Automatic locking type material anti-explosion transfer container and locking device
Through the clamp assembly and locking assembly of the automatic locking material explosion-proof transport container, the problem of cumbersome connection operation between the barrel body and the top cover in the prior art is solved, and rapid disassembly and assembly and stable connection are achieved, and transportation efficiency is improved.
Patent Information
- Application Number
- CN202510604256.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-12
- Publication Date
- 2025-07-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The connection between the barrel body and the top cover of the existing explosion-proof transport container is cumbersome and time-consuming, resulting in low transportation efficiency.
The automatic locking material explosion-proof transport container is adopted, and the clamp assembly and locking assembly are used to realize the rapid disassembly and assembly and stable connection between the barrel body and the top cover. The semi-automated locking processing of the clamp assembly is simplified in the operation process.
It realizes rapid disassembly and secure connection between the barrel body and the top cover, significantly shortening the assembly time and improving the transport efficiency.
Smart Images

Figure CN120270655A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of explosion-proof transfer containers for materials, and particularly to an automatic locking type explosion-proof transfer container for materials and a locking device. Background Art
[0002] Due to the danger of some special workpieces and materials, there is an explosion risk during the transfer process. Therefore, they need to be stored in special explosion-proof transfer containers during the transfer process. The existing explosion-proof transfer containers include a barrel body and a top cover. Most of them are connected by a buckle lock or a screw fastening connection between the barrel body and the top cover. After placing the workpiece or material, it is necessary to manually buckle the buckle lock or tighten the bolt, which is cumbersome, time-consuming and laborious, resulting in low transfer efficiency. Summary of the Invention
[0003] The purpose of the present invention is to solve the disadvantages existing in the prior art, and to propose an automatic locking type explosion-proof transfer container for materials and a locking device.
[0004] In order to achieve the above purpose, the present invention adopts the following technical solutions: An automatic locking type explosion-proof transfer container for materials, including a transfer container body, the transfer container body includes a placement barrel body and a top cover. A one-way valve body is arranged in the middle of the top of the top cover. A clamp assembly is sleeved outside between the top cover and the placement barrel body. The clamp assembly includes a clamp ring. The outer walls of both ends of the clamp ring are respectively rotatably installed with a first arc-shaped member and a second arc-shaped member. The other end of the first arc-shaped member is rotatably connected to the second arc-shaped member.
[0005] Preferably, limiting bumps are installed on the four sides inside the placement barrel body, and a positioning foam board is placed inside the placement barrel body.
[0006] Preferably, mounting seats are fixedly installed at both ends of the outer wall of the clamp ring, and the two mounting seats are respectively rotatably connected to the corresponding first arc-shaped member and second arc-shaped member, and the length of the first arc-shaped member is less than the length of the second arc-shaped member.
[0007] A locking device for an automatic locking type explosion-proof transfer container for materials, including a workbench. Locking components are symmetrically arranged on both sides of the top of the workbench. The locking components include a first slide rail driving unit. A placement component is arranged on the first slide rail driving unit. The placement component includes a slider body, and a rotating table component is arranged on the top of the slider body.
[0008] Preferably, a first fixing frame is arranged on one side of the top of the workbench where the first slide rail driving unit is located. Fixing plates are installed on both sides of the first fixing frame and in the middle of the side far from the first slide rail driving unit.
[0009] Preferably, above the fixing plates on both sides of the first fixing frame, first pressing components are arranged, and the two groups of first pressing components are symmetrically arranged. The first pressing component includes a first pneumatic telescopic rod component. The top extension end of the first pneumatic telescopic rod component is connected with a pressing arc block, and the top extension end of the first pneumatic telescopic rod component faces the first slide rail driving unit; At the top of the first fixing frame, a hydraulic rod component is arranged downward, and the top extension end of the hydraulic rod component is connected with an auxiliary component. The auxiliary component includes a fixing plate. In the middle of the bottom of the fixing plate, a lead screw driving unit is arranged, and a gas auxiliary component is arranged on the lead screw driving unit. Around the bottom end of the fixing plate, extension rods are installed, and one end of each extension rod is connected with an auxiliary plate; On both sides of the bottom of the auxiliary plate, auxiliary jaw units are arranged in vertical sliding manner, and outside the auxiliary jaw units at the bottom of the auxiliary plate, a plurality of limiting and pressing components are arranged in an equidistant annular array.
[0010] Preferably, on the outer surface of the first pneumatic telescopic rod component on the fixing plate, a placing rack is arranged. On the top of the placing rack, a second pneumatic telescopic rod component is arranged. The top extension end of the second pneumatic telescopic rod component is connected with a fixing plate. On one side of the fixing plate, a plurality of auxiliary roller components are arranged at equal intervals, and the top extension end of the second pneumatic telescopic rod component faces the first slide rail driving unit.
[0011] Preferably, above the fixing plate on the side far from the first slide rail driving unit, a second pressing component is installed. The second pressing component includes a third pneumatic telescopic rod component, and the top extension end of the third pneumatic telescopic rod component faces the first slide rail driving unit. The top extension end of the third pneumatic telescopic rod component is connected with a pressing guiding arc block.
[0012] Preferably, on the top end of the workbench, on one side of the locking component, a second fixing frame is installed. On the side of the second fixing frame close to the first slide rail driving unit, a second slide rail driving unit is arranged, and on one side of the second fixing frame, two groups of foam placing components are arranged through the second slide rail driving unit.
[0013] Preferably, the foam placing component includes a vertical slide rail driving unit, and on the vertical slide rail driving unit, a mounting frame is arranged. At the bottom of the mounting frame, a claw clamping unit is arranged.
[0014] The beneficial effects of the present invention are as follows: In the present invention, the clamp component enables the rapid disassembly and assembly between the placed barrel body and the top cover, and ensures the stability after the connection between the placed barrel body and the top cover. At the same time, through the arrangement of the locking component, semi-automatic locking treatment is carried out on the clamp component, greatly shortening the time required for the assembly of the clamp component, and making the assembly between the barrel body and the top cover faster and more stable. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a schematic structural diagram of the split of the transfer container body; Figure 2 It is a schematic structural diagram of the cross-section of the transfer container body; Figure 3 It is a schematic structural diagram of the locking device of the automatic locking type explosion-proof material transfer container proposed by the present invention; Figure 4 It is Figure 4 An enlarged structural diagram of part A in Figure 5 It is a schematic structural diagram of the placing assembly; Figure 6 It is a schematic structural diagram of a part of the locking assembly; Figure 7 It is a schematic structural diagram of the second fixing frame, the second slide rail driving unit, and the foam placing assembly.
[0016] In the figure: 1. Transfer container body, 11. Placing barrel body; 12. Clamping component; 121. Clamping ring; 122. Mounting seat; 123. First arc-shaped piece; 124. Second arc-shaped piece; 13. Top cover; 14. Positioning foam board; 2. Workbench; 21. First slide rail driving unit; 22. Foam placing assembly; 23. Placing assembly; 231. Slider body; 232. Rotary table assembly; 24. First fixing frame; 25. Auxiliary component; 26. First pressing component; 27. Second pressing component; 28. Second fixing frame. Specific embodiments
[0017] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0018] Referring to Figure 1-7 , the automatic locking type explosion-proof material transfer container and the locking device include a transfer container body 1. The transfer container body 1 includes a placing barrel body 11 and a top cover 13. A one-way valve body is provided in the middle of the top end of the top cover 13. A clamping component 12 is sleeved outside between the top cover 13 and the placing barrel body 11. The clamping component 12 includes a clamping ring 121. The outer walls of both ends of the clamping ring 121 are respectively rotatably installed with a first arc-shaped piece 123 and a second arc-shaped piece 124. The other end of the first arc-shaped piece 123 is rotatably connected to the second arc-shaped piece 124.
[0019] At the same time, limiting bumps are installed on the four sides inside the placing barrel body 11, and a positioning foam board 14 is placed inside the placing barrel body 11.
[0020] Meanwhile, mounting seats 122 are fixedly installed at both ends of the outer wall of the clamp ring 121, and the two mounting seats 122 are respectively rotatably connected to the corresponding first arc-shaped member 123 and second arc-shaped member 124, and the length of the first arc-shaped member 123 is less than that of the second arc-shaped member 124.
[0021] The locking device of the automatic locking type explosion-proof transfer container for materials includes a workbench 1. On both sides of the top of the workbench 1, locking components are symmetrically arranged. The locking components include a first slide rail driving unit 21. A placing component 23 is arranged on the first slide rail driving unit 21. The placing component 23 includes a slider body 231, and a rotating table component 232 is arranged on the top of the slider body 231.
[0022] Moreover, a first fixing frame 24 is arranged on one side of the top of the workbench 1 where the first slide rail driving unit 21 is located. Fixing plates are installed on both sides of the first fixing frame 21 and in the middle of the side away from the first slide rail driving unit 21.
[0023] Furthermore, first pressing components 26 are arranged above the fixing plates on both sides of the first fixing frame 21, and the two groups of first pressing components 26 are symmetrically arranged. The first pressing component 26 includes a first pneumatic telescopic rod component. The top extension end of the first pneumatic telescopic rod component is connected with a pressing arc block, and the top extension end of the first pneumatic telescopic rod component faces the first slide rail driving unit 21; A hydraulic rod component is arranged downward at the top of the first fixing frame 21, and the top extension end of the hydraulic rod component is connected with an auxiliary component 25. The auxiliary component 25 includes a fixing plate. A screw rod driving unit is arranged in the middle of the bottom of the fixing plate, and a gas auxiliary component is arranged on the screw rod driving unit. Extension rods are installed around the bottom end of the fixing plate, and one end of each extension rod is connected with an auxiliary plate; Auxiliary claw units are vertically slidably arranged on both sides of the bottom of the auxiliary plate, and a plurality of limiting and pressing components are arranged at equal intervals in a circular array outside the auxiliary claw units at the bottom of the auxiliary plate.
[0024] Meanwhile, a placing rack is arranged on the outer surface of the first pneumatic telescopic rod component on the fixing plate. A second pneumatic telescopic rod component is arranged on the top of the placing rack, and the top extension end of the second pneumatic telescopic rod component is connected with a fixing plate. A plurality of auxiliary roller components are arranged at equal intervals on one side of the fixing plate, and the top extension end of the second pneumatic telescopic rod component faces the first slide rail driving unit 21.
[0025] Moreover, a second pressing component 27 is installed above the fixing plate on the side away from the first slide rail driving unit 21. The second pressing component 27 includes a third pneumatic telescopic rod component, and the top extension end of the third pneumatic telescopic rod component faces the first slide rail driving unit 21. The top extension end of the third pneumatic telescopic rod component is connected with a pressing guide arc block.
[0026] Further, a second fixing frame 28 is installed on one side of the top end of the workbench 2 and located at the side of the locking assembly. A second slide rail driving unit is arranged on the side of the second fixing frame 28 close to the first slide rail driving unit 21, and two groups of foam placing assemblies 22 are arranged on one side of the second fixing frame 28 through the second slide rail driving unit.
[0027] Further, the foam placing assembly 22 includes a vertical slide rail driving unit, and an installation frame is arranged on the vertical slide rail driving unit. A claw clamping unit is arranged at the bottom of the installation frame.
[0028] In the present invention, the transfer container body 1 is placed on the top end of the placing assembly 23, and the first slide rail driving unit 21 moves the transfer container body 1 towards the auxiliary assembly 25 until the transfer container body 1 is located directly below the auxiliary assembly 25. The screw rod driving unit drives the gas auxiliary assembly to move towards the one-way valve, and inflates the transfer container body 1 to make the clamp assembly 12 in a relaxed state, so as to facilitate the subsequent taking of the top cover 13.
[0029] Then, the auxiliary jaw unit is driven to move towards the top cover 13 to clamp the top cover 13, and then the auxiliary jaw unit is driven to move away from the placing barrel body. Then, the placing barrel body 11 is driven by the first slide rail driving unit 21 to move towards the foam placing assembly 22.
[0030] Then, the workpiece to be transported is placed in the placing barrel body 11, and the positioning foam board is taken and placed in the placing barrel body 11 by the foam placing assembly 22. Then, the placing barrel body with the workpiece and the positioning foam board is continuously moved towards the auxiliary assembly 25 by the first slide rail driving unit 21 until the transfer container body 1 is located directly below the auxiliary assembly 25.
[0031] Then, the auxiliary jaw unit is driven to move towards the top cover 13, and the clamped top cover 13 is moved towards the placing barrel body 11 until the top cover 13 fits with the placing barrel body 11. Then, the pressing arc block is driven by the first pneumatic telescopic rod assembly to move towards the clamp assembly 12 and fit with the outer wall of the clamp ring, so that the clamp ring fits with the top cover 13 and the placing barrel body 11.
[0032] Next, release the clamping of the top cover 13 by the auxiliary jaw unit, drive the auxiliary jaw unit away from the top cover, and then, through the hydraulic rod assembly, move the limit pressing assembly towards the top cover 13 and press against the top cover 13. Rotate the transfer container body 1 through the turntable assembly 232. During the rotation process, move the second arc-shaped part towards the pressing guide arc block. Guide the second arc-shaped part through the pressing guide arc block so that the second arc-shaped part fits against the clamp ring 121. Thus, connect and fix the placement barrel body 11 and the top cover 13 through the clamp assembly 12, and ensure the stability of the connection between the placement barrel body 11 and the top cover 13 after connection.
[0033] Meanwhile, drive the gas assist component towards the one-way valve through the lead screw drive unit, and perform air extraction treatment on the transfer container body 1 to make the inside of the transfer container body 1 in a vacuum state.
[0034] In the present invention, the clamp assembly 12 enables quick disassembly and assembly between the placement barrel body 11 and the top cover 13, and ensures the stability of the connection between the placement barrel body 11 and the top cover 13 after connection. Meanwhile, through the setting of the locking assembly, semi-automatic locking treatment is performed on the clamp assembly 12, greatly shortening the time required for the assembly of the clamp assembly 12, and making the assembly between the barrel body 11 and the top cover 13 faster and more stable.
[0035] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, makes equivalent substitutions or changes, and all should be covered within the protection scope of the present invention.
Claims
1. The automatic locking type explosion-proof material transfer container, including a transfer container body (1), is characterized in that, The transfer container body (1) includes a placement barrel body (11) and a top cover (13). A one-way valve body is provided in the middle of the top of the top cover (13). A clamp assembly (12) is sleeved outside between the top cover (13) and the placement barrel body (11). The clamp assembly (12) includes a clamp ring (121). First arc-shaped members (123) and second arc-shaped members (124) are respectively rotatably installed on the outer walls of both ends of the clamp ring (121). The other end of the first arc-shaped member (123) is rotatably connected to the second arc-shaped member (124).
2. The automated locking type explosion-proof material transfer container according to claim 1, wherein Limiting bumps are installed on the four sides inside the placement barrel body (11), and a positioning foam board (14) is placed inside the placement barrel body (11).
3. The automated locking type explosion-proof material transfer container according to claim 1, wherein Mounting seats (122) are fixedly installed at both ends of the outer wall of the clamp ring (121), and the two mounting seats (122) are respectively rotatably connected to the corresponding first arc-shaped member (123) and second arc-shaped member (124), and the length of the first arc-shaped member (123) is less than the length of the second arc-shaped member (124).
4. Locking device of an automatic locking type explosion-proof material transfer container, including a workbench (1), characterized in that, Locking components are symmetrically arranged on both sides of the top of the workbench (1). The locking components include a first slide rail driving unit (21). A placement component (23) is arranged on the first slide rail driving unit (21). The placement component (23) includes a slider body (231). A rotating table component (232) is arranged on the top of the slider body (231).
5. The locking device of the automatic locking type explosion-proof material transfer container according to claim 4, characterized in that, A first fixing frame (24) is arranged on one side of the top of the workbench (1) where the first slide rail driving unit (21) is located. Fixing plates are installed on both sides of the first fixing frame (21) and in the middle of the side far from the first slide rail driving unit (21).
6. The locking device of the automatic locking type explosion-proof material transfer container according to claim 5, characterized in that, First pressing components (26) are arranged above the fixing plates on both sides of the first fixing frame (21), and the two groups of first pressing components (26) are symmetrically arranged. The first pressing component (26) includes a first pneumatic telescopic rod component. The top extension end of the first pneumatic telescopic rod component is connected with a pressing arc block, and the top extension end of the first pneumatic telescopic rod component faces the first slide rail driving unit (21); A hydraulic rod component is arranged downward at the top of the first fixing frame (21), and the top extension end of the hydraulic rod component is connected with an auxiliary component (25). The auxiliary component (25) includes a fixing plate. A screw rod driving unit is arranged in the middle of the bottom of the fixing plate. A gas auxiliary component is arranged on the screw rod driving unit. Extension rods are installed around the bottom end of the fixing plate. One end of the extension rod is connected with an auxiliary plate; Auxiliary claw units are vertically slidably arranged on both sides of the bottom of the auxiliary plate, and a plurality of limiting and pressing components are arranged in an equidistant circular array outside the auxiliary claw units at the bottom of the auxiliary plate.
7. The locking device of the automated locking type explosion-proof material transfer container according to claim 6, characterized in that, A placement rack is arranged on the fixing plate on the outer surface of the first pneumatic telescopic rod component. A second pneumatic telescopic rod component is arranged on the top of the placement rack. The top extension end of the second pneumatic telescopic rod component is connected with a fixing plate. A plurality of auxiliary roller components are arranged at equal distances on one side of the fixing plate, and the top extension end of the second pneumatic telescopic rod component faces the first slide rail driving unit (21).
8. The locking device of the automatic locking type explosion-proof material transfer container according to claim 6, characterized in that, Above the fixing plate on one side away from the first slide rail driving unit (21), a second pressing assembly (27) is installed. The second pressing assembly (27) includes a third pneumatic telescopic rod assembly, and the top extension end of the third pneumatic telescopic rod assembly faces the first slide rail driving unit (21). A pressing guiding arc block is connected to the top extension end of the third pneumatic telescopic rod assembly.
9. The locking device of the automatic locking type explosion-proof material transfer container according to claim 4, characterized in that, On the top end of the workbench (2) and on one side of the locking assembly, a second fixing frame (28) is installed. On the side of the second fixing frame (28) close to the first slide rail driving unit (21), a second slide rail driving unit is provided, and two groups of foam placing assemblies (22) are provided on one side of the second fixing frame (28) through the second slide rail driving unit.
10. The locking device of the automatic locking type explosion-proof material transfer container according to claim 9, characterized in that, The foam placing assembly (22) includes a vertical slide rail driving unit, and an installation frame is arranged on the vertical slide rail driving unit. A claw clamping unit is arranged at the bottom of the installation frame.