Hub cap packaging and overturning equipment

By designing a combination of a flipping base, a flipping platform, and an infrared sensing device, the stability problem of electric vehicle hubcap flipping equipment was solved, achieving efficient and stable hubcap flipping, and improving production efficiency and product quality.

CN224014307UActive Publication Date: 2026-03-20GUANGDONG SHUNDI PRECISION MANUFACTURING CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing electric vehicle hubcap flipping equipment has insufficient stability, causing the hubcap to shake, shift, or slip during the flipping process, affecting production efficiency and quality.

Method used

A hub cover container flipping device was designed, including a container frame and a container flipping device. The stable flipping of the hub cover is achieved through the combination of a flipping base, a flipping platform, a drive device and an infrared sensing device.

Benefits of technology

It improves the accuracy and consistency of flipping operations, reduces manual operation, lowers production costs, and increases product qualification rate.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224014307U_ABST
    Figure CN224014307U_ABST
Patent Text Reader

Abstract

The utility model discloses hub cap packaging turnover equipment which comprises a packaging frame, the packaging frame comprises a storage rack and a packaging cage, the storage rack comprises a plurality of fixing rods, the packaging cage comprises a cage body with an opening formed in the upper portion and a cage cover used for blocking the opening, and a lifting grabbing lug is arranged on the side, close to the opening, of the cage body; the overturning device comprises an overturning base and an overturning base table rotationally connected with the overturning base, and the overturning base table comprises a first bearing part for bearing the end, away from the opening, of the container cage, a second bearing part for bearing the end, away from the lifting grabbing lug, of the container cage and an overturning part fixedly connected between the first bearing part and the second bearing part; a driving device is arranged in the overturning base and the overturning part in a penetrating manner; the hub cover overturning device can effectively eliminate the risks of shaking, shifting and slipping of hub covers in the overturning process, can support simultaneous overturning of a large batch of hub covers, remarkably improves production efficiency, reduces production cost of unit products, and meets the requirement for large-scale overturning.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to electric vehicle parts technical field, especially a hub cap packing turnover equipment. BACKGROUND

[0002] With the vigorous development of electric vehicle industry, the production efficiency and quality of electric vehicle hub cap as an important part of the wheel system are increasingly concerned. In the production process of hub cap, turnover operation is an indispensable link, which is related to the uniformity of hub cap surface treatment, the comprehensiveness of quality detection and many other key links. However, the current market equipment for electric vehicle hub cap turnover generally has the problem of instability. In the actual production of electric vehicle hub cap turnover, the problem of poor stability mainly manifests as hub cap shaking, deviating or even falling during the turnover process. This unstable turnover state not only leads to low production efficiency, but also produces a large number of defective products due to the collision and scratching between hub caps, increasing the production cost.

[0003] For example, the Chinese patent with application number 202420830414.6 discloses a kind of electric vehicle wheel hub processing turnover device, which is adapted to electric vehicle wheel hub of different diameters through self-adaptive limiting mechanism, aiming at improving the applicability of equipment. However, the threaded rod can adapt to wheel hub of different diameters, but lacks effective limiting mechanism to prevent axial or radial movement of wheel hub during the turnover process. Therefore, in actual operation, the device may still have the problem of unstable hub cap turnover, affecting production efficiency and product quality.

[0004] The Chinese patent with application number 202420078305.3 discloses a kind of turnover equipment for automobile wheel hub unit production. The equipment tries to reduce the labor intensity of manual turnover through the synergistic effect of semi-arc clamping block and movable block. However, in-depth analysis of its technical solution shows that its stability improvement mainly depends on the simple cooperation of clamping block and movable block, and does not fundamentally solve the problem of dynamic stability during the turnover process. Especially when turning at high speed or high frequency, the device may still have slight shaking or inaccurate positioning, thereby affecting the production quality of hub cap.

[0005] Based on the above problems, it is urgent to propose a new type of hub cap packing turnover equipment, which can effectively eliminate the shaking, deviation and sliding risk of hub cap during the turnover process, and can support a large number of hub caps to be turned over at the same time, significantly improve the production efficiency, reduce the production cost per unit product, meet the demand of large-scale turnover, greatly improve the product qualification rate, reduce the defective rate, and create significant economic benefits for enterprises. UTILITY MODEL CONTENT

[0006] The utility model provides a hub cover containerization overturning equipment, including the containerization frame, the containerization frame includes the containerization cage and the article rack, the article rack includes a plurality of for the fixed article rod of hub cover wear, the containerization cage includes the cage body of setting up the opening in the upper portion and is used to the cage cover of blocking the opening, the cage cover swing joint is in the upper portion of cage body, is provided with the lifting ear of hoisting and grabbing on the side of cage body near the opening,

[0007] The overturning device comprises an overturning base, an overturning base table rotatably connected to the overturning base, the overturning base table comprising a first receiving part for receiving one end of the containerization cage away from the opening and a second receiving part for receiving one end of the containerization cage away from the lifting ear, and a overturning part fixedly connected between the first receiving part and the second receiving part, wherein the first receiving part and the second receiving part are perpendicular to each other, and a driving device is arranged in the overturning base and the overturning part.

[0008] Further, the first receiving part comprises a first overturning support fixedly connected to the overturning part, and a first receiving plate is fixedly connected to the first overturning support, the second receiving part comprises a second overturning support fixedly connected to the overturning part, and a second receiving plate is fixedly connected to the second overturning support, wherein the overturning base table has a cross section substantially in the shape of "L".

[0009] Further, the overturning base comprises an overturning base frame, a supporting bottom rod for supporting the overturning base table is arranged in the overturning base frame, and two fixed ears corresponding to the overturning part are arranged on the overturning base frame.

[0010] Further, the driving device comprises a driving rod arranged in the overturning part and the fixed ear, a driving motor is connected to one end of the driving rod, the other end of the driving rod is rotatably positioned at one end of the fixed ear, a limiting protrusion is arranged on the driving rod, a driving hole corresponding to the driving rod is arranged in the overturning part, and a limiting groove corresponding to the limiting protrusion is arranged in the driving hole, wherein the overturning base table is relatively rotated with the overturning base through the driving rod, the driving hole, the limiting protrusion and the limiting groove.

[0011] Further, infrared sensing devices for sensing the position of the overturning base table are arranged at both ends of the overturning base frame.

[0012] Further, an arc surface is arranged at one end of the overturning part close to the overturning base.

[0013] Further, a control console connected to the driving device is arranged at one end of the overturning base, and a control button for controlling the driving device is arranged on the control console.

[0014] Further, the article rack comprises a supporting base and a plurality of fixed article rods arranged in an array on the supporting base, and a rod support for fixing the fixed article rods on the supporting base.

[0015] Further, the cage cover comprises a plurality of cover plates for plugging the openings and a fixed cover plate fixedly connected to one end of the plurality of cover plates, and a plurality of fixed cover rings allowing the cover plates to pass through are fixedly connected to the cage body, wherein the cage cover and the cage body are in sliding connection through the cover plates and the fixed cover rings.

[0016] Further, a plurality of supporting feet and positioning feet are uniformly distributed on the bottom of the supporting base, and a positioning receiving seat corresponding to the positioning feet is arranged on the bottom of the cage body.

[0017] Compared with the prior art, the utility model has the advantages that:

[0018] In the utility model, the container frame is composed of the storage rack and the container cage, the plurality of storage rods of the storage rack can pass through the hub cover to realize the ordered arrangement and fixation of the hub cover; the cage body and the cage cover of the container cage are detachably connected, which facilitates the placing or taking out of the storage rack with the hub cover into or out of the container cage, reduces the cumbersome operation of manually carrying a single hub cover, greatly improves the loading and unloading efficiency of the hub cover, and quickly and stably turns over the container cage through the cooperation of the turnover base and the turnover base table and the action of the driving device, compared with manual turnover, not only saves manpower and time, but also improves the accuracy and consistency of the turnover operation, which is conducive to the subsequent processing or treatment of the hub cover. BRIEF DESCRIPTION OF DRAWINGS

[0019] The accompanying drawings, which are included to provide a further understanding of the utility model, form a part of the application and schematically illustrate the embodiments of the utility model and the description thereof, and do not constitute improper limitations on the utility model.

[0020] In the drawings:

[0021] Figure 1 It is a schematic view of the hub cover container turnover equipment;

[0022] Figure 2 It is a schematic view of the turnover device;

[0023] Figure 3 It is a schematic view of the turnover base table;

[0024] Figure 4 It is a schematic view of the turnover base;

[0025] Figure 5 It is a schematic view of the container frame;

[0026] Figure 6 It is a schematic view of the storage rack;

[0027] Figure 7 It is a schematic view of the container cage;

[0028] In the drawings:

[0029] Container frame (100); storage rack (110); support base (111); fixed rod (112); fixed rod support (113); support foot (114); positioning foot (115); container cage (120); opening (1201); cage body (121); positioning receiving seat (122); lifting ear (123); cage cover (130); cover plate (131); fixed cover plate (132); fixed cover ring (133); turnover device (200); turnover base (210); turnover base frame (211); support bottom rod (212); fixed ear (213); infrared sensing device (214); control console (215); control button (216); turnover base (220); first receiving part (2210); first turnover support (2211); first receiving plate (2212); second receiving part (2220); second turnover support (2221); second receiving plate (2222); turnover part (2230); drive hole (2231); limiting groove (2232); arc surface (2233); drive device (230); drive rod (231); limiting protrusion (232); drive motor (233). DETAILED DESCRIPTION

[0030] The technical scheme of the present application will be described below with reference to the drawings of the present application. The described embodiments are only a part of the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0031] As shown in the drawings, Figures 1 to 7 The present application provides a hub cover container turnover equipment, which comprises a container frame 100, the container frame 100 comprises a storage rack 110 and a container cage 120 containing the storage rack 110, the storage rack 110 comprises a plurality of fixed rods 112 for penetrating the hub cover, the container cage 120 comprises a cage body 121 provided with an opening 1201 at the top and a cage cover 130 for plugging the opening 1201, the cage cover 130 is movably connected above the cage body 121, and a lifting ear 123 is arranged on one side of the cage body 121 close to the opening 1201.

[0032] The turnover device 200 comprises a turnover base 210 and a turnover base 220 rotatably connected to the turnover base 210, the turnover base 220 comprises a first receiving part 2210 receiving one end of the container cage 120 away from the opening 1201 and a second receiving part 2220 receiving one end of the container cage 120 away from the lifting ear 123, and a turnover part 2230 fixedly connected between the first receiving part 2210 and the second receiving part 2220, wherein the first receiving part 2210 and the second receiving part 2220 are perpendicular to each other, and the drive device 230 is arranged in the turnover base 210 and the turnover part 2230.

[0033] Specifically, the cage 121 is a cuboid structure with an opening 1201 at the top, welded by high-strength alloy steel, with good overall strength and rigidity. The four side walls and the bottom of the cage 121 are provided with reinforcing ribs to further enhance its carrying capacity and prevent deformation during loading of the hub cover or during overturning. The size of the cage 121 is designed according to the size of the shelf 110 to ensure that the shelf 110 can be smoothly placed inside the cage 121 and maintain an appropriate gap between the cage 121, facilitating the loading and unloading operation of the hub cover.

[0034] Two lifting lugs 123 are symmetrically arranged on one side of the cage 121 close to the opening 1201. The lifting lug 123 is made of high-strength metal material and has a rectangular ring structure with rounded corners. The lifting lug 123 is firmly connected to the cage 121 by welding, and the welding site is strictly detected to ensure the welding quality. The design of the lifting lug 123 facilitates the lifting operation of the container cage 120 using a lifting device, and the rounded corner design can avoid injury to personnel or equipment during lifting.

[0035] As shown in Figures 1 to 3 In this embodiment, the first receiving portion 2210 includes a first overturning support 2211 fixedly connected to the overturning portion 2230, and the first receiving plate 2212 is fixedly connected to the first overturning support 2211. The second receiving portion 2220 includes a second overturning support 2221 fixedly connected to the overturning portion 2230, and the second receiving plate 2222 is fixedly connected to the second overturning support 2221. The overturning base 220 has a generally "L"-shaped cross section. In this embodiment, an arc surface 2233 is provided at one end of the overturning portion 2230 close to the overturning base 210.

[0036] Specifically, the first receiving portion 2210 includes a first overturning support 2211 fixedly connected to the overturning portion 2230, and the first receiving plate 2212 is fixedly connected to the first overturning support 2211. The first overturning support 2211 is made of high-strength metal section bar, such as I-beam or channel steel, with good bending and torsional resistance. The first overturning support 2211 is firmly connected to the overturning portion 2230 by welding to ensure the connection strength between them. The first receiving plate 2212 is fixedly connected to the first overturning support 2211, and the first receiving plate 2212 is made of high-strength metal plate, with the surface treated for anti-slip to increase the friction when contacting with the container cage 120, preventing the container cage 120 from sliding during overturning. The size of the first receiving plate 2212 is designed according to the shape and size of the end of the container cage 120 away from the opening 1201, which can completely cover the contact part of the container cage 120 and provide stable support.

[0037] The second receiving part 2220 includes a second tilting bracket 2221 fixedly connected to the tilting part 2230. The structure and material of the second tilting bracket 2221 are the same as those of the first tilting bracket 2211. A second receiving plate 2222 is fixedly connected to the second tilting bracket 2221. The structure and material of the second receiving plate 2222 are similar to those of the first receiving plate 2212, and it also has good anti-slip properties. The second receiving part 2220 is used to receive the end of the container cage 120 away from the lifting gripper 123, and cooperates with the first receiving part 2210 to provide stable support for the container cage 120. The first receiving part 2210 and the second receiving part 2220 are perpendicular to each other, so that the tilting base 220 has an approximately "L" shaped cross-section. This structure can better adapt to the shape of the container cage 120 and improve the stability during the tilting process.

[0038] The flipping section 2230 is a key component connecting the first receiving section 2210 and the second receiving section 2220. It is welded from high-strength metal plates and has an internal reinforcing structure to enhance its overall strength. An arc-shaped surface 2233 is provided at the end of the flipping section 2230 near the flipping base 210. The design of the arc-shaped surface 2233 reduces the friction between the flipping base 220 and the flipping base 210 during the flipping process, making the flipping action smoother. At the same time, the arc-shaped surface 2233 also plays a guiding role, ensuring that the flipping base 220 maintains a stable movement trajectory during the flipping process.

[0039] like Figure 4 As shown, in this embodiment, the flip base 210 includes a flip base frame 211, in which a support base rod 212 for supporting the flip base 220 is provided, and two fixing ears 213 corresponding to the flip parts 2230 are provided on the flip base frame 211.

[0040] Specifically, the flipping base frame 211 is the basic support structure of the entire flipping device 200. It is welded from high-strength metal profiles, such as rectangular steel pipes, and has good overall rigidity and stability. The dimensions of the flipping base frame 211 are designed according to the dimensions of the flipping base 220 to ensure that the flipping base 220 can rotate smoothly within the flipping base frame 211.

[0041] A support rod 212 for supporting the tilting base 220 is provided in the tilting base frame 211. The support rod 212 is made of high-strength metal round steel and is fixed to the tilting base frame 211 by welding. The number of support rods 212 is designed according to the weight of the tilting base 220 and the stress conditions during the tilting process to ensure that it can provide sufficient support for the tilting base 220 and prevent the tilting base 220 from sinking or deforming during the tilting process.

[0042] A pair of fixed ears 213 corresponding to the turning part 2230 are arranged on the turning base frame 211, and the fixed ears 213 are made of high-strength metal plates and are fixed on the turning base frame 211 by welding. The fixed ears 213 are provided with mounting holes matched with the driving rod 231, and the size tolerance of the mounting holes is strictly controlled to ensure that the driving rod 231 can smoothly pass through and form a reliable connection with the fixed ear 213.

[0043] As shown in Figure 4 the embodiment, the driving device 230 includes a driving rod 231 penetrating the turning part 2230 and the fixed ear 213, a driving motor 233 connected to one end of the driving rod 231, and a limiting protrusion 232 arranged on the driving rod 231. A driving hole 2231 corresponding to the driving rod 231 is arranged in the turning part 2230, and a limiting slot 2232 corresponding to the limiting protrusion 232 is arranged in the driving hole 2231. The turning base 220 is relatively rotated with the turning base 210 through the driving rod 231, the driving hole 2231, the limiting protrusion 232, and the limiting slot 2232.

[0044] The driving device 230 includes a driving rod 231 penetrating the turning part 2230 and the fixed ear 213, and the driving rod 231 is made of high-strength alloy steel and has good tensile strength and wear resistance. The diameter of the driving rod 231 is designed according to the weight of the turning base 220 and the required torque for turning, to ensure that sufficient driving force can be provided. A driving motor 233 is connected to one end of the driving rod 231, and the driving motor 233 is a high-performance servo motor with precise speed control and position control functions, which can accurately control the turning speed and angle of the turning base 220 according to the control signal. The other end of the driving rod 231 is rotatably positioned at one end of the fixed ear 213, and the rotating connection is achieved through a bearing to reduce the friction of the driving rod 231 during rotation.

[0045] A limiting protrusion 232 is arranged on the driving rod 231, and the limiting protrusion 232 is made of a metal block and is fixed on the driving rod 231 by welding or threaded connection. A driving hole 2231 corresponding to the driving rod 231 is arranged in the turning part 2230, and a limiting slot 2232 corresponding to the limiting protrusion 232 is arranged in the driving hole 2231. When the driving rod 231 rotates, the limiting protrusion 232 slides in the limiting slot 2232 to limit the rotation range of the driving rod 231, thereby achieving precise control of the turning angle of the turning base 220. The turning base 220 is relatively rotated with the turning base 210 through the driving rod 231, the driving hole 2231, the limiting protrusion 232, and the limiting slot 2232. This driving method is simple and reliable in structure and can meet the use requirements of the hub cover assembly turning equipment.

[0046] As shown in Figure 4 In this embodiment, infrared sensing devices 214 are arranged at both ends of the turnover base frame 211 to sense the position of the turnover base 220.

[0047] Specifically, infrared sensing devices 214 are arranged at both ends of the turnover base frame 211 to sense the position of the turnover base 220. The infrared sensing devices 214 adopt high-precision infrared sensors and can monitor the position information of the turnover base 220 in real time. When the turnover base 220 is turned to the preset position, the infrared sensing devices 214 can timely send a signal to control the driving device 230 to stop running, so as to avoid excessive turning of the turnover base 220 and improve the safety and reliability of the equipment.

[0048] As shown in Figure 4 In this embodiment, a control console 215 connected to the driving device 230 is arranged at one end of the turnover base 210, and control buttons 216 for controlling the driving device 230 are arranged on the control console 215.

[0049] Specifically, a control console 215 connected to the driving device 230 is arranged at one end of the turnover base 210. The control console 215 is made of a high-strength metal shell and has good protection performance. Control buttons 216 for controlling the driving device 230 are arranged on the control console 215. The control buttons 216 are designed to be waterproof and dustproof and can adapt to different working environments. The control buttons 216 include start buttons, stop buttons, forward rotation buttons, and reverse rotation buttons. The operator can control the driving motor 233 by pressing the corresponding control buttons 216, so as to control the turning action of the turnover base 220. At the same time, the control console 215 can be equipped with a display screen to display the turning angle and turning speed of the turnover base 220 in real time, which facilitates the operator to monitor and adjust.

[0050] As shown in Figure 5 and Figure 6 In this embodiment, the shelf 110 includes a support base 111, a plurality of fixed object rods 112 arranged in an array on the support base 111, and a rod support 113 for fixing the fixed object rods 112 on the support base 111. A plurality of support feet 114 and positioning feet 115 are uniformly distributed at the bottom of the support base 111, and a positioning receiving seat 122 corresponding to the positioning feet 115 is arranged at the bottom of the cage 121.

[0051] Specifically, the support base 111 serves as the base support structure of the storage rack 110, and is made of high-strength metal material, such as high-quality carbon structural steel, to ensure that it has sufficient load-bearing capacity and can stably support multiple fixing rods 112 and the hub covers placed on the fixing rods 112. The support base 111 is designed in the shape of a rectangular flat plate, which is beneficial to uniformly dispersing the weight of the hub covers and avoiding local stress concentration to cause structural damage.

[0052] The multiple fixing rods 112 are distributed on the support base 111 in a specific array manner. The fixing rods 112 are made of stainless steel, which has good corrosion resistance and strength and can meet the use requirements in different environments. The diameter of the fixing rods 112 is accurately designed according to the inner hole size of the hub cover, so that the hub cover can be smoothly arranged on the fixing rods 112 and can remain stable after being arranged and will not fall off due to slight shaking. The surface of the fixing rods 112 is finely polished to reduce the friction between the fixing rods 112 and the inner hole of the hub cover, facilitating the arrangement and removal of the hub cover.

[0053] The fixing rod supports 113 are fixed to the support base 111 by welding or bolting to firmly fix the fixing rods 112. The fixing rod supports 113 are metal blocks with specific shapes, and are provided with mounting holes matched with the fixing rods 112. The size tolerance of the mounting holes is strictly controlled to ensure the perpendicularity and stability of the fixing rods 112. The number of the fixing rod supports 113 corresponds to the number of the fixing rods 112, and they are uniformly distributed on the support base 111 to provide reliable support for the fixing rods 112.

[0054] The positioning receiving seat 122 corresponding to the positioning leg 115 on the support base 111 is arranged at the bottom of the cage 121. The positioning receiving seat 122 is made of high-strength metal block, and is provided with a positioning hole matched with the positioning leg 115. The positioning receiving seat 122 is fixed to the bottom of the cage 121 by welding, and the size tolerance of the positioning hole is strictly controlled to ensure that the positioning leg 115 can be accurately inserted into the positioning hole, so that the storage rack 100 can be accurately positioned in the container cage 120, and movement of the storage rack 100 during overturning can be prevented.

[0055] As Figure 5 and Figure 7As shown, in the present embodiment, the cage cover 130 comprises a plurality of cover plates 131 for plugging the openings 1201 and a fixed cover plate 132 fixedly connected to one end of the plurality of cover plates 131, and a plurality of fixed cover rings 133 fixedly connected to the cage body 121 and allowing the cover plates 131 to pass through, wherein the cage cover 130 and the cage body 121 are slidingly connected through the cover plates 131 and the fixed cover rings 133. In the present embodiment, a locking hook is arranged at one end of the cover plate 131 away from the fixed cover plate 132, and a locking cover buckle corresponding to the locking hook is arranged at one end of the cage body 121 away from the fixed cover ring 133.

[0056] Specifically, the cage cover 130 is composed of a plurality of cover plates 131 for plugging the openings 1201 and a fixed cover plate 132 fixedly connected to one end of the plurality of cover plates 131. The cover plates 131 are made of the same material as the cage body 121 and have a rust-proof surface treatment. The fixed cover plate 132 is made of high-strength metal plate and is fixedly connected to the cover plates 131 by welding or bolt connection. A plurality of fixed cover rings 133 allowing the cover plates 131 to pass through are fixedly connected to the cage body 121, and the inner diameter of the fixed cover ring 133 is slightly larger than the outer diameter of the cover plate 131, ensuring that the cover plate 131 can smoothly slide in the fixed cover ring 133. The cage cover 130 and the cage body 121 are slidingly connected through the cover plates 131 and the fixed cover rings 133, which not only facilitates operation, but also ensures the sealing performance of the cage cover 130 when plugging the openings 1201, preventing the hub cover from falling off during the turning process.

[0057] The present utility model has many use scenarios, including but not limited to the following described scenarios:

[0058] In an automobile parts warehouse, the container frame of the hub cover assembly and turning equipment can efficiently assemble hub covers, save storage space, and facilitate warehouse management personnel to classify, count, and manage the hub covers. At the same time, when the hub covers need to be transferred from the warehouse to the production workshop, the design of the container cage and the lifting grab ear facilitates hoisting operation, improving the transfer efficiency.

[0059] In a logistics and warehousing center, the container frame and container cage of the present equipment can provide good protection and storage environment for the hub covers, preventing damage during warehousing and transportation. At the same time, it is convenient for batch storage and management of hub covers, improving the utilization rate of warehouse space. During distribution, the design of the container cage and the lifting grab ear facilitates the loading and unloading and transportation of goods, improving the logistics and distribution efficiency.

Claims

1. A hub cover container tilting device, characterized in that, include: A container rack includes a shelf and a container cage for housing the shelf. The shelf includes multiple fixed rods for inserting a hub cover. The container cage includes a cage body with an opening at the top and a cage cover for sealing the opening. The cage cover is movably connected to the top of the cage body. A lifting grab is provided on the side of the cage body near the opening. The tilting device includes a tilting base and a tilting platform rotatably connected to the tilting base. The tilting platform includes a first receiving part that receives the end of the container cage away from the opening and a second receiving part that receives the end of the container cage away from the lifting gripper, and a tilting part fixedly connected between the first receiving part and the second receiving part. The first receiving part and the second receiving part are perpendicular to each other. A driving device is installed in the tilting base and the tilting part.

2. The hub cover container tilting device according to claim 1, characterized in that, The first receiving part includes a first flipping bracket that is fixedly connected to the flipping part, and a first receiving plate is fixedly connected to the first flipping bracket. The second receiving part includes a second flipping bracket that is fixedly connected to the flipping part, and a second receiving plate is fixedly connected to the second flipping bracket. The flipping base has a cross-section that is approximately "L" shaped.

3. The hub cover container tilting device according to claim 2, characterized in that, The flip base includes a flip base frame, in which a support base rod is provided for supporting the flip base, and two fixing ears corresponding to the flip parts are provided on the flip base frame.

4. The hub cover container tilting device according to claim 3, characterized in that, The driving device includes a driving rod passing through the flipping part and the fixing ear. A driving motor is connected to one end of the driving rod, and the other end of the driving rod is rotatably positioned at one end of the fixing ear. A limiting protrusion is provided on the driving rod, and a driving hole corresponding to the driving rod is provided in the flipping part. A limiting groove corresponding to the limiting protrusion is provided in the driving hole. The flipping base achieves relative rotation with the flipping base through the driving rod, driving hole, limiting protrusion and limiting groove.

5. The hub cover container tilting device according to claim 4, characterized in that, Infrared sensors for sensing the position of the flip base are installed at both ends of the flip base frame.

6. The hub cover container tilting device according to claim 5, characterized in that, An arc-shaped surface is provided at the end of the flipping part near the flipping base.

7. The hub cover container tilting device according to claim 6, characterized in that, A control console for connecting the drive unit is provided at one end of the flip base, and control buttons for controlling the drive unit are provided on the control console.

8. The hub cover container tilting device according to claim 7, characterized in that, The shelf includes a support base and multiple fixed rods arranged in an array on the support base, as well as a rod support for fixing the fixed rods to the support base.

9. The hub cover container tilting device according to claim 8, characterized in that, The cage cover includes multiple cover plates for sealing the openings and fixed cover plates fixedly connected to one end of the multiple cover plates. Multiple fixed cover rings that allow the cover plates to pass through are fixedly connected to the cage body. The cage cover and the cage body are slidably connected through the cover plates and fixed cover rings.

10. The hub cover container tilting device according to claim 9, characterized in that, Multiple support feet and positioning feet are evenly distributed at the bottom of the support base, and a positioning receiver corresponding to the positioning feet is provided at the bottom of the cage.

Citation Information

Patent Citations

  • High-stability overturning equipment for automobile hub unit production

    CN221755429U

  • Electric vehicle hub machining turnover device

    CN222371329U