A honeycomb panel box for rotor packaging

By designing a honeycomb enclosure box for rotor packaging and utilizing a combination of multi-layer limiting units and blister frames, the problems of rotor collision and shaking during transportation are solved, precise positioning and safe storage of rotors of different sizes are achieved, and the disassembly process is simplified.

CN118992290BActive Publication Date: 2025-09-12WUXI XIANGSHENG PACKING
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Patent Information

Application Number
CN202411201452.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-09-12
Estimated Expiration
2044-08-29

AI Technical Summary

Technical Problem

In the prior art, the rotor is easily damaged by collision and bumping during packaging and transportation, and lacks effective limiting and protective measures.

Method used

A honeycomb enclosure box for rotor packaging was designed, which includes a tray, honeycomb enclosure, cover plate and multi-layer limiting units. By using components such as blister enclosure, rotor limiting plates, support columns and swing arc plates, and through the combination of multi-layer limiting units and blister outer frame, precise positioning and protection of the rotor can be achieved.

Benefits of technology

It effectively reduces the shaking and collision of the rotor during transportation, adapts to the storage requirements of rotors of different sizes, simplifies the disassembly process of the blister frame, and improves transportation safety and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention belongs to the technical field of rotor honeycomb boxes, and more specifically, is a honeycomb enclosure box for packaging rotors, comprising a tray and a honeycomb enclosure movably sleeved on the outer surface of the top of the tray, a cover movably sleeved on the inner wall of the honeycomb enclosure and the outer surface of the top of the tray, and a rotor movably sleeved inside the tray. The outer surface of the top of the tray is provided with multiple layers of limiting units, and the multiple layers of limiting units include a blister enclosure movably sleeved on the outer surface of the top of the tray. The present invention places the rotor on the top surface of the blister enclosure, and cooperates with the placement groove on the top surface of the blister enclosure to limit the position of the rotor. At the same time, the semicircular grooves on the inner walls on both sides of the placement groove can be used to limit the position of some longer rotors. When the rotor is placed inside the placement groove, it cooperates with the swing arc plate on the top surface of the support column to fit on the surface of the rotor.
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Description

Technical Field

[0001] The invention belongs to the technical field of rotor honeycomb boxes, in particular to a rotor packaging honeycomb enclosure box. Background Art

[0002] The motor rotor is an important component of motors such as generators and starters. The rotor consists of three parts: the rotor core, the rotor winding and the frame. The main function of the rotor is to generate a rotating magnetic field, and the main function of the rotor is to be cut by the magnetic lines of force in the rotating magnetic field to generate output current.

[0003] In the current existing technology, rotors need to be packaged when they are produced and shipped. At present, when packaging rotors, most of them are packaged in batches using panel boxes and then stacked on pallets to facilitate their transportation and placement. However, this packaging method cannot separate and limit the packaging of each rotor. This causes the rotors to easily collide with each other and cause wear or damage during transportation. Moreover, if the rotors are not limited, when there are bumps during transportation, the rotors will jump due to the bumps, which can easily cause damage.

[0004] To this end, the present invention provides a rotor packaging honeycomb enclosure box. Summary of the Invention

[0005] In order to make up for the deficiencies of the prior art, at least one technical problem raised in the background technology is solved.

[0006] The technical solution adopted by the present invention to solve its technical problems is: the rotor packaging honeycomb enclosure box described in the present invention includes a pallet and a honeycomb enclosure movably sleeved on the outer surface of the top of the pallet, a cover plate movably sleeved on the inner wall of the honeycomb enclosure and the outer surface of the top of the pallet, and a rotor movably sleeved inside the pallet. A multi-layer same-limiting unit is provided on the outer surface of the top of the pallet. The multi-layer same-limiting unit includes a blister enclosure movably sleeved on the outer surface of the top of the pallet. The number of the blister enclosures is set at six groups. A placement groove is provided on the top surface of the blister enclosure, and a semicircular groove 2 is provided on the inner wall of the placement groove. A rotor limiting plate is movably sleeved on the inner wall of the placement groove and at the edge position of the semicircular groove 2. The bottom inner wall of the rotor limiting plate is symmetrically fixedly connected to a support column, and the top surface of the support column is movably sleeved with a swing arc plate.

[0007] Preferably, support and limiting strips are fixedly connected to the top surface of the tray and at the four corners, and limiting grooves are provided on the outer surfaces of the support and limiting strips.

[0008] Preferably, the support limit bar is internally movably sleeved with a threaded rod, a nut ring is provided on the top edge of the threaded rod, and a limiting sleeve plate movably sleeved on the outer surface of the threaded rod is fixedly installed on the inner wall surface of the support limit bar.

[0009] Preferably, a groove is provided on the outer surface of the support limit bar, and an upper push slider is movably sleeved on the outer surface of the threaded rod and located at one side edge of the groove. One end of the upper push slider is fixedly connected to an upper pressure block movably overlapped on the inner wall of the groove, and a semicircular groove is provided on the top surface of the upper pressure block.

[0010] Preferably, a conical clamping strip is movably sleeved on the inner wall surface of the limiting groove, and a swinging soft plate movably overlapped on the inner wall surface of the groove is swingably connected to the outer surface of the conical clamping strip.

[0011] Preferably, an R-shaped fillet is provided on the top surface of the swinging soft board, and the surface of the semicircular groove 1 is movably overlapped on the outer bottom surface of the swinging soft board, and a blister frame is fixedly connected to the outer surface of the conical clip strip.

[0012] Preferably, the inner wall surface of the blister outer frame is fixedly connected with a lap lower pressure arm plate movably overlapped on the outer surface of the top of the cover plate, and the outer surface of the blister outer frame is fixedly connected with an extruded soft strip movably overlapped on the inner wall surface of the honeycomb enclosure.

[0013] Preferably, a semicircular anti-strip strip is fixedly mounted on the bottom surface of the cover plate and movably overlapped on the outer surface of the top of the rotor.

[0014] Preferably, a support and limiting plate is provided at the top edge of the honeycomb enclosure and is movably overlapped on the outer surface of the top of the cover plate.

[0015] Preferably, anti-skid and wear-resistant strips are provided on the top outer surface of the rotor limit plate and on the edge positions on both sides of the support column and the swing arc plate, and anti-skid soft pads are fixedly installed on the top surface of the anti-skid and wear-resistant strips and movably overlapped on the outer surface of the rotor.

[0016] The beneficial effects of the present invention are as follows:

[0017] 1. The honeycomb enclosure box for packaging a rotor described in the present invention places the rotor on the top surface of the blister enclosure, and the placement groove on the top surface of the blister enclosure is used to limit the position of the rotor. At the same time, the semicircular grooves on the inner wall surfaces on both sides of the placement groove can be used to limit the position of some longer rotors. When the rotor is placed in the placement groove, the swing arc plate on the top surface of the supporting column is fitted on the surface of the rotor. As the rotor continuously presses down the swing arc plate, the joint between the swing arc plate and the supporting column is used as the center point to make the surface of the swing arc plate swing toward the direction of the rotor, and the inner side wall of the swing arc plate is fitted on the two side surfaces of the rotor, so that the rotor is in a suspended state inside the rotor limit plate, thereby avoiding excessive shaking of the rotor inside the placement groove due to vibration during transportation of the pallet, and then using the narrow space to limit the position of the rotor to reduce the effect of collision between the rotor and the surrounding shell;

[0018] 2. The honeycomb enclosure box for rotor packaging described in the present invention can accommodate rotors of different sizes by expanding and contracting the rotor limit plates and placing the rotor limit plates longitudinally into the placement grooves, thereby reducing the spacing between the rotor limit plates. The swing arc plates with shortened spacing can effectively clamp and position smaller rotors. At the same time, the positions of the rotor limit plates are limited by the narrow spacing in the longitudinal direction of the placement grooves. This achieves the effect of utilizing the narrow spacing in the transverse or longitudinal direction of the placement grooves to scale rotor limit plates of the same model, thereby effectively storing the rotor limit plates, thereby enabling the same model of rotor limit plates to effectively store rotors of different sizes.

[0019] 3. A rotor packaging honeycomb enclosure box described in the present invention, wherein multiple blister enclosures are stacked on the top surface of the pallet in a superimposed storage manner, and the conical clipping strips on both ends of the blister outer frame are clipped onto the surface of the supporting limit strip, and the swinging soft plate on the outer surface of the conical clipping strip passes through the groove and is clipped onto the top inner wall surface of the groove, and the position of the conical clipping strip is limited by the vertical swinging soft plate, so that the overlapping lower pressure arm plate on the inner wall surface of the blister outer frame overlaps the top surface of the blister enclosure, thereby limiting the position of the blister enclosure, reducing the excessive shaking of the blister enclosure due to vibration during transportation, and the overlapping lower pressure arm plate is movably sleeved on the top surface of each layer of blister enclosure, multiple blister outer frames can limit the position of each blister enclosure individually, and multiple blister enclosures can form a whole, so that the blister enclosure will not have the effect of excessive shaking;

[0020] 4. The present invention relates to a honeycomb enclosure box for packaging rotors. The nut ring is rotated at a later stage so that the threaded rod on the outer surface of the nut ring rotates on the inner wall surface of the limiting sleeve. When the threaded rod rotates, the push-up slider on the outer surface of the threaded rod will rise and fall slightly between the two limiting sleeves. When the push-up slider moves upward, the upper pressure block on one end of the push-up slider will move inside the groove. As the upper pressure block continues to move upward, the semicircular groove on one end of the upper pressure block pushes the bottom surface of one side of the swing soft plate, so that the swing soft plate bends toward the direction of the conical clamping strip. When the R-shaped upper end of the swing soft plate is When the rounded corner extends out of the edge of the groove, the blister frame is pulled upward. Since the upper pressure block inside the groove will always push the surface of the swinging soft board, when the first blister frame is removed, the other blister frames will not be re-engaged in the inside of the groove, and will always be in a loose and detachable state. The blister frame can then be quickly peeled off from the inside of the groove, so that each blister frame can be individually engaged to limit the position of the blister enclosure. In the later stage, multiple blister frames can be detached at the same time, avoiding the need to disassemble the blister frames one by one in the later stage. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] The present invention will be further described below with reference to the accompanying drawings.

[0022] Figure 1 is a perspective view of the present invention;

[0023] Figure 2 This is a schematic diagram of the unfolded three-dimensional structure of the tray of the present invention;

[0024] Figure 3 This is a schematic diagram of the unfolded three-dimensional structure of the blister enclosure of the present invention;

[0025] Figure 4 It is a schematic diagram of the three-dimensional structure of the plastic-absorbing enclosure of the present invention;

[0026] Figure 5 This is a schematic diagram of the three-dimensional structure of the rotor limit plate swing of the present invention;

[0027] Figure 6 This is a schematic diagram of the three-dimensional structure of the rotor limiting plate of the present invention;

[0028] Figure 7 It is a schematic diagram of the three-dimensional structure of the tray of the present invention;

[0029] Figure 8 It is a schematic diagram of the three-dimensional structure of the cover plate and honeycomb enclosure of the present invention;

[0030] Figure 9 2. It is a schematic diagram of the expanded three-dimensional structure of the support and limit strip of the present invention;

[0031] Figure 10 It is a schematic diagram of the three-dimensional structure of the support limit strip and the upper pressure block of the present invention;

[0032] Figure 11 It is a cross-sectional view of the support and limit strip and a schematic diagram of the swinging three-dimensional structure of the swinging soft plate of the present invention.

[0033] In the figure: 11, tray; 111, support limit strip; b1, limit groove; b2, threaded rod; b3, nut ring; b4, groove; b5, limit sleeve; b6, push-up slider; b7, upper pressure block; b8, semicircular groove one; 112, blister outer frame; c1, extrusion soft strip; c2, overlapping lower pressure arm plate; c3, conical clamping strip; c4, swing soft plate; c5, R-shaped fillet; 113, blister enclosure; a1, placement groove; a2, semicircular groove two; a3, rotor limit plate; a4, anti-slip and wear-resistant strip; a5, anti-slip soft pad; a6, support column; a7, swing arc plate; 12, honeycomb enclosure; 121, support limit plate; 13, cover plate; 131, anti-slip semicircular strip; 14, rotor. DETAILED DESCRIPTION

[0034] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0035] like Figures 1 to 8 As shown, a rotor packaging honeycomb enclosure box according to an embodiment of the present invention includes a pallet 11 and a honeycomb enclosure 12 movably sleeved on the top outer surface of the pallet 11, a cover plate 13 movably sleeved on the inner wall of the honeycomb enclosure 12 and the top outer surface of the pallet 11, a rotor 14 movably sleeved inside the pallet 11, and a multi-layer same-limiting unit is provided on the top outer surface of the pallet 11. The multi-layer same-limiting unit includes a blister enclosure 113 movably sleeved on the top outer surface of the pallet 11. The number of the blister enclosures 113 is set in six groups, and a placement groove a1 is provided on the top surface of the blister enclosure 113, and a semicircular groove a2 is provided on the inner wall of the placement groove a1. A rotor limiting plate a3 is movably sleeved on the inner wall of the placement groove a1 and at the edge position of the semicircular groove a2. The bottom inner wall of the rotor limiting plate a3 is symmetrically fixedly connected with a support column a6, and the top surface of the support column a6 is movably sleeved with a swing arc plate a7.

[0036] When the multi-layer limiting unit provided by the present invention is used, the rotor 14 is placed on the top surface of the blister enclosure 113, and the placement groove a1 on the top surface of the blister enclosure 113 is used to limit the position of the rotor 14. At the same time, the semicircular grooves a2 on the inner wall surfaces on both sides of the placement groove a1 can be used to limit the position of some longer rotors 14. When the rotor 14 is placed in the placement groove a1, the swing arc plate a7 on the top surface of the support column a6 is fitted on the surface of the rotor 14. As the rotor 14 continuously moves the swing arc plate a7 downward, the rotor 14 is rotated. The swing arc plate a7 is pressed, and the joint between the swing arc plate a7 and the support column a6 is used as the center point to swing the surface of the swing arc plate a7 toward the rotor 14. The inner wall surface of the swing arc plate a7 is attached to the two side surfaces of the rotor 14, so that the rotor 14 is suspended inside the rotor limit plate a3. This prevents the rotor 14 from shaking excessively inside the placement groove a1 due to vibration during transportation of the pallet 11. The narrow space is used to limit the position of the rotor 14, thereby reducing the effect of the rotor 14 colliding with the surrounding shell.

[0037] If rotors 14 of different sizes are to be placed, the rotor limiting plates a3 are extended and retracted, and the rotor limiting plates a3 are placed longitudinally into the placement groove a1, so as to shorten the spacing between the rotor limiting plates a3. The swing arc plates a7 with shortened spacing can effectively clamp and position the smaller rotors 14. At the same time, the position of the rotor limiting plates a3 is limited by the narrow spacing inside the longitudinal placement groove a1, so that the rotor limiting plates a3 of the same model can be scaled by utilizing the narrow spacing between the horizontal or vertical directions inside the placement groove a1, so as to effectively store the rotor limiting plates a3, thereby making it possible for the rotor limiting plates a3 of the same model to effectively store rotors 14 of different sizes.

[0038] Furthermore, if Figure 4 - Figure 6 and Figure 9 - Figure 11As shown, a conical snap-fit ​​strip c3 is movably sleeved on the inner wall surface of the limiting groove b1, and the surface of the semicircular groove b8 is movably overlapped on the outer bottom surface of the swing soft plate c4, and a blister outer frame 112 is fixedly connected to the outer surface of the conical snap-fit ​​strip c3. The inner wall surface of the blister outer frame 112 is fixedly connected to a lapped lower pressure arm plate c2 movably overlapped on the outer surface of the top of the cover plate 13. The outer surface of the blister outer frame 112 is fixedly connected to an extrusion soft strip c1 movably overlapped on the inner wall surface of the honeycomb enclosure 12. A semicircular anti-slip strip 131 is fixedly installed on the bottom surface of the plate 13, which is movably overlapped on the top outer surface of the rotor 14. A support limit plate 121 is movably overlapped on the top outer surface of the cover plate 13 at the top edge position of the honeycomb enclosure 12. Anti-slip and wear-resistant strips a4 are provided on the top outer surface of the rotor limit plate a3 and on the edge positions on both sides of the support column a6 and the swing arc plate a7. An anti-slip soft pad block a5 movably overlapped on the outer surface of the rotor 14 is fixedly installed on the top surface of the anti-slip and wear-resistant strip a4.

[0039] When the conical clipping strips c3, swinging soft plate c4, overlapping lower pressure arm plate c2, cover plate 13 and blister outer frame 112 provided by the present invention are in use, multiple blister enclosures 113 are stacked on the top surface of the pallet 11 in a stacked manner, and the conical clipping strips c3 on both ends of the blister outer frame 112 are clipped onto the surface of the support limit strip 111, and the swinging soft plate c4 on the outer surface of the conical clipping strip c3 passes through the groove b4 and is clipped onto the top inner wall surface of the groove b4, and the position of the conical clipping strip c3 is limited by the vertical swinging soft plate c4, so that the overlapping lower pressure arm plate c2 on the inner wall surface of the blister outer frame 112 overlaps the top surface of the blister enclosure 113, thereby limiting the position of the blister enclosure 113, reducing the excessive shaking of the blister enclosure 113 due to vibration during transportation, and the top surface of each layer of blister enclosure 113 is movably sleeved. There is an overlapping lower pressure arm plate c2, and multiple blister outer frames 112 can limit the position of each blister enclosure 113 individually, and multiple blister enclosures 113 can form a whole, so that the blister enclosure 113 will not shake too much. Later, the cover plate 13 is overlapped on the surface of the topmost blister enclosure 113, and at the same time, the semicircular anti-strip 131 on the bottom surface of the cover plate 13 is used to limit the position of the rotor 14 inside the topmost blister enclosure 113, and then the honeycomb enclosure 12 is sleeved on the outer surface of the support limit strip 111, and at the same time, the extrusion soft strip c1 on the outer surface of the blister outer frame 112 is elastically squeezed and clamped in the cavity between the blister outer frame 112 and the honeycomb enclosure 12, thereby limiting the position of the honeycomb enclosure 12, and at the same time, the support limit plate 121 on the inner wall of the honeycomb enclosure 12 is overlapped on the top surface of the cover plate 13 to limit the position of the cover plate 13.

[0040] Furthermore, if Figure 1 - Figure 3 、 Figure 7 and Figure 9 - Figure 11 As shown, the top surface of the tray 11 is fixedly connected to the support and limit strips 111 at the four corner positions. The outer surface of the support and limit strip 111 is provided with a limit groove b1. The inner part of the support and limit strip 111 is movably sleeved with a threaded rod b2. A nut ring b3 is provided on the top edge of the threaded rod b2. A limit sleeve b5 movably sleeved on the outer surface of the threaded rod b2 is fixedly installed on the inner wall of the support and limit strip 111. The outer surface of the support and limit strip 111 is provided with a limit groove b1. There is a groove b4, and an upper push slider b6 is movably sleeved on the outer surface of the threaded rod b2 and located at one side edge of the groove b4. One end of the upper push slider b6 is fixedly connected to an upper pressure block b7 that is movably overlapped on the inner wall of the groove b4. A semicircular groove b8 is provided on the top surface of the upper pressure block b7. The outer surface of the conical clamping strip c3 is swiveled with a swinging soft plate c4 that is movably overlapped on the inner wall of the groove b4. An R-shaped fillet c5 is provided on the top surface of the swinging soft plate c4.

[0041] When the threaded rod b2, nut ring b3, groove b4, limiting sleeve b5, push-up slider b6, upper pressure block b7, swing soft plate c4 and R-shaped fillet c5 provided by the present invention are in use, the nut ring b3 is rotated later so that the threaded rod b2 on the outer surface of the nut ring b3 rotates on the inner wall surface of the limiting sleeve b5, and when the threaded rod b2 rotates, the push-up slider b6 on the outer surface of the threaded rod b2 will rise and fall slightly between the two limiting sleeves b5, and when the push-up slider b6 moves upward, it will force the upper pressure block b7 on one end of the push-up slider b6 to move inside the groove b4, and as the upper pressure block b7 continues to move upward, it uses the semicircular groove b8 on one end of the upper pressure block b7 to push the bottom surface of one side of the swing soft plate c4, so that the swing soft plate c4 moves toward the conical clamping strip c3. The blister frame 112 is bent in the direction of the workpiece, and when the R-shaped fillet c5 on the top of the swinging soft plate c4 extends out of the edge position of the groove b4, the blister frame 112 is pulled upward. Since the upper pressure block b7 inside the groove b4 will continue to push the surface of the swinging soft plate c4, when the first blister frame 112 is removed, the other blister frames 112 will not be re-engaged into the inside of the groove b4, and will always be in a loose and detachable state. Then, the blister frame 112 can be quickly detached from the inside of the groove b4, so that each blister frame 112 can be individually engaged to limit the position of the blister panel 113. In the later stage, multiple blister frames 112 can be detached at the same time, avoiding the need to disassemble the blister frames 112 one by one in the later stage.

[0042] The working principle provided by the present invention is as follows: the rotor 14 is placed on the top surface of the blister enclosure 113, and the placement groove a1 on the top surface of the blister enclosure 113 is used to limit the position of the rotor 14. At the same time, the semicircular grooves a2 on the inner wall surfaces on both sides of the placement groove a1 can be used to limit the position of some longer rotors 14. When the rotor 14 is placed inside the placement groove a1, the swing arc plate a7 on the top surface of the support column a6 is fitted on the surface of the rotor 14. As the rotor 14 continuously presses down the swing arc plate a7, the rotor 14 is used to The surface of the swing arc plate a7 is swung toward the rotor 14 with the joint between the swing arc plate a7 and the support column a6 as the center point. The inner side wall of the swing arc plate a7 is fitted against the two side surfaces of the rotor 14, so that the rotor 14 is suspended inside the rotor limit plate a3. This prevents the rotor 14 from shaking excessively inside the placement groove a1 due to vibration during transportation of the pallet 11. The narrow space is then used to limit the position of the rotor 14, thereby reducing the effect of the rotor 14 colliding with the surrounding casing.

[0043] When encountering rotors 14 of different sizes for placement, the rotor limiting plates a3 are extended and retracted, and the rotor limiting plates a3 are placed longitudinally into the placement groove a1, thereby reducing the spacing between the rotor limiting plates a3. The swing arc plates a7 with shortened spacing can effectively clamp and position the smaller-sized rotors 14. At the same time, the position of the rotor limiting plates a3 is limited by the narrow spacing in the longitudinal direction of the placement groove a1, so that the rotor limiting plates a3 of the same model can be scaled by utilizing the narrow spacing between the horizontal or vertical directions inside the placement groove a1, thereby effectively storing the rotor limiting plates a3, and thus the same model of rotor limiting plates a3 can effectively store rotors 14 of different sizes.

[0044] A plurality of blister panels 113 are stacked on the top surface of the tray 11 in a stacked manner, and the conical snap-fit ​​strips c3 on both ends of the blister outer frame 112 are snapped onto the surface of the support limit strip 111, and the swing soft plate c4 on the outer surface of the conical snap-fit ​​strip c3 is snapped onto the top inner wall of the groove b4 through the groove b4, and the position of the conical snap-fit ​​strip c3 is limited by the vertical swing soft plate c4, so that the overlapping lower pressure arm plate c2 on the inner wall of the blister outer frame 112 overlaps the blister panels. On the top surface of 113, the position of the blister enclosure 113 is defined, so as to reduce the excessive shaking of the blister enclosure 113 due to vibration during transportation, and the top surface of each layer of blister enclosure 113 is movably sleeved with an overlapping lower pressure arm plate c2, and the multiple blister outer frames 112 can define the position of each blister enclosure 113 separately, and the multiple blister enclosures 113 can form a whole, so that the blister enclosure 113 will not shake too much;

[0045] Later, the nut ring b3 is rotated to make the threaded rod b2 on the outer surface of the nut ring b3 rotate on the inner wall surface of the limit sleeve b5. When the threaded rod b2 rotates, the push-up slider b6 on the outer surface of the threaded rod b2 will move up and down slightly between the two limit sleeves b5. When the push-up slider b6 moves up, it will force the upper pressure block b7 on one end of the push-up slider b6 to move inside the groove b4. As the upper pressure block b7 continues to move upward, it uses the semicircular groove b8 on one end of the upper pressure block b7 to push the bottom surface of one side of the swing soft plate c4, so that the swing soft plate c4 bends toward the direction of the tapered clamping strip c3. When the R-shaped fillet c5 on the top of the swing soft plate c4 extends out of the groove b 4, the blister outer frame 112 is pulled upward. Since the upper pressure block b7 inside the groove b4 will always push the surface of the swing soft plate c4, when the first blister outer frame 112 is removed, the other blister outer frames 112 will not be re-engaged into the interior of the groove b4, and will always be in a loose and detachable state, so that the blister outer frame 112 can be quickly peeled off from the interior of the groove b4, so that each blister outer frame 112 can be individually engaged to limit the position of the blister enclosure 113, and multiple blister outer frames 112 can be detached at the same time in the later stage, avoiding the need to disassemble the blister outer frames 112 one by one in the later stage.

[0046] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the foregoing embodiments. The foregoing embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A rotor packaging honeycomb enclosure box, comprising a tray (11) and a honeycomb enclosure (12) movably sleeved on the outer surface of the top of the tray (11), a cover (13) movably sleeved on the inner wall of the honeycomb enclosure (12) and the outer surface of the top of the tray (11), and a rotor (14) movably sleeved inside the tray (11), characterized in that: The top outer surface of the tray (11) is provided with a plurality of same-limiting units, and the plurality of same-limiting units include a blister enclosure (113) movably sleeved on the top outer surface of the tray (11), and the number of the blister enclosure (113) is provided in six groups. A placement groove (a1) is provided on the top surface of the blister enclosure (113), and a semicircular groove 2 (a2) is provided on the inner wall surface of the placement groove (a1). A rotor limiting plate (a3) ​​is movably sleeved on the inner wall surface of the placement groove (a1) and located at the edge position of the semicircular groove 2 (a2). A support column (a6) is symmetrically fixedly connected to the bottom inner wall surface of the rotor limiting plate (a3), and a swing arc plate (a7) is movably sleeved on the top surface of the support column (a6); The top surface of the tray (11) is fixedly connected to a support limit strip (111) at the four corner positions, and a limit groove (b1) is provided on the outer surface of the support limit strip (111); a threaded rod (b2) is movably sleeved inside the support limit strip (111), and a nut ring (b3) is provided at the top edge position of the threaded rod (b2); a limit sleeve (b5) movably sleeved on the outer surface of the threaded rod (b2) is fixedly installed on the inner wall surface of the support limit strip (111); a groove ( b4), an upper push slider (b6) is movably sleeved on the outer surface of the threaded rod (b2) and located at a side edge position of the groove (b4), and an upper pressure block (b7) movably overlapped on the inner wall surface of the groove (b4) is fixedly connected to one end of the upper push slider (b6), and a semicircular groove (b8) is provided on the top surface of the upper pressure block (b7); a conical clamping strip (c3) is movably sleeved on the inner wall surface of the limiting groove (b1), and a swinging soft plate (c4) movably overlapped on the inner wall surface of the groove (b4) is swingably connected on the outer surface of the conical clamping strip (c3).

2. The honeycomb enclosure box for rotor packaging according to claim 1, characterized in that: An R-shaped fillet (c5) is provided on the top surface of the swinging soft plate (c4), and the surface of the semicircular groove 1 (b8) is movably overlapped on the outer bottom surface of the swinging soft plate (c4), and a blister outer frame (112) is fixedly connected to the outer surface of the conical snap-fit ​​strip (c3).

3. The rotor packaging honeycomb enclosure box according to claim 2, characterized in that: The inner wall surface of the blister outer frame (112) is fixedly connected to a lap lower pressure arm plate (c2) movably lapped on the outer surface of the top of the cover plate (13), and the outer surface of the blister outer frame (112) is fixedly connected to an extruded soft strip (c1) movably lapped on the inner wall surface of the honeycomb enclosure (12).

4. The rotor packaging honeycomb enclosure box according to claim 3, characterized in that: A semicircular anti-strip strip (131) is fixedly mounted on the bottom surface of the cover plate (13) and is movably overlapped on the top outer surface of the rotor (14).

5. The honeycomb enclosure box for rotor packaging according to claim 4, characterized in that: A support and limiting plate (121) is provided at the top edge of the honeycomb enclosure (12) and is movably overlapped on the top outer surface of the cover plate (13).

6. The honeycomb enclosure box for rotor packaging according to claim 1, characterized in that: Anti-skid and wear-resistant strips (a4) are provided on the top outer surface of the rotor limit plate (a3) ​​and at the edge positions on both sides of the support column (a6) and the swing arc plate (a7), and anti-skid soft pads (a5) are fixedly installed on the top surface of the anti-skid and wear-resistant strips (a4) and movably overlapped on the outer surface of the rotor (14).

Citation Information

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