A foldable cross-traverse module
By designing a foldable traverse module, the problem of lacking stable anchor points in outdoor sports is solved, enabling portable and efficient anchor point construction, improving rescue safety and efficiency, and making it suitable for outdoor sports and adventure rescue.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- QINHUANGDAO ZHUNCHENG TECH CO LTD
- Filing Date
- 2024-09-23
- Publication Date
- 2026-05-26
AI Technical Summary
In outdoor sports, adventure activities, and rope traversing rescues, the lack of stable anchor points often leads to unsafe rescues, especially in rescues in isolated island waters, where it is difficult to quickly and safely bring personnel ashore in large numbers.
A foldable crossing module assembly was designed, including a foldable truss module, a foldable stabilization module, and a lighting module. By connecting the foldable left and right cantilever arms with the load truss, and combining the stabilizing water bladder and triangular support module, a safe and stable anchor point can be quickly built.
It enables portable, efficient, and easy-to-operate anchor point construction, improving the safety and efficiency of water rescue. It is suitable for outdoor sports, adventure, and rope traversing, filling the gap in rope traversing technology and equipment both domestically and internationally.
Smart Images

Figure CN224277488U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of outdoor sports, adventure and rope crossing rescue technology, and more specifically, to a foldable crossing module assembly. Background Technology
[0002] In outdoor sports, adventure activities, and rope traversing rescues, suitable rope anchor points are often hard to find. For example, in rescues in isolated island waters, trees or protruding rocks are often used as temporary anchor points. When no anchor points can be found, usually 7 or 8 people hold the rope and use pulleys or harnesses to transport people off the shore to the shore. During the transport, because the anchor points are not secure and unstable, the rope is difficult to tighten, causing people to be partially or completely submerged in the water when they slide to the middle of the rope, greatly increasing the risk of drowning. At the same time, the risk of being hit and entangled by trees, floating objects, and rocks in the current is greatly increased, leading to a higher chance of rescue failure. Especially when a large number of people are off the shore and need to be brought ashore in batches, it is difficult to quickly rescue a large number of people ashore using a rope system without a secure and reliable anchor point. Rescue resources and manpower are limited, and it is difficult to hold the rope for a long time by manpower alone. Therefore, there is an urgent need to innovate a portable, efficient, and quickly temporary outdoor sports, adventure, and rope crossing tool to solve the problem of the lack of safe and secure anchor points in rope crossing rescue. Therefore, we propose a foldable crossing module. Utility Model Content
[0003] The purpose of this utility model is to address the problems raised in the existing background technology. To achieve the above-mentioned purpose, this utility model provides the following technical solution: a foldable traverse module assembly, including a foldable truss module, a foldable stabilization module, and a lighting module. The foldable truss module is connected to the foldable stabilization module, and the lighting module is connected to a lithium battery circuit.
[0004] As a preferred technical solution of this utility model, the foldable truss module includes a foldable left cantilever, a foldable right cantilever, and a load-bearing truss.
[0005] As a preferred technical solution of this utility model, the foldable left cantilever and the foldable right cantilever are both connected to the load truss by stepped shaft bolts, and both are locked and unlocked by U-shaped locking pins. The foldable left cantilever and the foldable right cantilever both have adjustable locking holes for adjusting the height of the foldable cross-sectional module group. The foldable left cantilever and the foldable right cantilever both have stabilizing load hanging rings. The load truss has pulleys and adjustable locking holes.
[0006] As a preferred technical solution of this utility model, the foldable stabilizing module includes two triangular support modules and a stabilizing water bladder; the triangular support module includes three retractable support legs and a triangular frame fixing plate.
[0007] As a preferred technical solution of this utility model, each of the retractable support legs has an adjustable locking hole for adjusting the height of the triangular support module, and each is locked and unlocked by a U-shaped locking pin; each of the retractable support legs has a leveling ladder foot; each of the retractable support legs is connected to the tripod fixing plate by a stepped shaft bolt, and each is locked and unlocked by a U-shaped locking pin.
[0008] As a preferred technical solution of this utility model, the tripod fixing plate has two adjustable stepped bolts and a cantilever connecting vertical pipe, which are used for locking and fixing the foldable truss module and the foldable stabilizing module of the foldable crossing module group and for releasing the locking and fixing.
[0009] As a preferred technical solution of this utility model, with the stepped shaft bolt as the axis, the foldable left cantilever in the folded state is rotated counterclockwise to the upper left, and the U-shaped locking pin is inserted into the adjustment locking hole of the load truss to lock and fix it, so that the unfolding of the foldable left cantilever can be completed.
[0010] Using the stepped belt bolt as the axis, rotate the foldable right cantilever in the folded state 270 degrees clockwise to the upper right, insert the U-shaped locking pin into the adjustment locking hole of the load truss and lock it in place, and the foldable right cantilever can be unfolded.
[0011] After the foldable left cantilever and foldable right cantilever are unfolded, the foldable truss module of the foldable crossing module group is fully unfolded.
[0012] After removing all the U-shaped locking pins inserted into the adjustable locking holes of the load truss, the foldable left cantilever and the foldable right cantilever can be unlocked. Then, with the stepped shaft bolt as the axis, the foldable left cantilever is rotated 270 degrees clockwise to the left to complete its folding. After that, the foldable right cantilever is rotated 270 degrees counterclockwise to the right to complete its folding.
[0013] After the foldable left cantilever and foldable right cantilever are folded, the foldable truss module of the foldable crossing module group is folded.
[0014] After pulling the three retractable support legs of the folded triangular support module outward to their limits, U-shaped locking pins can be inserted into the adjustable locking holes at the required height to lock the three retractable support legs to the tripod fixing plate, thus completing the unfolding of the two triangular support modules.
[0015] As a preferred technical solution of this utility model, the foldable left cantilever and foldable right cantilever of the unfolded foldable truss module with stabilizing load hanging rings are respectively inserted into the cantilever connecting vertical tubes on the two triangular fixing plates of the foldable stabilizing module. After inserting two adjustable step bolts respectively, the foldable truss module and foldable stabilizing module of the foldable crossing module group are connected and fixed.
[0016] As a preferred technical solution of this utility model, the stabilizing water bladders are locked and connected to the stabilizing load hanging rings respectively. Then, the foldable crossing module group is kept perpendicular to the ground, and a portable mobile water pump is used to fill the stabilizing water bladders with water. The stabilizing water bladders are kept in a suspended state. The weight of the stabilizing water bladders filled with water can be used to ensure the safety and stability of the foldable crossing module group. The foldable crossing module group can be used as a safe and stable anchor point for the crossing system. Then, the crossing system is completed by using ropes, rope guns, drones, pulleys and other water crossing rescue equipment.
[0017] As a preferred technical solution of this utility model, the foldable crossing module group is made of one or more of the following metals or alloys: aluminum alloy, titanium alloy, copper alloy, stainless steel, and carbon steel.
[0018] Compared with the prior art, the beneficial effects of this utility model are as follows: In the solution of this utility model, the foldable traverse module group has the advantages of being easy to fold, easy to operate, portable, space-saving, and saving physical strength and manpower. It can promote the construction of outdoor sports, adventure and rope traverse rescue equipment system and improve water rescue capabilities. The industry market demand potential is huge. Various outdoor sports and adventure teams, as well as fire rescue teams and water rescue professional teams can be equipped with it. The development prospects are broad and it is of great significance to public fire safety.
[0019] The foldable rope-crossing module of this invention is novel, inventive, practical, and feasible, filling a gap in rope-crossing technology and equipment both domestically and internationally. It represents a scientific innovation in rope-crossing technology and equipment. This foldable rope-crossing module effectively solves the problem of quickly constructing a safe and stable rope-crossing system in complex, turbulent waters. Attached Figure Description
[0020] Figure 1 A three-dimensional view of the unfolded folding cross-traverse module assembly is shown.
[0021] Figure 2 A three-dimensional view of the structure after the foldable truss module is unfolded is shown.
[0022] Figure 3 A three-dimensional view of the unfolded foldable stabilizing module is shown.
[0023] Figure 4 The front view of the folded cross-traverse module assembly is shown.
[0024] Figure 5 The front view of the foldable truss module after folding is shown.
[0025] Figure 6 The front view of the foldable stabilizing module after folding is shown.
[0026] Figure 7 Six views of the unfolded folding cross-traverse module assembly are shown.
[0027] Figure 8 Six views of the folded cross-traverse module assembly are shown.
[0028] Explanation of reference numerals in the attached figures:
[0029] 1. A foldable traverse module assembly; 2. A foldable truss module; 3. A foldable stabilizing module; 4. A lighting module; 5. Leveling ladder feet; 6. A foldable left cantilever; 7. A foldable right cantilever; 8. A load-bearing truss; 9. A stepped axle bolt; 10. A U-shaped locking pin; 11. An adjustable locking socket; 12. A stabilizing load hanging ring; 13. A pulley; 14. A triangular support module; 15. A stabilizing water bladder; 16. A telescopic support leg; 17. A triangular frame fixing plate; 18. An adjustable stepped bolt; 19. A cantilever connecting vertical pipe. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model.
[0031] Therefore, the following detailed description of the embodiments of this utility model is not intended to limit the scope of the claimed utility model, but merely illustrates some embodiments of this utility model. All other embodiments obtained by those skilled in the art based on the embodiments of this utility model without inventive effort are within the scope of protection of this utility model. It should be noted that, in the absence of conflict, the embodiments and features and technical solutions in the embodiments of this utility model can be combined with each other. It should be noted that similar reference numerals and letters in the following figures indicate similar items; therefore, once an item is defined in one figure, it does not need to be further defined and explained in subsequent figures.
[0032] Example 1: A foldable traverse module assembly. This example illustrates the structure of the foldable traverse module assembly of this utility model. This utility model can meet the practical needs of water rescue in terms of portability, efficiency, rapid temporary construction, safety, and sturdy anchor points, solving the problem of the lack of safe and sturdy anchor points in rope traverse rescue. It can be quickly folded and carried during combat readiness, and can be quickly unfolded for rescue operations.
[0033] like Figure 1 As shown, the foldable crossing module group 1 of this utility model includes: a foldable truss module 2, a foldable stabilizing module 3, and a lighting module 4.
[0034] like Figure 1 As shown, the foldable truss module 2 is composed of a foldable left cantilever 6, a foldable right cantilever 7, and a load-bearing truss 8 connected together.
[0035] like Figure 1 As shown, the foldable left cantilever 6 and foldable right cantilever 7 are both connected to the load truss 8 via stepped shaft bolts 9, and are locked and unlocked by U-shaped locking pins 10. Both the foldable left cantilever 6 and foldable right cantilever 7 have adjustable locking holes 11 for adjusting the height of the foldable cross-sectional module 1, and both have stabilizing load hanging rings 12. The load truss 8 has pulleys 13 and adjustable locking holes 11.
[0036] like Figure 1 As shown, the foldable stabilizing module 3 consists of two triangular support modules 14 and a stabilizing water bladder 15; the triangular support module 14 consists of three retractable support legs 16 and a triangular frame fixing plate 17.
[0037] like Figure 1 As shown, each of the retractable support legs 14 has an adjustable locking hole 11 for adjusting the height of the triangular support module 14, and is locked and unlocked by a U-shaped locking pin 10; each of the retractable support legs 16 has a leveling ladder foot 5; each of the retractable support legs 16 is connected to the tripod fixing plate 17 by a stepped shaft bolt 9, and is locked and unlocked by a U-shaped locking pin 10.
[0038] like Figure 1As shown, the tripod fixing plate 17 has two adjustable stepped bolts 18 and cantilever connecting vertical tubes 19, which are used for locking and unlocking the foldable truss module 2 and the foldable stabilizing module 4 of the foldable crossing module group 1, and for locking and unlocking the foldable truss module 2 and the foldable stabilizing module 3 of the foldable crossing module group 1. At the same time, the ends of the stabilizing load hanging rings 12 on the foldable left cantilever 6 and the foldable right cantilever 7 of the foldable truss module 2 are respectively inserted into the cantilever connecting vertical tubes 19 on the two tripod fixing plates 17 of the foldable stabilizing module 3.
[0039] like Figure 1 As shown, the lighting module 4 is powered by a lithium battery and is used for on-site lighting; Example
[0040] The embodiment is used to illustrate step 2 of folding and unfolding the foldable cross-traverse module of this utility model.
[0041] Step 2 of folding and unfolding the foldable crosswalk module group involves folding and unfolding a foldable crosswalk module group 1. The foldable crosswalk module group 1 includes a foldable truss module 2, a foldable stabilizing module 3, and a lighting module 4. The foldable truss module 2 includes a foldable left cantilever 6, a foldable right cantilever 7, and a load-bearing truss 8. Both the foldable left cantilever 6 and the foldable right cantilever 7 are connected to the load-bearing truss 8 via stepped shaft bolts 9, and are locked and unlocked using U-shaped locking pins 10. Both the foldable left cantilever 6 and the foldable right cantilever 7 have adjustable locking holes 11 for adjusting the height of the foldable crosswalk module group 1, and both have stabilizing load hanging rings 12. The specific details of step 2 of folding and unfolding the foldable crosswalk module group are as follows:
[0042] like Figure 2 As shown, with the stepped shaft bolt 9 as the axis, the foldable left cantilever 6 in the folded state is rotated 270 degrees counterclockwise to the upper left. After the U-shaped locking pin 10 is inserted into the adjustable locking hole 11 of the load truss 8 and locked, the foldable left cantilever 6 can be unfolded.
[0043] With the stepped shaft bolt 9 as the axis, rotate the foldable right cantilever 7 in the folded state clockwise by 270 degrees to the upper right, insert the U-shaped locking pin 10 into the adjustable locking hole 11 of the load truss 8 and lock it in place, and the foldable right cantilever 7 can be unfolded.
[0044] After the foldable left cantilever 6 and the foldable right cantilever 7 are unfolded, the foldable truss module 2 of the foldable crossing module group 1 is fully unfolded.
[0045] like Figure 5 As shown, after removing all the U-shaped locking pins 10 inserted into the adjusting locking hole 11 of the load truss 8, the foldable left cantilever 6 and the foldable right cantilever 7 can be unlocked. Then, with the stepped shaft bolt 9 as the axis, the foldable left cantilever 6 is rotated 270 degrees clockwise to the left to complete its folding. After that, the foldable right cantilever 7 is rotated 270 degrees counterclockwise to the right to complete its folding.
[0046] After the foldable left cantilever 6 and the foldable right cantilever 7 are folded, the foldable truss module 2 of the foldable crossing module group 1 is folded.
[0047] like Figure 3 As shown, after the three retractable support legs 16 of the folded triangular support module 14 are pulled outward to the limit, the U-shaped locking pins 10 can be inserted into the adjustable locking holes 11 of the retractable support legs 16 according to the required height, so that the three retractable support legs 16 are locked and fixed to the tripod fixing plate 17, thus completing the unfolding of the two triangular support modules 14.
[0048] like Figure 6 As shown, after removing all the U-shaped locking pins 10 inserted into the adjustable locking holes 11 on the retractable support legs 16, each retractable support leg 16 is pulled inward to the limit to complete its folding.
[0049] like Figure 1 As shown, the ends of the foldable left cantilever 6 and foldable right cantilever 7 of the unfolded foldable truss module 2 with stabilizing load hanging rings 12 are respectively inserted into the cantilever connecting vertical tubes 19 on the two triangular fixing plates 17 of the foldable stabilizing module 3. After inserting two adjustable step bolts 18 respectively, the two adjustable step bolts 18 are tightened to complete the connection and fixation of the foldable truss module 2 and foldable stabilizing module 3 of the foldable crossing module group 1.
[0050] like Figure 4 As shown, after loosening and pulling out the two adjustable step bolts 18, the foldable truss module 2 of the foldable cross-flow module group 1 is pulled out from the foldable stabilizing module 3, thus releasing the connection and fixation between the foldable truss module 2 and the foldable stabilizing module 3.
[0051] like Figure 1 As shown, with the foldable crossing module 1 perpendicular to the ground, the folded stabilizing water bladder 15 is locked to the stabilizing load hanging ring 12. Then, a portable mobile water pump is used to fill the stabilizing water bladder 15 with water, thus completing the unfolding of the stabilizing water bladder 15.
[0052] After draining the water from the stabilizing water bladder 15 through its outlet, the stabilizing water bladder 15 is unlocked from the stabilizing load hanging ring 12 and then folded to complete its retraction.
[0053] like Figure 1 As shown, the stabilizing water bladder 15 remains suspended, and the weight of the stabilizing water bladder 15 filled with water can be used to ensure the safety and stability of the foldable crossing module 1, making the foldable crossing module 1 a safe and stable anchor point for the crossing system.
[0054] like Figure 8 As shown, the foldable crossing module 1 can be quickly folded and unfolded, saving space and making it easy to carry after folding.
[0055] The foldable crossing module 1 is made of one or more of the following metals or alloys: aluminum alloy, titanium alloy, copper alloy, stainless steel, or carbon steel.
[0056] When the foldable crossing module 1 of this utility model is made of aluminum alloy, its total weight can be controlled to around 30 kg. After folding, the weight of each major component can be controlled to around 10 kg. The ultralight mobile forest fire pump used to stabilize the water tank 13 also weighs around 10 kg. The lightweight structural design allows the foldable crossing module 1 and auxiliary equipment to be transported to the island in batches via ropes or drones, enabling the rapid establishment of two-way, safe, and stable anchor points.
[0057] like Figure 1 As shown, rescuers, equipped with rope guns, throwers, drones, single and double pulleys, corner guards, rope pads, O-hooks, figure-eight swivels, perforated boards, slings, descenders, ascenders, rope grippers, tensioners, full-body rescue harnesses, static ropes, traction ropes, and walkie-talkies, can quickly set up a multi-force rope crossing system using the foldable traverse module 1 as a safe and stable anchor point, following fire rope rescue procedures. This allows for the rapid construction of the system, enabling rope crossing for stranded individuals, especially in groups, on isolated islands, improving both the safety and efficiency of rope crossing rescues.
[0058] Although the present invention has been described to a certain extent, it is apparent that appropriate changes can be made to various conditions without departing from the spirit and scope of the present invention. It is understood that the present invention is not limited to the described embodiments, but falls within the scope of the claims, which include equivalent substitutions for each element.
[0059] In the process of using this utility model, with the stepped shaft bolt 9 as the axis, the foldable left cantilever 6 in the folded state is rotated 270 degrees counterclockwise to the upper left, and the U-shaped locking pin 10 is inserted into the adjusting locking hole 11 of the load truss 8 to lock and fix it, so that the foldable left cantilever 6 can be unfolded.
[0060] With the stepped shaft bolt 9 as the axis, rotate the foldable right cantilever 7 in the folded state clockwise by 270 degrees to the upper right, insert the U-shaped locking pin 10 into the adjustable locking hole 11 of the load truss 8 and lock it in place, and the foldable right cantilever 7 can be unfolded.
[0061] After the foldable left cantilever 6 and the foldable right cantilever 7 are unfolded, the foldable truss module 2 of the foldable crossing module group 1 is fully unfolded.
[0062] After removing all the U-shaped locking pins 10 inserted into the adjustable locking socket 11 of the load truss 8, the foldable left cantilever 6 and the foldable right cantilever 7 can be unlocked. Then, with the stepped shaft bolt 9 as the axis, the foldable left cantilever 6 is rotated 270 degrees clockwise to the left to complete its folding. After that, the foldable right cantilever 7 is rotated 270 degrees counterclockwise to the right to complete its folding.
[0063] After the foldable left cantilever 6 and the foldable right cantilever 7 are folded, the foldable truss module 2 of the foldable crossing module group 1 is folded.
[0064] After pulling the three retractable support legs 16 of the folded triangular support module 14 outward to their limits, the U-shaped locking pins 10 can be inserted into the adjustable locking holes 11 at the required height, so that the three retractable support legs 16 are locked and fixed to the tripod fixing plate 17, thus completing the unfolding of the two triangular support modules 14.
[0065] The ends of the foldable left cantilever 6 and foldable right cantilever 7 of the unfolded foldable truss module 2 with stabilizing load hanging rings 12 are respectively inserted into the cantilever connecting vertical tubes 19 on the two triangular fixing plates 17 of the foldable stabilizing module 3. After inserting two adjustable step bolts 18 respectively, tighten the two adjustable step bolts 18 to complete the connection and fixation of the foldable truss module 2 and foldable stabilizing module 3 of the foldable crossing module group 1.
[0066] The stabilizing water bladders 15 are locked and connected to the stabilizing load hanging rings 12. Then, the foldable crossing module 1 is kept perpendicular to the ground, and the stabilizing water bladders 15 are filled with water using a portable mobile water pump. The stabilizing water bladders 15 are kept in a suspended state. The weight of the stabilizing water bladders 15 filled with water ensures the safety and stability of the foldable crossing module 1. The foldable crossing module 1 can become a safe and stable anchor point for the crossing system. Then, with the cooperation of ropes, rope guns, drones, and pulley water crossing rescue equipment, the crossing system can be quickly set up to complete the aerial rescue of people, especially large numbers of people, thereby improving crossing safety and rescue efficiency.
[0067] The above embodiments are only used to illustrate the present utility model and are not intended to limit the technical solutions described in the present utility model. Although the present utility model has been described in detail with reference to the above embodiments, the present utility model is not limited to the specific embodiments described above. Therefore, any modifications or substitutions to the present utility model, and all technical solutions and improvements that do not depart from the spirit and scope of the utility model, are covered within the scope of the claims of the present utility model.
Claims
1. A folding crossing module group comprising a foldable truss module (2), a foldable ballast module (3), a lighting module (4), characterized in that, The foldable truss module (2) includes a foldable left cantilever (6), a foldable right cantilever (7), and a load truss (8). The foldable left cantilever (6) and the foldable right cantilever (7) are connected to the load truss (8) by stepped shaft bolts (9), and are locked and unlocked by U-shaped locking pins (10). The foldable left cantilever (6) and the foldable right cantilever (7) have adjustable locking holes (11) for adjusting the height of the foldable cross-flow module group (1). The foldable left cantilever (6) and the foldable right cantilever (7) have stabilizing load hanging rings (12).
2. A folding cross module set according to claim 1, characterized in that The foldable stabilizing module (3) includes two triangular support modules (14) and a stabilizing water bladder (15); the triangular support module (14) includes three retractable support legs (16) and a triangular frame fixing plate (17).
3. A foldable traverse module assembly according to claim 2, characterized in that, Each of the retractable support legs (16) has an adjustable locking hole (11). The height of the triangular support module (14) can be adjusted by locking and unlocking it through a U-shaped locking pin (10).
4. A foldable traverse module assembly according to claim 3, characterized in that, The retractable support legs (16) all have leveling ladder feet (5); the retractable support legs (16) are all connected to the tripod fixing plate (17) by step shaft bolts (9), and are all locked and unlocked by U-shaped locking pins (10).
5. A foldable traverse module assembly according to claim 4, characterized in that, The load truss (8) has pulleys (13) and adjustable locking holes (11).
6. A foldable crossing module assembly according to claim 5, characterized in that, The tripod mounting plate (17) has two adjustable step bolts (18) and a cantilever connecting vertical pipe (19).