Motor packaging structure
Through the combined design of HDPE blister plastic and PP hollow plates, the problems of easy deformation and resource waste of motor packaging are solved, stable stacking and environmentally friendly transportation are achieved, and recycling is supported.
Patent Information
- Application Number
- CN202422054835.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-22
- Publication Date
- 2025-07-25
- Estimated Expiration
- 2034-08-22
AI Technical Summary
The existing motor packaging structure is prone to deformation and skew, and the wooden board fixing method is costly and difficult to recycle, resulting in waste of resources and unstable transportation.
The blister packaging tray made of HDPE blister plastic is combined with the support fixed angle guard made of PP hollow plate, the top and bottom pallet design, and multi-point fixation is achieved through flange and boss structure, increasing support points and avoid deformation and displacement.
It realizes the neat and beautiful motor packaging and firm stacking, reduces resource waste, improves transportation stability, and supports recycling and utilization.
Smart Images

Figure CN223149061U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a motor packaging structure. Background Art
[0002] Most of the existing stretch end - cover motors are supplied in a paper packaging structure. This paper packaging structure can only be used once and cannot be recycled and reused, causing great waste of environmental resources. There is also a PP plastic packaging structure. This packaging structure includes at least one pallet stacking unit. Each pallet stacking unit includes several plastic - suction trays stacked together. Each plastic - suction tray is provided with several cavities for accommodating motors. A wooden board is provided on the top of the plastic - suction tray for fixing when stacking the pallet stacking units. Each pallet stacking unit is also tied tightly up and down with a packaging belt. However, this structure has the following disadvantages: 1. Although the packaging belt is used, the effective support force - bearing points for a single - layer plastic - suction tray are few, and the stacked plastic - suction packaging is prone to deformation, resulting in easy stacking skew and displacement between the upper and lower layers; 2. The wooden board on the top of the pallet stacking unit is a flat plate, and there is no mutual locking and fixing fit when the upper and lower two pallets are stacked, transported and turned over, and it is prone to slip. Content of the Utility Model
[0003] The utility model provides a motor packaging structure to solve the problem that the stacked plastic - suction packaging of the motor packaging structure in the prior art is prone to deformation and easy to generate stacking skew.
[0004] The technical solution of the utility model is realized as follows:
[0005] The purpose of the utility model is to provide a motor packaging structure, which includes at least one pallet stacking unit. Each pallet stacking unit includes several plastic - suction packaging trays. Motor limiting grooves for placing motors are arranged in the plastic - suction packaging trays. The characteristics are as follows: The pallet stacking unit also includes a top - layer pallet and a bottom - layer pallet respectively located above and below the plastic - suction packaging trays. First flanges are arranged at multiple points on the edge of the top - layer pallet, and second flanges are arranged at the outer edge of the bottom - layer pallet. A plurality of support and fixing corner guards are arranged at the four corners of the plastic - suction packaging tray. The top of the support and fixing corner guard is stuck in the gap between the first flange and the plastic - suction packaging tray, and the bottom of the support and fixing corner guard is stuck in the gap between the second flange and the plastic - suction packaging tray.
[0006] The above - mentioned plastic - suction packaging tray is made of HDPE plastic - suction plastic, and the support and fixing corner guard is made of PP hollow board material.
[0007] The above-mentioned motor limit slots are arranged in rows. A support platform is provided between two adjacent motor limit slots in the same row. The support platforms of adjacent rows and the motor limit slots are arranged at intervals. A groove is provided at the bottom of the support platform, and at least one strip-shaped groove for accommodating the motor rotating shaft is provided at the top of the support platform. When the upper plastic suction packaging tray is stacked above the lower plastic suction packaging tray, the motor limit slots of the lower plastic suction packaging tray are located below the grooves of the upper plastic suction packaging tray.
[0008] Avoidance slots for accommodating the flanges of the motor stretching end caps are provided in the middle of the above-mentioned motor limit slots and the middle of the grooves.
[0009] In each of the above-mentioned plastic suction packaging trays, plastic protective films are laid above and below the motor.
[0010] The above-mentioned top tray protrudes upward by a number of first bosses, and the bottom tray protrudes downward by a number of second bosses. When the upper tray stacking unit is stacked on the top of the lower tray stacking unit, the second bosses of the upper tray stacking unit are supported on the top surface of the top tray of the lower tray stacking unit, and the first bosses of the lower tray stacking unit are supported on the bottom surface of the bottom tray of the upper tray stacking unit.
[0011] The above-mentioned when the upper tray stacking unit is stacked on the top of the lower tray stacking unit, the first bosses of the lower tray stacking unit and the second bosses of the upper tray stacking unit are closely attached together.
[0012] The number of the above-mentioned first bosses and second bosses is nine each.
[0013] At least one empty plastic suction packaging tray is further provided between the motor of the uppermost plastic suction packaging tray and the top tray.
[0014] Compared with the prior art, the present invention has the following advantages:
[0015] 1. The motor packaging structure includes at least one tray stacking unit. Each tray stacking unit includes a number of plastic suction packaging trays. A number of motor limit slots for placing motors are provided in the plastic suction packaging trays. It is characterized in that: the tray stacking unit further includes a top tray and a bottom tray respectively located above and below the plastic suction packaging trays. The multi-point edge of the top tray is provided with a first flange, and the outer edge of the bottom tray is provided with a second flange. A number of support and fixing corner guards are provided at the four corners of the plastic suction packaging tray. The top of the support and fixing corner guard is stuck in the gap between the first flange and the plastic suction packaging tray, and the bottom of the support and fixing corner guard is stuck in the gap between the second flange and the plastic suction packaging tray. The support and fixing corner guard fixes the plastic suction packaging tray from the side, which can effectively solve the problems of deformation and skew of the plastic suction packaging tray, displacement of the upper and lower plastic suction packaging trays, making the packaging and packing neat, beautiful and firm, and the stacking and warehousing stable and firm; the top tray and the bottom tray have lower costs than wooden boards and are easier to produce.
[0016] 2. Other advantages of the present utility model will be described in detail in the embodiment section. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 FIG. is a schematic structural diagram of a motor packaging structure provided by an embodiment of the present utility model;
[0018] Figure 2 is an exploded view of the motor packaging structure;
[0019] Figure 3 Schematic structural diagram of a plastic suction packaging tray;
[0020] Figure 4 is a schematic structural diagram of the plastic suction packaging tray from another angle;
[0021] Figure 5 is a schematic diagram of two stacking units stacked;
[0022] Figure 6 is Figure 5 an enlarged view of part A of DETAILED DESCRIPTION OF THE EMBODIMENTS
[0023] In order to make the objectives, technical solutions and advantages of the embodiments of the present utility model clearer, the technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are some, but not all, of the embodiments of the present utility model. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0024] As Figures 1 to 6 shown, the present embodiment provides a motor packaging structure, including at least one stacking unit 1. Each stacking unit 1 includes a plurality of plastic suction packaging trays 12. A plurality of motor limiting grooves 121 for placing motors are provided in the plastic suction packaging trays 12. It is characterized in that: the stacking unit 1 further includes a top tray 11 and a bottom tray 13 respectively located above and below the plastic suction packaging trays 12. The top surface of the top tray 11 and the bottom surface of the bottom tray 13 are both non-planar. A first flanging 111 is provided at the multi-point edge of the top tray 11, and a second flanging 131 is provided at the outer edge of the bottom tray 13. A plurality of support and fixing corner guards 14 are provided at the four corners of the plastic suction packaging trays 12. The top of the support and fixing corner guards 14 is stuck in the gap between the first flanging 111 and the plastic suction packaging trays 12, and the bottom of the support and fixing corner guards 14 is stuck in the gap between the second flanging 131 and the plastic suction packaging trays 12.
[0025] The motor packaging structure, with the supporting and fixing corner guards 14 fixing the plastic suction packaging trays 12 from the side, increases the supporting stress points of each layer of plastic suction packaging trays 12, can effectively solve the problems of deformation and skew of the plastic suction packaging trays 12, displacement of the upper and lower plastic suction packaging trays, making the packaging and packing neat, beautiful and firm, and the stacking and storage stable and firm; the top tray and the bottom tray have lower costs and are easier to produce than wooden boards.
[0026] The above-mentioned plastic suction packaging tray 12 is made of HDPE plastic for suction, and the supporting and fixing corner guard 14 is made of PP hollow board material. Using HDPE plastic for suction to make the plastic suction packaging tray 12 can solve the waste of environmental resources; the supporting and fixing corner guard 14 of PP hollow board can be recycled, and has a light weight and low cost.
[0027] The above-mentioned motor limit slots 121 are arranged in rows. There is a supporting platform 122 between two adjacent motor limit slots 121 in the same row. The supporting platforms 122 of adjacent rows and the motor limit slots 121 are arranged at intervals. There is at least one strip-shaped groove 123 for accommodating the motor rotating shaft on the top of the supporting platform 122. For the motor 9 placed in the motor limit slot 121, its rotating shaft 91 is accommodated in the adjacent strip-shaped groove 123. There is a groove 125 at the bottom of the supporting platform 122. When the upper plastic suction packaging tray 12 is stacked on the lower plastic suction packaging tray 12, the motor limit slot 121 of the lower plastic suction packaging tray 12 is located below the groove 125 of the upper plastic suction packaging tray 12. It saves space and enables each plastic suction packaging tray 12 to accommodate more motors 9.
[0028] Avoidance slots 124 for accommodating the flanges 92 of the motor stretching end covers are provided in the middle of the above-mentioned motor limit slots 121 and the middle of the grooves 125. The avoidance slots 124 can avoid the flanges in the middle of the motor stretching end covers, and can realize the universality of the drum and stretching cover structure products.
[0029] In each layer of the above-mentioned plastic suction packaging tray 12, plastic protective films are laid above and below the motor 9. The plastic protective films can prevent the motor nameplate and the fuselage from being damaged and blackened due to friction.
[0030] The above-mentioned top tray 11 protrudes upwards by a number of first bosses 112, and the bottom tray 13 protrudes downwards by a number of second bosses 132. When the upper stacking unit 1 is stacked on the top of the lower stacking unit 1, the second bosses 132 of the upper stacking unit 1 are supported on the top surface of the top tray 11 of the lower stacking unit 1, and the first bosses 112 of the lower stacking unit 1 are supported on the bottom surface of the bottom tray 13 of the upper stacking unit 1. The upper and lower stacking units 1 cooperate with each other, are not prone to slipping, and are safer for transportation.
[0031] When the upper pallet stacking unit 1 is stacked on top of the lower pallet stacking unit 1 as described above, the first boss 112 of the lower pallet stacking unit 1 is in close contact with the second boss 132 of the upper pallet stacking unit 1. An interlock is generated between the first boss 112 of the lower pallet stacking unit 1 and the second boss 132 of the upper pallet stacking unit 1, further fixing the upper and lower two pallet stacking units 1.
[0032] The number of the first bosses 112 and the second bosses 132 is nine each as described above.
[0033] There is at least one empty blister packaging tray 12 provided between the motor 9 of the uppermost blister packaging tray 12 and the top tray 11 as described above. The empty blister packaging tray 12 is used to protect the motor of the top layer.
[0034] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements for some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A motor packaging structure, comprising at least one pallet stacking unit (1), each pallet stacking unit (1) including a plurality of blister packaging trays (12), and a plurality of motor limiting slots (121) for placing motors are arranged in the blister packaging trays (12), and it is characterized in that: The palletizing unit (1) further includes a top tray (11) and a bottom tray (13) respectively located above and below the plastic blister packaging tray (12). The multi-point edge of the top tray (11) is provided with a first flanging (111), and the outer edge of the bottom tray (13) is provided with a second flanging (131). A number of supporting and fixing corner guards (14) are provided at the four corners of the plastic blister packaging tray (12). The top of the supporting and fixing corner guard (14) is stuck in the gap between the first flanging (111) and the plastic blister packaging tray (12), and the bottom of the supporting and fixing corner guard (14) is stuck in the gap between the second flanging (131) and the plastic blister packaging tray (12).
2. The motor packaging structure according to claim 1, characterized in that: The plastic blister packaging tray (12) is made of HDPE blister plastic, and the supporting and fixing corner guard (14) is made of PP hollow board material.
3. The motor packaging structure according to claim 2, wherein: The motor limiting grooves (121) are arranged in rows. A supporting platform (122) is provided between two adjacent motor limiting grooves (121) in the same row. At least one strip-shaped groove (123) for accommodating the motor rotating shaft is provided on the top of the supporting platform (122). The supporting platforms (122) and the motor limiting grooves (121) in adjacent rows are arranged at intervals. A groove (125) is provided at the bottom of the supporting platform (122). When the upper plastic blister packaging tray (12) is stacked on the lower plastic blister packaging tray (12), the motor limiting groove (121) of the lower plastic blister packaging tray (12) is located below the groove (125) of the upper plastic blister packaging tray (12).
4. The motor packaging structure according to claim 3, characterized in that: Avoidance grooves (124) for accommodating the flanging of the motor stretching end cover are provided in the middle of the motor limiting groove (121) and the middle of the groove (125).
5. The motor packaging structure according to claim 4, characterized in that: Inside each layer of the plastic blister packaging tray (12), plastic protective films are laid above and below the motor respectively.
6. A motor packaging structure according to any one of claims 1 to 5, characterized in that: The top tray (11) protrudes upward by a number of first bosses (112), and the bottom tray (13) protrudes downward by a number of second bosses (132). When the upper palletizing unit (1) is stacked on the top of the lower palletizing unit (1), the second bosses (132) of the upper palletizing unit (1) are supported on the top surface of the top tray (11) of the lower palletizing unit (1), and the first bosses (112) of the lower palletizing unit (1) are supported on the bottom surface of the bottom tray (13) of the upper palletizing unit (1).
7. The motor packaging structure according to claim 6, characterized in that: When the upper palletizing unit (1) is stacked on the top of the lower palletizing unit (1), the first bosses (112) of the lower palletizing unit (1) are closely attached to the second bosses (132) of the upper palletizing unit (1).
8. The motor packaging structure according to claim 7, characterized in that: The number of the first bosses (112) and the second bosses (132) is nine each.
9. The motor packaging structure according to claim 8, characterized in that: There is at least one empty plastic blister packaging tray (12) between the motor of the uppermost plastic blister packaging tray (12) and the top tray (11).