A container production bench

CN117381215BActive Publication Date: 2026-09-11SHANGHAI BAOSHAN PACIFIC CONTAINER CO LTD
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Patent Information

Application Number
CN202311380743.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-24
Publication Date
2026-09-11
Estimated Expiration
2043-10-24

AI Technical Summary

Technical Problem

传统的集装箱生产台架设计通常只能适应特定类型的集装箱,对于不同尺寸和类型的集装箱,需要调整和更换相应的工装夹具,这不仅增加了生产成本,也影响了生产效率

Benefits of technology

[0050] By setting up a frame and an operating platform that can move relative to the frame and is height-adjustable, it is suitable for the initial positioning of containers of different specifications. In conjunction with the limiting structure formed by the bottom corner bracket abutment seat, top corner bracket holder, multiple top side beam clamping parts and side plate clamping parts, the bottom corner brackets and top corner brackets, as well as the top side beams and side plates of the container are clamped and limited respectively. This ensures that there will be no misalignment or deformation between the components of the container during the welding or assembly of the container, thus guaranteeing the assembly and welding effect. It can adapt to the assembly and welding of both standard and special containers and meet the production needs of containers of different specifications.

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Abstract

The application discloses a container production bench, which comprises symmetrically arranged racks, operation platforms and limiting structures; the operation platforms are arranged on the racks and can move relative to the racks; the operation platform comprises multiple telescopic racks; the limiting structure comprises a bottom corner abutting seat, a top corner clamping seat, multiple top side beam pressing pieces and side plate pressing pieces; the bottom corner abutting seat is arranged at the bottom corner position on the side where the two operation platforms are close to each other; the top corner clamping seat is arranged on the upper surface of the operation platform; the top side beam pressing pieces are equidistantly arranged on the upper surface of the operation platform; and the side plate pressing pieces are arranged in the interior of the operation platform. Through the cooperation of the above-mentioned devices, the application ensures that the parts of the container will not be misaligned or deformed during welding or assembly of the container, guarantees the assembly and welding effect, achieves the purpose of simultaneously adapting to the assembly and welding of standard containers and special containers, and meets the production requirements of different specifications of containers.
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Description

Technical Field

[0001] This invention relates to the field of container manufacturing, and in particular to a container manufacturing platform. Background Technology

[0002] Efficiently assembling containers of different sizes and types has always been a crucial issue in container manufacturing. Traditional container production bench designs typically only accommodate specific types of containers. For containers of different sizes and types, it is necessary to adjust and replace the corresponding tooling fixtures, which not only increases production costs but also affects production efficiency.

[0003] Therefore, a new type of production bench design is needed that can simultaneously adapt to the assembly and welding of standard and special containers in order to meet the production needs of containers of different specifications. Summary of the Invention

[0004] The purpose of this invention is to provide a container production bench that can simultaneously accommodate the assembly and welding of standard and special containers, and meet the production needs of containers of different specifications.

[0005] To solve the above-mentioned technical problems, the present invention provides a container production stand, including a symmetrically arranged frame, an operating platform and a limiting structure;

[0006] The operating platform is mounted on the frame and can move relative to the frame to adjust the distance between the two operating platforms;

[0007] The operating platform includes multiple telescopic frames for vertical height adjustment;

[0008] The limiting structure includes a bottom corner abutment seat, a top corner retainer seat, multiple top side beam clamping components, and side plate clamping components;

[0009] The bottom corner fitting abutment is located at the bottom corner of the two operating platforms on the side closest to each other, so as to abut against the side wall of the bottom corner fitting of the container;

[0010] The corner bracket holder is disposed on the upper surface of the operating platform to engage with the top corner bracket of the container;

[0011] The top side beam clamping components are equidistantly arranged on the upper surface of the operating platform and can abut or separate from the top side beam of the container.

[0012] The side plate clamping member is located inside the operating platform and can extend in a direction perpendicular to the telescopic frame, and abut against the side plate in the length direction of the container.

[0013] Furthermore, the frame includes two longitudinal supports and multiple transverse supports;

[0014] Multiple transverse supports are equidistantly arranged between two longitudinal supports, and their number matches that of the telescopic frame;

[0015] Each of the frames has a support component fixedly installed on one side near the symmetrical center plane of the two operating platforms.

[0016] Furthermore, the operating platform also includes a platform board;

[0017] The telescopic frame includes a sliding seat, a telescopic column, and a hydraulic cylinder;

[0018] The bottom of the sliding seat has a roller that can move along the upper surface of the transverse support;

[0019] The telescopic column and the hydraulic cylinder are both mounted on the sliding seat and fixedly connected to the platform plate for adjusting the height of the platform plate.

[0020] A first telescopic rod is fixedly installed on the side wall of the sliding seat;

[0021] One end of the first telescopic rod extends to be fixedly connected to the support member.

[0022] Furthermore, the operating platform also includes a support plate;

[0023] The support plate is fixedly installed on the plurality of sliding seats in a direction parallel to the longitudinal bracket and is located on the side of the two operating platforms that are close to each other, for carrying containers;

[0024] The bottom corner bracket abutment is mounted on the support plate via a connecting plate.

[0025] Furthermore, the bottom corner abutment includes a rotating cam, a second telescopic rod, and a limiting block;

[0026] The rotating cam is rotatably mounted in the middle of the connecting plate and has a first protruding end and a second protruding end;

[0027] One end of the second telescopic rod is hinged to the connecting plate, and the other end is rotatably connected to the first protruding end;

[0028] The limiting block is hinged to the second protruding end;

[0029] When the second telescopic rod is in the extended state, it pulls the rotating cam to rotate in the direction close to the container, and controls the limiting block to rotate until it abuts against the outer wall of the bottom corner fitting of the container.

[0030] Furthermore, the corner bracket includes a first support base, a latching rod, and a third telescopic rod;

[0031] The first support is fixedly installed on the upper surface of the platform plate;

[0032] The middle part of the latching rod is hinged to the top of the first support base;

[0033] The bottom end of the third telescopic rod is hinged to the side wall of the first support base, and the extended end is hinged to the end of the buckle rod away from the container.

[0034] When the third telescopic rod is in the extended state, the latching rod deflects in the direction closer to the container to engage the top corner fittings of the container.

[0035] Furthermore, the top side beam clamping member includes a second support seat, an abutment rod, and a fourth telescopic rod;

[0036] The second support is fixedly installed on the upper surface of the platform plate;

[0037] The middle part of the abutment rod is hinged to the top of the second support seat;

[0038] The bottom end of the fourth telescopic rod is hinged to the side wall of the second support base, and the extended end is hinged to the end of the abutment rod away from the container.

[0039] Furthermore, the side plate clamping component includes a connecting frame, a fifth telescopic rod, a vertical rod, and multiple sliding pressing rods;

[0040] The connecting frame is fixedly installed on the lower surface of the platform plate and is located above the sliding seat;

[0041] The fifth telescopic rod is mounted on the connecting frame;

[0042] The side wall of the vertical rod is fixedly connected to the output end of the fifth telescopic rod;

[0043] Multiple sliding pressing rods slide through the vertical rod along a direction perpendicular to the length of the vertical rod, and can abut against the side panel of the container, and are fitted with compression springs between themselves and the outer wall of the vertical rod.

[0044] Furthermore, a top longitudinal beam adjusting component is provided between two adjacent top side beam clamping components and between the top corner bracket and the outermost top side beam clamping component;

[0045] The top longitudinal beam adjusting component includes a positioning base and a threaded adjusting rod;

[0046] The positioning base is fixedly installed on the upper surface of the platform plate and has a threaded hole;

[0047] The threaded adjusting rod is threaded inside the threaded hole to be fed along the length direction parallel to the transverse support until it abuts against the top longitudinal beam of the container.

[0048] Furthermore, both of the two racks are equipped with rails for transferring containers on the side closest to each other.

[0049] Compared with the prior art, the present invention has at least the following beneficial effects:

[0050] By setting up a frame and an operating platform that can move relative to the frame and is height-adjustable, it is suitable for the initial positioning of containers of different specifications. In conjunction with the limiting structure formed by the bottom corner bracket abutment seat, top corner bracket holder, multiple top side beam clamping parts and side plate clamping parts, the bottom corner brackets and top corner brackets, as well as the top side beams and side plates of the container are clamped and limited respectively. This ensures that there will be no misalignment or deformation between the components of the container during the welding or assembly of the container, thus guaranteeing the assembly and welding effect. It can adapt to the assembly and welding of both standard and special containers and meet the production needs of containers of different specifications. Attached Figure Description

[0051] Figure 1 This is a schematic diagram of the structure of the container production stand of the present invention;

[0052] Figure 2 This is a partial structural diagram of a single operating platform in the container production bench of the present invention;

[0053] Figure 3 This is a partial structural diagram of a single operating platform and frame in the container production bench of the present invention;

[0054] Figure 4 This is a partial structural diagram of the bottom corner fitting abutment seat in the container production stand of the present invention;

[0055] Figure 5 This is a schematic diagram of the corner bracket in the container production stand of the present invention;

[0056] Figure 6 This is a schematic diagram of the top side beam clamping component in the container production stand of the present invention;

[0057] Figure 7 This is a schematic diagram of the side plate clamping component in the container production bench of the present invention;

[0058] Figure 8 This is a schematic diagram of the top longitudinal beam adjustment component in the container production stand of the present invention.

[0059] Icon labels:

[0060] 1. Frame; 11. Longitudinal support; 12. Transverse support; 13. Supporting components;

[0061] 2. Operating platform; 21. Telescopic frame; 211. Sliding seat; 212. Telescopic column; 213. Hydraulic cylinder; 22. Platform plate; 23. Support plate;

[0062] 3. Bottom corner fitting abutment seat; 31. Rotating cam; 32. Second telescopic rod; 33. Limiting block;

[0063] 4. Corner bracket holder; 41. First support seat; 42. Buckle rod; 43. Third telescopic rod;

[0064] 5. Top side beam clamping component; 51. Second support seat; 52. Abutment rod; 53. Fourth telescopic rod;

[0065] 6. Side plate clamping component; 61. Connecting frame; 62. Fifth telescopic rod; 63. Vertical rod; 64. Sliding pressing rod; 65. Compression spring;

[0066] 7. First telescopic pole;

[0067] 8. Connecting plate;

[0068] 9. Top longitudinal beam adjusting component; 91. Positioning base; 92. Threaded adjusting rod;

[0069] 10. Track. Detailed Implementation

[0070] The container production platform of the present invention will now be described in more detail with reference to the schematic diagrams, which illustrate preferred embodiments of the invention. It should be understood that those skilled in the art can modify the invention described herein while still achieving its advantageous effects. Therefore, the following description should be understood as being of general knowledge to those skilled in the art and is not intended to limit the invention.

[0071] The invention is described more specifically by way of example in the following paragraphs with reference to the accompanying drawings. The advantages and features of the invention will become clearer from the following description. It should be noted that the drawings are in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of the invention.

[0072] like Figure 1 and Figure 2 As shown in the figure, an embodiment of the present invention proposes a container production stand, including a symmetrically arranged frame 1, an operating platform 2, and a limiting structure.

[0073] The operating platform 2 is mounted on the frame 1 and can move relative to the frame 1 to adjust the distance between the two operating platforms 2. This allows for adaptive adjustments based on the size of containers of different specifications, so that the container is positioned between the two operating platforms 2, facilitating subsequent positioning, welding, or assembly.

[0074] The operating platform 2 includes multiple telescopic frames 21 for vertical height adjustment, thus enabling the operating platform 2 to adjust the height of some components in the limiting structure to meet the positioning requirements of containers of different specifications.

[0075] It should be noted that, in this embodiment, the limiting structure includes a bottom corner abutment seat 3, a top corner retainer seat 4, multiple top side beam clamping parts 5, and a side plate clamping part 6.

[0076] The bottom corner fitting abutment 3 is located at the bottom corner of the two operating platforms 2 on the side close to each other, so as to abut against the side wall of the bottom corner fitting of the container, that is, to initially position the corner fitting on one side of the container, so that there will be no large displacement in the horizontal direction when the container is assembled or welded.

[0077] In addition, the top corner bracket 4 is disposed on the upper surface of the operating platform 2 to engage with the top corner bracket of the container for secondary positioning of the container corner bracket, thereby further improving the stability of container assembly and welding.

[0078] Furthermore, the top side beam clamping members 5 are equidistantly arranged on the upper surface of the operating platform 2, and can abut or separate from the top side beam of the container to effectively prevent the top side beam from deforming in its length direction during welding work.

[0079] Furthermore, the side plate clamping member 6 is located inside the operating platform 2 and can extend in a direction perpendicular to the telescopic frame 21 and abut against the side plate in the length direction of the container, preventing displacement of the container side plate during welding, which could lead to poor welding results.

[0080] This device, through the installation of a frame 1 and an operating platform 2 that can move relative to the frame 1 and is height-adjustable, is suitable for the initial positioning of containers of different specifications. It works in conjunction with a limiting structure formed by the bottom corner fitting abutment seat 3, the top corner fitting seat 4, multiple top side beam clamping parts 5, and the side plate clamping parts 6 to clamp and limit the bottom and top corner fittings, as well as the top side beams and side plates of the container, respectively. This ensures that there will be no misalignment or deformation between the components of the container during welding or assembly, guaranteeing the assembly and welding effect. It achieves the goal of being able to adapt to the assembly and welding of both standard and special containers and meet the production needs of containers of different specifications.

[0081] like Figure 3 As shown, in this embodiment, a specific frame 1 is proposed to improve the support effect on the operating platform 2 and facilitate the movement of the operating platform 2 relative to the frame 1.

[0082] The frame 1 includes two longitudinal supports 11 and multiple transverse supports 12.

[0083] The multiple transverse supports 12 are equidistantly arranged between the two longitudinal supports 11, and their number matches that of the telescopic frame 21, so that the telescopic frame 21 can move according to the longitudinal supports 11 connected to it, thereby causing the operating platform 2 to shift and ensuring stability during movement.

[0084] It should be noted that a support member 13 is fixedly installed on one side of the frame 1 near the symmetrical center plane of the two operating platforms 2, which is used to provide the fulcrum required when the operating platform 2 is displaced.

[0085] For details, please continue reading. Figure 3 The operating platform 2 also includes a platform board 22.

[0086] The telescopic frame 21 includes a sliding seat 211, a telescopic column 212, and a hydraulic cylinder 213.

[0087] The bottom of the sliding seat 211 has a roller that can move along the upper surface of the transverse support 12. By moving the roller on the transverse support 12, the sliding seat 211 moves relative to the transverse support 12, thereby changing the position of the telescopic frame 21, so that the operating platform 2 can move relative to the frame 1.

[0088] The telescopic column 212 and the hydraulic cylinder 213 are both mounted on the sliding seat 211 and fixedly connected to the platform plate 22 for adjusting the height of the platform plate 22.

[0089] The sliding seat 211 is fixedly mounted with a first telescopic rod 7 on its side wall. One end of the first telescopic rod 7 extends to be fixedly connected to the support member 13 so that the position of the sliding seat 211 on the transverse bracket 12 can be adjusted by the extension or retraction of the first telescopic rod 7, and it can be self-locking.

[0090] In a further embodiment, the operating platform 2 also includes a support plate 23.

[0091] The support plate 23 is fixedly installed on the plurality of sliding seats 211 in a direction parallel to the longitudinal bracket 11 and is located on the side of the two operating platforms 2 that are close to each other. It is used to support the container, that is, the lower surface of the container is in contact with the upper surface of the support plate 23 to initially place the container, so as to facilitate the subsequent final positioning using the bottom corner abutment seat 3, the top corner clip seat 4, the plurality of top side beam clamping parts 5 and the side plate clamping parts 6.

[0092] like Figure 4As shown, it should be noted that the bottom corner fitting abutment 3 is mounted on the support plate 23 via the connecting plate 8 to initially limit the bottom corner fitting of the container.

[0093] In this embodiment, a specific bottom corner bracket abutment 3 is provided to better limit the initial positioning of the bottom corner bracket of the container.

[0094] The bottom corner abutment seat 3 includes a rotating cam 31, a second telescopic rod 32, and a limiting block 33.

[0095] The rotating cam 31 is rotatably mounted in the middle of the connecting plate 8 and has a first protruding end and a second protruding end.

[0096] One end of the second telescopic rod 32 is hinged to the connecting plate 8, and the other end is rotatably connected to the first protruding end.

[0097] The limiting block 33 is hinged to the second protruding end, so that a rotational extrusion structure is formed between the second telescopic rod 32, the rotating cam 31 and the limiting block 33 to extrude the side wall of the bottom corner piece of the container and complete the function of initial positioning of the container.

[0098] Specifically, when the second telescopic rod 32 is in the extended state, it pulls the rotating cam 31 to rotate in the direction close to the container, and controls the limiting block 33 to rotate until it abuts against the outer wall of the bottom corner fitting of the container.

[0099] like Figure 1 as well as Figure 5 As shown, in other embodiments, a top corner bracket seat 4 is also proposed to cooperate with the bottom corner bracket abutment seat 3 to complete the final positioning of the corner bracket on one side of the container.

[0100] The corner bracket 4 includes a first support base 41, a buckle rod 42, and a third telescopic rod 43.

[0101] The first support base 41 is fixedly installed on the upper surface of the platform plate 22.

[0102] The middle part of the latching rod 42 is hinged to the top of the first support base 41.

[0103] The bottom end of the third telescopic rod 43 is hinged to the side wall of the first support base 41, and the extended end is hinged to the end of the buckle rod 42 away from the container.

[0104] When the third telescopic rod 43 is in the extended state, the latching rod 42 deflects in the direction closer to the container to engage the top corner fitting of the container, thus completing the final limiting of the container corner fitting.

[0105] like Figure 1 and Figure 6 As shown, in this embodiment, a top side beam clamping member 5 is also proposed to better prevent deformation of the container top side beam during welding or assembly.

[0106] The top side beam clamping member 5 includes a second support seat 51, an abutment rod 52, and a fourth telescopic rod 53.

[0107] The second support 51 is fixedly installed on the upper surface of the platform plate 22.

[0108] The middle part of the abutment rod 52 is hinged to the top of the second support seat 51.

[0109] The bottom end of the fourth telescopic rod 53 is hinged to the side wall of the second support base 51, and the extended end is hinged to the end of the abutment rod 52 away from the container.

[0110] Its working mechanism is the same as that of the corner bracket 4, so it will not be described in detail here.

[0111] It should be noted that, through the above settings, the only difference between the top corner bracket 4 and the top side beam clamping member 5 is the snap-fit ​​end (i.e., the snap-fit ​​rod 42 and the abutment rod 52), so as to facilitate the replacement of the parts in the future, and the abutment rod 52 at the corresponding position can be processed into the snap-fit ​​rod 42 as needed, making it more convenient to use.

[0112] like Figure 7 As shown, in this embodiment, a specific side panel clamping component 6 is also proposed to improve the positioning effect of the container side panel and prevent the container side panel from shifting during assembly or welding.

[0113] The side plate clamping component 6 includes a connecting frame 61, a fifth telescopic rod 62, a vertical rod 63, and multiple sliding pressing rods 64.

[0114] The connecting frame 61 is fixedly installed on the lower surface of the platform plate 22 and is located above the sliding seat 211.

[0115] The fifth telescopic rod 62 is mounted on the connecting frame 61.

[0116] The side wall of the vertical rod 63 is fixedly connected to the output end of the fifth telescopic rod 62 so that the sliding pressing rod 64 can be pushed by the fifth telescopic rod 62 to abut against the side panel of the container.

[0117] The sliding pressing rods 64 slide through the vertical rod 63 along a direction perpendicular to its length and are able to abut against the container side panel. A compression spring 65 is sleeved between the sliding pressing rod 64 and the outer wall of the vertical rod 63. The compression spring 65 provides a reset force to the sliding pressing rod 64, so that the sliding pressing rod 64 can provide a pre-tightening force to the container side panel in real time, maintaining the positioning effect of the container side panel.

[0118] like Figure 1 , Figure 2 as well as Figure 8 As shown, a top longitudinal beam adjusting member 9 is also provided between two adjacent top side beam clamping members 5 and between the top corner bracket 4 and the outermost top side beam clamping member 5, so as to finely adjust the position of the container and ensure that the centerline of the container is located at the center of the two frames 1, so as to ensure the limiting effect of the limiting structure on the container.

[0119] Specifically, the top longitudinal beam adjusting component 9 includes a positioning base 91 and a threaded adjusting rod 92.

[0120] The positioning base 91 is fixedly installed on the upper surface of the platform plate 22 and has a threaded hole.

[0121] The threaded adjusting rod 92 is threaded inside the threaded hole and is fed along the length direction parallel to the transverse support 12 until it abuts against the top longitudinal beam of the container. When the threaded adjusting rod 92 is continuously rotated, it can correspondingly push the container to make fine adjustments in the direction parallel to the transverse support 12, so as to ensure the subsequent assembly and welding effect.

[0122] Please continue reading. Figure 1 In other embodiments, each of the two frames 1 is provided with a track 10 for transferring containers on the side that is close to each other, so as to cooperate with the lifting and displacement trolley to complete the transport and transfer of containers. This is the prior art, so it will not be described in detail here.

[0123] Obviously, those skilled in the art can make various modifications and variations to this invention without departing from its spirit and scope. Therefore, if these modifications and variations fall within the scope of the claims of this invention and their equivalents, this invention also intends to include these modifications and variations.

Claims

1. A container production gantry, characterized by, This includes a symmetrically arranged frame, operating platform, and limiting structure; The operating platform is mounted on the frame and can move relative to the frame to adjust the distance between the two operating platforms; The operating platform includes multiple telescopic frames for vertical height adjustment; The limiting structure includes a bottom corner abutment seat, a top corner retainer seat, multiple top side beam clamping components, and side plate clamping components; The bottom corner fitting abutment is located at the bottom corner of the two operating platforms on the side closest to each other, so as to abut against the side wall of the bottom corner fitting of the container; The corner bracket holder is disposed on the upper surface of the operating platform to engage with the top corner bracket of the container; The top side beam clamping components are equidistantly arranged on the upper surface of the operating platform and can abut or separate from the top side beam of the container. The side plate clamping member is located inside the operating platform and can extend in a direction perpendicular to the telescopic frame, and abut against the side plate in the length direction of the container. The frame includes two longitudinal supports and multiple transverse supports; The operating platform also includes a support plate and a platform plate; the bottom corner bracket abutment is mounted on the support plate via a connecting plate; The bottom corner fitting abutment includes a rotating cam, a second telescopic rod, and a limiting block; the rotating cam is rotatably mounted in the middle of the connecting plate and has a first protruding end and a second protruding end; one end of the second telescopic rod is hinged to the connecting plate, and the other end is rotatably connected to the first protruding end; the limiting block is hinged to the second protruding end; when the second telescopic rod is in the extended state, it pulls the rotating cam to rotate in the direction closer to the container, and controls the limiting block to rotate until it abuts against the outer wall of the bottom corner fitting of the container; The corner bracket mounting bracket includes a first support base, a latching rod, and a third telescopic rod; the first support base is fixedly installed on the upper surface of the platform plate; the middle part of the latching rod is hinged to the top of the first support base; the bottom end of the third telescopic rod is hinged to the side wall of the first support base, and the extended end is hinged to the end of the latching rod away from the container; when the third telescopic rod is in the extended state, the latching rod deflects in the direction closer to the container to engage the top corner bracket of the container; A top longitudinal beam adjusting component is also provided between two adjacent top side beam clamping components and between the top corner bracket and the outermost top side beam clamping component; the top longitudinal beam adjusting component includes a positioning base and a threaded adjusting rod; the positioning base is fixedly installed on the upper surface of the platform plate and has a threaded hole; the threaded adjusting rod is threaded inside the threaded hole to be fed along the length direction parallel to the transverse support until it abuts against the top longitudinal beam of the container.

2. The container production stand as described in claim 1, characterized in that, Multiple transverse supports are equidistantly arranged between two longitudinal supports, and their number matches that of the telescopic frame; Each of the frames has a support component fixedly installed on one side near the symmetrical center plane of the two operating platforms.

3. The container production station of claim 2, wherein, The telescopic frame includes a sliding seat, a telescopic column, and a hydraulic cylinder; The bottom of the sliding seat has a roller that can move along the upper surface of the transverse support; The telescopic column and the hydraulic cylinder are both mounted on the sliding seat and fixedly connected to the platform plate for adjusting the height of the platform plate. A first telescopic rod is fixedly installed on the side wall of the sliding seat; One end of the first telescopic rod extends to be fixedly connected to the support member.

4. The container production station of claim 3, wherein, The support plate is fixedly installed on the plurality of sliding seats in a direction parallel to the longitudinal bracket and is located on the side of the two operating platforms that are close to each other, for carrying containers.

5. The container production stand as described in claim 3, characterized in that, The top side beam clamping component includes a second support seat, an abutment rod, and a fourth telescopic rod; The second support is fixedly installed on the upper surface of the platform plate; The middle part of the abutment rod is hinged to the top of the second support seat; The bottom end of the fourth telescopic rod is hinged to the side wall of the second support base, and the extended end is hinged to the end of the abutment rod away from the container.

6. The container production stand as described in claim 3, characterized in that, The side plate clamping component includes a connecting frame, a fifth telescopic rod, a vertical rod, and multiple sliding pressing rods; The connecting frame is fixedly installed on the lower surface of the platform plate and is located above the sliding seat; The fifth telescopic rod is mounted on the connecting frame; The side wall of the vertical rod is fixedly connected to the output end of the fifth telescopic rod; Multiple sliding pressing rods slide through the vertical rod along a direction perpendicular to the length of the vertical rod, and can abut against the side panel of the container, and are fitted with compression springs between themselves and the outer wall of the vertical rod.

7. The container production stand as described in claim 1, characterized in that, Both of the racks are equipped with rails for transferring containers on the side closest to each other.

Citation Information

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