Workpiece transferring and storing tool
By designing a workpiece transfer and storage tooling including the main body, support bracket, positioning frame and drive components, the problems of insufficient convenience, safety and efficiency of traditional workpiece transfer and storage tooling are solved, and efficient transportation and storage of workpieces in suitable postures are achieved.
Patent Information
- Application Number
- CN202421779084.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-25
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-07-25
AI Technical Summary
Traditional workpiece transfer and storage workpieces have shortcomings in terms of convenience, safety and efficiency, especially when handling heavy workpieces, manual handling is inconvenient and safety hazards.
A workpiece transfer storage tool is designed, including the main body, bracket, positioning frame and drive assembly. The bearing bracket can be moved laterally into or out of the first space of the main body. The positioning frame can be rotatably connected to the bearing bracket to drive the target workpiece to rotate, and the driving component is driven to connect with the positioning frame to drive the rotation of the positioning frame and adjust the workpiece posture.
Through this tooling, the workpiece can be loaded, transported, stored and unloaded in a suitable posture, which improves the convenience and efficiency of the workpiece, reduces the labor intensity of manual handling, and reduces safety hazards.
Smart Images

Figure CN223002118U_ABST
Abstract
Description
Technical Field
[0001] The exemplary embodiments of the present application generally relate to the technical field of transfer and storage tools, and in particular, to a workpiece transfer and storage tool. Background Art
[0002] Equipment production and assembly usually involves many links and complex processes. For example, the raw materials are machined by cutting, forming, casting, forging, etc. to form the required parts. After that, the parts need to be assembled into components. After that, the parts or components need to be transported to the assembly plant to be assembled into complete equipment. During the entire production process, many workpieces (such as sheet metal workpieces, casting workpieces, forging workpieces, etc.) will be involved in transportation and storage.
[0003] However, the convenience and safety of the transportation and storage of heavy workpieces in conventional technologies still need to be optimized. Taking air compressor production as an example, it is usually necessary to complete the processing of workpieces such as shells and hoods in a machining plant, and then transport them to the assembly plant to complete the assembly of the whole machine. The transportation and storage of heavy workpieces such as shells and hoods still have problems such as inconvenience in manual handling, poor convenience, low efficiency and high safety risks. Utility Model Content
[0004] The purpose of the present application is to provide a workpiece transfer and storage tooling to solve or at least partially solve the above-mentioned problems and / or other potential problems existing in traditional workpiece transfer and storage tooling.
[0005] The present application provides a workpiece transfer and storage tool, comprising: a main body, having a first space inside, and a first opening connected to the first space is provided on the side of the main body; a supporting frame connected to the main body and capable of being moved into or out of the first space laterally via the first opening; a positioning frame rotatably connected to the supporting frame, the positioning frame is used to carry a first target workpiece, and the positioning frame can drive the first target workpiece to rotate; and a driving component, which is transmission-connected to the positioning frame, and the driving component can drive the positioning frame to rotate.
[0006] In some embodiments, the supporting frame includes a bottom frame and two side support frames arranged on the top of the bottom frame, and the two side support frames are arranged opposite to each other; the positioning frame is arranged between the two side support frames, and the positioning frame is rotatably connected to the two side support frames respectively.
[0007] In some embodiments, the driving assembly is disposed on one of the two lateral support frames that can be moved out of the first space first.
[0008] In some embodiments, a side of the support bracket that can first move out of the first space is provided with a support leg, the support leg is vertically movably connected to the support bracket, and the support leg is provided with a first locking structure for locking the support leg and the support bracket.
[0009] In some embodiments, a rolling structure is provided at the bottom end of the support leg.
[0010] In some embodiments, the carrier bracket is connected to the main body through at least one slide rail.
[0011] In some embodiments, the positioning frame includes a frame, and a space for placing the first target workpiece is formed in the middle of the frame.
[0012] In some embodiments, a flange extending inward is provided on the inner peripheral surface of the frame, and the flange and the inner peripheral surface of the frame form an opening groove for clamping the first target workpiece.
[0013] In some embodiments, at least one second locking structure for locking the first target workpiece is provided on the positioning frame.
[0014] In some embodiments, there is also at least one second space inside the main body, and the second space is used to accommodate at least one second target workpiece.
[0015] In some embodiments, a third locking structure for locking the at least one second target workpiece is also provided on the main body.
[0016] In some embodiments, the third locking structure includes one or more elastic stoppers, and the elastic stoppers are rotatably connected to the main body and are used to stop the second target workpiece.
[0017] In some embodiments, a positioning groove is provided on one side of the elastic stopper facing the second space, and the positioning groove is configured to enable the peripheral portion of the second target workpiece to be embedded.
[0018] In the workpiece transfer and storage tooling according to the embodiments of the present application, the first target workpiece can be driven to move into or out of the main body through the cooperation of the carrier bracket and the positioning frame, and the driving assembly can also be used to drive the positioning frame to rotate, so as to adjust the posture of the first target workpiece, so that the first target workpiece can be loaded, transferred, stored and unloaded in a suitable posture, thereby improving the convenience of loading, transferring, storing and unloading the first target workpiece. Especially when applied to the transfer and storage of heavy workpieces, it can reduce manual handling while significantly improving efficiency and significantly reducing labor intensity. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In combination with the accompanying drawings and with reference to the following detailed description, the above and other features, advantages and aspects of the embodiments of the present application will become more obvious. In the drawings, the same or similar reference numerals represent the same or similar elements, where:
[0020] Figure 1 Shows a perspective view of the workpiece transfer and storage tooling according to the first embodiment of the present application in the unloaded state;
[0021] Figures 2 to 4Stereoscopic views of the workpiece transfer and storage tooling according to the first embodiment of the present application in different postures in the loaded state are respectively shown;
[0022] Figure 5 A stereoscopic view of the workpiece transfer and storage tooling according to the second embodiment of the present application in the loaded state is shown;
[0023] Figure 6 Shows Figure 5 A partial enlarged view of part A in
[0024] Explanation of reference numerals:
[0025] 10 - Main body; 11 - First space; 12, 13, 14 - Second spaces; 15, 16 - Third locking structures;
[0026] 20 - Carrier; 21 - Bottom bracket; 22, 27 - Lateral support frames; 23 - Support legs; 24 - First locking structure; 25 - Rolling structure; 26 - Slide rail;
[0027] 30 - Positioning frame; 31 - Frame; 32 - Flange; 33 - Open slot; 34 - Second locking structure; 35 - Elastic stop; 36 - Positioning slot;
[0028] 40 - Driving assembly;
[0029] 51, 52 - First target workpieces;
[0030] 61, 62, 63 - Second target workpieces. Detailed implementation manners
[0031] The preferred embodiments of the present application will be described in more detail below with reference to the accompanying drawings. Although the preferred embodiments of the present application are shown in the drawings, it should be understood that the present application can be implemented in various forms and should not be limited by the embodiments set forth herein. On the contrary, these embodiments are provided to make the present application more thorough and complete, and to fully convey the scope of the present application to those skilled in the art.
[0032] As used herein, the term "including" and its variations mean open inclusion, that is, "including but not limited to". Unless otherwise stated, the term "or" means "and / or". The term "based on" means "at least partially based on". The terms "an example embodiment" and "an embodiment" mean "at least one example embodiment". The term "another embodiment" means "at least one additional embodiment". The terms "first", "second", etc. may refer to different or the same objects.
[0033] An embodiment of the present application provides a workpiece transfer and storage tooling. Refer to Figures 1 to 4As shown, the workpiece transfer and storage tooling of the embodiment of the present application includes a main body 10, a support frame 20, a positioning frame 30 and a driving assembly 40.
[0034] The main body 10 has a first space 11 inside, and a first opening connected to the first space 11 is provided on the side of the main body 10. Alternatively or additionally, the main body 10 may adopt an open structure. For example, the main body 10 may include a rectangular frame structure, and the first space 11 may include all or part of the internal space of the rectangular frame structure. At least one side of the rectangular frame structure may have an open structure of a rectangular or other shape, and the first opening may be formed by all or part of the opening area of the open structure. Alternatively or additionally, the main body 10 may also adopt a closed structure. Exemplarily, the main body 10 may include a box structure, and at least part of the inner cavity space of the box structure forms the first space 11. A first opening may be provided on one side wall of the box structure. Of course, the specific structure of the above-mentioned main body 10 is only exemplary. In actual application, the structure of the subject may be constructed according to the actual storage and transportation requirements of the workpiece.
[0035] The support bracket 20 is connected to the main body 10 and can be moved into or out of the first space 11 laterally via the first opening. The support bracket 20 is used to support the positioning frame 30, and the positioning frame 30 is used to carry the first target workpieces 51, 52. The support bracket 20 can be connected to the main body 10 movably in the laterally direction, and the support bracket 20 can move in the laterally direction to drive the positioning frame 30 and the first target workpieces 51, 52 to move out of the first space 11, so as to facilitate loading the first target workpieces 51, 52 into the positioning frame 30 or unloading the first target workpieces 51, 52 from the positioning frame 30. The support bracket 20 can also drive the positioning frame 30 and the first target workpieces 51, 52 to move into the first space 11 from outside the first space 11 via the first opening, so as to be able to place the first target workpieces 51, 52 in the main body 10, as shown in FIG. Figure 2 shown.
[0036] The positioning frame 30 is rotatably connected to the support frame 20, and the positioning frame 30 can drive the first target workpieces 51 and 52 to rotate. The driving assembly 40 is transmission-connected to the positioning frame 30, and the driving assembly 40 can drive the positioning frame 30 to rotate. The rotation of the positioning frame 30 can adjust the posture of the first target workpieces 51 and 52, so that the first target workpieces 51 and 52 can be transported in a suitable posture, and can be loaded and unloaded in a suitable posture, thereby improving the convenience of transporting, storing and loading and unloading the first target workpieces 51 and 52.
[0037] Alternatively or additionally, the positioning frame 30 may have a first posture suitable for being moved into or out of the first space 11 together with the supporting frame 20, and a second posture suitable for taking out the first target workpieces 51, 52 from the positioning frame 30. During transportation and storage, the positioning frame 30 can be rotated to the first posture, and the positioning frame 30, the supporting frame 20 and the first target workpieces 51, 52 can be received together into the first space 11 of the main body 10, which can fully protect the first target workpieces 51, 52 and improve the safety and stability of the first target workpieces 51, 52 during transportation and storage. When loading and unloading are required, the positioning frame 30 and the supporting frame 20 can be moved out of the main body 10, and the driving assembly 40 is used to drive the positioning frame 30 to rotate to the second posture. In the second posture, the first target workpieces 51, 52 can be conveniently taken out from the positioning frame 30 or loaded into the positioning frame 30, and after taking out the first target workpieces 51, 52 from the positioning frame 30, it is convenient for subsequent hoisting with the whole machine, which has high convenience.
[0038] Regarding the first posture and the second posture, the positioning frame 30 in the first posture matches the structure and / or shape of the first opening, so that the positioning frame 30 in the first posture can be moved into the first space 11 together with the supporting frame 20 or moved out of the first space 11 to the outside of the first space 11. Alternatively or additionally, the posture in which the projections of the positioning frame 30, the supporting frame 20 and the first target workpieces 51, 52 on the plane where the first opening is located are all within the range of the first opening can be defined as the first posture.
[0039] For example, the first opening may be rectangular, one side of the rectangular first opening may extend vertically, and the other side of the rectangular first opening may extend horizontally. On this basis, the positioning frame 30 can be rotated to, for example, the Figure 3 posture shown in the figure, so that the positioning frame 30 can be moved into or out of the first space 11 synchronously with the supporting frame 20 through the first opening.
[0040] When the positioning frame 30 is in the second posture, the first target workpieces 51, 52 can be taken out from the positioning frame 30 according to a predetermined taking-out method. Here, the specific position and angle of the second posture are not only related to the loading and unloading structure of the positioning frame 30 itself, but also related to the predetermined taking-out method of the first target workpieces 51, 52.
[0041] In one example, the positioning frame 30 may have a loading and unloading side for inserting and removing the first target workpieces 51 and 52. When loading the first target workpieces 51 and 52, the first target workpieces 51 and 52 should be gradually brought closer to the positioning frame 30 from this loading and unloading side and inserted into the positioning frame 30. When unloading the first target workpieces 51 and 52, the first target workpieces 51 and 52 should be removed from this loading and unloading side and the first target workpieces 51 and 52 should be gradually moved away from the positioning frame 30. For example, the positioning frame 30 may have a groove-like structure for accommodating the first target workpieces 51 and 52, and one side of the opening of this groove-like structure may be determined as the loading and unloading side of the positioning frame 30. When the predetermined removal method of the first target workpieces 51 and 52 is hoisting, the loading and unloading side of the positioning frame 30 can be rotated to face upward in the vertical direction, so that the hoisting device can hoist the first target workpieces 51 and 52 from above the positioning frame 30, as Figure 4 shown.
[0042] In another example, the interior of the positioning frame 30 may have a receiving space for receiving the first target workpieces 51 and 52. The positioning frame 30 may have a loading and unloading opening communicating with the receiving space, and the loading and unloading opening can be used to insert the first target workpieces 51 and 52 into the receiving space or remove the first target workpieces 51 and 52 from the receiving space. The predetermined removal method of the first target workpieces 51 and 52 may include moving the first target workpieces 51 and 52 laterally out of the receiving space by a handling device or manually. At this time, the positioning frame 30 can be rotated so that the loading and unloading opening faces one side in the horizontal direction, so as to facilitate the handling device to remove the first target workpieces 51 and 52 from the positioning frame 30 laterally through the loading and unloading opening. It can be understood that the above first posture and second posture are only exemplary and should not be understood as the first posture and second posture being limited to the postures shown above.
[0043] The driving assembly 40 here may include various types of driving devices, such as a manual driving assembly, an electric driving assembly, a pneumatic driving assembly, a hydraulic driving assembly, and so on. Exemplarily, the manual driving assembly may include, for example, a cam divider. The cam divider not only has a simple structure and low cost, but also has a positioning self-locking function. The positioning frame 30 can be automatically locked in any posture, which is beneficial to improving safety and stability.
[0044] The first target workpieces 51 and 52 here can be any workpieces that need to be transported and stored. It can be understood that when the first target workpieces 51 and 52 are different, the main body 10, the supporting bracket 20, and the positioning frame 30 may need to be adaptively adjusted based on the design concept of the embodiments of the present disclosure.
[0045] Taking the air compressor assembly scenario as an example, the first target workpieces 51 and 52 may include sheet metal parts in the air compressor that need to be lifted and / or installed horizontally. For example, the first target workpiece 51 may include the fan cover of the air compressor. Since the fan cover has a relatively large dimension in the thickness direction, the dimensions of the main body 10, the support bracket 20, and the positioning bracket 30 in the horizontal direction can be correspondingly increased. The workpiece transfer and storage tooling in the example shown by Figures 1 to 4 can be used to transfer and store the fan cover. Also for example, the first target workpiece 52 may include the top plate of the air compressor. Since the top plate has a relatively small dimension in the thickness direction, the dimensions of the main body 10, the support bracket 20, and the positioning bracket 30 in the horizontal direction can be correspondingly reduced. The workpiece transfer and storage tooling in the example shown by Figure 5 can be used to transfer and store the top plate.
[0046] Such sheet metal parts usually have a relatively large weight and / or size and usually need to be lifted. Through the cooperation of the support bracket 20, the positioning bracket 30, and the drive assembly, not only can the sheet metal parts be conveniently moved into and out of the main body 10 of the tooling, but also the posture of the sheet metal parts can be adjusted to facilitate loading the sheet metal parts onto the positioning bracket 30 or lifting the sheet metal parts from the positioning bracket 30, reducing manual handling and significantly improving the convenience of loading, transferring, storing, and unloading such sheet metal parts.
[0047] For the workpiece transfer and storage tooling according to the embodiments of the present application, through the cooperation of the support bracket 20 and the positioning bracket 30, the first target workpieces 51 and 52 can be driven to move into or out of the main body 10. By using the drive assembly 40, the positioning bracket 30 can also be driven to rotate, thereby adjusting the postures of the first target workpieces 51 and 52, enabling the first target workpieces 51 and 52 to be loaded, transferred, stored, and unloaded in a suitable posture, thus improving the convenience of loading, transferring, storing, and unloading the first target workpieces 51 and 52. Especially when applied to the transfer and storage of heavy workpieces, it can significantly improve the efficiency and significantly reduce the labor intensity.
[0048] In some embodiments, the support bracket 20 may include a bottom bracket 21 and two side supports 22 and 27 provided at the top of the bottom bracket 21. The two side supports 22 and 27 are oppositely arranged. The positioning bracket 30 is arranged between the two side supports 22 and 27, and the positioning bracket 30 is rotatably connected to the two side supports 22 and 27 respectively. In this way, the overall support bracket 20 is approximately U-shaped. When the positioning bracket 30 rotates until the loading and unloading side faces upward in the vertical direction, there is no structure above the positioning bracket 30 to block the positioning bracket 30, as shown in Figure 4 , which facilitates lifting the first target workpieces 51 and 52 from the positioning bracket 30. Alternatively or additionally, both sides of the positioning bracket 30 can be rotatably connected to the two side supports 22 and 27 through rotating shafts respectively. The rotating shafts can be arranged at positions close to the top of the side supports 22 and 27.
[0049] In some embodiments, the driving assembly 40 is disposed on one of the side support frames 22 and 27 that can first move out of the first space 11. It can be understood that when the carrier 20 is located within the first space 11, the side support frame that can first move out of the first space 11 is located at a position close to the first opening. Exemplarily, as shown in the example of Figures 1 to 4 In the example shown, if the side support frame 22 among the side support frames 22 and 27 can first move out of the first space 11, the driving assembly 40 can be disposed on the side support frame 22 to facilitate the user to operate the driving assembly 40 and improve the convenience of the workpiece transfer and storage tooling.
[0050] In some embodiments, a support leg 23 is provided on one side of the carrier 20 that can first move out of the first space 11. The support leg 23 is vertically movably connected to the carrier 20, and the support leg 23 is provided with a first locking structure 24 for locking the support leg 23 and the carrier 20. Thus, before the carrier 20 needs to be moved out of the main body 10 or after the carrier 20 is moved out of the main body 10, the support leg 23 can be lowered, and the support leg 23 and the carrier 20 can be locked through the first locking structure 24. At this time, the support leg 23 can contact the ground or other support surfaces to support the tooling, avoiding the tooling from tipping due to the change of the center of gravity position, which is beneficial to improving the stability and safety of the tooling. During the transfer and storage of the first target workpieces 51 and 52, the support leg 23 can be raised to improve the convenience of the tooling.
[0051] Alternatively or additionally, the support leg 23 can be disposed on the side support frame 22 of the carrier 20. The support leg 23 can be in an inverted U shape, and the inverted U-shaped support leg 23 can include two legs extending in parallel and a cross bar connected between the tops of the two legs. Two sleeves corresponding to the two legs can be provided on the side support frame 22, and the two legs respectively pass through the two sleeves vertically. In this way, the support leg 23 can move vertically under the limitation of the two sleeves, and the connection structure is simple. It should be noted that the support leg 23 is not limited to being connected to the side support frame through a sleeve structure, and can also be connected to the side support frame through a sliding connection structure such as a track.
[0052] Alternatively or additionally, the first locking structure 24 may include a locking pin connected to the support leg 23 and a locking hole formed in the carrier 20. Exemplarily, a locking pin may be provided at each of the two ends of the cross bar of the support leg 23. Correspondingly, two rows of locking holes may be provided on the side support frame 22, and each row of locking holes may include a plurality of vertically arranged locking holes. The locking pin may be inserted into any one of the corresponding row of locking holes to lock the support leg 23 at a position corresponding to the locking hole. It can be understood that the first locking structure 24 may also be formed by structures such as a friction structure or a snap connection structure, so as to achieve the purpose of locking the support leg 23 and the carrier 20 based on friction or snap connection, etc.
[0053] In some embodiments, a rolling structure 25 may be provided at the bottom end of the support leg 23. Exemplarily, balls may be provided at the bottom ends of the two legs of the support leg 23 respectively. In this way, the friction between the support leg 23 and the ground can be reduced. The support leg 23 can be lowered before the carrier 20 needs to be moved out. During the movement of the carrier 20 driving the positioning frame 30 and the first target workpieces 51, 52, the support leg 23 can continuously support the carrier 20 to prevent the tooling from tipping over, and since the friction between the support leg 23 and the ground is small, it does not prevent the carrier 20 from moving.
[0054] In some embodiments, the carrier 20 may be connected to the main body 10 through at least one slide rail 26. Exemplarily, as Figure 3 and Figure 4 shown, one slide rail 26 may be provided on each side of the carrier 20, and the slide rail 26 may extend along the moving direction of the carrier 20. In this way, it is not only beneficial to reduce the moving resistance of the carrier 20, but also beneficial to keep the force balance of the carrier 20, and further beneficial to improve the stability of the tooling. It can be understood that the slide rail 26 is not limited to being connected to the side of the carrier 20, and may also be connected to, for example, the bottom or top of the carrier 20.
[0055] In some embodiments, the positioning frame 30 may include a frame 31, and a space for placing the first target workpieces 51, 52 is formed in the middle of the frame 31. The structure of the frame 31 is simple, which is beneficial to reducing the self-weight of the tooling and the production cost of the tooling.
[0056] In some embodiments, as Figure 1 shown, a flange 32 extending inward may be provided on the inner peripheral surface of the frame 31, and the flange 32 and the inner peripheral surface of the frame 31 form an opening groove 33 for clamping the first target workpiece 51. In this way, during loading, the first target workpiece 51 (such as a fan cover) can be placed into the middle of the frame 31 from the opening side of the opening groove 33, and the peripheral portion of the first target workpiece 51 can be embedded into the opening groove 33, as Figure 3 and Figure 4As shown. Through the opening groove 33, not only can the first target workpieces 51 and 52 be positioned, but also the structure is simple.
[0057] In some embodiments, at least one second locking structure 34 for locking the first target workpieces 51 and 52 may be provided on the positioning frame 30. Exemplarily, a plurality of toggle clamps may be circumferentially spaced on the frame 31. After the peripheral portions of the first target workpieces 51 and 52 are embedded in the opening groove 33, the toggle clamps can be used to tightly press the peripheral portions of the first target workpieces 51 and 52 towards the bottom of the opening groove 33. In this way, the first target workpieces 51 and 52 can be firmly fixed on the positioning frame 30, preventing the first target workpieces 51 and 52 from falling off the positioning frame 30, which is beneficial to improving the stability and safety of the tooling.
[0058] It can be understood that the specific structures of the above-mentioned positioning frame 30 and the second locking structure 34 are only exemplary. In actual applications, the specific structures of the positioning frame 30 and the second locking structure 34 can be adaptively adjusted according to different first target workpieces 51 and 52. Under the condition of conforming to the design concept of the embodiments of the present application, they should all be regarded as belonging to the protection scope of the embodiments of the present application.
[0059] In some embodiments, there is also at least one second space 12, 13, 14 inside the main body 10, and the second spaces 12, 13, 14 are used to accommodate at least one second target workpiece 61, 62, 63. In this way, on the basis of transporting and storing the first target workpieces 51 and 52, at least one second target workpiece 61, 62, 63 can be synchronously transported and stored, so as to enrich the functions of the tooling.
[0060] It can be understood that the second target workpieces 61, 62, 63 here may include various workpieces different from the first target workpieces 51 and 52 and suitable for synchronous transportation with the first target workpieces 51 and 52. Taking the air compressor assembly scenario as an example, the second target workpieces 61, 62, 63 may include workpieces in the air compressor that are relatively small in size, relatively light in weight and suitable for manual handling.
[0061] For example, as Figures 1 to 4 shown, a second space 12 may be provided on the side of the first space 11 in the main body 10, and the second target workpiece 61 can be placed in the second space 12. The second target workpiece 61 may include, for example, the electric control box sheet metal part of the air compressor.
[0062] Also for example, as Figure 5 shown, a second space 13 may be provided on one side of the first space 11 in the main body 10, and at least one second target workpiece 62 can be placed in the second space 13. The second target workpiece 62 may include, for example, the door panel, baffle, etc. of the air compressor.
[0063] Also for example, asFigure 5 As shown, a box-like structure can be provided on the main body 10, and a second space 14 can be defined through this box-like structure. Through this box-like structure, second target workpieces 63 such as small-sized sheet metal parts or small-sized connecting parts can be accommodated.
[0064] In some embodiments, third locking structures 15, 16 for locking the at least one second target workpiece 62, 62, 63 are further provided on the main body 10. The third locking structures 15, 16 here can have various implementation manners, and different structures can be adopted for different second spaces 12, 13, 14 and different second target workpieces 61, 62, 63.
[0065] In some embodiments, the third locking structure 15 can include at least one toggle clamp. Exemplarily, at least one toggle clamp can be provided at the second space 12, and the at least one toggle clamp can be used to tightly hold the sheet metal part of the electric control box.
[0066] In some embodiments, the third locking structure 16 can include one or more elastic stoppers 35. In the case where the third locking structure 16 includes a plurality of elastic stoppers 35, the plurality of elastic stoppers 35 can be arranged around the second space 13. The one or more elastic stoppers 35 can be rotatably connected to the main body 10, and the one or more elastic stoppers 35 are used to stop the second target workpiece 62, and the second target workpiece 62 such as a door panel or a baffle can be defined in the second space 13 through the one or more elastic stoppers 35.
[0067] Exemplarily, as Figure 5 shown, the main body 10 can include a frame structure. A plurality of elastic stoppers 35 can be respectively provided at the top and side of the second space 13, and the plurality of elastic stoppers 35 can be configured to be rotatably connected to the frame bars of the frame structure. Before placing the second target workpiece 62 into the second space 13, the elastic stopper 35 can be rotated to avoid the placement path of the second target workpiece 62. After placing the second target workpiece 62 into the second space 13, the elastic stopper 35 can be rotated to a posture where it can stop the second target workpiece 62, so as to stably define the second target workpiece 62 such as a door panel or a baffle in the second space 13.
[0068] Alternatively or additionally, as Figure 6 shown, the elastic strip 35 can be provided with a positioning groove 36 that matches the peripheral portion of the second target workpiece 62 such as a door panel or a baffle. After placing the second target workpiece 62 such as a door panel or a baffle into the second space 13, the peripheral portion of the door panel or the baffle can be embedded into the positioning groove, so as to improve the stability of the door panel or the baffle.
[0069] The embodiments of the present application have been described above. The above description is exemplary and not exhaustive, and is also not limited to the disclosed embodiments. Many modifications and variations will be apparent to those of ordinary skill in the art without departing from the scope and spirit of the described embodiments. The choice of terms used herein is intended to best explain the principles of the embodiments, the practical application, or the improvement of the technology in the market, or to enable other ordinary skilled persons in the art to understand the embodiments disclosed herein.
Claims
1. A workpiece transport and storage tool, characterized in that: include: A main body, having a first space inside, and a first opening communicating with the first space is provided on a side of the main body; A support bracket connected to the main body and capable of being moved into or out of the first space in a transverse direction through the first opening; A positioning frame, rotatably connected to the supporting frame, the positioning frame is used to carry a first target workpiece, and the positioning frame can drive the first target workpiece to rotate; as well as A driving assembly is in driving connection with the positioning frame, and the driving assembly can drive the positioning frame to rotate.
2. The workpiece transfer and storage tooling according to claim 1 is characterized in that: The support frame includes a bottom support and two side support frames arranged on the top of the bottom support, and the two side support frames are arranged opposite to each other; The positioning frame is arranged between the two lateral support frames, and the positioning frame is rotatably connected to the two lateral support frames respectively.
3. The workpiece transfer and storage tooling according to claim 2 is characterized in that: The driving assembly is arranged on one of the two lateral support frames which can be moved out of the first space first.
4. The workpiece transfer and storage tooling according to claim 1 is characterized in that: A support leg is provided on the side of the support bracket that can be first moved out of the first space. The support leg is movably connected to the support bracket along the vertical direction. The support leg is provided with a first locking structure for locking the support leg and the support bracket.
5. The workpiece transfer and storage tooling according to claim 4 is characterized in that: The bottom end of the supporting leg is provided with a rolling structure.
6. The workpiece transfer and storage tooling according to claim 1 is characterized in that: The support bracket is connected to the main body via at least one slide rail.
7. The workpiece transfer and storage tooling according to claim 1 is characterized in that: The positioning frame includes a frame, and a space for placing the first target workpiece is formed in the middle of the frame.
8. The workpiece transfer and storage tooling according to claim 7 is characterized in that: The inner circumferential surface of the frame is provided with a flange extending inwardly, and the flange and the inner circumferential surface of the frame form an open groove for locking and embedding the first target workpiece.
9. The workpiece transfer and storage tooling according to claim 1, characterized in that: The positioning frame is provided with at least one second locking structure for locking the first target workpiece.
10. The workpiece transfer and storage tooling according to claim 1, characterized in that: The main body further has at least one second space inside, and the second space is used to accommodate at least one second target workpiece.
11. The workpiece transfer and storage tooling according to claim 10, characterized in that: The main body is also provided with a third locking structure for locking the at least one second target workpiece.
12. The workpiece transfer and storage tooling according to claim 11, characterized in that: The third locking structure includes one or more elastic stops, which are rotatably connected to the main body and are used to stop the second target workpiece.
13. The workpiece transfer and storage tooling according to claim 12, characterized in that: A positioning groove is provided on a side of the elastic stopper facing the second space, and the positioning groove is configured to allow the peripheral edge portion of the second target workpiece to be embedded.