Vertical garage hook device

Through the linkage structure of the mounting parts, hooks and swing guide parts, the safety and reliability problems of the traditional vertical garage hook device are solved, the flexible hooking and unhooking of the lifting ring is realized, the safety and reliability are improved, and the risk of failure is reduced.

CN115123916BActive Publication Date: 2025-09-19SHENZHEN CIMC AUTOPARKING SYST CO LTD +2
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Patent Information

Application Number
CN202210829302.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-07-14
Publication Date
2025-09-19
Estimated Expiration
2042-07-14

AI Technical Summary

Technical Problem

The safety hook device of traditional mechanical vertical garages may have signal failure or malfunction, causing the lifting ring to detach from the hook, resulting in low safety and reliability.

Method used

The invention adopts a linkage structure of the mounting part, the hook, the swing guide part and the rotating part. The rotating part is lifted by the lifting ring to drive the hook and the swing guide part to swing, so as to realize the hooking and unhooking of the lifting ring and avoid the use of control components.

Benefits of technology

It realizes flexible hooking and unhooking of the lifting ring, has stable movement, high safety and reliability, reduces potential fault hazards, is energy-saving and environmentally friendly, and has high cost performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a vertical garage hook device, comprising a mounting member for mounting the device in an external vertical garage; a hook, the top of which is hung on the mounting member and having a hook groove at the bottom thereof for hanging a lifting ring; a swinging guide member, the top of which is hung on the mounting member; the swinging guide member having a first guide groove for guiding the lifting ring to rise or fall; a rotating member, rotatably connected to the hook and the swinging guide member; the rotating member having a positioning portion for positioning the lifting ring; in a hooking working state, the positioning portion can engage the positioning lifting ring, and the lifting ring can lift the rotating member, driving the hook and the swinging guide member to swing relative to the mounting member, so that the rotating member rotates to the hook groove; in an unhooking working state, the first guide groove can guide the lifting ring to rise and lift the hook and the swinging guide member, so that the hook and the swinging guide member swing relative to the mounting member, driving the rotating member to rotate and flip out of the hook groove. The present invention has a simple structure, flexible operation, and high safety and reliability.
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Description

Technical Field

[0001] The invention relates to the field of vertical garage safety equipment, in particular to a vertical garage hook device. Background Art

[0002] In recent years, my country's urbanization process has accelerated, and the number of motor vehicles has also increased significantly year by year. However, the contradiction between urban traffic space and the space required for the increase in motor vehicles has become increasingly prominent, and the problem of reasonable motor vehicle parking has affected the development of urban transportation.

[0003] Therefore, mechanical vertical garages have emerged as an effective solution to the problem of proper parking for motor vehicles. Mechanical vertical garages occupy a small area, provide ample storage space, are economical to operate, and are energy-efficient and environmentally friendly. At the same time, they make parking and retrieving vehicles safer, more convenient, efficient, and quicker, and have therefore been widely adopted.

[0004] For mechanical vertical garages, safe and reliable parking is crucial. Typically, safety hooks are installed on the columns of these garages, and the vehicle carrier is attached to the hooks via a lifting ring. When the lifting ring rises with the carrier to a predetermined position, it attaches to the safety hooks, securing the vehicle in a fixed position. When the carrier needs to be lowered, the lifting ring detaches from the safety hooks.

[0005] Traditional safety hooks mostly use electromagnetic structures, combining motion and control elements to attach the eyebolt to the hook. However, over time, the control element is prone to signal failure or malfunction, causing the eyebolt to detach from the hook, posing a safety hazard and low reliability. Summary of the Invention

[0006] An object of the present invention is to provide a vertical garage hook device with high safety and reliability.

[0007] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0008] The vertical garage hook device is used to hang a lifting ring connected to a vehicle loading plate, and the vertical garage hook device includes: a mounting member for installing the vertical garage hook device in an external vertical garage; a hook, the top of which is hung on the mounting member, and the bottom of which is provided with a hook groove for hanging the lifting ring; a swinging guide member, the top of which is hung on the mounting member; the swinging guide member is provided with a first guide groove for guiding the lifting ring to rise or fall; a rotating member rotatably connected to the hook and the swinging guide member respectively; a positioning portion for positioning the lifting ring is provided on the rotating member; in a hooking working state, the positioning portion can lock and position the lifting ring, and the rotating member can be lifted by the lifting ring, driving the hook and the swinging guide member to swing relative to the mounting member, so that the rotating member rotates to the side of the hook groove and avoids the opening of the hook groove; in an unhooking working state, the first guide groove can guide the lifting ring to rise and lift the hook and the swinging guide member, so that the hook and the swinging guide member swing relative to the mounting member, driving the rotating member to rotate and flip out of the hook groove.

[0009] In some embodiments of the present application, the first guide groove includes a first guide section and a second guide section, and the angle between the first guide section and the second guide section is an obtuse angle. When the swing guide member is naturally hung on the mounting member, the angle between the first guide section and the direction of gravity is an acute angle.

[0010] In some embodiments of the present application, a second guide groove is provided on the swing guide member for guiding the swing guide member to swing relative to the mounting member, and the swing guide member is hung on the mounting member through the second guide groove.

[0011] In some embodiments of the present application, the rotating member includes a first arm and a second arm connected to the first arm, the connection between the first arm and the second arm forms the positioning portion, the first arm is rotatably connected to the hook, and the second arm is rotatably connected to the swing guide member.

[0012] In some embodiments of the present application, the angle between the first arm and the second arm is a right angle.

[0013] In some embodiments of the present application, a curved surface is provided at the connection between the first support arm and the second support arm, and the curved surface forms the positioning portion.

[0014] In some embodiments of the present application, a limiting groove is provided on the inner side of the hook near the hook groove, and when the rotating member rotates to the side of the hook groove, the rotating member abuts against the groove wall of the limiting groove.

[0015] In some embodiments of the present application, the hook is provided with a guide slope, the end of the rotating member rotatably connected to the hook is a connecting end, the connecting end protrudes from the guide slope, and the positioning portion is formed between the connecting end and the guide slope. The connecting end and the guide slope can be lifted up by the lifting ring, driving the hook and the swinging guide member to swing relative to the mounting member.

[0016] In some embodiments of the present application, the hook includes a first hook plate and a second hook plate, the first hook plate and the second hook plate are arranged side by side, and the first hook plate and the second hook plate are both provided with the hook groove.

[0017] In some embodiments of the present application, at least one isolation member is provided between the first hook plate and the second hook plate, and the isolation member is used to isolate the first hook plate from the second hook plate.

[0018] It can be seen from the above technical solutions that the present invention has at least the following advantages and positive effects:

[0019] The present invention comprises a mounting member, a hook, a swing guide member, and a rotating member. The mounting member is used to mount a vertical garage hook device in an external vertical garage. The top of the hook and the top of the swing guide member are hung on the mounting member, and a positioning portion on the rotating member engages a positioning ring. The rotating member can be lifted by the ring, driving the hook and the swing guide member to swing relative to the mounting member, so that the rotating member rotates to the hook groove of the hook, avoiding the opening of the hook groove, so that the ring can be hung from the opening and enter the hook groove to achieve hook engagement. The first guide groove on the swing guide member can guide the ring to rise and lift the hook and the swing member, so that the hook and the swing guide swing relative to the mounting member, driving the rotating member to flip out of the hook groove, so that the ring is disengaged from the hook groove. The vertical garage hook device of the present invention does not require a control element. The hook engagement and disengagement of the ring are achieved by the swinging of the hook and the swing guide member relative to the mounting member and the rotation of the rotating member. The vertical garage hook device of the present invention has flexible operation, stable function, and high safety and reliability. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural diagram of a vertical garage hook device according to embodiment 1 of the present invention.

[0021] Figures 2 to 6 It is a structural diagram of the hooking working process of the vertical garage hook device according to the first embodiment of the present invention.

[0022] Figures 7 to 10 It is a structural diagram of the unhooking working process of the vertical garage hook device according to the first embodiment of the present invention.

[0023] Figure 11 It is a three-dimensional diagram of a vertical garage hook device according to a second embodiment of the present invention.

[0024] Figure 12 It is a structural diagram of a vertical garage hook device according to a second embodiment of the present invention.

[0025] Figures 13 to 17 It is a structural diagram of the hooking working process of the vertical garage hook device according to the second embodiment of the present invention.

[0026] Figures 18 to 21 It is a structural diagram of the unhooking working process of the vertical garage hook device according to the second embodiment of the present invention.

[0027] The following are the descriptions of the reference numerals:

[0028] 110. Mounting member; 120. Hook; 121. Hook groove; 122. Guide slope; 123. Limiting groove; 124. First hook plate; 125. Second hook plate; 130. Swinging guide member; 131. First guide groove; 1311. First guide section; 1312. Second guide section; 132. Second guide groove; 140. Rotating member; 141. First support arm; 142. Second support arm; 143. Arc surface; 144. Connecting end; 150. First pin; 160. Second pin.

[0029] A. Rings. DETAILED DESCRIPTION

[0030] Typical embodiments embodying the features and advantages of the present invention are described in detail in the following description. It should be understood that the present invention is capable of various variations in different embodiments without departing from the scope of the present invention, and that the descriptions and illustrations herein are intended to be illustrative rather than limiting.

[0031] In the description of this application, it should be understood that in the embodiments shown in the drawings, indications of directions or positional relationships (such as up, down, left, right, front, and back) are merely for the convenience of describing this application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be constructed, or operate in a specific orientation. These descriptions are appropriate when these elements are in the positions shown in the drawings. If the descriptions of the positions of these elements change, the indications of these directions will also change accordingly.

[0032] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of the technical features being referred to. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of the described features. Throughout the description of this application, "plurality" means two or more, unless otherwise specifically defined.

[0033] The vertical garage hook device of the present application is described in detail below with reference to the accompanying drawings.

[0034] A vertical garage is a mechanical system used for storing and retrieving vehicles in large quantities. It consists of a vertical support, a loading platform, a lifting ring connected to the loading platform, a lifting device, and a vertical garage hook. The lifting device and the vertical garage hook are mounted on the vertical support. The lifting device raises and lowers the loading platform and the lifting ring, and then hangs the loading platform on the vertical garage hook via the lifting ring.

[0035] When a vehicle needs to be stored, it is parked on the loading platform, and the lifting device drives the loading platform up to a predetermined position. The lifting ring is hung on the vertical garage hook device at the predetermined position, and the vehicle is positioned and stored in the predetermined position. When the vehicle needs to be retrieved, the lifting device drives the loading platform up, disengaging the lifting ring from the vertical garage hook device, and then driving the loading platform down to the retrieval position.

[0036] The shape of the lifting ring can be an inverted U-shape, a semicircle, etc. In the present application, an inverted U-shaped lifting ring is adopted. When the lifting ring is hung on the vertical garage hook device, the inner ring surface of the inverted U-shape abuts against the vertical garage hook device.

[0037] Example 1

[0038] refer to Figure 1 and Figure 2 The vertical garage hook device includes a mounting part 110, a hook 120, a swing guide part 130 and a rotating part 140. The mounting part 110 installs the vertical garage hook device on the vertical vehicle frame. The top of the hook 120 is hung on the mounting part 110, and the bottom of the hook 120 is provided with a hook groove 121. The hook groove 121 is used to hang the lifting ring A so that the vehicle loading plate stays at a predetermined position. The swing guide part 130 is provided with a first guide groove 131. The first guide groove 131 is used to guide the lifting ring A to rise or fall. The rotating part 140 is rotatably connected to the hook 120 and the swing guide part 130 respectively. A positioning part is provided on the rotating part 140, and the positioning part is used to position the lifting ring A so that the lifting ring A is stuck on the positioning part.

[0039] When the vehicle is being stored, i.e., in the hooking operation mode, the lifting mechanism raises the vehicle loading plate and lifting ring A. Lifting ring A locks and locks onto the positioning portion of rotating member 140, allowing rotating member 140 to be lifted by lifting ring A. Once lifted, rotating member 140 drives hook 120 and swing guide 130 to swing relative to mounting member 110. During this swinging process, rotating member 140 rotates relative to hook 120 and swing guide 130, respectively. Driven by hook 120 and swing guide 130, it pivots to the side of hook slot 121, clearing the opening of hook slot 121. Lifting ring A then hangs within hook slot 121, completing hooking.

[0040] When removing a vehicle, that is, in the unhooking state, the lifting device drives the vehicle loading plate and the lifting ring A to rise. The lifting ring A rises, moves within the first guide groove 131, and lifts the hook 120 and the swing guide member 130. The hook 120 and the swing guide member 130 swing relative to the mounting member 110, driving the rotating member 140 to rotate and flip out of the hook groove 121. The lifting ring A descends, abuts against the groove wall of the first guide groove 131, and continues to descend, achieving unhooking.

[0041] The vertical garage hook device of the present application does not require the use of control elements, electromagnetic elements and circuit layout. It cleverly realizes the hooking and unhooking of the lifting ring A through the linkage of the hook 120, the swing guide member 130 and the rotating member 140. It has flexible movements, a single part structure, and a simple overall structural composition, which reduces the hidden dangers of failure and has high safety and reliability. In addition, the vertical garage hook device has low energy consumption, is energy-saving and environmentally friendly, and has a high cost performance.

[0042] refer to Figure 3 A guide slope 122 is also provided at the bottom of the hook 120. When the lifting ring A rises, the guide slope 122 abuts against the lifting ring A to guide the lifting ring A to rise.

[0043] refer to Figure 1 and Figure 6 The hook 120 is also provided with a limit groove 123. The limit groove 123 is arranged on the inner side of the hook 120 and is arranged near the hook groove 121. In the hooking working state, the rotating member 140 rotates to the side of the hook groove 121, and the rotating member 140 abuts against the groove wall of the hook groove 121, limiting further rotation.

[0044] The shape of the limiting groove 123 can be a semicircular arc groove, a C-shaped groove, etc. In this embodiment, the shape of the limiting groove 123 is preferably a semicircular arc groove, which is easy to process.

[0045] In this embodiment, reference Figure 1 and Figure 6 The vertical garage hook device also includes a first pin 150, and the rotating member 140 is rotatably connected to the swing guide member 130 through the first pin 150. When the rotating member 140 rotates to the side of the hook groove 121, the first pin 150 abuts against the groove wall of the limiting groove 123, thereby limiting the rotating member 140 from further rotation.

[0046] refer to Figure 1 The hook 120 includes a first hook plate 124 and a second hook plate 125. The first hook plate 124 and the second hook plate 125 are arranged side by side, with their tops both attached to the mounting member 110 and their bottoms each having a hook groove 121. The side-by-side arrangement of the first hook plate 124 and the second hook plate 125 allows the ring A to be more stably hung in the hook groove 121 of the hook 120, preventing it from shaking.

[0047] The first hook plate 124 and the second hook plate 125 are plate-like parts, which are light in weight and have low process and raw material costs, thereby reducing the cost of the vertical garage hook device. The vertical garage hook 120 device can bear a maximum load of 5 tons.

[0048] At least one isolating member (not shown) is provided between the first hook plate 124 and the second hook plate 125 . The isolating member is used to isolate the first hook plate 124 from the second hook plate 125 so that a certain distance is kept between the first hook plate 124 and the second hook plate 125 .

[0049] The number of spacers can be one, two, or three or more. When one spacer is provided, it is disposed between the first hook plate 124 and the second hook plate 125, separating the first hook plate 124 and the second hook plate 125 by a certain distance. When two spacers are provided, they are disposed side by side between the first hook plate 124 and the second hook plate 125, separating the first hook plate 124 and the second hook plate 125 by a certain distance.

[0050] The spacer may be specifically disposed at the bottom of the hook 120 .

[0051] Specifically, the spacers can be cylindrical spacers. Multiple cylindrical spacers are arranged side by side between the first hook plate 124 and the second hook plate 125, and positioned near the bottoms of the first hook plate 124 and the second hook plate 125. The vertical garage hook device also includes screws. Through holes are provided in the first hook plate 124 and the second hook plate 125. The cylindrical spacers are coaxially arranged with the through holes, and the screws are used to penetrate the cylindrical spacers and the through holes, securing the cylindrical spacers to the first hook plate 124 and the second hook plate 125.

[0052] In this embodiment, reference Figure 1 The swing guide 130 and the rotating member 140 are both disposed between the first hook plate 124 and the second hook plate 125. The swing guide 130 swings in the gap between the first hook plate 124 and the second hook plate 125. When the rotating member 140 rotates to the side of the hook groove 121, it is accommodated in the gap between the first hook plate 124 and the second hook plate 125. The first pin 150 abuts against the wall of the limiting groove 123, restricting further rotation of the rotating member 140.

[0053] refer to Figure 2 The first guide slot 131 on the swing guide 130 includes a first guide segment 1311 and a second guide segment 1312. The angle between the first guide segment 1311 and the second guide segment 1312 is obtuse. When the swing guide 130 is naturally hung on the mounting member 110, the angle between the first guide segment 1311 and the direction of gravity is acute.

[0054] In a specific application, the first guide segment 1311 can be shaped as a long waist-shaped groove, and the second guide segment 1312 can be shaped as a curved groove with a folded edge. The first guide segment 1311 and the second guide segment 1312 guide and adjust the lifting ring A during the lifting and lowering process, ensuring that the lifting ring A is unhooked smoothly.

[0055] refer to Figures 7 to 10 In the unhooking working state, the lifting ring A rises and enters the second guide section 1312. The lifting ring A continues to rise and abuts against the groove wall of the second guide section 1312, lifting the swing guide member 130. The swing guide member 130 swings relative to the mounting member 110, driving the rotating member 140 to rotate away from the hook groove 121.

[0056] Lifting ring A continues to rise, entering first guide section 1311 and abutting against the groove wall of first guide section 1311, further lifting swinging guide member 130. Swinging guide member 130 swings relative to mounting member 110, further driving rotating member 140 to rotate away from hook groove 121, causing rotating member 140 to flip out of hook groove 121. Lifting ring A descends, moving within first guide section 1311, and then entering second guide section 1312. Because the angle between second guide section 1312 and first guide section 1311 is obtuse, lifting ring A abuts against the groove wall of second guide section 1312 after entering second guide section 1312, causing swinging guide member 130, rotating member 140, and hook 120 to swing relative to mounting member 110, thereby unhooking lifting ring A.

[0057] In this embodiment, the swing guide member 130 is further provided with a second guide groove 132. The swing guide member 130 is hung on the mounting member 110 through the second guide groove 132. When the swing guide member 130 swings relative to the mounting member 110, the groove wall of the second guide groove 132 slides relatively.

[0058] Specifically, the second guide groove 132 can be configured as a strip-shaped groove, with the sidewalls of the strip-shaped groove abutting against the mounting member 110. When the swing guide member 130 is naturally suspended on the mounting member 110, the strip-shaped groove is arranged along the direction of gravity. The swing guide groove swings relative to the mounting member 110 via the strip-shaped groove, driving the rotating member 140 to rotate to the side of the hook groove 121, avoiding the opening of the hook groove 121, or flipping out of the hook groove 121.

[0059] In other embodiments, the second guide groove 132 may be in an elliptical shape, a strip-like shape, or the like. The strip-like shape is not an absolute strip-like shape, but has a groove similar to a strip-like shape such as a depression in the groove wall.

[0060] refer to Figure 4Rotating member 140 includes a first arm 141 and a second arm 142. One end of first arm 141 is rotatably connected to swing guide 130, and the other end is connected to second arm 142. The other end of second arm 142 is rotatably connected to hook 120. The connection between first arm 141 and second arm 142 forms the positioning portion of rotating member 140, which is locked to the positioning ring A.

[0061] In this embodiment, the first support arm 141 and the second support arm 142 are integrally formed to form a rotating member 140. One end of the rotating member 140 is rotatably connected to the swing guide member 130, and the other end is rotatably connected to the hook 120. In other embodiments, the connection between the first support arm 141 and the second support arm 142 can also be fastened by screws.

[0062] The connection between the first arm 141 and the second arm 142 is provided with an arc surface 143, which forms a positioning portion of the rotating member 140. In the hooking working state, the lifting ring A is stuck and positioned on the arc surface 143, closely abutting against the arc surface 143, and rising steadily.

[0063] The angle between the first support arm 141 and the second support arm 142 is a right angle, and the ring A is stuck and positioned within the right angle. In other embodiments, the angle between the first support arm 141 and the second support arm 142 can also be an acute angle or an obtuse angle.

[0064] In this embodiment, reference Figure 1 and Figure 2 The vertical garage hook device also includes a second pin 160 , the second arm 142 is rotatably connected to the hook 120 through the second pin 160 , and the first arm 141 is rotatably connected to the swing guide 130 through the first pin 150 .

[0065] For the convenience of description, the working process of the vertical garage hook device of this embodiment is described by taking the swing of the hook 120 as the left and right swing:

[0066] refer to Figures 2 to 6During the hooking operation, the lifting device drives the carrier plate and lifting ring A upward. Lifting ring A moves upward along the guide slope 122 at the bottom of hook 120, slowly pushing hook 120 to the right. Hook 120 slowly swings to the right around mounting member 110. Lifting ring A continues to rise, abutting against rotating member 140, locking and positioning on the curved surface 143 of rotating member 140, and steadily ascending. Rotating member 140 is lifted. Lifting ring A pushes rotating member 140 to rotate relative to swing guide member 130 via first pin 150. Acting upon this external force, swing guide member 130 swings to the right around mounting member 110. The swinging guide member 130 swings, driving rotating member 140 to the hook slot 121 of hook 120. The first pin 150 connected to rotating member 140 engages with the retaining slot 123 of hook 120. Hook 120 swings to the left, and lifting ring A engages with hook slot 121, completing the hooking operation.

[0067] refer to Figures 7 to 10 In the unhooking state, the lifting device drives the carrier plate and lifting ring A up a certain distance. Lifting ring A abuts against the groove walls of the second guide section 1312 and the second guide section 1312 of the swing guide 130, pushing the swing guide 130 to move. Under the action of the second guide section 1312 and the second guide section 1312, the swing guide 130 swings left and right relative to the mounting frame. The swing guide 130 drives the rotating member 140 to rotate, flipping it out of the hook groove 121 of the hook 120. When lifting ring A reaches its limit, the lifting device is controlled to drive it down. Lifting ring A descends along the first guide section 1311 and the second guide section 1312, completing the unhooking.

[0068] Example 2

[0069] refer to Figures 11 to 13 The present embodiment differs from the first embodiment in that a guide slope 122 is provided on the hook 120, and the end of the rotating member 140 that is rotatably connected to the hook 120 is a connecting end 144. The connecting end 144 protrudes from the guide slope 122. A positioning portion is formed between the connecting end 144 and the guide slope 122.

[0070] refer to Figures 13 to 17 In the hook working state, the lifting ring A is stuck and positioned between the connecting end 144 and the guiding inclined surface 122, lifting the connecting end 144 and the guiding inclined surface 122, thereby lifting the rotating part 140 and the swinging guide part 130, causing the hook 120 and the swinging guide part 130 to swing relative to the mounting part, and the rotating part 140 rotates relative to the hook 120 and the swinging guide part 130, and rotates to the side of the hook groove 121, avoiding the opening of the hook groove 121.

[0071] Specifically, refer to Figures 13 to 17, in the hook-in working state: the lifting device drives the loading plate and the lifting ring A to rise. The lifting ring A moves upward along the guiding slope 122 at the bottom of the hook 120, slowly pushing the hook 120 to the right, and the hook 120 slowly swings to the right around the mounting member 110. The lifting ring A continues to rise, abuts against the connecting end 144 of the rotating member 140, is stuck and positioned between the guiding slope 122 and the connecting end 144, and rises steadily. The rotating member 140 is lifted up. The lifting ring A pushes the rotating member 140 to rotate relative to the swinging guide member 130 through the first pin 150. Under the action of this external force, the swinging guide member 130 swings to the right around the mounting member 110. The swinging guide member 130 swings and drives the rotating member 140 to rotate to the side of the hook groove 121 of the hook 120, and the first pin 150 connected to the rotating member 140 is stuck in the limiting groove 123 of the hook 120. The hook 120 swings to the left, and the eyelet A is inserted into the hook groove 121, completing the hooking.

[0072] refer to Figures 18 to 21 In the unhooking state, the lifting ring A rises, moves within the first guide groove 131, and lifts the hook 120 and the swing guide member 130, causing the hook 120 and the swing guide member 130 to swing relative to the mounting member, driving the rotating member 140 to rotate and flip out of the hook groove 121. The lifting ring A then descends, abutting against the wall of the first guide groove 131 and continuing to descend, achieving unhooking. The specific operating principle of unhooking is the same as in the first embodiment and is not further described here.

[0073] While the present invention has been described with reference to several exemplary embodiments, it should be understood that the terms used are intended to be illustrative and exemplary rather than restrictive. Since the present invention can be embodied in many forms without departing from the spirit or essence of the invention, it should be understood that the above-described embodiments are not limited to any of the foregoing details, but should be interpreted broadly within the spirit and scope of the appended claims. All changes and modifications that fall within the scope of the claims or their equivalents are intended to be covered by the appended claims.

Claims

1. A vertical garage hook device for hanging a lifting ring connected to a vehicle loading plate, characterized in that: The vertical garage hook device includes: A mounting member for mounting the vertical garage hook device in an external vertical garage; A hook, the top of which is hung on the mounting member, and the bottom of which is provided with a hook groove for hanging the ring; A swing guide member, the top of which is hung on the mounting member; the swing guide member is provided with a first guide groove for guiding the lifting ring to rise or fall; A rotating member is rotatably connected to the hook and the swing guide member respectively; the rotating member is provided with a positioning portion for positioning the hanging ring; In the hooking working state, the positioning portion can lock and position the lifting ring, and the rotating member can be lifted up by the lifting ring, driving the hook and the swing guide member to swing relative to the mounting member, so that the rotating member rotates to the side of the hook groove and avoids the opening of the hook groove; In the unhooking working state, the first guide groove can guide the lifting ring to lift the hook and the swing guide member, so that the hook and the swing guide member swing relative to the mounting member, driving the rotating member to rotate and flip out of the hook groove.

2. The vertical garage hook device according to claim 1, characterized in that: The first guide groove includes a first guide section and a second guide section. The angle between the first guide section and the second guide section is an obtuse angle. When the swing guide member is naturally hung on the mounting member, the angle between the first guide section and the direction of gravity is an acute angle.

3. The vertical garage hook device according to claim 1, characterized in that: The swing guide member is provided with a second guide groove for guiding the swing guide member to swing relative to the mounting member, and the swing guide member is hung on the mounting member through the second guide groove.

4. The vertical garage hook device according to claim 1, characterized in that: The rotating member includes a first arm and a second arm connected to the first arm, the connection between the first arm and the second arm forms the positioning portion, the first arm is rotationally connected to the swing guide member, and the second arm is rotationally connected to the hook.

5. The vertical garage hook device according to claim 4, characterized in that: The included angle between the first support arm and the second support arm is a right angle.

6. The vertical garage hook device according to claim 4, characterized in that: An arcuate surface is provided at the connection between the first support arm and the second support arm, and the arcuate surface forms the positioning portion.

7. The vertical garage hook device according to claim 1, characterized in that: A limiting groove is provided on the inner side of the hook near the hook groove. When the rotating member rotates to the side of the hook groove, the rotating member abuts against the groove wall of the limiting groove.

8. The vertical garage hook device according to claim 1, characterized in that: The hook is provided with a guide slope, and the end of the rotating member rotatably connected to the hook is a connecting end, and the connecting end protrudes from the guide slope. The positioning portion is formed between the connecting end and the guide slope, and the connecting end and the guide slope can be lifted up by the lifting ring, driving the hook and the swinging guide member to swing relative to the mounting member.

9. The vertical garage hook device according to claim 1, characterized in that: The hook includes a first hook plate and a second hook plate. The first hook plate and the second hook plate are arranged side by side. The first hook plate and the second hook plate are both provided with the hook groove.

10. The vertical garage hook device according to claim 9, characterized in that: At least one isolating member is provided between the first hook plate and the second hook plate, and the isolating member is used to isolate the first hook plate from the second hook plate.

Citation Information

Patent Citations

  • Vertical garage hook device

    CN217650712U