Mountaineering comprehensive training device

By incorporating elastic ropes and pulley mechanisms into the mountaineering trainer, combined with adjustable climbing foot pedals and parallel bar handles, the problems of complex structure and bulky size of existing trainers are solved. This enables flexible resistance adjustment and convenient transportation and installation, adapting to the personalized training needs of different users.

CN224180179UActive Publication Date: 2026-05-01JINYUN COUNTY HAOBAI FITNESS EQUIPMENT CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JINYUN COUNTY HAOBAI FITNESS EQUIPMENT CO LTD
Filing Date
2025-05-13
Publication Date
2026-05-01

AI Technical Summary

Technical Problem

Existing mountaineering training equipment is complex in structure and bulky, relying on hydraulic or electric systems, resulting in high manufacturing costs, inconvenient transportation, and difficulty in meeting the personalized training intensity needs of different users.

Method used

It employs two vertically mounted hollow fixed poles, with internal telescopic rods and single levers, combined with elastic ropes and pulley mechanisms. Through adjustable climbing foot pedals and height-adjustable double bar handles, it achieves resistance adjustment and multiple detachable designs, simplifying the structure and adapting to different training needs.

Benefits of technology

It achieves a stable and efficient structure without the need for hydraulic power, and can adjust the resistance according to needs, reduce the packaging volume, facilitate transportation and installation, and adapt to the training needs of different personnel.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of exercise fitness equipment, in particular to a mountaineering comprehensive training device. The device comprises two hollow fixing rods which are vertically installed, telescopic rods are inserted into the fixing rods respectively, single levers are installed at the top ends of the two telescopic rods, handrails are transversely installed on the two telescopic rods, rotating bases are fixed to the front sides and the rear sides of the bottom ends of the two fixing rods respectively, and a front supporting frame is installed in the two rotating bases on the front side in a downward rotating mode; a front supporting frame is installed in the two rotating seats on the front side, a rear supporting frame is installed in the two rotating seats on the rear side, a support is installed in the front supporting frame, two sets of mountaineering pedals are installed on the support in a sliding mode in the direction of the support, the two sets of mountaineering pedals are in linkage, the side of each set of mountaineering pedals is connected with a force adjusting mechanism, and two parallel bar handles with the adjustable height are installed on the rear supporting frame. The tightness of the elastic rope can be adjusted at any time according to requirements, so that the training requirements of different persons are met; the multi-position detachable design is adopted, and therefore the packaging size is greatly reduced.
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Description

A comprehensive mountaineering training device Technical Field

[0001] This utility model relates to the field of sports and fitness equipment, specifically to a mountaineering comprehensive training device. Background Technology

[0002] Mountain climbing and other aerobic training methods have significant effects on improving cardiopulmonary function and strengthening lower limb muscles. However, due to factors such as geographical location and climate conditions, many people find it difficult to conduct mountain climbing training in a natural environment. Therefore, various training devices that simulate mountain climbing movements have appeared on the market to meet users' needs for mountain climbing training indoors.

[0003] Existing mountaineering training equipment is generally complex in structure and bulky in size, and relies on hydraulic or electric systems to provide resistance, resulting in high manufacturing costs, inconvenient transportation and installation, and difficulty in meeting the personalized training intensity needs of different users. Summary of the Invention

[0004] The purpose of this invention is to provide a well-designed mountaineering training device that addresses the shortcomings and deficiencies of existing technologies, thereby resolving the aforementioned deficiencies.

[0005] To achieve the above objectives, this utility model adopts the following technical solution: It comprises two vertically installed hollow fixed rods, each with a telescopic rod inserted inside. A single lever is installed at the top of each telescopic rod, and several telescopic adjustment holes are opened on each telescopic rod. The fixed rod has holes identical to the telescopic adjustment holes, and a positioning pin is inserted into both the hole and the telescopic adjustment hole to position the telescopic rod. Handrails are horizontally installed on the two telescopic rods, with each end of the handrail positioned in the telescopic adjustment hole via a fixed threaded handle. Rotating seats are fixed to the front and rear sides of the bottom of the two fixed rods. A front support frame is mounted downwards in the two front rotating seats, and a rear support frame is mounted in the two rear rotating seats. A bracket is installed in the front support frame, and two sets of climbing footboards are slidably mounted on the bracket along its own direction. The two sets of climbing footboards are linked together, and each set of climbing footboards is connected to a force adjustment mechanism on its side. Two height-adjustable double-bar handles are installed on the rear support frame.

[0006] Preferably, the bracket includes a crossbar installed in the front support frame, and two uprights are connected between the lower part of the crossbar and the horizontal base bar at the bottom of the front support frame. The bottom of each climbing foot pedal is connected to a movable bracket, and the movable bracket is provided with multiple rollers. The rollers are respectively located on the front and rear sides of the uprights, and the movable bracket is slidably installed on the uprights through the rollers.

[0007] Preferably, the force adjustment mechanism includes two through holes on the inner side wall of the column of the front support frame. The two through holes are aligned vertically. Two symmetrical pulleys are installed in the lower through hole, and a pulley is installed in the upper through hole. Multiple adjustment holes are provided on the side wall of the column of the front support frame between the two through holes. A pulley is installed on the side of the movable bracket. An elastic rope is connected to the side of the movable bracket. The connection point of the elastic rope is located directly above the pulley. After passing through the pulley, the elastic rope enters the column of the front support frame through the two pulleys and exits the column of the front support frame from the pulley three. Then, a snap hook is connected to the end of the elastic rope, and the snap hook is engaged in one of its adjustment holes.

[0008] Preferably, the crossbar has two holes on its lower side, and connecting pulleys are installed in the holes. A connecting rope is connected to the side of one movable bracket facing the other movable bracket. The connecting rope passes through the connecting pulley above into the crossbar, then passes through the other connecting pulley, and then connects to the other movable bracket.

[0009] Preferably, the rear support frame has several height adjustment holes vertically opened on both sides of the rear side, and the bottom of the double bar handle is connected to a mounting seat. The mounting seat is attached to the surface of the rear support frame. The mounting seat has a hole with the same height adjustment holes, and a positioning pin is inserted into the hole and the height adjustment hole for positioning. A locking knob is also provided on the back of the mounting seat on the inner side of the rear support frame. The head of the locking knob passes through the height adjustment hole and is connected to the back of the mounting seat by a thread.

[0010] Preferably, both sides of the crossbar are bolted to the front support frame, and two plug-in seats are fixed to the lower side of the crossbar and the upper side of the transverse base rod at the bottom of the front support frame, respectively, and the upper and lower ends of the two uprights are inserted into the plug-in seats.

[0011] Preferably, the connecting rope, elastic rope and movable bracket are all detachably connected by bolts.

[0012] Preferably, the connecting shafts of the front support frame, the rear support frame, and the rotating seat are all installed by bolts.

[0013] Preferably, a locking knob is also threadedly installed on the fixing rod directly above the positioning pin.

[0014] The beneficial effects of this utility model after adopting the above structure are:

[0015] 1. This utility model achieves resistive installation of mountaineering foot pedals through the cooperation of elastic ropes, connecting ropes, and multiple sets of pulleys, eliminating the need for hydraulic power, enabling mountaineering training, with a stable and efficient structure, and the tension of the elastic ropes can be adjusted at any time according to needs, thereby adapting to the training needs of different personnel.

[0016] 2. This utility model adopts a multi-part detachable design, which greatly reduces the packaging volume, simplifies installation, reduces transportation difficulty and transportation costs, and facilitates subsequent disassembly and assembly.

[0017] 3. This utility model features multiple adjustable parts, with the handrails, single bar, and double bar all having adjustable heights, providing high flexibility. Attached Figure Description

[0018] Figure 1 is a schematic diagram of the front structure of this utility model;

[0019] Figure 2 is an enlarged view of part A in Figure 1;

[0020] Figure 3 is a schematic diagram of the rear structure of this utility model;

[0021] Figure 4 is an enlarged view of part B in Figure 2;

[0022] Figure 5 is an enlarged view of part C in Figure 2;

[0023] Figure 6 is a schematic diagram of the internal structure of the front support frame in this utility model;

[0024] Figure 7 is a schematic diagram of the structure of the front support frame and the rear support frame in this utility model when they are retracted inward.

[0025] Figure 8 is a bottom view of the connecting rope in this utility model.

[0026] Explanation of reference numerals in the attached figures:

[0027] 1. Fixed rod; 2. Telescopic rod; 3. Telescopic adjustment hole; 4. Positioning pin one; 5. Locking knob one; 6. Handrail; 7. Fixed threaded handle; 8. Single lever; 9. Rotating seat; 10. Front support frame; 11. Rear support frame; 12. Height adjustment hole; 13. Mounting seat; 14. Double bar handle; 15. Positioning pin two; 16. Locking knob two; 17. Horizontal bar; 18. Plug-in seat; 19. Vertical pole; 20. Movable bracket; 21. Roller; 22. Climbing foot pedal; 23. Elastic rope; 24. Pulley one; 25. Pulley two; 26. Pulley three; 27. Snap hook; 28. Adjustment hole; 29. ​​Connecting rope; 30. Connecting pulley. Detailed Implementation

[0028] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0029] Referring to Figures 1-8, it includes two vertically installed hollow fixed rods 1, with telescopic rods 2 inserted inside each fixed rod 1. A single lever 8 is installed at the top of each telescopic rod 2. Each telescopic rod 2 has several telescopic adjustment holes 3. The fixed rod 1 has holes identical to the telescopic adjustment holes 3, and a positioning pin 4 is inserted into these holes and the telescopic adjustment holes 3 to position the telescopic rod 2. A locking knob 5 is threaded onto the fixed rod 1 directly above the positioning pin 4. Handrails 6 are horizontally installed on the two telescopic rods 2, with each end of the handrail connected to a lever. The fixed thread handle 7 is installed in the telescopic adjustment hole 3 for positioning. Rotary seats 9 are fixed on the front and rear sides of the bottom of the two fixed rods 1. The front two rotating seats 9 are installed with the front support frame 10 rotating downwards. The rear two rotating seats 9 are installed with the rear support frame 11. The front support frame 10 is installed with a bracket. Two sets of climbing foot pedals 22 are slidably installed on the bracket along its own direction. The two sets of climbing foot pedals 22 are linked together. Each set of climbing foot pedals 22 is connected to the side with an adjustment mechanism. Two height-adjustable double bar handles 14 are installed on the rear support frame 11.

[0030] The bracket includes a crossbar 17 installed in the front support frame 10. Two uprights 19 are connected between the lower part of the crossbar 17 and the horizontal base rod at the bottom of the front support frame 10. The bottom of the climbing foot pedal 22 is connected to a movable bracket 20. The movable bracket 20 is provided with multiple rollers 21. The rollers 21 are respectively located on the front and rear sides of the uprights 19. The movable bracket 20 is slidably installed on the uprights 19 through the rollers 21. Both sides of the crossbar 17 are connected to the front support frame 10 by bolts. Two plug-in seats 18 are fixed on the lower side of the crossbar 17 and the upper side of the horizontal base rod at the bottom of the front support frame 10. The upper and lower ends of the two uprights 19 are inserted into the plug-in seats 18.

[0031] The force adjustment mechanism includes two through holes on the inner side wall of the column of the front support frame 10. The two through holes are aligned vertically. Two symmetrical pulleys 25 are installed in the lower through hole, and a pulley 26 is installed in the upper through hole. Multiple adjustment holes 28 are provided on the side wall of the column of the front support frame 10 between the two through holes. A pulley 24 is installed on the side of the movable bracket 20. An elastic rope 23 is connected to the side of the movable bracket 20. The connection point of the elastic rope 23 is located directly above the pulley 24. After passing through the pulley 24, the elastic rope 23 enters the column of the front support frame 10 through the two pulleys 25, and exits the column of the front support frame 10 from the pulley 26. Then, a snap hook 27 is connected to the end of the elastic rope 23, and the snap hook 27 is snapped into one of its adjustment holes 28.

[0032] Two holes are opened on the lower side of the crossbar 17, and connecting pulleys 30 are installed in the holes respectively. A connecting rope 29 is connected to the side of one movable bracket 20 facing the other movable bracket 20. The connecting rope 29 passes through the connecting pulley 30 at the top, enters the crossbar 17, and then passes out through the other connecting pulley 30, and then connects to the other movable bracket 20.

[0033] Two climbing foot pedals 22 are connected by a connecting rope 29. Therefore, they remain connected during use. When one climbing foot pedal 22 is pressed down, the other climbing foot pedal 22 is passively pulled up. Each climbing foot pedal 22 has an elastic rope 23 connected to its side. When the climbing foot pedal 22 rises, it stretches the elastic rope 23. When the other climbing foot pedal 22 descends, the elastic rope 23 on that side retracts, and vice versa. The end of the elastic rope 23 is connected by a snap hook 27. The snap hook 27 can be snapped into different adjustment holes 28. For example, snapping the snap hook 27 into the lower adjustment hole 28 will stretch the elastic rope 23. Therefore, when using the climbing foot pedal 22 for training, the force applied to the elastic rope 23 increases, and the training intensity increases, and vice versa. Therefore, changing the position of the snap hook 27 can adjust the amount of force applied during training.

[0034] Referring to Figures 1-5, several height adjustment holes 12 are vertically opened on both sides of the rear side of the rear support frame 11. The bottom of the double bar handles 14 are all connected to mounting seats 13. The mounting seats 13 are attached to the surface of the rear support frame 11. The mounting seats 13 have holes that are the same as the height adjustment holes 12. A positioning pin 15 is inserted into the hole and one of the height adjustment holes 12 for positioning. A locking knob 16 is also provided on the back of the mounting seat 13 on the inner side of the rear support frame 11. The head of the locking knob 16 passes through the height adjustment hole 12 and is connected to the back of the mounting seat 13 by a thread.

[0035] As an optimized solution of this utility model, the double bar handle 14 is positioned by the positioning pin 2 15. When adjustment is needed, the positioning pin 2 15 is pulled out and the locking knob 2 16 is unscrewed, so that the mounting base 13 can slide up and down. After reaching the desired position, the positioning pin 2 15 is inserted back to fix the position and prevent it from sliding up and down. Then, the locking knob 2 16 is inserted and tightened, so that the upper end of the mounting base 13 can be pulled back to fit against the surface of the rear support frame 11, thereby maintaining the stability of the mounting base 13 and preventing the double bar handle 14 from shaking.

[0036] Referring to Figures 1 and 2, the connecting rope 29, elastic rope 23 and movable bracket 20 are detachably connected by bolts; the connecting shafts of the front support frame 10, rear support frame 11 and rotating seat 9 are all installed by bolts, and the horizontal base rods of the front support frame 10 and rear support frame 11 and the two vertical support rods are all connected by bolts.

[0037] As an optimized solution of this utility model, bolt installation is adopted to realize the detachable installation of multiple parts. During packaging, multiple parts can be disassembled and packed to reduce the packaging volume and facilitate subsequent disassembly and assembly.

[0038] During installation, first overlap the front support frame 10 and the rear support frame 11, align the fixing rods 1 at the ends, and connect the front support frame 10 and the rear support frame 11 to the rotating seat 9 with bolts. Then, insert the telescopic rods 2 into the two fixing rods 1 respectively, and install the single lever 8 on the top of the telescopic rod 2. Stand the assembled part upright, and pry the front support frame 10 and the rear support frame 11 outward to form an "A" shape, which can support itself. Then, adjust the telescopic rod 2 to a suitable height according to the height requirement of the single lever 8, and insert the positioning pin 4 for positioning. Then, tighten the locking knob 5 to press the telescopic rod 2 firmly to prevent it from shaking. Finally, according to the handrail 6... To meet the height requirements, the fixed threaded handle 7 is installed on the telescopic pole 2 at a suitable position; the two sets of movable brackets 20 and the climbing foot pedals 22 are connected respectively, and the movable brackets are respectively put onto the uprights 19. Then, the two uprights 19 are inserted into the two plug-in seats 18 of the front support frame 10, and the crossbar 17 is installed at the top. The top of the uprights 19 is also inserted into the plug-in seats 18. Then, the bolts at both ends of the crossbar 17 are installed; then, the two ends of the connecting rope 29 in the crossbar 17 are respectively connected to the two movable brackets 20 by bolts, and the two elastic ropes 23 in the front support frame 10 are also connected to the outside of each movable bracket 20.

[0039] Then, according to the required height, install the mounting base 13 to complete the assembly of the trainer. When conducting mountain climbing training, hold the handrail 6 and step on the two sets of mountain climbing foot pedals 22. The single bar 8 and the parallel bar handles 14 at the rear can also be used for training on the single bar and parallel bars.

[0040] It should be understood that the above-described specific embodiments of this utility model are merely illustrative or explanatory of the principles of this utility model and do not constitute a limitation thereof. Therefore, any modifications, equivalent substitutions, improvements, etc., made without departing from the spirit and scope of this utility model should be included within the protection scope of this utility model. Furthermore, the appended claims are intended to cover all variations and modifications falling within the scope and boundaries of the appended claims, or equivalent forms of such scope and boundaries.

Claims

1. A mountaineering integrated training device, characterized in that: It includes two vertically installed hollow fixed rods (1), and adjustable telescopic rods (2) are inserted into the fixed rods (1). Rotating seats (9) are fixed to the front and rear sides of the bottom of the two fixed rods (1). Front support frames (10) are installed in the two front rotating seats (9) facing downwards, and rear support frames (11) are installed in the two rear rotating seats (9). A bracket is installed in the front support frame (10), and two sets of climbing foot pedals (22) are slidably installed on the bracket along its own direction. The two sets of climbing foot pedals (22) are linked together, and each set of climbing foot pedals (22) is connected to the side with an adjustment mechanism.

2. The integrated training device for mountain climbing according to claim 1, characterized in that: The bracket includes a crossbar (17) installed in the front support frame (10). Two uprights (19) are connected between the lower part of the crossbar (17) and the horizontal base rod at the bottom of the front support frame (10). The bottom of the climbing foot pedal (22) is connected to a movable bracket (20) and is slidably installed on the uprights (19) through the movable bracket (20). The force adjustment mechanism includes two through holes on the inner side wall of the upright of the front support frame (10). The two through holes are aligned vertically. Two symmetrical pulleys (25) are installed in the lower through hole, and pulley (26) is installed in the upper through hole. Multiple adjustment holes (28) are provided on the side wall of the upright of the front support frame (10) between the two through holes. A pulley (24) is installed on the side of the movable bracket (20), and an elastic rope (23) is connected to the side of the movable bracket (20). The connection point of the rope (23) is located directly above the pulley one (24). After the elastic rope (23) passes through the pulley one (24), it enters the column of the front support frame (10) between the two pulleys two (25), and goes up through the pulley three (26) to exit the column of the front support frame (10). Then the end of the elastic rope (23) is connected to a snap hook (27), which is snapped into one of its adjustment holes (28). There are two holes on the lower side of the crossbar (17), and connecting pulleys (30) are installed in the holes respectively. A connecting rope (29) is connected to the side of one of the movable brackets (20) facing the other movable bracket (20). The connecting rope (29) passes through the connecting pulley (30) above and enters the crossbar (17), and then passes out through the other connecting pulley (30) and connects to the other movable bracket (20).

3. A mountaineering comprehensive training device according to claim 2, characterized in that: The movable bracket (20) is equipped with multiple rollers (21), which are respectively located on the front and rear sides of the upright (19). The movable bracket (20) is slidably installed on the upright (19) via the rollers (21).

4. The integrated training device for mountain climbing according to claim 2, wherein: Both sides of the crossbar (17) are bolted to the front support frame (10). Two plug-in seats (18) are fixed on the lower side of the crossbar (17) and the upper side of the transverse base rod at the bottom of the front support frame (10). The upper and lower ends of the two uprights (19) are inserted into the plug-in seats (18).

5. A mountaineering training device according to claim 2, characterized in that: The connecting rope (29), elastic rope (23) and movable bracket (20) are detachably connected by bolts, and the connecting shafts of the front support frame (10), rear support frame (11) and rotating seat (9) are all installed by bolts.

6. The integrated training device of claim 1, wherein: Each telescopic rod (2) has several telescopic adjustment holes (3), and the fixed rod (1) has the same hole as the telescopic adjustment hole (3). The telescopic rod (2) is positioned by inserting a positioning pin (4) into the hole and the telescopic adjustment hole (3). The fixed rod (1) is also fitted with a locking knob (5) by thread at the position directly above the positioning pin (4).

7. The integrated training device of claim 1, wherein: The rear support frame (11) has several height adjustment holes (12) vertically opened on both sides of the rear side. Two mounting seats (13) are installed on the rear support frame (11). The mounting seats (13) are attached to the surface of the rear support frame (11). A double bar handle (14) is connected to the mounting seat (13). The mounting seat (13) has a hole with the same height adjustment hole (12). The hole and one of the height adjustment holes (12) are fitted with a positioning pin (15) for positioning. The rear support frame (11) is also provided with a locking knob (16) on the back of the mounting seat (13). The head of the locking knob (16) passes through the height adjustment hole (12) and is connected to the back of the mounting seat (13) by a thread.

8. A mountaineering training device according to claim 1, characterized in that: Handrails (6) are installed horizontally on the two telescopic rods (2), and the two ends of the handrails (6) are respectively installed in the telescopic adjustment holes (3) through fixed thread handles (7).

9. The integrated training device of claim 1, wherein: A single lever (8) is installed on the top of each of the two telescopic rods (2).