Assembly apparatus for a container production line
By introducing assembly equipment for disassembly and processing into the container production line, and using end frame conveying and fixing mechanisms to install the end frames and side panels of the container at two workstations, the problem of numerous and easily interfered parts in the container production line is solved, thereby improving efficiency and production capacity.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SHANGHAI CIMC YANGSHAN LOGISTICS EQUIPMENT CO LTD
- Filing Date
- 2020-06-02
- Publication Date
- 2026-05-12
AI Technical Summary
In container production lines, the large number of parts and the ease with which processing steps can interfere with each other result in high workloads, low efficiency, and limited production capacity.
The assembly equipment includes a first assembly device and a second assembly device. By decomposing the processing operations at two workstations, the end frames and side panels of the container are fixed to the base frame by the end frame conveying mechanism, support platform and fixing mechanism, and transported between workstations by the conveying device, thereby reducing processing interference.
It reduces the workload of staff, improves work efficiency, increases the capacity of container production lines, simplifies positioning and welding operations, and contributes to the automated production of containers.
Smart Images

Figure CN113751925B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of container manufacturing, and more specifically to an assembly equipment for a container production line. Background Technology
[0002] A container is a large cargo container with certain strength, rigidity and specifications, specifically designed for the turnover or transportation of goods. As a commonly used storage and transportation tool in modern logistics, it is in high demand and is widely used in domestic and international transportation.
[0003] In existing technologies, container assembly lines have multiple workstations where workers perform installation and welding operations. In the initial production stage, components such as the front frame, rear frame, sidewalls, and base frame, which are initially assembled in loose parts, are hoisted to the container assembly platform, where they are then installed and welded. However, due to the large number of parts involved in the assembly process and the numerous tools required, interference can easily occur between these components and between different processing steps. This increases the workload of workers, reduces their efficiency, and to some extent limits the production capacity of the container production line.
[0004] Therefore, there is a need to provide an assembly equipment for container production lines to at least partially solve the above problems. Summary of the Invention
[0005] The summary section introduces a series of simplified concepts, which will be further explained in detail in the detailed description section. The summary section of this invention is not intended to limit the key features and essential technical features of the claimed technical solution, nor is it intended to determine the scope of protection of the claimed technical solution.
[0006] This invention provides an assembly device for a container production line, the assembly device being used to install containers, the assembly device comprising:
[0007] A first assembly device, configured to install the end frames of a container onto a base frame in a first working area, the first assembly device comprising:
[0008] An end-frame conveying mechanism, which is at least partially disposed above the first working area, for conveying the end frames of the container to the first working area;
[0009] A first support platform, located at the bottom of the first working area, is used to support the underframe of the container; and
[0010] A first fixing mechanism is used to fix the end frame and the base frame of the container;
[0011] A second assembly device, used to install the side panels of the container to the container in a second working area, the second assembly device comprising:
[0012] A second support platform, located at the bottom of the second working area, is used to support the underframe of the container; and
[0013] A second fixing mechanism is used to fix the container;
[0014] A conveying device, at least partially disposed between the first assembly device and the second assembly device, for conveying the container from the first work area to the second work area.
[0015] Optionally, the first assembly device has at least two end frame conveying mechanisms, and the at least two end frame conveying mechanisms are respectively provided with the first support platform and the first fixing mechanism.
[0016] Optionally, the end frame conveying mechanism includes:
[0017] A crossbeam, the crossbeam being disposed at least partially above the first working area along a length direction perpendicular to the underframe of the container;
[0018] A lateral movement assembly, disposed on the crossbeam and capable of moving along the length of the crossbeam; and
[0019] A longitudinal moving component, connected to the lateral moving component, is capable of moving vertically to move the end frame of the container to the first working area.
[0020] Optionally, both the first fixing mechanism and the second fixing mechanism include:
[0021] A lateral positioning assembly, wherein the lateral positioning assembly is disposed on both sides of the container along the width direction of the container to fix the container in the width direction of the container; and
[0022] A longitudinal positioning assembly is disposed on both sides of the container along the length direction of the container to fix the container in the length direction of the container.
[0023] Optionally, the lateral positioning component includes a first mating part and a first positioning part, the first positioning part having a first moving head movable along the width direction of the container, the first moving head and the first mating part cooperating with each other to fix the container;
[0024] The longitudinal positioning component includes a second mating part and a second positioning part. The second positioning part has a second moving head that is movable along the length direction of the container. The second moving head and the second mating part cooperate with each other to fix the container.
[0025] Optionally, the first fixing mechanism further includes a base frame positioning assembly, which is disposed on the first support platform. The base frame positioning assembly includes:
[0026] A base frame mounting bracket, the base frame mounting bracket being pivotable about a first pivot axis parallel to the length direction of the container; and
[0027] A bottom cylinder is provided, which drives the base frame fixing frame to pivot about the first pivot axis so that one end of the fixing frame contacts and fixes the base frame on the first support platform.
[0028] Optionally, both the first fixing mechanism and the second fixing mechanism include a top positioning component, the top positioning component comprising:
[0029] Top mounting bracket, the top mounting bracket being pivotable about a second pivot axis parallel to the length direction of the container; and
[0030] A top cylinder capable of driving the top mounting bracket to pivot about the second pivot axis so that one end of the top mounting bracket contacts and secures the end frame.
[0031] Optionally, the first fixing mechanism further includes a top rotating assembly, the top rotating assembly comprising:
[0032] Rotary seat, the top positioning component in the first fixing mechanism is disposed on the rotary seat; and
[0033] A rotary cylinder is provided to drive the rotating seat to rotate in a vertical direction, thereby causing the top positioning component on the rotating seat to rotate and thus preventing the end frame of the container from interfering with the top positioning component during transportation to the first working area.
[0034] Optionally, the first fixing mechanism further includes an intermediate positioning component, the intermediate positioning component comprising:
[0035] An intermediate fixing frame, the intermediate fixing frame being pivotable about a third pivot axis parallel to the vertical direction; and
[0036] An intermediate cylinder is capable of driving the intermediate fixing frame to pivot about the third pivot axis so that one end of the intermediate fixing frame can contact and abut against the end frame.
[0037] Optionally, the first assembly device includes a first workbench, which is disposed on at least two sides of the first working area for workers to process the container;
[0038] The second assembly device includes a second workbench, which is disposed on at least two sides of the second working area for workers to process the container.
[0039] The assembly equipment for a container production line according to the present invention includes a first assembly device, a second assembly device, and a conveying device. The first assembly device can fix the end frame of the container to the bottom frame of the container. Then, the conveying device transports the container processed in the first working area to the second working area. The second assembly device then fixes the side panels of the container to the container. This improves the container assembly process by splitting the processing operation from one station to two stations, reducing interference between the various processing operations, allowing workers to perform installation and welding operations on the container in a more efficient manner, reducing the workload of workers, improving their work efficiency, and increasing the production capacity of the container production line. Attached Figure Description
[0040] The following drawings, which are incorporated herein by reference as part of this invention, are used to understand the invention. The drawings illustrate embodiments of the invention and their descriptions, serving to explain the principles of the invention. In the drawings:
[0041] Figure 1 This is a front view of a first assembly device in an assembly apparatus according to an embodiment of the present invention;
[0042] Figure 2 for Figure 1 Enlarged view of section A;
[0043] Figure 3 This is a side view of a first assembly device in an assembly apparatus according to an embodiment of the present invention;
[0044] Figure 4 A front view of a second assembly device in an assembly apparatus according to an embodiment of the present invention; and
[0045] Figure 5 This is a side view of a second assembly device in an assembly apparatus according to an embodiment of the present invention.
[0046] Explanation of reference numerals in the attached figures:
[0047] 100: First assembly device; 110: End frame conveying mechanism
[0048] 111: Crossbeam; 112: Lateral movement assembly
[0049] 113: Longitudinal moving component; 120: First support platform
[0050] 131 / 231: First mating part; 132 / 232: First positioning part
[0051] 141: Base frame mounting bracket 142: Bottom cylinder
[0052] 151 / 251: Top mounting bracket; 152 / 252: Top cylinder
[0053] 161: Rotary seat; 162: Rotary cylinder
[0054] 170: Intermediate positioning component; 180: First worktable
[0055] 200: Second assembly device; 210: Second support platform
[0056] 220: Side panel positioning assembly; 230: Second worktable
[0057] 300: Conveying device Detailed Implementation
[0058] In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the invention. However, it will be apparent to those skilled in the art that embodiments of the invention may be practiced without one or more of these details. In other instances, certain technical features well-known in the art have not been described in order to avoid confusion with embodiments of the invention.
[0059] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the scope of exemplary embodiments according to the invention. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms “comprising” and / or “including” are used in this specification, they indicate the presence of the stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or combinations thereof.
[0060] Exemplary embodiments according to the present invention will now be described in more detail with reference to the accompanying drawings. However, these exemplary embodiments may be implemented in many different forms and should not be construed as being limited to the embodiments set forth herein. It should be understood that these embodiments are provided so that the disclosure of the invention is thorough and complete, and that the concept of these exemplary embodiments is fully conveyed to those skilled in the art. In the drawings, the same reference numerals are used to denote the same elements for clarity, and therefore their description will be omitted.
[0061] This invention provides an assembly device for a container production line. In the container assembly line, containers need to be assembled from disassembled parts such as the front frame, rear frame, and underframe to form a complete container body. In the initial stage of the container production line, the front and rear frames of the container need to be vertically mounted onto a horizontally placed underframe. The assembly device provided by this invention can be used to install the front and rear frames of the container onto the underframe, and also to install the side panels of the container onto the underframe.
[0062] In one embodiment of the present invention, such as Figures 1 to 5 As shown, the assembly equipment includes a first assembly device 100, a second assembly device 200, and a conveying device 300. The first assembly device 100 can be used to install the front frame and rear frame of the container onto the container chassis. After the container is pre-processed in the first assembly device 100, it is conveyed to the second assembly device 200 via the conveying device 300. The second assembly device 200 can be used to install the side panels of the container onto the container.
[0063] In this embodiment, the installation and transportation methods of the front and rear frames of the container are the same. The following will use the end frame as an example to illustrate the installation methods of the front and rear frames of the container.
[0064] Specifically, such as Figures 1 to 3As shown, the first assembly device 100 is used to install the end frames of a container onto the container's underframe in a first working area. The first assembly device 100 includes an end frame conveying mechanism 110, a first support platform 120, and a first fixing mechanism. The end frame conveying mechanism 110 is at least partially disposed above the first working area, capable of conveying the end frames of containers from the previous workstation to the first working area. Preferably, the end frame conveying mechanism 110 can convey the end frames of containers to the first working area in a vertically positioned manner. The first support platform 120 is disposed at the bottom of the first working area to support the container's underframe. After the end frame conveying mechanism 110 conveys the end frames to the first working area, the operator can install the end frames onto the container's underframe. The first fixing mechanism is disposed in the first working area and can be used to fix the container's end frames and underframe in the processing position. Afterwards, the operator can perform processing operations such as installation and welding on the container.
[0065] After the end frames and base frames of the container are processed in the first working area, the container is transported from the first working area to the second working area by the conveyor device 300. It can be understood that the end frames of the container processed in the first working area are already fixed to the base frame, while in the second working area, the side panels of the container are fixed to the base frame and end frames.
[0066] The second assembly device 200 is used to install the side panels of the container onto the container in the second working area. For example... Figure 4 and Figure 5 As shown, the second assembly device 200 includes a second support platform 210 and a second fixing mechanism. A container transported via the conveyor 300 can be supported on the second support platform 210. The second fixing mechanism can be used to fix the container at a processing position in the second area.
[0067] The assembly equipment for a container production line according to the present invention includes a first assembly device 100, a second assembly device 200, and a conveying device 300. The first assembly device 100 can fix the end frame of the container to the bottom frame of the container. Then, the conveying device 300 transports the container processed in the first working area to the second working area. The second assembly device 200 then fixes the side panels of the container to the container. This improves the container assembly process by splitting the processing operation from one workstation to two workstations, reducing interference between the various processing operations, allowing workers to perform installation and welding operations on the container in a more efficient manner, reducing the workload of workers, improving their work efficiency, and increasing the production capacity of the container production line.
[0068] Specifically, since commonly used containers include a front frame and a rear frame, which are installed in different positions on the underframe, in order to further improve the installation efficiency of the container production line, in this embodiment, the first assembly device 100 has at least two end frame conveying mechanisms 110, wherein the first end frame conveying mechanism is used to convey the front frame of the container, and the second end frame conveying mechanism is used to convey the rear frame of the container. Furthermore, since existing containers include various sizes such as 20-foot and 40-foot, in order to improve the applicability of the first assembly device 100, in this embodiment, the first assembly device 100 may also have a third end frame conveying mechanism. Both the second and third end frame conveying mechanisms can convey the rear frame of the container. Thus, different end frame conveying mechanisms can be selected according to work requirements to convey the rear frame of the container to different positions, facilitating the production of containers of different sizes. It is understood that each of the multiple end frame conveying mechanisms 110 has a corresponding first support platform 120 and a first fixing mechanism for positioning the end frame.
[0069] Furthermore, such as Figures 1 to 3 As shown, the end frame conveying mechanism 110 can move a vertically placed end frame to a first working area. The end frame conveying mechanism 110 may include a crossbeam 111, a lateral moving assembly 112, and a longitudinal moving assembly 113. The crossbeam 111 is at least partially positioned above the first working area along a length direction perpendicular to the container's underframe. The lateral moving assembly 112 is mounted on the crossbeam 111 and can move along the length of the crossbeam 111. The longitudinal moving assembly 113 is connected to the lateral moving assembly 112 and can move vertically. The longitudinal moving assembly 113 can connect to the vertically placed end frame and transport it to the first working area. Exemplarily, the longitudinal moving assembly 113 may be constructed as an electric hoist, and the end of the electric hoist is provided with a clamp capable of connecting to a corner piece of the end frame. For example, the clamp may have a rotating head that extends into a hole in the corner piece. After the rotating head extends into the through hole of the corner piece, it can rotate 90 degrees to connect to the end frame.
[0070] In other words, the end frame conveying mechanism 110 can convey the end frame from the side of the container to the first working area in the width direction of the container's underframe.
[0071] In the first assembly device 100, both the container's base frame and end frames can be supported on the first support platform 120. To enable more accurate positioning of the container, the first fixing mechanism includes a lateral positioning component and a longitudinal positioning component located near the container's base frame. The lateral positioning component is used to position the container in the width direction, and the longitudinal positioning component is used to position the container in the length direction. Specifically, the lateral positioning component includes a first mating part 131 and a first positioning part 132, which are respectively located on both sides of the container along its width direction. The first positioning part 132 is provided with a first moving head that can move along the width direction of the container. When positioning of the container is required, the first moving head of the first positioning part 132 moves and abuts against the container's base frame, causing the container to contact the first mating part 131, thereby positioning the container. Based on the same positioning principle, the longitudinal positioning component includes a second mating part and a second positioning part. The second mating part and the second positioning part are respectively arranged on both sides of the container along its length direction. The second positioning part is provided with a second moving head that can move along the length direction of the container. When the container needs to be positioned, the second moving head of the second positioning part moves and abuts against the container, so that the container and the second mating part come into contact with each other, thereby positioning the container.
[0072] Correspondingly, such as Figure 4 and Figure 5 As shown, in the second assembly device 200, both the container's base frame and end frames can be supported on the second support platform 210. To enable more accurate positioning of the container, the second fixing mechanism may also include a lateral positioning component and a longitudinal positioning component. The lateral positioning component includes a first mating part 231 and a first positioning part 232, and the longitudinal positioning component includes a second mating part and a second positioning part. The lateral and longitudinal positioning components in the second assembly device 200 have the same structure as those in the first assembly device 100 and can position the container in the same way, so they will not be described again here.
[0073] In the first assembly device 100, the end frames and base frames of the container are not fixedly connected before processing. To further improve the fixing effect of the end frames and base frames, the first fixing mechanism also includes a base frame positioning assembly disposed on the first support platform 120. The base frame positioning assembly includes a base frame fixing frame 141 and a bottom cylinder 142. The base frame fixing frame 141 is pivotable about a first pivot axis parallel to the length direction of the container, and the bottom cylinder 142 drives the base frame fixing frame 141 to pivot about the first pivot axis, so that one end of the base frame fixing frame 141 can contact and abut against the base frame on the first support platform 120. Preferably, the end of the base frame fixing frame 141 that can contact the base frame is provided with a sliding member, thereby providing a certain amount of movement space for the base frame positioning while ensuring the fixing effect when the lateral positioning assembly and the longitudinal positioning assembly position the base frame.
[0074] In addition, such as Figure 1 and Figure 2 As shown, in the first assembly device 100, in order to ensure the installation position of the end frame, it is also necessary to fix the end frame of the container. In this embodiment, the first fixing mechanism also includes a top positioning component that can fix the top of the container. The top positioning component includes a top fixing frame 151 and a top cylinder 152, wherein the top fixing frame 151 can pivot about a second pivot axis parallel to the length direction of the container, and the top cylinder 152 can drive the top fixing frame 151 to pivot about the second pivot axis, so that one end of the top fixing frame 151 can contact and abut against the end frame, thereby fixing the end frame in the vertical direction.
[0075] Correspondingly, such as Figure 4 As shown, in the second assembly device 200, the end frame and side panels of the container also need to be fixedly connected by welding or other means. Therefore, the end frame of the container also needs to be fixed. The second fixing mechanism may also include a top positioning component. The top positioning component in the second assembly device 200 includes a top fixing frame 251 and a top cylinder 252. The top positioning component in the second assembly device 200 also has the same structure as the top positioning component in the first assembly device 100 and can position the container in the same way. It will not be described again here.
[0076] In addition, such as Figure 1 and Figure 2As shown, in the first assembly device 100, the end frame of the container needs to be transported vertically downwards to the first working area. To avoid interference between the end frame and the top positioning component during movement, the first fixing component also includes a top rotating component, and the top positioning component can be mounted on the top rotating component. When the end frame of the container needs to be lowered into the first working area, the top rotating component can be used to move the top positioning component away from the moving area of the end frame. After the end frame is placed into the first working area, the top rotating component moves the top positioning component to a suitable position to fix the end frame. In this embodiment, the top rotating component includes a rotating base 161 and a rotating cylinder 162. The top positioning component is mounted on the rotating base 161, and the rotating cylinder 162 can drive the rotating base 161 to rotate around a rotation axis parallel to the vertical direction, thereby enabling the top positioning component to rotate. This allows the top positioning component to provide sufficient space for the movement of the end frame during the process of placing the end frame into the first working area, thus avoiding collisions. In this embodiment, the first assembly device 100 is provided with one top rotating component; in other embodiments not shown, two top rotating components may also be provided.
[0077] In addition, such as Figure 1 and Figure 2 As shown, in the first assembly device 100, the end frame and base frame of the container are not fixedly connected before processing. To further improve the fixing effect of the end frame, the first fixing mechanism also includes an intermediate positioning component 170, which can position the end frame of the container. Specifically, the intermediate positioning component 170 includes an intermediate fixing frame and an intermediate cylinder. The intermediate fixing frame can pivot about a third pivot axis parallel to the vertical direction, and the intermediate cylinder can drive the intermediate fixing frame to pivot about the third pivot axis, so that one end of the intermediate fixing frame can contact and abut against the end frame, thereby fixing the end frame in the horizontal direction and preventing the end frame of the container from tipping over. Preferably, the end of the intermediate fixing frame that can contact the end frame is provided with a sliding member, so that when the top positioning component positions the end frame, it can provide a certain amount of movement space for the positioning of the end frame while ensuring the fixing effect.
[0078] The second assembly device 200 is also provided with a side plate positioning assembly 220, such as Figure 4 As shown, the side panel positioning assembly 220 is mounted on the second support platform 210. It can move along the width direction of the container to push the side panel of the container to a predetermined processing position so that the workers can fix the side panel of the container to the base frame by welding or other means.
[0079] In addition, to facilitate the processing of containers by staff, such as Figure 1 and Figure 2As shown, the first assembly device 100 is further provided with a first workbench 180, wherein the first workbench 180 is disposed on at least two sides of the first working area. Specifically, the first workbench 180 may include a left workbench and a right workbench, which are disposed on both sides of the container along the width direction of the container. Correspondingly, as... Figure 4 As shown, the second assembly device 200 is equipped with a second workbench 230, which may also include a left workbench and a right workbench arranged on both sides of the container along the width direction of the container. Thus, workers can perform processing operations on the container on the left and right workbench respectively.
[0080] Furthermore, the conveying device 300 may include a conveyor chain and a lifting platform. The conveyor chain is capable of transporting containers from the first working area to the second working area. The conveyor chain is mounted on the lifting platform. When it is necessary to move the container, the lifting platform rises to lift the conveyor chain, and the container placed on the first support platform 120 is lifted. The conveyor chain then moves, thereby moving the container to the second working area. Subsequently, the lifting platform lowers so that the second support platform 210 can support the container.
[0081] In summary, according to the embodiments of the present invention, the installation operation of the container can be carried out in the following manner:
[0082] First, in the first assembly device 100, the front and rear frames of the container are conveyed along the width direction of the container to the first working area via two end-frame conveying mechanisms 110. At this time, the top rotating assembly has moved the top positioning assembly away from the front and rear frames of the container, and the container's underframe is placed on the first support platform 120. Then, the end-frame conveying mechanisms 110 vertically lower the front and rear frames of the container into the first working area, where they are supported on the first support platform 120. The intermediate positioning assembly 170 secures the front and rear frames of the container to prevent them from tipping over. Then... The end-frame conveying mechanism 110, along with the front and rear frames of the container, the lateral positioning component, the longitudinal positioning component, and the top positioning component, positions the front and rear frames and the underframe of the container. It is understood that the top rotating component moves the top positioning component to a position that can fix the front and rear frames of the container. Afterwards, workers perform installation and welding operations on the container, including welding the gooseneck groove of the container to the underframe. Once the workers' operations are complete, the first fixing mechanism separates from the container, and the conveying device 300 transports the container from the first working area to the second working area.
[0083] In the second assembly device 200, the container is supported on the second support platform 210. The lateral positioning component, longitudinal positioning component and top positioning component in the second working area position the front frame, rear frame and base frame of the container. At this time, the side panel of the container has been placed in the predetermined installation position. The side panel positioning component 220 can push the side panel to the processing position along the width direction of the container so that the workers can perform processing operations such as installation and welding on the container. After the workers finish processing, the second fixing mechanism separates from the container, and the conveying device 300 transports the container from the second working area to the next work station.
[0084] The above assembly method can effectively increase the capacity of the container production line, and its production efficiency can be increased by about 20% compared with the existing container production equipment. It simplifies the container positioning and welding operations, which is conducive to realizing the automated production of containers.
[0085] The present invention has been described through the above embodiments. However, it should be understood that the above embodiments are for illustrative purposes only and are not intended to limit the invention to the scope of the described embodiments. Furthermore, those skilled in the art will understand that the present invention is not limited to the above embodiments, and many more variations and modifications can be made based on the teachings of the present invention, all of which fall within the scope of protection claimed by the present invention. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. An assembly equipment for a container production line, characterized in that, The assembly equipment is used for installing containers, and the assembly equipment includes: A first assembly device, configured to install the end frames of a container onto a base frame in a first working area, the first assembly device comprising: An end-frame conveying mechanism, which is at least partially disposed above the first working area, for conveying the end frames of the container to the first working area; A first support platform, located at the bottom of the first working area, is used to support the underframe of the container; and A first fixing mechanism is used to fix the end frame and the base frame of the container. The first fixing mechanism further includes a base frame positioning assembly, which is disposed on the first support platform. The base frame positioning assembly includes a base frame fixing frame and a bottom cylinder. The base frame fixing frame is pivotable about a first pivot axis parallel to the length direction of the container. The bottom cylinder can drive the base frame fixing frame to pivot about the first pivot axis so that one end of the base frame fixing frame contacts and fixes the base frame on the first support platform. A second assembly device, used to install the side panels of the container to the container in a second working area, the second assembly device comprising: A second support platform, located at the bottom of the second working area, is used to support the underframe of the container; and A second fixing mechanism is used to fix the container; A conveying device, at least partially disposed between the first assembly device and the second assembly device, for conveying the container from the first work area to the second work area.
2. The assembly equipment for a container production line according to claim 1, characterized in that, The first assembly device has at least two end frame conveying mechanisms, and the at least two end frame conveying mechanisms are respectively provided with the first support platform and the first fixing mechanism.
3. The assembly equipment for a container production line according to claim 1, characterized in that, The end frame conveying mechanism includes: A crossbeam, the crossbeam being disposed at least partially above the first working area along a length direction perpendicular to the underframe of the container; A lateral movement assembly, disposed on the crossbeam and capable of moving along the length of the crossbeam; and A longitudinal moving component, connected to the lateral moving component, is capable of moving vertically to move the end frame of the container to the first working area.
4. The assembly equipment for a container production line according to claim 1, characterized in that, Both the first fixing mechanism and the second fixing mechanism include: A lateral positioning assembly, wherein the lateral positioning assembly is disposed on both sides of the container along the width direction of the container to fix the container in the width direction of the container; and A longitudinal positioning assembly is disposed on both sides of the container along the length direction of the container to fix the container in the length direction of the container.
5. The assembly equipment for a container production line according to claim 4, characterized in that, The lateral positioning component includes a first mating part and a first positioning part. The first positioning part has a first moving head that can move along the width direction of the container. The first moving head and the first mating part cooperate with each other to fix the container. The longitudinal positioning component includes a second mating part and a second positioning part. The second positioning part has a second moving head that is movable along the length direction of the container. The second moving head and the second mating part cooperate with each other to fix the container.
6. The assembly equipment for a container production line according to claim 1, characterized in that, Both the first fixing mechanism and the second fixing mechanism include a top positioning component, the top positioning component comprising: Top mounting bracket, the top mounting bracket being pivotable about a second pivot axis parallel to the length direction of the container; and A top cylinder capable of driving the top mounting bracket to pivot about the second pivot axis so that one end of the top mounting bracket contacts and secures the end frame.
7. The assembly equipment for a container production line according to claim 6, characterized in that, The first fixing mechanism further includes a top rotating assembly, the top rotating assembly comprising: Rotary seat, the top positioning component in the first fixing mechanism is disposed on the rotary seat; and A rotary cylinder is provided to drive the rotating seat to rotate in a vertical direction, thereby causing the top positioning component on the rotating seat to rotate and thus preventing the end frame of the container from interfering with the top positioning component during transportation to the first working area.
8. The assembly equipment for a container production line according to claim 1, characterized in that, The first fixing mechanism further includes an intermediate positioning component, the intermediate positioning component comprising: An intermediate fixing frame, the intermediate fixing frame being pivotable about a third pivot axis parallel to the vertical direction; and An intermediate cylinder is capable of driving the intermediate fixing frame to pivot about the third pivot axis so that one end of the intermediate fixing frame can contact and abut against the end frame.
9. The assembly equipment for a container production line according to claim 1, characterized in that, The first assembly device includes a first workbench, which is disposed on at least two sides of the first working area for workers to process the container; The second assembly device includes a second workbench, which is disposed on at least two sides of the second working area for workers to process the container.