Comprehensive training frame
By designing a comprehensive training frame that integrates multiple rescue project modules, the problem of low training frequency and limited training projects at grassroots fire stations has been solved. This has enabled efficient and low-cost multi-project training, improving the skills and teamwork abilities of the team members.
Patent Information
- Application Number
- CN202422978067.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-10-31
- Estimated Expiration
- 2034-12-03
AI Technical Summary
Grassroots fire stations, especially small ones, have low training frequency, limited training programs, and high costs, which limits training efficiency and effectiveness.
Design a comprehensive training frame with a hollow hexahedral structure that integrates multiple rescue training modules, including ladders, fences, passages, mounting slots, etc., to simulate various rescue scenarios and is suitable for small training sites.
It improved training efficiency, enhanced team members' mastery of various rescue skills, reduced training costs, and improved safety and teamwork capabilities.
Smart Images

Figure CN223501466U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a comprehensive training rack. Background Technology
[0002] Currently, grassroots fire stations, especially smaller ones, face numerous challenges in conducting breaching and rescue training. First, due to space limitations, these stations conduct training relatively infrequently, hindering the improvement of firefighters' skills. Second, existing simulated rescue projects are rather limited, restricting firefighters' comprehensive mastery of various breaching and rescue techniques. Furthermore, high training costs and the difficulty in designing some training subjects further exacerbate the complexity of the training. These issues collectively limit the efficiency and effectiveness of breaching and rescue training at grassroots fire stations, urgently requiring an innovative solution to improve this situation. Utility Model Content
[0003] To overcome the shortcomings of the prior art, this utility model provides a comprehensive training rack that requires little space, can be used for training of various sports, and can improve training efficiency.
[0004] This utility model's integrated training frame has a hollow hexahedral structure, with a top surface, a bottom surface, and first, second, third, and fourth side surfaces. The first, second, third, and fourth side surfaces and the top surface are each equipped with multiple training modules corresponding to different rescue projects. The top surface is surrounded by a fence with openings. A ladder is installed on the first side surface, with the upper end of the ladder positioned corresponding to the opening. Trainees can climb to the top of the training frame via the ladder to conduct corresponding rescue training. The fence prevents people from falling and improves safety.
[0005] The integrated training frame of this utility model adopts a hollow hexahedral structure. The top surface and different sides are respectively set with training modules corresponding to different rescue projects. The overall structure is simple and compact, occupies little space, and has low requirements for training sites. It is more suitable for grassroots fire stations, especially small stations. It has low manufacturing and usage costs, and can allow multiple trainees to train in different projects at the same time, which can improve the efficiency of rescue training.
[0006] Furthermore, the top surface is provided with a channel that communicates with the interior of the training frame. The channel can be used for deep well rescue training. During training, a triangular support, pulley, and rope for assisting in deep well rescue training can be placed on the top surface.
[0007] Furthermore, the top surface is provided with an installation groove for embedding a concrete slab, which can be used for safe demolition training.
[0008] Furthermore, the fence has a hollow structure, which can be used for training in binding common rope knots, demonstrations of V-shaped and T-shaped rope rescue training, and demonstrations of stretcher crossing platforms and railing rescue.
[0009] Furthermore, the hanging ladder is detachably connected to one side of the first side. The first side has an opening on the back of the hanging ladder that communicates with the inside of the training frame. The inside of the training frame has a bracket for supporting the round wood. On the other side of the first side, there are four areas arranged longitudinally and transversely for fixing and installing pipes and steel bars of different diameters and cross-sectional shapes.
[0010] When log cutting training is needed, the ladder can be removed, and the logs inside the training frame can be cut through the opening. The four areas on the first and second sides are used to fix and install pipes and reinforcing bars of different diameters and cross-sectional shapes, and can be used for cutting training. These four areas are equipped with clips to secure the ends of the pipes and reinforcing bars.
[0011] Furthermore, one side of the second side is provided with a roller shutter door connected to the interior of the training frame, and the other side of the second side is provided with at least one mounting groove for embedding materials. The roller shutter door is used for roller shutter door breaking training, and the mounting groove can be used to embed materials of different materials, such as wood, steel, glass, cement, quartz, and marble. These materials can be fixed in the mounting groove by clamping or plugging, and can be used for material clamping training.
[0012] Furthermore, one side of the third side is provided with a security door connected to the inside of the training frame, which can be used for security door breaking training. The other side of the third side is provided with multiple small doors connected to the inside of the training frame and equipped with different types of locks, which can be used for breaking training of different door locks.
[0013] Furthermore, the fourth side is provided with multiple storage platforms. These platforms can be used to place rescue tools and for testing them, such as conducting water suction tests on outboard motors and hand pumps. They can also be used to set up training equipment such as light bulbs, ping-pong balls, and glass bottles, and for training hand stability (light bulb cutting, ping-pong ball clamping, and bottle opening training).
[0014] Furthermore, the bottom surface is provided with support feet that cooperate with the ground for support, and a gap is left between the bottom surface and the ground for the placement of a lifting air cushion, which can be used for support training of building components.
[0015] The beneficial effects of this utility model are: the integrated training rack of this utility model integrates multiple rescue training programs into one training rack, and can carry out training operations on multiple sides simultaneously, greatly improving the training efficiency at the grassroots level. It helps commanders and soldiers to master various rescue equipment and materials, adopt different tactical methods, and carry out rescue operations quickly and efficiently, improving the operational proficiency, teamwork ability, and rapid response capability of rescue personnel. Attached Figure Description
[0016] Figure 1 This is a front view of an embodiment of the present utility model;
[0017] Figure 2 This is a left view of an embodiment of the present utility model;
[0018] Figure 3 This is a right view of an embodiment of the present utility model;
[0019] Figure 4 This is a rear view of an embodiment of the present utility model;
[0020] Figure 5 This is a top view of an embodiment of the present utility model;
[0021] Figure 6 This is a bottom view of an embodiment of the present utility model. Detailed Implementation
[0022] The structure of the integrated training rack in this embodiment of the utility model is as follows: Figure 1-6 As shown, it has a hollow hexahedral structure with a top surface, a bottom surface, and first, second, third, and fourth side surfaces. The top surface is as follows: Figure 5 As shown, the first, second, third, and fourth sides are respectively as follows: Figure 1 , Figure 2 , Figure 3 , Figure 4 As shown, the bottom surface is as follows Figure 6 As shown, the first, second, third, and fourth sides and the top surface are equipped with multiple training modules corresponding to different rescue projects. The top surface is surrounded by a fence 11 with an opening. A hanging ladder 2 is provided on the first side, with the upper end of the hanging ladder 2 positioned corresponding to the opening. Trainees can climb to the top of the training frame via the hanging ladder 2 to conduct corresponding rescue training. The fence 11 can prevent people from falling and improve safety.
[0023] The integrated training frame of this utility model adopts a hollow hexahedral structure. The top surface and different sides are respectively set with training modules corresponding to different rescue projects. The overall structure is simple and compact, occupies little space, and has low requirements for training sites. It is more suitable for grassroots fire stations, especially small stations. It has low manufacturing and usage costs, and can allow multiple trainees to train in different projects at the same time, which can improve the efficiency of rescue training.
[0024] The top surface is provided with a channel 3 that communicates with the interior of the training frame. The channel 3 can be used for deep well rescue training. During training, a tripod, pulley, rope and other devices for deep well rescue training can be placed on the top surface. Trainees can descend into the interior of the training frame through the channel 3. The top surface is also provided with an installation groove 4 for embedding concrete slabs, which can be used for safe demolition training.
[0025] The fence 11 has a hollow structure with circumferentially spaced holes. The hollow fence 11 can be used for training in binding common rope knots, demonstrations of V-shaped and T-shaped rope rescue training, and demonstrations of stretcher crossing platforms and railing rescue.
[0026] The hanging ladder 2 is detachably connected to one side of the first side. The first side has an opening on the back of the hanging ladder 2 that communicates with the inside of the training frame. The training frame has a bracket 52 for supporting the round log 51. On the other side of the first side, there are four areas 63 arranged longitudinally and transversely for fixing and installing pipes 61 and steel bars 62 of different diameters and cross-sectional shapes.
[0027] When log cutting training is required, the hanging ladder 2 can be removed, and the logs 51 inside the training frame can be cut through the opening. The four areas on the other side of the first side are used to fix and install pipes and reinforcing bars of different diameters and cross-sectional shapes, and can be used for cutting training of pipes 61 and reinforcing bars 62. These four areas are equipped with clamps to fix the ends of the pipes and reinforcing bars, and are arranged along the longitudinal and transverse directions.
[0028] One side of the second side is provided with a roller shutter door 71 connected to the interior of the training frame, and the other side of the second side is provided with at least one mounting groove 72 for embedding materials. The roller shutter door 71 is used for training on breaking down the roller shutter door 71, and the mounting groove 72 can be used to embed materials of different materials, such as wood, steel, glass, cement, quartz, and marble. These materials can be fixed in the mounting groove by clamping or plugging, and can be used for material clamping training. In this embodiment, there are two mounting grooves 72 on the second side, which are arranged longitudinally.
[0029] One side of the third side is provided with a security door 81 that is connected to the inside of the training frame, which can be used for security door breaking training. The other side of the third side is pivotally connected to a number of small doors 82 that are connected to the inside of the training frame and are equipped with different types of locks, which can be used for breaking training of different types of door locks.
[0030] The fourth side is provided with multiple storage platforms 9. The storage platforms 9 can be used to place rescue tools, and can be used for testing rescue tools, such as conducting water suction tests on outboard motors and hand pumps. They can also be used to set up training equipment such as light bulbs, ping-pong balls, and glass bottles, and can be used for training hand stability (light bulb cutting, ping-pong ball clamping, and bottle opening training).
[0031] The bottom surface is provided with support feet that cooperate with the ground for support. The support feet provide support so that there is a gap between the bottom surface and the ground for the lifting air cushion a to be inserted, which can be used for support training of building components. The lower part of the first side surface is provided with an opening connected to the gap, so that the support training can be carried out at the first side surface.
[0032] This embodiment of the integrated training frame measures 3 meters long, 2.5 meters wide, and 2.8 meters high, weighing approximately 1.5 tons. It integrates multiple training programs, including demolition, rope work, rescue, and equipment testing, into a single frame. It can simultaneously conduct training on five sides (the top, first, second, third, and fourth sides), significantly improving the efficiency of grassroots training. The training frame simulates real rescue scenarios, aiming to enable commanders and fighters to master various demolition equipment and support devices, employing different tactical methods to conduct rapid and efficient demolition and rescue operations, thereby improving the operational proficiency, teamwork, and rapid response capabilities of rescue personnel. The upper part of the training frame is used for training in underground confined space rescue, safe demolition and rescue, and rope anchor point fabrication; the surrounding area can be used for training in demolishing roller shutters, clamping sheet metal, demolishing security doors, breaking locks, as well as log cutting, rapid rebar cutting, toothed saw cutting, hands-on practice with a double-wheeled counter-rotating cutting machine, and hydraulic demolition tool sets; the bottom can be used for training in supporting building components. In addition, the training rack also integrates testing areas for equipment such as outboard motors and hand pumps, which greatly facilitates the testing of this type of equipment.
[0033] The above embodiments are merely one preferred embodiment of the present utility model. Ordinary changes and substitutions made by those skilled in the art within the scope of the present utility model's technical solution are all included within the protection scope of the present utility model.
Claims
1. A comprehensive training rack, characterized in that: It has a hollow hexahedral structure with a top surface, a bottom surface, and first, second, third, and fourth side surfaces. The first, second, third, and fourth side surfaces and the top surface are equipped with multiple training modules corresponding to different rescue projects. The top surface is surrounded by a fence with an opening. The first side surface is equipped with a hanging ladder, and the upper end of the hanging ladder is located at a position corresponding to the opening.
2. The integrated training rack according to claim 1, characterized in that: The top surface has a channel that connects to the inside of the training rack.
3. The integrated training rack according to claim 1, characterized in that: The top surface is provided with an installation groove for embedding concrete slabs.
4. The integrated training rack according to claim 1, characterized in that: The fence has a hollow structure.
5. The integrated training rack according to claim 1, characterized in that: The hanging ladder is detachably connected to one side of the first side. The first side has an opening on the back of the hanging ladder that communicates with the inside of the training frame. The inside of the training frame has a bracket for supporting the round wood. On the other side of the first side, there are four areas arranged longitudinally and transversely for fixing and installing pipes and steel bars of different diameters and cross-sectional shapes.
6. The integrated training rack according to claim 1, characterized in that: One side of the second side is provided with a roller shutter door that connects to the inside of the training rack, and the other side of the second side is provided with at least one mounting groove for mounting plates.
7. The integrated training rack according to claim 1, characterized in that: One side of the third side is provided with an anti-theft door that connects to the inside of the training rack, and the other side of the third side is provided with multiple small doors that connect to the inside of the training rack and are equipped with different types of locks.
8. The integrated training rack according to claim 1, characterized in that: The fourth side is provided with multiple shelves.
9. The integrated training rack according to claim 1, characterized in that: The bottom surface is provided with support feet that cooperate with the ground for support, and a gap is left between the bottom surface and the ground for the lifting air cushion to be inserted.