Hanging chair bicycle hanger
By designing a chairlift bicycle hanger with a front wheel suspension part and a rear wheel limit part on the back side of the chairlift backrest, the problem of chairlift structure damage in the existing technology is solved, the compatibility of bicycle transportation and passenger riding is achieved, and the cableway transportation capacity and safety are improved.
Patent Information
- Application Number
- CN202422692844.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-06
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-06
AI Technical Summary
The existing cableway chairlift bicycle rack needs to remove the chairlift seat, backrest and other structures during installation, which destroys the original structure of the chairlift and affects the transportation capacity of the aerial ropeway.
A bicycle hanger for a hanging chair is designed. The bicycle is suspended and fixed to the backrest of the hanging chair body through the front wheel suspension part and the rear wheel limit part located on the backrest of the hanging chair body, avoiding damage to the hanging chair structure and meeting the needs of people riding and bicycle transportation.
The bicycle transportation is realized without damaging the chairlift structure, the carrying capacity of the aerial ropeway is increased, and the safety and stability of people and bicycles are ensured.
Smart Images

Figure CN223340622U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of cableway chair hangers, in particular to a chair hanger bicycle hanger. Background Art
[0002] In downhill mountain biking, mountain bikes are transported to the top of the mountain via a cable chairlift. For safety reasons, having both riders and bicycles ride in the same chairlift, or using a chairlift to transport bicycles separately, presents safety risks. This necessitates the use of bicycle racks for transporting bicycles. However, the bicycle racks currently used on aerial cableways require the removal of the chairlift's seat and backrest during installation, damaging the original structure and making it unusable, thus limiting the cableway's capacity. Utility Model Content
[0003] The utility model provides a bicycle hanger for a hanging chair, which can hang and fix a bicycle on the rear side of the backrest of the hanging chair body through a front wheel hanging member and a rear wheel limiting member located on the rear side of the backrest of the hanging chair body. While realizing bicycle transportation, the structure of the hanging chair body will not be damaged. The bicycle hanger can meet the needs of both people riding and bicycle transportation, and helps to increase the transportation capacity of the aerial ropeway.
[0004] In order to solve the above technical problems, the technical solutions of the present utility model are as follows:
[0005] The utility model provides a hanging chair bicycle rack, comprising:
[0006] a truss connected to the upper beam of the chairlift body;
[0007] at least one front wheel suspension member connected to the truss, the front wheel suspension member being located on the back side of the backrest of the hanging chair body to suspend and fix the front wheel of the bicycle;
[0008] a rear wheel bracket connected to the backrest crossbeam of the hanging chair body;
[0009] At least one rear wheel limiting member is connected to the rear wheel bracket, and the rear wheel limiting member corresponds to the front wheel suspension member to limit and fix the rear wheel of the bicycle.
[0010] Optionally, the truss includes:
[0011] a first load-bearing beam, the front wheel suspension member being connected to the first load-bearing beam;
[0012] The first connecting columns are connected to both ends of the first load-bearing beam, and the first connecting columns are connected to the upper beam of the hanging chair body through a clamping piece.
[0013] Optionally, the tightening member includes:
[0014] a first curved plate connected to the first connecting column, wherein the inner wall of the first curved plate is adapted to the outer circumferential surface of the upper beam of the hanging chair body;
[0015] a first connecting plate connected to both ends of the first arc-shaped plate, wherein the first connecting plate is provided with a first connecting through hole;
[0016] a second curved plate connected to the first curved plate, wherein the inner wall of the second curved plate is adapted to the outer circumferential surface of the upper beam of the hanging chair body;
[0017] a second connecting plate connected to both ends of the second arc-shaped plate, wherein the second connecting plate is provided with a second connecting through hole;
[0018] A connecting bolt, the end of which passes through the first connecting through hole and the second connecting through hole in sequence and is threadedly connected with a connecting nut.
[0019] Optionally, the front wheel suspension comprises:
[0020] a fixing seat connected to the first load-bearing beam;
[0021] A main frame fixedly connected to the fixing seat and used to support the front wheel of the bicycle;
[0022] An upper cover plate rotatably connected to the upper portion of the main frame;
[0023] A lower bracket rotatably connected to the bottom of the main frame, wherein the lower bracket and the end of the upper cover plate away from the chair body form an entry and exit cavity for the front wheel of a bicycle to enter and exit the main frame;
[0024] Rotating a horizontal pull member connected between the upper cover plate and the lower bracket;
[0025] When the front wheel of the bicycle pushes up against the upper cover plate, the lower bracket rotates under the drive of the transverse pull member to drive the inlet and outlet cavity port to become larger; when the front wheel of the bicycle enters the main frame and presses the lower bracket downward under the action of gravity, the upper cover plate rotates downward under the drive of the transverse pull member to press the front wheel of the bicycle tightly and fix it in the main frame.
[0026] Optionally, the fixing seat is in an H-shaped structure, and an accommodating cavity is provided on the fixing seat, and the accommodating cavity is adapted to the first bearing beam.
[0027] Optionally, the main framework includes:
[0028] A first main frame rod and a second main frame rod are fixedly connected to both sides of the fixing seat, wherein a space for accommodating a front wheel of a bicycle is formed between the first main frame rod and the second main frame rod;
[0029] Rotating a roller connected between the bottom ends of the first main frame rod and the second main frame rod;
[0030] a first bent portion formed in the middle of the first main frame rod;
[0031] a second bent portion formed in the middle of the second main frame rod;
[0032] The first bending portion and the second bending portion are both bent in a direction away from the upper cover plate;
[0033] A first arc-shaped supporting plate connected between the first bending portion and the second bending portion for supporting the front wheel of a bicycle.
[0034] Optionally, the upper cover plate includes:
[0035] a first rotating rod rotatably connected to the upper end of the first main frame rod;
[0036] a second rotating rod rotatably connected to the upper end of the second main frame rod;
[0037] a first bent pressure rod formed at an end of the first rotating rod;
[0038] a second bent pressure rod formed at an end of the second rotating rod;
[0039] The first bending pressure rod and the second bending pressure rod are both bent in a direction away from the lower bracket;
[0040] an arc-shaped pressure plate connected between the first bent pressure rod and the second bent pressure rod for pressing the front wheel of the bicycle;
[0041] A first guide plate connected to the bottom surface of the first bending pressure rod, and a second guide plate connected to the bottom surface of the second bending pressure rod, wherein the first guide plate and the second guide plate are in a bell-mouth structure.
[0042] Optionally, the lower bracket includes:
[0043] a first connecting rod rotatably connected to the bottom end of the first main frame rod;
[0044] a second connecting rod rotatably connected to the bottom end of the second main frame rod;
[0045] a first bent support rod formed at the end of the first connecting rod, the first bent support rod being rotatably connected to the bottom end of the first transverse tie rod of the transverse tie member, the upper end of the first transverse tie rod being rotatably connected to the first rotating rod, and the rotational connection between the first transverse tie rod and the first rotating rod being close to the arc-shaped pressure plate;
[0046] a second bent support rod formed at the end of the second connecting rod, the second bent support rod being rotatably connected to the bottom end of the second transverse tie rod of the transverse tie member, the upper end of the second transverse tie rod being rotatably connected to the second rotating rod, and the rotational connection between the second transverse tie rod and the second rotating rod being close to the arc-shaped pressure plate;
[0047] The first bent support rod and the second bent support rod are both bent in a direction away from the upper cover plate;
[0048] a second curved support plate connected between the first curved support rod and the second curved support rod for supporting the front wheel of the bicycle, wherein the second curved support plate is away from the roller;
[0049] A limiting plate connected between the first bent support rod and the second bent support rod for limiting the front wheel of the bicycle, wherein the limiting plate is located between the second arc-shaped support plate and the roller.
[0050] Optionally, the rear wheel bracket includes:
[0051] a second load-bearing beam, the rear wheel limiting member being connected to the second load-bearing beam;
[0052] a second connecting column connected to both ends of the second load-bearing beam;
[0053] A mounting through hole is provided through the end of the second connecting column, and the mounting through hole corresponds to the mounting hole on the backrest beam of the hanging chair body;
[0054] An installation bolt, the end of which passes through the installation through hole and the installation hole in sequence and is threadedly connected with a installation nut.
[0055] Optionally, the rear wheel limiting member includes:
[0056] a limiting groove connected to the second load-bearing beam, wherein the groove opening of the limiting groove is in a trumpet-shaped structure, and the large-diameter end of the groove opening of the limiting groove is away from the chair body;
[0057] The guide plates are formed on both sides of the notch of the limiting groove, and the two guide plates are in a trumpet-shaped structure.
[0058] The above solution of the utility model includes at least the following beneficial effects:
[0059] The above-mentioned scheme of the present invention can hang and fix the bicycle on the rear side of the backrest of the hanging chair body through the front wheel suspension member and the rear wheel limit member located on the rear side of the backrest of the hanging chair body. While realizing the transportation of bicycles, it will not damage the structure of the hanging chair body, can meet the needs of people riding and bicycle transportation, and help to increase the transportation capacity of the aerial ropeway. BRIEF DESCRIPTION OF THE DRAWINGS
[0060] Figure 1 This is a schematic diagram of the three-dimensional structure of a bicycle hanging rack provided by an embodiment of the present utility model;
[0061] Figure 2 This is a schematic structural diagram of a truss in a bicycle hanging chair rack provided by an embodiment of the present utility model;
[0062] Figure 3 yes Figure 2 A magnified schematic diagram of part A;
[0063] Figure 4 This is a schematic structural diagram of a front wheel suspension member in a bicycle hanging rack provided by an embodiment of the present utility model;
[0064] Figure 5 This is a structural schematic diagram of a fixing seat in a bicycle hanging rack provided by an embodiment of the present utility model;
[0065] Figure 6 This is a structural diagram of the main frame of the bicycle hanging rack provided by an embodiment of the present utility model;
[0066] Figure 7 This is a structural schematic diagram of an upper cover plate in a bicycle hanging rack provided by an embodiment of the present utility model;
[0067] Figure 8 This is a schematic structural diagram of a lower bracket in a bicycle hanging rack provided by an embodiment of the present utility model;
[0068] Figure 9 This is a schematic structural diagram of the rear wheel bracket in the bicycle hanging rack provided by an embodiment of the present utility model;
[0069] Figure 10 The utility model is a schematic structural diagram of a rear wheel limiter in a bicycle hanging chair rack provided by an embodiment of the utility model.
[0070] The following are the descriptions of the reference numerals:
[0071] 1. Truss; 11. First load-bearing beam; 12. First connecting column; 13. First curved plate; 14. First connecting plate; 15. Second connecting plate; 16. First connecting through hole; 17. Second connecting through hole; 18. Second curved plate; 2. Front wheel suspension; 21. Fixing seat; 211. Accommodating cavity; 22. Main frame; 221. First main frame rod; 222. Second main frame rod; 223. First curved support plate; 224. First bending portion; 225. Second bending portion; 226. Roller; 23. Upper cover; 231. First rotating rod; 232. Second rotating rod; 233. First bending portion Bending rod; 234, second bending pressure rod; 235, arc-shaped pressure plate; 236, second guide plate; 237, first guide plate; 24, transverse pull member; 241, first transverse pull rod; 242, second transverse pull rod; 25, lower bracket; 251, first connecting rod; 252, second connecting rod; 253, first bending support rod; 254, second bending support rod; 255, second arc-shaped support plate; 256, limit plate; 3, rear wheel bracket; 31, second load-bearing beam; 32, second connecting column; 33, mounting through hole; 4, rear wheel limit member; 41, limit groove; 42, guide plate; 5, hanging chair body. DETAILED DESCRIPTION
[0072] Exemplary embodiments of the present disclosure will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments set forth herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.
[0073] like Figures 1-10 As shown, the utility model provides a hanging chair bicycle rack, comprising:
[0074] A truss 1 connected to the upper beam of the chairlift body 5;
[0075] At least one front wheel suspension member 2 connected to the truss 1, the front wheel suspension member 2 is located on the back side of the backrest of the hanging chair body 5 to suspend and fix the front wheel of the bicycle;
[0076] A rear wheel bracket 3 connected to the backrest crossbeam of the hanging chair body 5;
[0077] At least one rear wheel limiting member 4 is connected to the rear wheel bracket 3, and the rear wheel limiting member 4 corresponds to the front wheel suspension member 2 to limit and fix the rear wheel of the bicycle.
[0078] In this embodiment, a bicycle can be suspended and fixed to the rear side of the backrest of the chair lift body 5 by the front wheel suspension member 2 and the rear wheel stopper 4 located at the rear side of the backrest of the chair lift body 5. While realizing bicycle transportation, the structure of the chair lift body 5 will not be damaged. It can meet the needs of both passengers and bicycles, and help to increase the transportation capacity of the aerial ropeway.
[0079] In this embodiment, four front wheel suspension members 2 are provided. The number of the front wheel suspension members 2 is adjusted according to the length of the chair hanging body 5 , which can increase the carrying capacity of the chair hanging body 5 .
[0080] like Figure 2 As shown, in an optional embodiment of the present invention, the truss 1 includes:
[0081] A first load-bearing beam 11, with the front wheel suspension member 2 being connected to the first load-bearing beam 11;
[0082] The first connecting columns 12 are connected to both ends of the first load-bearing beam 11 . The first connecting columns 12 are connected to the upper beam of the hanging chair body 5 through a clamping piece.
[0083] In this embodiment, the first connecting column 12 is fixedly connected to the upper beam of the chair body 5 by a clamping member, so that the first load-bearing beam 11 is installed to the rear of the chair body 5 without damaging the structure of the chair body 5.
[0084] like Figure 3 As shown, in an optional embodiment of the present invention, the tightening member includes:
[0085] A first curved plate 13 connected to the first connecting column 12, wherein the inner wall of the first curved plate 13 is adapted to the outer circumferential surface of the upper beam of the hanging chair body 5;
[0086] A first connecting plate 14 connected to both ends of the first arc-shaped plate 13, wherein the first connecting plate 14 is provided with a first connecting through hole 16;
[0087] A second curved plate 18 connected to the first curved plate 13, wherein the inner wall of the second curved plate 18 is adapted to the outer circumferential surface of the upper beam of the hanging chair body 5;
[0088] A second connecting plate 15 connected to both ends of the second arc-shaped plate 18, wherein the second connecting plate 15 is provided with a second connecting through hole 17;
[0089] The connecting bolt has an end portion which passes through the first connecting through hole 16 and the second connecting through hole 17 in sequence and is threadedly connected with a connecting nut.
[0090] In this embodiment, when connecting the first connecting column 12 to the upper beam of the hanging chair body 5, the first curved plate 13 and the second curved plate 18 are docked to the outer side of the upper beam of the hanging chair body 5, and the ends of the connecting bolts are passed through the first connecting through-hole 16 and the second connecting through-hole 17 in sequence, and the connecting nuts are screwed and installed on the ends of the connecting bolts, thereby achieving a fixed connection between the first connecting column 12 and the upper beam of the hanging chair body 5.
[0091] like Figure 4 As shown, in an optional embodiment of the present invention, the front wheel suspension member 2 includes:
[0092] A fixing seat 21 connected to the first load-bearing beam 11;
[0093] A main frame 22 fixedly connected to the fixing seat 21 for supporting the front wheel of the bicycle;
[0094] An upper cover plate 23 rotatably connected to the upper portion of the main frame 22;
[0095] A lower bracket 25 rotatably connected to the bottom of the main frame 22 , the lower bracket 25 and the end of the upper cover 23 away from the chair body 5 forming an inlet and outlet cavity for the front wheel of the bicycle to enter and exit the main frame 22 ;
[0096] Rotate the cross-pull member 24 connected between the upper cover 23 and the lower bracket 25;
[0097] When the front wheel of the bicycle pushes up against the upper cover plate 23, the lower bracket 25 rotates under the drive of the cross-pull member 24 to drive the inlet and outlet ports to become larger; when the front wheel of the bicycle enters the main frame 22 and presses the lower bracket 25 downward under the action of gravity, the upper cover plate 23 rotates downward under the drive of the cross-pull member 24 to press the front wheel of the bicycle tightly and fix it in the main frame 22.
[0098] In this embodiment, when the bicycle is suspended and fixed, the front wheel is raised by the handlebars of the bicycle, so that the front wheel is supported upward and contacts the upper cover plate 23. The upper cover plate 23 rotates upward to enlarge the port of the inlet and outlet cavity, so that the front wheel enters the interior of the main frame 22 and contacts the lower bracket 25. The handlebars of the bicycle are released. Under the action of the gravity of the bicycle, the front wheel presses down the lower bracket 25, and the lower bracket 25 rotates downward. The upper cover plate 23 is pulled downward by the cross-pull member 24, and the front wheel is pressed and fixed inside the main frame 22 by the upper cover plate 23. The bicycle is in the suspended state, and the rear wheel is limited by the rear wheel limiter 4 to prevent the bicycle from swinging, thereby ensuring the stability and safety of the bicycle during transportation.
[0099] When it is necessary to remove the bicycle, the rear wheel is moved away from the rear wheel stopper 4, and the front wheel is lifted upward by the bicycle handlebars so that the front wheel supports the upper cover plate 23. When the upper cover plate 23 rotates upward, the port of the inlet and outlet cavity becomes larger, and at the same time, the cross-pull member 24 drives the lower bracket 25 to rotate upward, supporting the front wheel through the lower bracket 25, thereby facilitating the front wheel to be pulled out from the port of the inlet and outlet cavity, and the bicycle is removed;
[0100] The bicycle suspension fixing and removal operations are simple and convenient, and can ensure the safety of people and bicycles.
[0101] like Figure 5 As shown, in an optional embodiment of the present invention, the fixing seat 21 is in an H-shaped structure, and an accommodating cavity 211 is provided on the fixing seat 21 , and the accommodating cavity 211 is adapted to the first load-bearing beam 11 .
[0102] In this embodiment, by providing an accommodating cavity 211 adapted to the first load beam 11 , the stability of the fixed connection between the fixing seat 21 and the first load beam 11 can be improved;
[0103] In this embodiment, through holes are correspondingly provided on the middle plate of the fixing seat 21 and the side surface of the first load-bearing beam 11, and the fixing seat 21 and the first load-bearing beam 11 can be fixedly connected by means of bolts and nuts in conjunction with the through holes; thereby facilitating the disassembly, assembly and replacement of the front wheel suspension component 2; in specific applications, the fixing seat 21 and the first load-bearing beam 11 can also be fixedly connected by other connection methods such as welding and riveting.
[0104] like Figure 4 and Figure 6 As shown, in an optional embodiment of the present invention, the main frame 22 includes:
[0105] A first main frame rod 221 and a second main frame rod 222 are fixedly connected to both sides of the fixing seat 21, and a space for accommodating the front wheel of the bicycle is formed between the first main frame rod 221 and the second main frame rod 222;
[0106] Rotate the roller 226 connected between the bottom ends of the first main frame rod 221 and the second main frame rod 222;
[0107] A first bent portion 224 formed in the middle of the first main frame rod 221;
[0108] A second bent portion 225 formed in the middle of the second main frame rod 222;
[0109] The first bending portion 224 and the second bending portion 225 are both bent in a direction away from the upper cover plate 23;
[0110] A first arc-shaped supporting plate 223 is connected between the first bending portion 224 and the second bending portion 225 and is used to support the front wheel of the bicycle.
[0111] In this embodiment, a space for accommodating the front wheel of a bicycle is formed between the first main frame rod 221 and the second main frame rod 222. The front wheel is supported by the first arc-shaped support plate 223, and the front wheel can be fixed inside the main frame 22 in conjunction with the upper cover plate 23.
[0112] The front wheel can be guided by the roller 226 to facilitate pushing or pulling the front wheel into or out of the space for accommodating the front wheel of the bicycle;
[0113] The first bending portion 224 and the second bending portion 225 are both bent in a direction away from the upper cover plate 23 , thereby increasing the space for accommodating the front wheel of the bicycle and ensuring the stability of the front wheel inside the main frame 22 .
[0114] like Figure 4 and Figure 7 As shown, in an optional embodiment of the present invention, the upper cover plate 23 includes:
[0115] a first rotating rod 231 rotatably connected to the upper end of the first main frame rod 221;
[0116] a second rotating rod 232 rotatably connected to the upper end of the second main frame rod 222;
[0117] A first bending pressure rod 233 formed at the end of the first rotating rod 231;
[0118] A second bending pressure rod 234 formed at the end of the second rotating rod 232;
[0119] The first bending pressure rod 233 and the second bending pressure rod 234 are both bent in a direction away from the lower bracket 25;
[0120] A curved pressure plate 235 connected between the first bending pressure rod 233 and the second bending pressure rod 234 for pressing the front wheel of the bicycle;
[0121] The first guide plate 237 is connected to the bottom surface of the first bending pressure rod 233 , and the second guide plate 236 is connected to the bottom surface of the second bending pressure rod 234 . The first guide plate 237 and the second guide plate 236 are in a bell-mouth structure.
[0122] In this embodiment, the front wheel can be guided by the first guide plate 237 and the second guide plate 236 so that the front wheel accurately contacts the arc-shaped pressure plate 235. The front wheel pushes the arc-shaped pressure plate 235 upward, causing the first rotating rod 231 and the second rotating rod 232 to rotate upward relative to the main frame 22, thereby enlarging the port of the inlet and outlet cavity to facilitate pushing the front wheel into the main frame 22 or pulling the front wheel out of the main frame 22.
[0123] The first bending pressure rod 233 and the second bending pressure rod 234 are both bent in a direction away from the lower bracket 25, which can increase the port for entering and exiting the cavity, making it easier for the front wheel to enter and exit.
[0124] like Figure 4 and Figure 8 As shown, in an optional embodiment of the present invention, the lower bracket 25 includes:
[0125] a first connecting rod 251 rotatably connected to the bottom end of the first main frame rod 221;
[0126] a second connecting rod 252 rotatably connected to the bottom end of the second main frame rod 222;
[0127] A first bent support rod 253 is formed at the end of the first connecting rod 251. The first bent support rod 253 is rotatably connected to the bottom end of the first transverse tie rod 241 of the transverse member 24. The upper end of the first transverse tie rod 241 is rotatably connected to the first rotating rod 231. The rotational connection between the first transverse tie rod 241 and the first rotating rod 231 is close to the arc-shaped pressure plate 235.
[0128] A second bent support rod 254 is formed at the end of the second connecting rod 252. The second bent support rod 254 is rotatably connected to the bottom end of the second transverse tie rod 242 of the transverse member 24. The upper end of the second transverse tie rod 242 is rotatably connected to the second rotating rod 232. The rotational connection between the second transverse tie rod 242 and the second rotating rod 232 is close to the arc-shaped pressure plate 235.
[0129] The first bent support rod 253 and the second bent support rod 254 are both bent in a direction away from the upper cover plate 23;
[0130] a second curved support plate 255 connected between the first curved support rod 253 and the second curved support rod 254 for supporting the front wheel of the bicycle, wherein the second curved support plate 255 is away from the roller 226;
[0131] A limiting plate 256 is connected between the first bending support rod 253 and the second bending support rod 254 to limit the front wheel of the bicycle. The limiting plate 256 is located between the second arc-shaped support plate 255 and the roller 226.
[0132] When the front wheel is suspended in this embodiment, the front wheel supports the arc-shaped pressure plate 235 upward, causing the first rotating rod 231 and the second rotating rod 232 to rotate upward relative to the main frame 22, and the first cross-link rod 241 and the second cross-link rod 242 respectively pull the first bending support rod 253 and the second bending support rod 254 to rotate upward relative to the main frame 22, so that the second arc-shaped support plate 255 contacts the front wheel. After the front wheel enters the main frame 22, the front wheel presses down the second arc-shaped support plate 255 under the action of gravity, causing the first bending support rod 253 and the second bending support rod 254 to rotate downward relative to the main frame 22, and the first cross-link rod 241 and the second cross-link rod 242 respectively pull the first rotating rod 231 and the second rotating rod 232 to rotate downward relative to the main frame 22, so that the arc-shaped pressure plate 235 contacts the front wheel, and the front wheel is pressed and fixed inside the main frame 22.
[0133] When removing the front wheel, the front wheel is pushed upward against the arc-shaped pressing plate 235, and the first rotating rod 231 and the second rotating rod 232 are rotated upward relative to the main frame 22, so that the port of the inlet and outlet cavity becomes larger. At the same time, the first bending support rod 253 and the second bending support rod 254 are pulled upward relative to the main frame 22 by the first transverse tie rod 241 and the second transverse tie rod 242, so that the second arc-shaped support plate 255 contacts the front wheel and pushes the front wheel upward, thereby facilitating the removal of the front wheel from the inside of the main frame 22.
[0134] The front wheel is limited by the limiting plate 256, which can ensure that the front wheel is in accurate and full contact with the second arc-shaped supporting plate 255.
[0135] like Figure 9 As shown, in an optional embodiment of the present invention, the rear wheel bracket 3 includes:
[0136] The second load beam 31, the rear wheel limiter 4 is connected to the second load beam 31;
[0137] A second connecting column 32 connected to both ends of the second load beam 31;
[0138] A mounting through hole 33 is provided at the end of the second connecting column 32, and the mounting through hole 33 corresponds to the mounting hole on the backrest beam of the hanging chair body 5;
[0139] The mounting bolt has an end portion which passes through the mounting through hole 33 and the mounting hole in sequence and is threadedly connected with a mounting nut.
[0140] In this embodiment, the second connecting column 32 can be fixedly connected to the backrest beam of the hanging chair body 5 by installing bolts and nuts in conjunction with the installing through holes 33 and the installing holes on the backrest beam of the hanging chair body 5, thereby fixing the second load-bearing beam 31 to the back side of the backrest of the hanging chair body 5, and fixing the rear wheel limiter 4 by the second load-bearing beam 31. The bicycle is suspended and fixed to the back side of the backrest of the hanging chair body 5 by the rear wheel limiter 4 in conjunction with the front wheel suspension member 2, so that the hanging chair body 5 can meet the needs of people riding or bicycle transportation, which helps to increase the transportation capacity of the aerial ropeway.
[0141] like Figure 10 As shown, in an optional embodiment of the present invention, the rear wheel limiting member 4 includes:
[0142] A limiting groove 41 connected to the second load-bearing beam 31 , wherein the groove opening of the limiting groove 41 is in a trumpet-shaped structure, and the large-diameter end of the groove opening of the limiting groove 41 is away from the chair body 5 ;
[0143] The guide plates 42 formed on both sides of the limiting groove 41 are in a trumpet-shaped structure.
[0144] In this embodiment, after the front wheel of the bicycle is suspended and fixed by the front wheel suspension member 2, the bicycle is in a vertical state. Under the action of gravity, the rear wheel of the bicycle moves closer to the limiting groove 41. The guide plate 42 guides the rear wheel of the bicycle into the limiting groove 41. The limiting groove 41 limits the rear wheel, preventing the bicycle from swinging and ensuring the stability of the bicycle.
[0145] Among them, the slot opening of the limiting slot 41 is a trumpet-shaped structure, and the large diameter end of the slot opening of the limiting slot 41 is far away from the chair body 5, which is convenient for the rear wheel to enter the limiting slot 41, ensuring the stability of the limiting slot 41 in limiting the rear wheel, and at the same time being able to meet the limiting requirements of rear wheels of different widths.
[0146] Specific usage process:
[0147] The bicycle is suspended and fixed, and the front wheel is raised by the handlebars of the bicycle. The front wheel contacts the arc pressure plate 235 and the roller 226 at the same time, pushing the front wheel to move into the main frame 22. The front wheel will push the arc pressure plate 235 upward, causing the first rotating rod 231 and the second rotating rod 232 to rotate upward relative to the main frame 22, thereby enlarging the port of the inlet and outlet cavity, and the front wheel gradually enters the space formed between the first main frame rod 221 and the second main frame rod 222 for accommodating the front wheel of the bicycle through the inlet and outlet cavity. At the same time, the first bending support rod 253 and the second bending support rod 254 are pulled upward relative to the main frame 22 by the first transverse tie rod 241 and the second transverse tie rod 242, so that the second arc support plate 255 contacts the front wheel. After the touch, the bicycle board is released. Under the action of the bicycle's gravity, the front wheel presses down the second curved supporting plate 255, causing the first bent supporting rod 253 and the second bent supporting rod 254 to rotate downward relative to the main frame 22. The first cross-tie rod 241 and the second cross-tie rod 242 respectively pull the first rotating rod 231 and the second rotating rod 232 to rotate downward relative to the main frame 22, so that the curved pressure plate 235 contacts the front wheel. The front wheel is fixed inside the main frame 22 through the curved pressure plate 235, the first curved supporting plate 223 and the second curved supporting plate 255. When the bicycle is in a vertical state, the rear wheel of the bicycle will approach the limiting groove 41 under the action of gravity. The rear wheel of the bicycle is guided into the limiting groove 41 by the guide plate 42, and the rear wheel is limited by the limiting groove 41, completing the suspension and fixation of the bicycle.
[0148] To remove the bicycle, the front wheel is pulled upward by the bicycle plate, so that the front wheel supports the arc-shaped pressure plate 235 upward, and the first rotating rod 231 and the second rotating rod 232 are rotated upward relative to the main frame 22, so that the port of the inlet and outlet cavity becomes larger. At the same time, the first cross-tie rod 241 and the second cross-tie rod 242 respectively pull the first bent support rod 253 and the second bent support rod 254 to rotate upward relative to the main frame 22, so that the second arc-shaped support plate 255 contacts the front wheel and supports the front wheel upward. With the rolling between the roller 226 and the front wheel, the front wheel is pulled out of the main frame 22 through the inlet and outlet cavity. As the front wheel is pulled out, the rear wheel of the bicycle will disengage from the limiting groove 41, and the bicycle is completely removed.
[0149] Through the above process, the bicycle can be quickly hung, fixed and removed, the operation is simple and convenient, and the safety of people and bicycles can be guaranteed; the front wheel suspension member 2 and the rear wheel limit member 4 located on the back side of the chair lift body 5 can be hung and fixed on the back side of the chair lift body 5, while realizing the transportation of bicycles without damaging the structure of the chair lift body 5, which can meet the needs of people riding or bicycle transportation, and help to increase the transportation capacity of the aerial ropeway.
[0150] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles described in the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. A bicycle hanging rack, characterized in that: include: A truss (1) connected to the upper beam of the chair body (5); at least one front wheel suspension member (2) connected to the truss (1), the front wheel suspension member (2) being located on the back side of the backrest of the hanging chair body (5) to suspend and fix the front wheel of the bicycle; A rear wheel bracket (3) connected to the backrest crossbeam of the hanging chair body (5); At least one rear wheel position limiting member (4) is connected to the rear wheel bracket (3), and the rear wheel position limiting member (4) corresponds to the front wheel suspension member (2) to position and fix the rear wheel of the bicycle.
2. The bicycle hanging chair rack according to claim 1, characterized in that: The truss (1) comprises: a first load-bearing beam (11), the front wheel suspension component (2) being connected to the first load-bearing beam (11); A first connecting column (12) is connected to both ends of the first load-bearing beam (11), and the first connecting column (12) is connected to the upper beam of the chair suspension body (5) through a clamping member.
3. The bicycle hanging chair rack according to claim 2, characterized in that: The clamping member comprises: a first curved plate (13) connected to the first connecting column (12), wherein the inner wall of the first curved plate (13) is adapted to the outer circular surface of the upper beam of the hanging chair body (5); a first connecting plate (14) connected to both ends of the first arc-shaped plate (13), wherein a first connecting through hole (16) is provided through the first connecting plate (14); a second curved plate (18) docked with the first curved plate (13), wherein the inner wall of the second curved plate (18) is adapted to the outer circumferential surface of the upper beam of the chair body (5); a second connecting plate (15) connected to both ends of the second arc-shaped plate (18), wherein the second connecting plate (15) is provided with a second connecting through hole (17); A connecting bolt, wherein the end of the connecting bolt sequentially passes through the first connecting through hole (16) and the second connecting through hole (17) and is threadedly connected with a connecting nut.
4. The bicycle hanging chair rack according to claim 2, characterized in that: The front wheel suspension member (2) comprises: a fixing seat (21) connected to the first load-bearing beam (11); A main frame (22) fixedly connected to the fixing seat (21) and used for supporting the front wheel of the bicycle; an upper cover plate (23) rotatably connected to the upper portion of the main frame (22); A lower bracket (25) rotatably connected to the bottom of the main frame (22), wherein the lower bracket (25) and the end of the upper cover (23) away from the chair body (5) form an inlet and outlet cavity for the front wheel of a bicycle to enter and exit the main frame (22); Rotating a horizontal pull member (24) connected between the upper cover plate (23) and the lower bracket (25); When the front wheel of the bicycle pushes up against the upper cover plate (23), the lower bracket (25) is driven by the transverse pull member (24) to rotate so as to enlarge the inlet and outlet cavity port; when the front wheel of the bicycle enters the main frame (22) and presses the lower bracket (25) downward under the action of gravity, the upper cover plate (23) is driven by the transverse pull member (24) to rotate downward so as to press the front wheel of the bicycle into the main frame (22).
5. The bicycle hanging rack according to claim 4, characterized in that: The fixing seat (21) is in an H-shaped structure. An accommodating cavity (211) is provided on the fixing seat (21), and the accommodating cavity (211) is adapted to the first bearing beam (11).
6. The bicycle hanging rack according to claim 4, characterized in that: The main frame (22) comprises: A first main frame rod (221) and a second main frame rod (222) are fixedly connected to both sides of the fixing seat (21), and a space for accommodating a front wheel of a bicycle is formed between the first main frame rod (221) and the second main frame rod (222); Rotating a roller (226) connected between the bottom ends of the first main frame rod (221) and the second main frame rod (222); a first bent portion (224) formed in the middle of the first main frame rod (221); a second bent portion (225) formed in the middle of the second main frame rod (222); The first bending portion (224) and the second bending portion (225) are both bent in a direction away from the upper cover plate (23); A first arc-shaped support plate (223) connected between the first bending portion (224) and the second bending portion (225) for supporting the front wheel of a bicycle.
7. The bicycle hanging rack according to claim 6, characterized in that: The upper cover plate (23) comprises: a first rotating rod (231) rotatably connected to the upper end of the first main frame rod (221); a second rotating rod (232) rotatably connected to the upper end of the second main frame rod (222); a first bending pressure rod (233) formed at the end of the first rotating rod (231); a second bending pressure rod (234) formed at the end of the second rotating rod (232); The first bending pressure rod (233) and the second bending pressure rod (234) are both bent in a direction away from the lower bracket (25); an arc-shaped pressure plate (235) connected between the first bending pressure rod (233) and the second bending pressure rod (234) for pressing the front wheel of the bicycle; A first guide plate (237) connected to the bottom surface of the first bending pressure rod (233), and a second guide plate (236) connected to the bottom surface of the second bending pressure rod (234), wherein the first guide plate (237) and the second guide plate (236) are in a bell-mouth structure.
8. The bicycle hanging chair rack according to claim 7, characterized in that: The lower bracket (25) comprises: a first connecting rod (251) rotatably connected to the bottom end of the first main frame rod (221); a second connecting rod (252) rotatably connected to the bottom end of the second main frame rod (222); a first bent support rod (253) formed at the end of the first connecting rod (251), the first bent support rod (253) being rotatably connected to the bottom end of the first transverse tie rod (241) of the transverse tie member (24), the upper end of the first transverse tie rod (241) being rotatably connected to the first rotating rod (231), and the rotational connection between the first transverse tie rod (241) and the first rotating rod (231) being close to the arc-shaped pressure plate (235); a second bent support rod (254) formed at the end of the second connecting rod (252), the second bent support rod (254) being rotatably connected to the bottom end of the second transverse tie rod (242) of the transverse tie member (24), the upper end of the second transverse tie rod (242) being rotatably connected to the second rotating rod (232), and the rotational connection between the second transverse tie rod (242) and the second rotating rod (232) being close to the arc-shaped pressure plate (235); The first bent support rod (253) and the second bent support rod (254) are both bent in a direction away from the upper cover plate (23); a second curved support plate (255) connected between the first curved support rod (253) and the second curved support rod (254) for supporting the front wheel of the bicycle, wherein the second curved support plate (255) is away from the roller (226); A limiting plate (256) is connected between the first bent support rod (253) and the second bent support rod (254) and is used to limit the front wheel of the bicycle. The limiting plate (256) is located between the second arc-shaped support plate (255) and the roller (226).
9. The bicycle hanging rack according to claim 1, characterized in that: The rear wheel bracket (3) comprises: a second load-bearing beam (31), the rear wheel limiting member (4) being connected to the second load-bearing beam (31); a second connecting column (32) connected to both ends of the second load-bearing beam (31); A mounting through hole (33) is provided through the end of the second connecting column (32), wherein the mounting through hole (33) corresponds to a mounting hole on the backrest beam of the hanging chair body (5); A mounting bolt, the end of which passes through the mounting through hole (33) and the mounting hole in sequence and is threadedly connected with a mounting nut.
10. The bicycle hanging rack according to claim 9, characterized in that: The rear wheel limiting member (4) comprises: a limiting groove (41) connected to the second load-bearing beam (31), wherein the notch of the limiting groove (41) is a trumpet-shaped structure, and the large-diameter end of the notch of the limiting groove (41) is away from the chair suspension body (5); The guide plates (42) are formed on both sides of the notch of the limiting groove (41), and the two guide plates (42) are in a trumpet-shaped structure.