2 , the top end of the control rod 73 extends out of the sliding hole 15 under the elastic force of the second spring 742 .

[0058] The implementation principle of an industrial plant that is easy to install in the embodiment of the present application is as follows: the connecting column 1 is inserted into the slot 51 on the mounting seat 5, and the connecting groove 11 is opened on the side of the connecting column 1 and runs through the top and bottom surfaces of the connecting column 1, so that the lower mounting channel steel 4 can be inserted from the top of the connecting column 1. The two ends of the lower mounting channel steel 4 are inserted into the connecting grooves 11 on the two connecting columns 1, and the lower mounting channel steel 4 can slide up and down along the connecting grooves 11 until the bottom surface of the lower mounting channel steel 4 touches the ground. , then insert the bottom end of the wall panel 21 into the lower mounting channel steel 4, and insert the side edge of the wall panel 21 of the wall 2 close to the connecting column 1 into the connecting groove 11, so that the wall panel 21 fills the space between the two connecting columns 1 and prevents the bottom end of the wall panel 21 from moving. Finally, hoist the roof 3 to the top of the wall 2, so that the top of the wall panel 21 is inserted into the upper mounting channel steel 31, thereby preventing the top end of the wall panel 21 from moving, making the wall 2 more stable, and reducing the construction of the foundation, thereby facilitating the installation and construction of the factory building.

[0059] When the locking cam 73 is in the unlocked position, the locking cam 73 will slide back into the unlocked position, and the locking cam 73 will slide back into the unlocked position, thereby unlocking the locking cam 73 and locking the unlocked position. When the roof 3 is removed from the wall 2, the control rod 73 slides upward under the elastic force of the second spring 742, so that the control block 71 can slide out of the second sliding groove 53 under the elastic force of the first spring 72, so that the moving contact piece 75 contacts the moving contact piece 75 again, and the electrical circuit of the electromagnet 632 is reopened, so that the electromagnet 632 attracts the attraction block 631 to drive the locking pin 61 to slide into the first sliding groove 52, so that the locking mechanism 6 is automatically unlocked when the roof 3 is removed from the wall 2, thereby facilitating the demolition of the factory building.

[0060] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. An industrial plant that is easy to install, comprising a plant body (100), characterized in that: The plant building body (100) includes a connecting column (1) provided at the connection of the wall (2) and a roof (3) located on the top of the wall (2), four connecting columns (1) are provided and distributed along a rectangular array, the connecting columns (1) are inserted into the ground, the wall (2) is provided between two adjacent connecting columns (1), the wall (2) includes a plurality of wall panels (21) connected to each other, and a connecting groove (11) is provided on the side of the connecting column (1) close to the wall (2), and the connecting groove (11) passes through the top end surface and the bottom end surface of the connecting column (1). A lower mounting channel steel (4) with an opening facing upward is provided between the two connecting columns (1), and both ends of the lower mounting channel steel (4) are respectively inserted into the connecting grooves (11) of the two connecting columns (1), and the bottoms of the wall panels (21) are inserted into the lower mounting channel steel (4). An upper mounting channel steel (31) with an opening facing downward is fixedly connected to the roof (3), and the top of the wall panel (21) is inserted into the upper mounting channel steel (31), and the side edge of the wall panel (21) of the wall body (2) close to the connecting column (1) is inserted into the connecting groove (11); The bottom of the connecting column (1) is provided with a mounting seat (5), the mounting seat (5) is buried underground, a slot (51) is provided on the top surface of the mounting seat (5), the connecting column (1) is inserted into the slot (51), a locking mechanism (6) for preventing the connecting column (1) from being separated from the slot (51) is provided in the slot (51), a first sliding groove (52) is provided on the inner wall of the slot (51), a snap-fit groove (17) is provided on the side surface of the connecting column (1), the locking mechanism (6) includes a locking pin (61) slidably provided in the first sliding groove (52), and a thrust component (62) is provided in the first sliding groove (52) for pushing one end of the locking pin (61) into the snap-fit groove (17); A tension component (63) is also provided in the first sliding slot (52), and the tension component (63) includes an attraction block (631) fixedly connected to the end face of the locking pin (61) away from the connecting column (1); an electromagnet (632) that can generate attraction for the attraction block (631) is fixedly connected to the inner wall of the first sliding slot (52) away from the connecting column (1); a control mechanism (7) is provided in the slot (51), and the control mechanism (7) is used to control the disconnection of the electrical circuit of the electromagnet (632) when the roof (3) is installed on the wall (2).

2. The industrial plant that is easy to install according to claim 1, characterized in that: The roof (3) is fixedly connected with an abutting block (32), the bottom surface of the abutting block (32) is used to abut against the top surface of the connecting column (1), the inner wall of the slot (51) is also provided with a second sliding groove (53), the bottom surface of the connecting column (1) is provided with a clearance groove (14), the clearance groove (14) is connected to the side of the connecting column (1) close to the second sliding groove (53), the top wall of the clearance groove (14) is provided with a sliding hole (15), the sliding hole (15) is provided. 5) passes through the top surface of the connecting column (1), the control mechanism (7) includes a control block (71) slidably arranged in the second sliding groove (53) and a control rod (73) slidably arranged in the sliding hole (15), the control block (71) is slidably connected to the side wall of the give way groove (14), the connecting column (1) is provided with an elastic component (74) that can push the top end of the control rod (73) out of the sliding hole (15), and the second sliding groove (53) is provided with a resistance component (74). A first spring (72) is provided to prevent the control block (71) from sliding into the second sliding groove (53); a first inclined surface (712) is provided on the end surface of the control block (71) away from the first spring (72); the first inclined surface (712) is arranged upward; a second inclined surface (731) is provided at the bottom end of the control rod (73) and can be fitted with the first inclined surface (712); a fixed contact piece (76) is embedded on the inner wall of the second sliding groove (53); and a side of the control block (71) is provided. A movable contact piece (75) that can be connected to the fixed contact piece (76) is embedded on the surface, an installation cavity (55) is opened on the inner wall of the slot (51), a power supply (77) is arranged in the installation cavity (55), the fixed contact piece (76) is electrically connected to one of the electrodes of the power supply (77), the other electrode of the power supply (77) is electrically connected to one end of the coil in the electromagnet (632), and the other end of the coil in the electromagnet (632) is electrically connected to the fixed contact piece (76).

3. The industrial plant that is easy to install according to claim 2, characterized in that: A sliding cavity (16) is provided on the inner wall of the sliding hole (15), and the elastic component (74) includes a baffle (741) fixedly connected to the control rod (73) and a second spring (742) located in the sliding cavity (16), wherein the baffle (741) is slidably arranged in the sliding cavity (16), the top end of the second spring (742) abuts against the bottom surface of the baffle (741), and the bottom end of the second spring (742) abuts against the bottom wall of the sliding cavity (16).

4. The industrial plant that is easy to install according to claim 2, characterized in that: A first limiting groove (54) is provided on the inner wall of the second sliding groove (53), a first limiting block (711) is fixedly connected to the side surface of the control block (71), and the first limiting block (711) is slidably arranged in the first limiting groove (54).

5. The industrial plant that is easy to install according to claim 2, characterized in that: A right-angled guard plate (33) is fixedly connected to the bottom surface of the abutment block (32), and two inner side surfaces of the right-angled guard plate (33) are used to abut against the side surface of the connecting column (1) away from the wall (2). A clamping mechanism (8) is provided between the right-angled guard plate (33) and the connecting column (1) for preventing the roof (3) from separating from the connecting column (1).

6. The industrial plant that is easy to install according to claim 5, characterized in that: The right-angle guard plate (33) is provided with a clamping hole (331), the connecting column (1) is provided with a third sliding groove (12), the clamping mechanism (8) includes a clamping block (81) slidably arranged in the third sliding groove (12), one end of the clamping block (81) can be inserted into the clamping hole (331), a fourth spring (82) is provided in the third sliding groove (12), one end of the fourth spring (82) abuts against the end surface of the clamping block (81) away from the right-angle guard plate (33), the other end of the fourth spring (82) abuts against the inner wall of the third sliding groove (12) away from the right-angle guard plate (33), a second limiting groove (13) is provided on the inner wall of the third sliding groove (12), the clamping block (81) is fixedly connected with a second limiting block (83), and the second limiting block (83) is slidably arranged in the second limiting groove (13).

7. The industrial plant that is easy to install according to claim 6, characterized in that: A third inclined surface (811) is provided on the end surface of the clamping block (81) away from the fourth spring (82), and the third inclined surface (811) is arranged upward.

8. The industrial plant that is easy to install according to claim 1, characterized in that: The thrust assembly (62) includes a third spring (621), one end of the third spring (621) is fixedly connected to the side wall of the first sliding groove (52) away from the connecting column (1), and the other end of the third spring (621) is fixedly connected to the end surface of the locking pin (61) away from the connecting column (1).

Citation Information

Patent Citations

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