Plate stacking mechanism for magnesium oxide plate production
By designing the plate palletizing mechanism of support frame, transmission assembly and linear guide rail, the problems of low palletizing efficiency and inconvenient transportation in the prior art are solved, and the effects of automatic palletizing and convenient movement are achieved.
Patent Information
- Application Number
- CN202421888849.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-06
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-08-06
AI Technical Summary
The existing glass magnesium plate palletization method is inefficient and inconvenient for transportation, which increases the workload of staff and poses a risk of handling.
A plate palletizing mechanism including a support frame, a transmission assembly and a linear guide rail is designed to automatically stack through a conveyor belt and a feed assembly, and the transfer assembly is used to facilitate the movement of the palletized plate.
Automatic palletization of glass magnesium sheets is realized, which improves work efficiency and facilitates staff movement after palletization is completed, avoiding the trouble of using forklifts and other equipment in traditional methods.
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Figure CN222833640U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of plate stacking mechanisms, in particular to a plate stacking mechanism used for the production of glass magnesium plates. Background Art
[0002] Glass magnesium board, also known as magnesium oxide board, is a new type of non-combustible decorative material made from a ternary system of magnesium oxide, magnesium chloride and water through configuration and addition of modifiers.
[0003] After the glass magnesium sheet is processed, it needs to be cut into the required size and then palletized by the staff;
[0004] This method not only increases the workload of the staff during the stacking process, but also easily creates dangers for the staff during the handling process; after the stacking is completed, the glass magnesium board is not easy to move and needs to be transferred and loaded by tools such as forklifts; therefore, a plate stacking mechanism for the production of glass magnesium boards is proposed to solve the above problems. Utility Model Content
[0005] In view of the deficiencies in the prior art, the utility model provides a plate stacking mechanism for the production of glass magnesium plates, which has the advantages of realizing automatic stacking and facilitating the movement of workers after stacking, thereby solving the problem that the traditional stacking method has low working efficiency and is inconvenient for transportation.
[0006] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a plate stacking mechanism for glass magnesium plate production, comprising a support frame, a conveyor belt for feeding is arranged on the support frame, two linear guide rails are arranged on the top of the conveyor belt, mounting platforms are arranged on the two linear guide rails, a mounting rod is arranged between the two mounting platforms, and a feeding assembly for pushing materials is arranged at the bottom of the mounting rod;
[0007] A connecting frame is provided on one side of the support frame, a supporting rod for support is fixedly connected to the inner side of the connecting frame, a first feeding roller and a second feeding roller for conveying the glass magnesium plate are also rotatably connected inside the connecting frame, two baffles are fixedly connected to one end of the connecting frame, and a transfer component for transporting the glass magnesium plate is provided between the two baffles.
[0008] Furthermore, the baffles are both provided with rotating limit platforms, and limit members are both provided on the two limit platforms.
[0009] Furthermore, a feed port for discharging materials is provided at the bottom of one of the linear guide rails, one end of each of the two linear guide rails is fixedly connected to a connecting platform, and a transmission assembly is rotatably connected between the two connecting platforms.
[0010] Further, the transmission assembly includes a transmission motor, the output shaft of the transmission motor is fixedly connected to the first transmission wheel, the first transmission wheel is connected to the first driven wheel through a transmission belt, the first driven wheel is fixedly connected to a transmission rod, both ends of the transmission rod pass through the connecting platform and are fixedly connected to the second transmission wheel, and the second transmission wheel is connected to the second driven wheel and the third driven wheel through a transmission belt.
[0011] Furthermore, the feeding assembly includes a mounting plate and a connecting plate, the connecting plate is provided with a connecting piece, the connecting piece is rotatably connected to the mounting plate, and the connecting plate is also provided with a limiting plate for single-side limiting.
[0012] Furthermore, the transfer assembly includes a support platform, and three limiting units for limiting are arranged on the top of the support platform. The limiting units include two limiting rods, and both of the limiting rods are provided with sliding belts for facilitating the sliding of the plate. The bottom of the support platform is also provided with universal wheels for easy movement.
[0013] Compared with the prior art, the technical solution of this application has the following beneficial effects:
[0014] 1. The plate stacking mechanism used for the production of glass magnesium plates is provided with a support frame, a transmission assembly and a linear guide rail, so that during the stacking process of the glass magnesium plates, they can be placed on a conveyor belt and moved between two linear guide rails under the transmission action of the conveyor belt. Then, the staff can control the linear guide rail to drive the mounting rod and the feeding assembly to transfer the plates to the connecting frame, and under the transmission action of the support rod and the first feeding roller, the plates enter the transfer assembly to achieve the stacking effect.
[0015] Second, the plate stacking mechanism used for the production of glass magnesium plates is equipped with a transfer component, so that it can achieve the effect of placing the glass magnesium plates. At the same time, it can be convenient for workers to move the glass magnesium plates after the stacking is completed, avoiding the need to use forklifts and other equipment to move them after the stacking is completed. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a schematic diagram of the structure of the utility model;
[0017] Figure 2 This is a rear view of the structure of the utility model;
[0018] Figure 3 A side view of the utility model structure;
[0019] Figure 4 This is a schematic diagram of the feeding assembly of the utility model structure;
[0020] Figure 5 This is a schematic diagram of the structural transfer component of the utility model.
[0021] In the figure: 1. support frame; 11. conveyor belt; 12. connecting frame; 121. support rod; 122. first feed roller; 123. second feed roller; 124. baffle; 125. limit table; 13. linear guide; 131. feed inlet; 132. connecting table; 14. mounting table; 15. mounting rod; 2. feeding assembly; 21. mounting plate; 22. connecting plate; 23. connecting piece; 24. limit plate; 3. transfer assembly; 31. support table; 32. limit unit; 321. limit rod; 322. sliding belt; 33. universal wheel; 5. transmission assembly; 51. transmission motor; 52. first transmission wheel; 53. first driven wheel; 54. transmission rod; 55. second transmission wheel; 56. second driven wheel; 57. third driven wheel. DETAILED DESCRIPTION
[0022] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0023] Embodiment 1:
[0024] See also Figure 1-4In this embodiment, a plate stacking mechanism for glass magnesium plate production is provided. A plate stacking mechanism for glass magnesium plate production includes a support frame 1, which is characterized in that: a conveyor belt 11 for feeding is provided on the support frame 1, two linear guide rails 13 are provided on the top of the conveyor belt 11, and mounting platforms 14 are provided on the two linear guide rails 13, and mounting rods 15 are provided between the two mounting platforms 14, and a feeding assembly 2 for pushing materials is provided at the bottom of the mounting rod 15; a connecting frame 12 is provided on one side of the support frame 1, and a supporting rod 121 for supporting is fixedly connected to the inner side of the connecting frame 12, and a first feeding roller 122 and a second feeding roller 123 for conveying glass magnesium plate are also rotatably connected in the connecting frame 12, and two baffles 124 are fixedly connected to one end of the connecting frame 12, and a transfer assembly 3 for transporting glass magnesium plate is provided between the two baffles 124. A limit table 125 is rotatably provided on each baffle 124, and a limit member is provided on each of the two limit tables 125. A feed port 131 for discharging is provided at the bottom of a linear guide rail 13, and one end of each of the two linear guide rails 13 is fixedly connected to a connecting platform 132, and a transmission assembly 5 is rotatably connected between the two connecting platforms 132. The transmission assembly 5 includes a transmission motor 51, and the output shaft of the transmission motor 51 is fixedly connected to a first transmission wheel 52, and the first transmission wheel 52 is connected to a first driven wheel 53 through a transmission belt, and a transmission rod 54 is fixedly connected to the first driven wheel 53, and both ends of the transmission rod 54 penetrate the connecting platform 132 and are fixedly connected to a second transmission wheel 55, and the second transmission wheel 55 is connected to a second driven wheel 56 and a third driven wheel 57 through a transmission belt. The feeding assembly 2 includes a mounting plate 21 and a connecting plate 22, and a connecting member 23 is provided on the connecting plate 22, and the connecting member 23 is rotatably connected to the mounting plate 21, and a limit plate 24 for unilateral limit is also provided on the connecting plate 22.
[0025] As a preferred technical solution in this embodiment: in actual use, the staff can set one end of the conveyor belt 11 at the discharge point of the previous process of the glass magnesium plate. When the glass magnesium plate falls on the conveyor belt 11, it will enter between the two linear guide rails 13 through the feed port 131 provided on the linear guide rail 13 under the conveying action of the conveyor belt 11. Then the staff can control the linear guide rail 13 to drive the mounting platform 14 and the mounting rod 15 to produce a displacement effect. During the displacement of the mounting rod 15, the mounting plate 21 can be driven to produce a displacement effect. When the mounting plate 21 moves away from the transfer component 3, the connecting plate 22 will contact the glass magnesium plate, thereby producing an effect of rotation to achieve an angle change, so that the connecting plate 22 can be displaced to the other end of the plate. Then the staff can control the linear guide rail 13 to drive the mounting plate 21 to produce a displacement close to the transfer component 3. At this time, the connecting plate 22 located on the other side of the plate can push the plate under the limiting action of the limiting plate 24, so that the plate can be pushed between the first feeding roller 122 and the support rod 121. At the same time, the staff can control the transmission motor 51 to drive the first transmission wheel 52 and the first driven wheel 53 to rotate. During the rotation of the first driven wheel 53, the transmission rod 54 can be driven to rotate. During the rotation of the transmission rod 54, the second transmission wheel 55 can be effectively driven to rotate, so that the second transmission wheel 55 can drive the second driven wheel 56 and the third driven wheel 57 to rotate through the transmission belt, so that the second driven wheel 56 and the third driven wheel 57 can drive the first feeding roller 122 and the second feeding roller 123 to rotate, so that they can convey the glass magnesium plate to the transfer component 3 to achieve the stacking effect.
[0026] Embodiment 2:
[0027] See also Figure 5 In order to facilitate the transportation of the stacked glass magnesium plates, the transportation component 3 in this embodiment includes a support platform 31. Three limiting units 32 for limiting are arranged on the top of the support platform 31. The limiting units 32 include two limiting rods 321. Both limiting rods 321 are provided with sliding belts 322 for facilitating the sliding of the plates. The bottom of the support platform 31 is also provided with universal wheels 33 for easy movement.
[0028] As a preferred technical solution in this embodiment: when the glass magnesium plate is conveyed to the transfer component 3 under the action of the first feeding roller 122 and the second feeding roller 123, the two side edges of the glass magnesium plate just contact the sliding belts 322 in the limiting rods 321 arranged on both sides of the support platform 31, and under the guiding action of the sliding belts 322, the plate can be smoothly placed on the support platform 31, avoiding the occurrence of its deviation; after the stacking of the glass magnesium plate is completed, the staff can cancel the fixing effect of the limiting platform 125 by controlling the limiting parts on the limiting platform 125, and then rotate the limiting platform 125 to cancel the limit on the transfer component 3. At this time, the staff can directly push the support platform 31 to move it to a warehouse or other placement area, ensuring its convenience in the process of moving the glass magnesium plate.
[0029] It is worth noting that the sliding belt 322 in this embodiment is rotatably connected to the limiting rod 321, thereby ensuring that it can conveniently drive the glass magnesium plate to slide during use.
[0030] The working principle of the above embodiment is:
[0031] 1. In actual use, the staff can set one end of the conveyor belt 11 at the discharge point of the previous process of the glass magnesium plate. When the glass magnesium plate falls on the conveyor belt 11, it will enter between the two linear guide rails 13 through the feed port 131 provided on the linear guide rail 13 under the conveying action of the conveyor belt 11. Then the staff can control the linear guide rail 13 to drive the mounting table 14 and the mounting rod 15 to produce a displacement effect. During the displacement of the mounting rod 15, the mounting plate 21 can be driven to produce a displacement effect. When the mounting plate 21 moves away from the transfer component 3, the connecting plate 22 will contact the glass magnesium plate, thereby producing an effect of rotation to achieve an angle change, so that the connecting plate 22 can be displaced to the other end of the plate. Then the staff can control the linear guide rail 13 to drive the mounting plate 21 to produce a displacement close to the transfer component 3. At this time, the connecting plate 22 located on the other side of the plate can push the plate under the limiting action of the limiting plate 24, so that the plate can be pushed to between the first feeding roller 122 and the support rod 121. At the same time, the staff can control the transmission motor 51 to drive the first transmission wheel 52 and the first driven wheel 53 to rotate. During the rotation of the first driven wheel 53, the transmission rod 54 can be driven to rotate. During the rotation of the transmission rod 54, the second transmission wheel 55 can be effectively driven to rotate, so that the second transmission wheel 55 can drive the second driven wheel 56 and the third driven wheel 57 to rotate through the transmission belt, so that the second driven wheel 56 and the third driven wheel 57 can drive the first feeding roller 122 and the second feeding roller 123 to rotate, so that they can convey the glass magnesium plate to the transfer component 3 to achieve the stacking effect.
[0032] 2. When the glass magnesium plate is conveyed into the transfer assembly 3 under the action of the first feeding roller 122 and the second feeding roller 123, the two side edges of the glass magnesium plate just contact the sliding belts 322 in the limiting rods 321 arranged on both sides of the support platform 31. Under the guiding action of the sliding belts 322, the plate can be smoothly placed on the support platform 31, thereby avoiding the occurrence of its deviation. When the glass magnesium plate is stacked, the staff can cancel the fixing effect of the limiting platform 125 by controlling the limiting member on the limiting platform 125, and then rotate the limiting platform 125 to cancel the limiting effect on the transfer assembly 3. At this time, the staff can directly push the support platform 31 to move it to a warehouse or other placement area, thereby ensuring its convenience in the process of moving the glass magnesium plate.
[0033] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A plate stacking mechanism for glass magnesium plate production, comprising a support frame (1), characterized in that: A conveyor belt (11) for feeding is arranged on the support frame (1), two linear guide rails (13) are arranged on the top of the conveyor belt (11), mounting platforms (14) are arranged on the two linear guide rails (13), a mounting rod (15) is arranged between the two mounting platforms (14), and a feeding assembly (2) for pushing materials is arranged at the bottom of the mounting rod (15); A connecting frame (12) is provided on one side of the support frame (1), a supporting rod (121) is fixedly connected to the inside of the connecting frame (12) for supporting, a first feeding roller (122) and a second feeding roller (123) for conveying a glass magnesium plate are also rotatably connected inside the connecting frame (12), two baffles (124) are fixedly connected to one end of the connecting frame (12), and a transfer assembly (3) for conveying the glass magnesium plate is provided between the two baffles (124).
2. A plate stacking mechanism for glass magnesium plate production according to claim 1, characterized in that: The baffles (124) are both provided with rotatable limit platforms (125), and both limit platforms (125) are provided with limit members.
3. The plate stacking mechanism for glass magnesium plate production according to claim 1, characterized in that: A feed port (131) for discharging materials is provided at the bottom of one of the linear guide rails (13), one end of each of the two linear guide rails (13) is fixedly connected to a connecting platform (132), and a transmission assembly (5) is rotatably connected between the two connecting platforms (132).
4. A plate stacking mechanism for glass magnesium plate production according to claim 3, characterized in that: The transmission assembly (5) comprises a transmission motor (51), the output shaft of the transmission motor (51) is fixedly connected to a first transmission wheel (52), the first transmission wheel (52) is connected to a first driven wheel (53) via a transmission belt, the first driven wheel (53) is fixedly connected to a transmission rod (54), both ends of the transmission rod (54) pass through the connecting platform (132) and are fixedly connected to a second transmission wheel (55), and the second transmission wheel (55) is connected to a second driven wheel (56) and a third driven wheel (57) via a transmission belt.
5. The plate stacking mechanism for glass magnesium plate production according to claim 1, characterized in that: The feeding assembly (2) comprises a mounting plate (21) and a connecting plate (22), the connecting plate (22) being provided with a connecting piece (23), the connecting piece (23) being rotatably connected to the mounting plate (21), and the connecting plate (22) being further provided with a limiting plate (24) for single-side limiting.
6. The plate stacking mechanism for glass magnesium plate production according to claim 1, characterized in that: The transfer assembly (3) comprises a support platform (31), the top of the support platform (31) is provided with three limiting units (32) for limiting, the limiting units (32) comprise two limiting rods (321), both limiting rods (321) are provided with sliding belts (322) for facilitating the sliding of the plate, and the bottom of the support platform (31) is also provided with universal wheels (33) for easy movement.