An all-round display device for industrial design models

Through the rotation, lifting and flipping mechanism, combined with the mirror design, the problem that the industrial design model booth cannot display all aspects of the model is solved, and the model can be observed from multiple angles and positions, which improves the display effect.

CN117017020BActive Publication Date: 2025-09-16NORTHWESTERN POLYTECHNICAL UNIV
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Patent Information

Application Number
CN202311111195.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-30
Publication Date
2025-09-16
Estimated Expiration
2043-08-30

AI Technical Summary

Technical Problem

Existing industrial design model booths cannot achieve all-round display, and it is difficult for visitors to fully observe the details of the model from different angles and positions, which affects the display effect.

Method used

The model is rotated and lifted by a motor, which drives the active gear to drive the driven gear and the support rod. The model is lifted and lifted by a motor. The model is turned 360 degrees and paused intermittently, and the mirror is used to provide multi-angle observation.

Benefits of technology

The model is displayed in all directions, and visitors can observe the details of the model from multiple angles and positions, which improves the display effect.

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Abstract

The present invention relates to the technical field of display equipment, and in particular to an all-round display device for industrial design models. The present invention can realize an all-round display of the model, and can provide time for visitors to observe the details of the model, so that the display effect is better. The present invention includes a workbench, a staircase, and a rotating mechanism, etc.; the staircase is fixedly connected to one side of the workbench, and the rotating mechanism is arranged on the workbench. The present invention drives the driving gear to rotate by a motor, so that the industrial model rotates and displays it all around, so that visitors at different angles and different positions can observe the industrial model. The rotation of the rotating wheel will reciprocate up and down along the corrugated groove of the lifting frame, thereby causing the industrial model to reciprocate up and down. The up and down reciprocating movement of the industrial model can make it more convenient for visitors to view the upper and lower sides of the industrial model, thereby fully displaying the industrial model.
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Description

Technical Field

[0001] The present invention relates to the technical field of display equipment, and in particular to an all-round display device for industrial design models. Background Art

[0002] Industrial design, also known as industrial product design, refers to the design of industrial products based on engineering, aesthetics, and economics. Industrial design, resulting from industrial development and the division of labor, is distinct from other arts, production activities, and craftsmanship. It represents the intersection of various disciplines, technologies, and aesthetic concepts. Industrial design often requires the creation of models, which are then displayed, typically through industrial design model booths.

[0003] In the existing technology, the functions of industrial design booths are relatively simple. Most of them only rotate the model in a plane, which makes it inconvenient for visitors to observe the model from different angles and positions. The model seen by visitors is not comprehensive enough, and the structure of most models is relatively complex. Visitors do not have enough time to observe the details of the model, which affects the display effect of the model. Summary of the Invention

[0004] The purpose of the present invention is to solve the above technical problems and provide an all-round display device for industrial design models, which can realize all-round display of the model and provide time for visitors to observe the details of the model, thereby improving the display effect.

[0005] The technical implementation scheme of the present invention is: a full-dimensional display device for industrial design models, including a workbench, stairs, a rotating mechanism and a lifting mechanism, a circular groove is opened at the top center of the workbench, the stairs are fixedly connected to one side of the workbench, the rotating mechanism is arranged on the workbench, and the lifting mechanism is arranged on the workbench.

[0006] Furthermore, the rotating mechanism includes a motor, a driving gear, a driven gear, a support frame and a rotating wheel. The motor is fixedly connected to the top of the workbench, the driving gear is fixedly connected to the output shaft of the motor, four rotating wheels are placed in the circular groove of the workbench, and the four rotating wheels are rotatably connected to the support frame. A driven gear is fixedly connected between the tops of the four support frames, and the driving gear is meshed with the driven gear.

[0007] Furthermore, the lifting mechanism includes a lifting frame, a support rod, a support ring, a rotating wheel, a support column, a limit column, a pin and a screw. The lifting frame is fixedly connected to the top center position of the workbench, and a corrugated groove is provided on the lifting frame. Two support rods are slidably connected to the driven gear. The two support rods are symmetrically arranged. The tops of the two support rods are fixedly connected with a support ring. The two support rings are rotatably connected to the rotating wheels. The two rotating wheels are in the corrugated groove of the lifting frame, and the two rotating wheels are in contact with the lifting frame. The upper parts of the two support rods are rotatably connected to the support column. The upper parts of the two support rods are slidably connected to the limit column. Two sockets are provided on the two limit columns. The sockets above the two limit columns are inserted with pins. An industrial model is connected between the two support columns by screws. The industrial model is located directly above the driven gear and is detachable.

[0008] Furthermore, the two support columns are provided with hexagonal blocks and have hexagonal holes, and the lower part of the limiting column is in contact with the hexagonal blocks of the support column.

[0009] Furthermore, it also includes a flip mechanism, which is arranged on a workbench, and the flip mechanism includes an inner ring gear, a limiting ring, a rotating column, a rotating gear, an active bevel gear, a driven bevel gear and a limiting frame, wherein the inner ring gear is fixedly connected to the top of the workbench, the driven gear is located in the inner ring gear, the limiting ring is slidably connected to the top of the driven gear, the rotating column is rotatably connected to the limiting ring, the rotating gear is slidably connected to the limiting ring, the inner ring gear is meshed with the rotating gear, and the rotating gear is located above the limiting ring, the active bevel gear is slidably connected to the rotating column, and the driven bevel gear is slidably connected to the hexagonal hole on the support column close to one side of the rotating column, the active bevel gear is meshed with the driven bevel gear, the limiting frame is fixedly connected to the support rod close to one side of the rotating column, and the limiting frame is rotatably connected to the active bevel gear.

[0010] Furthermore, an intermittent mechanism is also included, which is arranged on the rotating mechanism, and the intermittent mechanism includes a fixed plate, a sliding frame, an extrusion column, a slider and an extrusion spring, the fixed plate is fixedly connected to the top center position of the workbench, the fixed plate is located in the lifting frame, a guide groove is provided on the fixed plate, the sliding frame is slidably connected to the side of the driven gear close to the limiting ring, the sliding frame is provided with an inclined surface, the sliding frame contacts with the limiting ring, the extrusion column is slidably connected to the sliding frame, one end of the extrusion column is slidably connected to the guide groove of the fixed plate, the slider is slidably connected to the other end of the extrusion column, the slider is slidably connected to the inner ring gear, and an extrusion spring is connected between the slider and the sliding frame.

[0011] Furthermore, it also includes a screw and a rotating disk, the screw is connected to the support rod on the side away from the rotating column by a bolt, the rotating disk is rotatably connected to the end of the screw close to the industrial model, and the rotating disk is in contact with the industrial model.

[0012] Furthermore, a mirror is also included. The mirror is rotatably connected between the two support rods. The mirror is located directly below the industrial model and is tilted.

[0013] The beneficial effects of the present invention are: 1. The present invention drives the driving gear to rotate through a motor, and the rotation of the driving gear will drive the driven gear to rotate, so that the support rod and the two support columns rotate, and the rotation of the two support columns will drive the industrial model to rotate. The industrial model can be displayed in all directions when it rotates, so that visitors can observe the industrial model at different angles and different positions. The rotation of the rotating wheel will reciprocate up and down along the corrugated groove of the lifting frame, thereby causing the two support columns to reciprocate up and down and drive the industrial model to reciprocate up and down. The up and down reciprocating movement of the industrial model can make it more convenient for visitors to view the upper and lower sides of the industrial model, thereby displaying the industrial model in all aspects. At the same time, the staff can adjust the placement angle of the industrial model and display the industrial model so as to show some details at different angles to visitors for observation.

[0014] 2. The present invention rotates the limit ring by rotating the driven gear, so that the rotating gear rotates. The rotating gear rotates along the inner ring gear, thereby rotating the driven bevel gear. The rotation of the driven bevel gear drives one of the support columns to rotate, thereby driving the industrial model to rotate. The industrial model rotates and flips while rotating, and can be displayed 360 degrees in all directions, thereby more fully displaying the detailed design of the industrial model, so that visitors from different angles and positions can observe the industrial model more clearly, making the display effect better.

[0015] 3. The present invention drives the sliding frame and the extrusion column to rotate by rotating the driven gear. The rotation of the extrusion column will be intermittently pushed by the guide groove of the fixed disk, causing the sliding frame to move intermittently and push the limit ring to move upward, thereby causing the rotating gear to move upward intermittently and disengage from the inner ring gear, so that the industrial model no longer continues to flip. After moving downward, the rotating gear will re-engage with the inner ring gear, allowing the industrial model to continue to flip, and then intermittently flip the industrial model, making the industrial model stay for a period of time after flipping a certain angle, so that visitors can have more time to observe the structure and details on the industrial model, and view the industrial model in more detail, thereby further improving the display effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 This is a schematic diagram of the first three-dimensional structure of the present invention.

[0017] Figure 2 This is a schematic diagram of the second three-dimensional structure of the present invention.

[0018] Figure 3 For the present invention Figure 1 Schematic diagram of the enlarged three-dimensional structure of A in the middle.

[0019] Figure 4 It is a schematic diagram of the partially split three-dimensional structure of the present invention.

[0020] Figure 5 It is a partial three-dimensional structural diagram of the rotating mechanism and the lifting mechanism of the present invention.

[0021] Figure 6 It is a partial cross-sectional three-dimensional structural schematic diagram of the turnover mechanism and the intermittent mechanism of the present invention.

[0022] Explanation of the accompanying drawings: 2_workbench, 3_stairs, 41_motor, 42_driving gear, 43_driven gear, 44_support frame, 45_rotating wheel, 51_lifting frame, 52_support rod, 53_support ring, 54_rotating wheel, 55_support column, 56_limiting column, 57_latch, 58_industrial model, 59_screw, 61_inner ring gear, 62_limiting ring, 63_rotating column, 64_rotating gear, 65_driving bevel gear, 66_driven bevel gear, 67_limiting frame, 71_fixed disk, 72_sliding frame, 73_extrusion column, 74_slider, 75_extrusion spring, 8_screw, 81_rotating disk, 9_mirror. DETAILED DESCRIPTION

[0023] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0024] Example 1: An all-round display device for industrial design models, such as Figure 1-Figure 5 As shown, it includes a workbench 2, a staircase 3, a rotating mechanism and a lifting mechanism. A circular groove is opened at the center of the top of the workbench 2. The staircase 3 is fixedly connected to one side of the workbench 2. The rotating mechanism is arranged on the workbench 2, and the lifting mechanism is arranged on the workbench 2.

[0025] The rotating mechanism includes a motor 41, a driving gear 42, a driven gear 43, a support frame 44 and a rotating wheel 45. The motor 41 is connected to the top of the workbench 2 by bolts, and the driving gear 42 is connected to the output shaft of the motor 41 by a flat key. Four rotating wheels 45 are placed in the circular groove of the workbench 2. The four rotating wheels 45 are all rotatably connected to the support frame 44. The driven gears 43 are connected between the tops of the four support frames 44 by bolts, and the driving gear 42 is meshed with the driven gear 43.

[0026] The lifting mechanism includes a lifting frame 51, a support rod 52, a support ring 53, a rotating wheel 54, a support column 55, a limit column 56, a latch 57 and a screw 59. The lifting frame 51 is connected to the top center position of the workbench 2 by bolts. A corrugated groove is provided on the lifting frame 51. Two support rods 52 are slidably connected to the driven gear 43. The two support rods 52 are symmetrically arranged. The tops of the two support rods 52 are fixedly connected to the support ring 53. The two support rings 53 are rotatably connected to the rotating wheel 54. The rotating wheels 54 are both in the corrugated groove of the lifting frame 51, and the two rotating wheels 54 are in contact with the lifting frame 51. The upper parts of the two support rods 52 are rotatably connected to the support columns 55, and the upper parts of the two support rods 52 are slidably connected to the limiting columns 56. Two sockets are provided on the two limiting columns 56, and the sockets above the two limiting columns 56 are inserted with pins 57. An industrial model 58 is connected between the two support columns 55 by a screw 59. The industrial model 58 is located directly above the driven gear 43, and the industrial model 58 is detachable.

[0027] The two support columns 55 are provided with hexagonal blocks and have hexagonal holes, and the lower portion of the limiting column 56 contacts the hexagonal blocks of the support columns 55 .

[0028] In actual operation, the staff first installs the industrial model 58 between the two support columns 55 through screws 59. The stairs 3 make it convenient for the staff to walk onto the workbench 2. When the industrial model 58 needs to be displayed, the staff starts the motor 41. The output shaft of the motor 41 rotates slowly to drive the driving gear 42 to rotate. The driving gear 42 rotates to drive the driven gear 43 to rotate. The driven gear 43 rotates to drive the four support frames 44 and the rotating wheel 45 to rotate along the circular groove of the workbench 2. When the driven gear 43 rotates, it drives the two support rods 52 and the two support columns 55 to rotate together. The rotation of the two support columns 55 drives the industrial model 58 The industrial model 58 can be rotated to display all around so that visitors can observe the industrial model 58 from different angles and positions. When the support rod 52 rotates, the support ring 53 and the rotating wheel 54 will rotate together. When the rotating wheel 54 rotates, it will move back and forth along the corrugated groove of the lifting frame 51. The up and down reciprocating movement of the support ring 53 and the rotating wheel 54 will drive the support rod 52, the support column 55 and the limit column 56 to move up and down together. The up and down reciprocating movement of the two support columns 55 will drive the industrial model 58 to move up and down. The up and down reciprocating movement of the industrial model 58 during the rotation process allows visitors to more conveniently view the industrial model 58. 8, thereby fully displaying the industrial model 58, so that visitors can see the industrial model 58 clearly from all aspects. If the staff needs to adjust the placement angle of the industrial model 58, they first pull the two limit columns 56 upward to disengage the limit columns 56 from the hexagonal blocks of the support columns 55, and then insert the pin 57 in the socket above the limit column 56 into the socket below. The pin 57 will jam the limit column 56, so that the limit column 56 will no longer move downward. Then the staff will insert the hexagonal handle into the hexagonal hole of one of the support columns 55 and rotate one of the support columns 55. The rotation of one of the support columns 55 will drive the industrial model 58 to rotate. The model 58 and another support column 55 rotate, and then the placement angle of the industrial model 58 is adjusted. When the placement angle of the industrial model 58 is adjusted, the staff inserts the pin 57 in the socket below the limit column 56 into the socket above. The limit column 56 will move under the action of gravity and jam the hexagonal block of the support column 55, so that the support column 55 no longer rotates. After that, the staff loosens one of the support columns 55, and then can adjust the angle to display the industrial model 58, so as to show some details at different angles to visitors for observation; when the industrial model 58 is displayed, the staff can disassemble the industrial model 58.

[0029] Example 2: Based on Example 1, Figures 1-6As shown, it also includes a flip mechanism, which is arranged on the workbench 2. The flip mechanism includes an inner ring gear 61, a limiting ring 62, a rotating column 63, a rotating gear 64, a driving bevel gear 65, a driven bevel gear 66 and a limiting frame 67. The inner ring gear 61 is connected to the top of the workbench 2 by bolts, and the driven gear 43 is located in the inner ring gear 61. The limiting ring 62 is slidably connected to the top of the driven gear 43. The rotating column 63 is rotatably connected to the limiting ring 62. The rotating gear 64 slides The inner ring gear 61 is connected to the limiting ring 62, the inner ring gear 61 is meshed with the rotating gear 64, the rotating gear 64 is located above the limiting ring 62, the driving bevel gear 65 is slidably connected to the rotating column 63, and the driven bevel gear 66 is slidably connected to the hexagonal hole on the support column 55 close to the side of the rotating column 63. The driving bevel gear 65 is meshed with the driven bevel gear 66, and the limiting frame 67 is connected to the support rod 52 close to the side of the rotating column 63 by bolts, and the limiting frame 67 is rotatably connected to the driving bevel gear 65.

[0030] When the structure of the industrial model 58 is more complicated and needs to be flipped for display, the staff pulls the two limit columns 56 upward and inserts the pin 57 in the socket above the limit column 56 into the socket below, so that the limit column 56 no longer gets stuck in the support column 55. The rotation of the driven gear 43 drives the limit ring 62 to rotate, and the rotation of the limit ring 62 drives the rotating column 63, the rotating gear 64 and the active bevel gear 65 to rotate together. The rotation of one of the support columns 55 drives the driven bevel gear 66 to rotate, and the rotating gear 64 rotates along the inner ring gear 61 while rotating, and the rotating gear 65 rotates. The rotation of the driving bevel gear 65 drives the rotating column 63 and the driving bevel gear 65 to rotate together. The rotation of the driving bevel gear 65 drives the driven bevel gear 66 to rotate. The rotation of the driven bevel gear 66 drives one of the supporting columns 55 to rotate. The rotation of one of the supporting columns 55 drives the industrial model 58 and the other supporting column 55 to rotate together. The industrial model 58 can be flipped while rotating to achieve a 360-degree all-round display, thereby more fully displaying the detailed design of the industrial model 58. Visitors from different angles and positions can observe the industrial model 58 more clearly, making the display effect better.

[0031] Example 3: Based on Example 2, Figures 1-6As shown, an intermittent mechanism is also included, which is arranged on the rotating mechanism. The intermittent mechanism includes a fixed plate 71, a sliding frame 72, an extrusion column 73, a slider 74 and an extrusion spring 75. The fixed plate 71 is connected to the top center position of the workbench 2 by bolts. The fixed plate 71 is located in the lifting frame 51. A guide groove is provided on the fixed plate 71. The sliding frame 72 is slidably connected to the side of the driven gear 43 close to the limit ring 62. The sliding frame 72 is provided with an inclined surface. The sliding frame 72 contacts the limit ring 62. The extrusion column 73 is slidably connected to the sliding frame 72. One end of the extrusion column 73 is slidably connected to the guide groove of the fixed plate 71. The slider 74 is slidably connected to the other end of the extrusion column 73. The slider 74 is slidably connected to the inner ring gear 61. An extrusion spring 75 is connected between the slider 74 and the sliding frame 72, and the extrusion spring 75 is sleeved on the extrusion column 73.

[0032] The rotation of the driven gear 43 will drive the sliding frame 72, the extrusion column 73 and the slider 74 to rotate together. The extrusion column 73 will rotate along the guide groove of the fixed plate 71 and be pushed by the guide groove of the fixed plate 71, causing the extrusion column 73 to move outward, and the extrusion spring 75 will be compressed. At the same time, the extrusion spring 75 will pull the sliding frame 72 to move. The movement of the sliding frame 72 will push the limiting ring 62 to move upward. The upward movement of the limiting ring 62 will drive the rotating column 63 and the rotating gear 64 to move upward together. The upward movement of the rotating gear 64 will disengage from the inner ring gear 61 and no longer rotate, thereby causing the industrial model 58 to stop flipping over. The extrusion column 73 continues to rotate along the guide groove of the fixed plate 71 and will no longer be pushed by the guide groove of the fixed plate 71 The reset of the extrusion spring 75 will drive the sliding frame 72 and the extrusion column 73 to reset together. The reset of the sliding frame 72 will no longer push the limiting ring 62. The limiting ring 62, the rotating column 63 and the rotating gear 64 will move downward under the action of gravity, so that the rotating gear 64 will re-engage with the inner ring gear 61, and then the rotating gear 64 will continue to rotate along the inner ring gear 61 while rotating, so that the industrial model 58 will continue to flip over. Repeat this and then intermittently flip the industrial model 58, so that the industrial model 58 will stay for a period of time after flipping a certain angle, so that visitors can have a longer time to observe the structure and details on the industrial model 58, and view the industrial model 58 in more detail, thereby further improving the display effect.

[0033] Example 4: Based on Example 3, Figure 1-Figure 2 As shown, it also includes a screw rod 8 and a rotating disk 81. The screw rod 8 is connected to the support rod 52 on the side away from the rotating column 63 by bolts. The screw rod 8 is horizontally arranged. The rotating disk 81 is rotatably connected to the end of the screw rod 8 close to the industrial model 58. The rotating disk 81 is in contact with the industrial model 58.

[0034] If the industrial model 58 is small in size, the staff can use the screw 59 to fix the industrial model 58 on the support column 55 on the side away from the screw rod 8, and then rotate the screw rod 8 to move the screw rod 8 and the rotating disk 81 toward the side close to the industrial model 58, and make the rotating disk 81 contact with the industrial model 58. The rotating disk 81 will squeeze the industrial model 58, thereby supporting the industrial model 58 and preventing the industrial model 58 from falling.

[0035] Example 5

[0036] On the basis of Example 4, Figure 1-Figure 3 As shown, a mirror 9 is also included. The mirror 9 is rotatably connected between the two support rods 52. The mirror 9 is located directly below the industrial model 58 and is tilted.

[0037] The mirror 9 can facilitate visitors to observe the bottom of the industrial model 58, and the angle of the mirror 9 can be adjusted.

[0038] While 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 these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. An all-round display device for industrial design models, characterized by: It comprises a workbench (2), a staircase (3), a rotating mechanism and a lifting mechanism, wherein a circular groove is provided at the center of the top of the workbench (2), the staircase (3) is fixedly connected to one side of the workbench (2), the rotating mechanism is provided on the workbench (2), and the lifting mechanism is provided on the workbench (2); The rotating mechanism includes a motor (41), a driving gear (42), a driven gear (43), a support frame (44) and a rotating wheel (45), wherein the motor (41) is fixedly connected to the top of the workbench (2), the driving gear (42) is fixedly connected to the output shaft of the motor (41), four rotating wheels (45) are placed in the circular groove of the workbench (2), the four rotating wheels (45) are all rotatably connected to the support frame (44), the tops of the four support frames (44) are fixedly connected with the driven gear (43), and the driving gear (42) is meshed with the driven gear (43); The lifting mechanism comprises a lifting frame (51), a support rod (52) and a support column (55); the lifting frame (51) is fixedly connected to the top center position of the workbench (2); a wave-shaped groove is provided on the lifting frame (51); two support rods (52) are slidably connected to the driven gear (43); the two support rods (52) are symmetrically arranged, and the upper parts of the two support rods (52) are rotatably connected to the support column (55); The invention also includes a flip mechanism, which is arranged on the workbench (2). The flip mechanism includes an inner ring gear (61), a limiting ring (62), a rotating column (63), a rotating gear (64), an active bevel gear (65), a driven bevel gear (66) and a limiting frame (67). The inner ring gear (61) is fixedly connected to the top of the workbench (2), the driven gear (43) is located in the inner ring gear (61), the limiting ring (62) is slidably connected to the top of the driven gear (43), the rotating column (63) is rotatably connected to the limiting ring (62), and the rotating gear (64) is slidably connected to the rotating column (63). The inner ring gear (61) is connected to the limiting ring (62), the inner ring gear (61) is meshed with the rotating gear (64), the rotating gear (64) is located above the limiting ring (62), the driving bevel gear (65) is slidably connected to the rotating column (63), the driven bevel gear (66) is slidably connected to the hexagonal hole on the support column (55) close to the side of the rotating column (63), the driving bevel gear (65) is meshed with the driven bevel gear (66), the limiting frame (67) is fixedly connected to the support rod (52) close to the side of the rotating column (63), and the limiting frame (67) is rotatably connected to the driving bevel gear (65); The intermittent mechanism is also included. The intermittent mechanism is provided on the rotating mechanism. The intermittent mechanism includes a fixed plate (71), a sliding frame (72), an extrusion column (73), a slider (74) and an extrusion spring (75). The fixed plate (71) is fixedly connected to the top center position of the workbench (2). The fixed plate (71) is located in the lifting frame (51). A guide groove is provided on the fixed plate (71). The sliding frame (72) is slidably connected to the driven gear (43) near the limit ring (62). On one side, the sliding frame (72) is provided with an inclined surface, the sliding frame (72) contacts the limiting ring (62), the extrusion column (73) is slidably connected to the sliding frame (72), one end of the extrusion column (73) is slidably connected to the guide groove of the fixed plate (71), the slider (74) is slidably connected to the other end of the extrusion column (73), the slider (74) is slidably connected to the inner ring gear (61), and an extrusion spring (75) is connected between the slider (74) and the sliding frame (72).

2. The omnidirectional display device for industrial design models according to claim 1, characterized in that: The lifting mechanism further includes a support ring (53), a rotating wheel (54), a limiting column (56), a latch (57) and a screw (59). The tops of the two support rods (52) are fixedly connected to the support ring (53). The two support rings (53) are rotatably connected to the rotating wheels (54). The two rotating wheels (54) are in the wave-shaped groove of the lifting frame (51), and the two rotating wheels (54) are in contact with the lifting frame (51). The upper parts of the two support rods (52) are slidably connected to the limiting column (56). Two sockets are provided on the two limiting columns (56). The sockets above the two limiting columns (56) are plugged with latches (57). An industrial model (58) is connected between the two support columns (55) by a screw (59). The industrial model (58) is located directly above the driven gear (43). The industrial model (58) is detachable.

3. The omnidirectional display device for industrial design models according to claim 2, characterized in that: The two support columns (55) are provided with hexagonal blocks and have hexagonal holes, and the lower portion of the limiting column (56) contacts the hexagonal blocks of the support columns (55).

4. The omnidirectional display device for industrial design models according to claim 3, characterized in that: It also includes a screw rod (8) and a rotating disk (81), wherein the screw rod (8) is connected to the support rod (52) on the side away from the rotating column (63) by a bolt, and the rotating disk (81) is rotatably connected to the end of the screw rod (8) close to the industrial model (58), and the rotating disk (81) is in contact with the industrial model (58).

5. The omnidirectional display device for industrial design models according to claim 4, characterized in that: The invention also includes a mirror (9), which is rotatably connected between the two support rods (52). The mirror (9) is located directly below the industrial model (58), and the mirror (9) is tilted.

Citation Information

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