Intelligent physical training shelter

By designing a smart physical training cabin, which combines an intelligent training all-in-one machine and a multi-functional storage rack, the problem of existing training equipment being unable to provide customized strategies and lacking flexibility is solved, thus achieving personalized training and efficient use of space.

CN223490327UActive Publication Date: 2025-10-31BEIJING RUIJI INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422536511.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-21
Publication Date
2025-10-31
Estimated Expiration
2034-10-21

AI Technical Summary

Technical Problem

Existing training equipment cannot provide personalized, customized training strategies, and its flexibility is poor, making it impossible to train anytime and anywhere due to venue limitations.

Method used

Design a smart physical training cabin that includes an intelligent training all-in-one machine, Bluetooth headset, retractable training rack, multi-functional storage rack and various training equipment. It can provide personalized strategies according to the trainee's situation and can be flexibly arranged and used in different venues.

Benefits of technology

It enables the provision of personalized training strategies, enhances the flexibility and adaptability of training equipment, allows training to be conducted in various venues and conditions, saves space, and meets the training needs of multiple people.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an intelligent physical training square cabin, and belongs to the technical field of intelligent training equipment. The intelligent physical training shelter solves the problem that in the prior art, an intelligent physical training shelter not limited by a training field is lacked. The square cabin comprises a shell, a training frame, an intelligent training all-in-one machine, a storage rack and an equipment storage rack; split cabin doors are arranged on the front, left and right surfaces of the shell; each pair of split cabin doors comprises a left cabin door and a right cabin door, and an intelligent training all-in-one machine is hung on the inner surface of each cabin door; the storage rack is fixed to the inner side of the rear wall of the shell, the equipment storage rack is fixed to the bottom wall of the shell, and the storage rack and the equipment storage rack are used for storing training equipment; the training frame is of a telescopic structure, and when the telescopic frame stretches out, the telescopic frame can stretch out of the shell and is fixed to the ground so that a trainee can conduct physical training. The intelligent physical training square cabin is realized.
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Description

Technical Field

[0001] This utility model relates to the field of intelligent training equipment technology, and in particular to an intelligent physical training cabin. Background Technology

[0002] The training cabin is a multifunctional temporary structure originally designed for training needs in complex environments, offering high flexibility and practicality. Its unique structural design and material selection enable it to maintain stable performance in various extreme environments, ensuring the smooth conduct of training missions.

[0003] Most existing training equipment is not intelligent and cannot develop training strategies based on individual circumstances, thus failing to provide personalized and customized training approaches. Furthermore, due to space limitations, most existing training equipment is fixed in a location and cannot be moved, thus limiting the flexibility of training anytime and anywhere. Utility Model Content

[0004] Based on the above analysis, this utility model aims to provide a smart physical training cabin to solve the problem that existing training equipment cannot provide customized training strategies and has poor flexibility.

[0005] The objective of this utility model is mainly achieved through the following technical solutions:

[0006] A smart physical training cabin includes a shell, a training frame, an intelligent training machine, a storage rack, and an equipment storage rack. The shell has double doors on its front, left, and right sides. Each pair of doors includes a left door and a right door, and the intelligent training machine is mounted on the inner surface of each door. The storage rack is fixed to the inner side of the rear wall of the shell, and the equipment storage rack is fixed to the bottom wall of the shell. The storage rack and equipment storage rack are used to store training equipment. The training frame is a telescopic structure; when extended, it can extend outside the shell and be fixed to the ground for physical training.

[0007] Furthermore, the shelf includes two vertical support columns; the vertical support columns are fixed to the inner side of the rear wall of the housing; each vertical support column is provided with multiple crossbeams; one end of each crossbeam is provided with a U-shaped fixing piece; the crossbeams are fixed to the vertical support columns by the U-shaped fixing pieces; both the vertical support columns and crossbeams are provided with multiple holes for storing training equipment.

[0008] Furthermore, the training frame includes multiple horizontal slide rails and retractable support legs; the horizontal slide rails are installed on the top wall of the housing and can slide horizontally, and each horizontal slide rail can be extended outside the housing when the door is opened; each horizontal slide rail is provided with a retractable support leg at one end extending from the housing, and the retractable support leg is provided with multiple positioning holes; after being extended, the retractable support leg can be fixed on the ground outside the housing, and the positioning holes on the retractable support leg are used to install training equipment.

[0009] Furthermore, the modular cabin also includes cabin accessories; the cabin accessories include an arm extension frame; the arm extension frame includes two cylindrical beams of equal length, a square connecting rod, and a fixed connecting block; one end of each of the two cylindrical beams is fixed to both ends of the square connecting rod, and the square connecting rod and the cylindrical beams are an integral structure; one end of the fixed connecting block is fixed to the opposite side of the cylindrical beam in the middle of the square connecting rod, and the other end of the fixed connecting block is provided with a fixed bracket, on which two connecting rods of different diameters are provided; during training, the arm extension frame is installed on the positioning holes of the retractable outriggers of the training frame through the connecting rods.

[0010] Furthermore, the cabin accessories also include power push arms, each of which includes a support column, bearing, fixed seat, connecting rod, handle, and U-shaped handle. The fixed seat is located at the upper end of the support column, and the connecting rod is located on the back of the fixed seat. The connecting rod is fixed to the positioning hole of the retractable outrigger of the training frame in a socket connection manner, thereby fixing the support column. The bearing is located at the upper end of the support column and is fixed by the fixed seat, so that the support column can rotate relative to the outrigger of the training frame. The handle is fixed to the outside of the power push arm support column. The U-shaped handle is fixed to the inside of the power push arm support column. A diagonal beam is set in the middle of the U-shaped handle. The support column has multiple holes for adjusting the torque.

[0011] Furthermore, the hull accessories also include a ground gun barrel; the ground gun barrel includes a fixed chassis, bearings, and first to third struts; the fixed chassis is fixed to the inner surface of the lower wall of the hull, the first and second struts are an integral structure, the first and second struts are mounted on the fixed chassis through bearings, and the third strut is vertically arranged on the upper surface of the fixed chassis, the third strut and the fixed chassis are an integral structure.

[0012] Furthermore, the equipment storage rack includes two legs, four pairs of adapter plates, and first to fourth storage layers; the bottom of the legs is fixed to the inner surface of the lower wall of the shell; positioning holes are provided on the legs; each pair of adapter plates is symmetrically fixed to the positioning holes at the same height on the two legs; each storage layer is fixed between each pair of adapter plates; the first storage layer includes multiple crossbeams, both sides of which are fixed to the adapter plates, and the other end of the adapter plates is inserted into the positioning holes of the legs; the multiple crossbeams are arranged in an arc shape for storing spheres; the second storage layer is a rectangular box structure, and a longitudinal dividing screw is provided at regular intervals in the rectangular box; the third storage layer is a narrow rectangular box structure, and multiple notches are provided on the front and rear surfaces of the narrow rectangular box for placing bar-shaped training equipment; the fourth storage layer is set in a rectangular ring shape, and multiple inverted T-shaped supports are vertically arranged on the rectangular ring; the inverted T-shaped supports and the rectangular ring are an integrated structure; each inverted T-shaped support is used to place a barbell plate.

[0013] Furthermore, the mobile training facility also includes a variety of training equipment, including hard kettlebells, super suspension straps, combat ropes, hand grip barbell plates, dumbbells, short straight bars for fitness training, special bars for squatting and pulling, adjustable bench press benches, agility rings, agility ladders, agility rails, diamond-shaped marker discs, resistance bands, mini straps, fascia balls, and upright poles.

[0014] Furthermore, the training rack is made of high-strength steel.

[0015] Furthermore, the modular unit includes Bluetooth headsets, which connect to an integrated smart training machine to guide trainees in their training.

[0016] 1. The intelligent physical training cabin provided by this utility model includes an intelligent training all-in-one machine and a Bluetooth headset. The intelligent training all-in-one machine can provide personalized and customized training strategies according to the actual situation of the trainee. The trainee can connect to the intelligent training all-in-one machine by wearing the Bluetooth headset and train under the guidance of the intelligent training all-in-one machine.

[0017] 2. The intelligent physical training cabin provided by this utility model has a strong storage capacity, including shelves and equipment storage racks. The shelves are fixed to the inner side of the rear wall of the shell. Each vertical support of the shelves is equipped with multiple crossbeams. Both the vertical supports and crossbeams have multiple holes for storing training equipment. The equipment storage rack has four storage layers, each designed with a different structure, including partitions, inverted T-shaped brackets, and notches to accommodate various equipment. The bottom of the storage rack legs is fixed to the inner surface of the lower wall of the shell, making the equipment storage rack more stable during transportation. It is a training cabin that is easy to assemble, disassemble, and move.

[0018] 3. The intelligent physical training cabin provided by this utility model adopts a three-way door design (front, left, and right), meaning that doors for personnel or equipment are provided in three different directions. Under various site and deployment conditions, the cabin can provide flexible access channels and adapt to different spatial layout requirements. It can also be used flexibly in confined spaces, reducing restrictions on the cabin's placement direction.

[0019] 4. The intelligent physical training cabin provided by this utility model adopts a stretchable training frame. When each cabin door is opened, the horizontal slide rails of the stretchable training frame can be extended outside the shell. Each horizontal slide rail is equipped with a retractable support leg at one end extending from the shell. After being extended, the retractable support leg can be fixed to the ground outside the shell and is used to install training equipment. The training frame can be used by multiple people for training, greatly saving training space.

[0020] 5. The intelligent physical training cabin provided by this utility model is equipped with a variety of cabin accessories, including arm extension racks, ground cannons, and power push arms; it also has a variety of training equipment, including hard kettlebells, super suspension belts, combat ropes, hand grip barbell plates, dumbbells, fitness training short straight bars, fitness squat and pull bars, adjustable bench press benches, agility rings, agility ladders, agility rails, diamond-shaped marker discs, elastic bands, mini bands, fascia balls, and upright poles; which can meet the different training needs of trainees.

[0021] 6. The smart physical training cabin shell provided by this utility model is equipped with a ceiling light on the top wall. The ceiling light is powered by a storage battery and can provide lighting for trainees in dark environments.

[0022] In this invention, the above-described technical solutions can be combined with each other to achieve more preferred combinations. Other features and advantages of this invention will be set forth in the following description, and some advantages will become apparent from the description or be learned by practicing this invention. The objectives and other advantages of this invention can be realized and obtained from the details specifically pointed out in the text and accompanying drawings. Attached Figure Description

[0023] The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of the invention. Throughout the drawings, the same reference numerals denote the same parts.

[0024] Figure 1 A schematic diagram of the structure of a smart physical training cabin after the cabin door is opened;

[0025] Figure 2 A schematic diagram of a storage rack structure in the attachments of a smart physical training cabin;

[0026] Figure 3 A schematic diagram of the ground gun barrel structure in the attachment of a smart physical training container;

[0027] Figure 4 A schematic diagram of the force pusher structure in the attachments of a smart physical training container;

[0028] Figure 5 A schematic diagram of the arm extension frame structure in the attachments of a smart physical training cabin.

[0029] Figure 6 A schematic diagram of the front view of a storage rack for equipment in a smart physical training cabin.

[0030] Figure 7 This is a schematic diagram of a horizontal fixed support structure for an integrated physical training device.

[0031] Figure label:

[0032] 1-Hatch door;

[0033] 2-Intelligent training all-in-one machine;

[0034] 3- Retractable outriggers;

[0035] 4- Horizontal slide rail;

[0036] 6-Equipment storage rack, first storage layer;

[0037] 7-Second storage layer of equipment storage rack;

[0038] 8-Equipment storage rack, third storage layer;

[0039] 9-Fourth storage layer of equipment storage rack;

[0040] 10-Fixed disc;

[0041] 14 - Upper support vertical beam;

[0042] 15 - Upper support crossbeam;

[0043] 16-Short column;

[0044] 17 - Lower layer support beam. Detailed Implementation

[0045] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings, which constitute a part of this application and are used together with the embodiments of the present invention to illustrate the principles of the present invention, but are not intended to limit the scope of the present invention.

[0046] A specific embodiment of this utility model discloses a smart physical training cabin, such as... Figure 1 As shown. The modular cabin includes a shell, a training frame, an intelligent training all-in-one machine 2, a storage rack, and an equipment storage rack; the shell has double doors 1 on the front, left, and right sides; each pair of double doors 1 includes a left door 1 and a right door 1, and the intelligent training all-in-one machine 2 is hung on the inner surface of each door 1; the storage rack is fixed to the inner side of the rear wall of the shell, and the equipment storage rack is fixed to the bottom wall of the shell, and the storage rack and equipment storage rack are used to store training equipment; the training frame is a telescopic structure, and when the telescopic frame is extended, it can extend outside the shell and be fixed to the ground for trainees to conduct physical training.

[0047] Specifically, to facilitate the provision of personalized training strategies, the training device has an intelligent training all-in-one machine 2 mounted inside the cabin door 1. The all-in-one machine can formulate customized training strategies according to the actual situation of the trainee. The all-in-one machine can be a tablet computer. The trainee can obtain the training strategy from the intelligent training all-in-one machine 2 by inputting parameters such as height and weight.

[0048] The mobile training unit includes a Bluetooth headset, which connects to the intelligent training all-in-one machine 2 to guide trainees in their training.

[0049] Specifically, open all four hatches 1 and secure them to the ground. Fully extend the training racks in each direction and then secure the tops to the ground. Trainees wearing Bluetooth headsets can connect to the intelligent training all-in-one machine 2 and train under its guidance.

[0050] A schematic diagram of the shelving structure is shown below. Figure 2 As shown.

[0051] The shelf includes two vertical supports; the vertical supports are fixed to the inner side of the rear wall of the housing; each vertical support is provided with multiple crossbeams; one end of each crossbeam is provided with a U-shaped fixing piece; the crossbeams are fixed to the vertical supports by the U-shaped fixing pieces; both the vertical supports and the crossbeams are provided with multiple holes for storing training equipment.

[0052] Specifically, the storage rack is fixed to the back of the cabin (the side without doors) for storing cabin accessories. This design not only effectively prevents accessories from shaking or falling during transportation, but also greatly saves interior space and improves overall storage efficiency.

[0053] The front view of the equipment storage rack is shown in the structural diagram. Figure 6 As shown.

[0054] The equipment storage rack includes two legs, four pairs of adapter plates, and first to fourth storage layers. The bottom of the legs is fixed to the inner surface of the lower wall of the shell. Positioning holes are provided on the legs. Each pair of adapter plates is symmetrically fixed to the positioning holes at the same height on the two legs. Each storage layer is fixed between each pair of adapter plates. The first storage layer 6 includes multiple crossbeams, both sides of which are fixed to the adapter plates. The other end of the adapter plates is inserted into the positioning holes on the legs. The multiple crossbeams are arranged in an arc shape for storing spheres. The second storage layer 7 is a rectangular box structure, with a longitudinal dividing screw at regular intervals. The third storage layer 8 is a narrow rectangular box structure, with multiple notches on the front and back surfaces for placing bar-shaped training equipment. The fourth storage layer 9 is a rectangular ring, with multiple inverted T-shaped supports vertically arranged on the ring. The inverted T-shaped supports and the rectangular ring are an integrated structure. Each inverted T-shaped support is used to place a barbell plate.

[0055] Specifically, the equipment storage rack is fixed inside the cabin and adopts a multi-functional storage design, which can secure various training equipment from all angles, such as medicine balls, kettlebells, weight plates, barbell bars, dumbbells, etc., effectively preventing the equipment from sliding or falling during transportation. Its stable structure and reasonable layout not only save space but also ensure the safe storage and convenient access of equipment, providing an efficient equipment management solution for training scenarios.

[0056] The training frame includes multiple horizontal slide rails 4 and retractable support legs 3. The horizontal slide rails 4 are installed on the top wall of the shell and can slide horizontally. When the door 1 is opened, each horizontal slide rail 4 can be extended outside the shell. Each horizontal slide rail 4 is provided with a retractable support leg 3 at one end extending out of the shell. The retractable support leg 3 is provided with multiple positioning holes. After being extended, the retractable support leg 3 can be fixed on the ground outside the shell. The positioning holes on the retractable support leg 3 are used to install training equipment.

[0057] Specifically, the training frame also includes a horizontal fixed support, which includes an upper support and a lower support. The upper support includes three vertical beams 14 perpendicular to the rear wall of the shell and two horizontal beams 15 parallel to the rear wall of the shell, located on the same plane. The two horizontal beams 15 are perpendicularly intersecting the three vertical beams 14. Three short columns 16 of equal length are arranged below each horizontal beam 15 from left to right. The two horizontal beams 17 of the lower support are connected below the short columns 16. The upper support is fixed to the inner surface of the upper wall of the shell. The horizontal slide rail 4 is installed on the vertical beams 14 of the upper support and the horizontal beams 17 of the lower support.

[0058] A schematic diagram of the horizontal fixed support structure of the training rack is shown below. Figure 7 As shown.

[0059] The upper support of the horizontal fixed bracket has a fixed rail installed at both the front and rear ends of the lower surface of each vertical beam 14; the lower support of the horizontal fixed bracket has a fixed rail installed at both the left and right ends of the lower surface of each horizontal beam 17; a limiting block is set at the midpoint of each fixed rail; the horizontal slide rail 4 is installed on the fixed rail and can slide along the fixed rail; the limiting block is used to limit the extension limit position of the slide rail.

[0060] The training rack has multiple horizontal slide rails arranged in two layers: the upper layer includes three longitudinal slide rails and the lower layer includes four transverse slide rails. Each slide rail includes a slide rod and a pulley. The pulley is fixed on the upper surface of the slide rod, and the slide rod slides within the fixed track via the pulley.

[0061] The retractable support leg 3 of the training frame is provided with multiple positioning holes; the end of the retractable support leg 3 is provided with a fixing disc 10 for fixing to the ground or the inner surface of the lower wall of the shell.

[0062] The training rack is made of high-strength steel.

[0063] Specifically, it adopts retractable support legs 3 and a sliding rail structure for easy installation and disassembly, maximizing space utilization and storage. The rail frame is made of high-strength steel to ensure it maintains good strength and durability even under heavy loads or frequent use. The linear horizontal sliding rail 4 provides support for both the inside and outside of the cabin when deployed. A retractable support leg 3 is located at one end extending from the shell, with positioning holes for suspending equipment, increasing the device's flexibility. This ensures the stability of the training frame during deployment and retraction, preventing wobbling or jamming, and allowing the training frame to slide smoothly on the rail.

[0064] A schematic diagram of the arm extension frame structure is shown below. Figure 5 As shown.

[0065] The modular cabin also includes cabin accessories; the cabin accessories include an arm extension frame; the arm extension frame includes two cylindrical beams of equal length, a square connecting rod, and a fixed connecting block; one end of each of the two cylindrical beams is fixed to both ends of the square connecting rod, and the square connecting rod and the cylindrical beams are an integrated structure; one end of the fixed connecting block is fixed to the opposite side of the cylindrical beam in the middle of the square connecting rod, and the other end of the fixed connecting block is provided with a fixed bracket, on which two connecting rods of different diameters are provided; during training, the arm extension frame is installed on the positioning holes of the retractable outrigger 3 of the training frame through the connecting rod.

[0066] Specifically, the dip frame is made of high-strength steel. During parallel bar dip training, the dip frame is installed on the positioning holes of the retractable support legs 3 of the training frame using a socket connection method. The height of the dip frame can be adjusted according to the user's height.

[0067] A schematic diagram of the force pusher structure is shown below. Figure 4 As shown.

[0068] The cabin accessories also include power push arms, each of which includes a support column, bearing, fixed seat, connecting rod, handle, and U-shaped handle. The fixed seat is located at the upper end of the support column, and the connecting rod is located on the back of the fixed seat. The connecting rod is fixed to the positioning hole of the retractable support leg 3 of the training frame in a socket connection manner, thereby fixing the support column. The bearing is located at the upper end of the support column and is fixed by the fixed seat, so that the support column can rotate relative to the support leg of the training frame. The handle is fixed to the outside of the power push arm support column. The U-shaped handle is fixed to the inside of the power push arm support column. A diagonal beam is set in the middle of the U-shaped handle. The support column has multiple holes for adjusting the torque.

[0069] A schematic diagram of the ground gun barrel structure is shown below. Figure 3 As shown.

[0070] The hull accessories also include a ground gun barrel; the ground gun barrel includes a fixed chassis, bearings, and first to third struts; the fixed chassis is fixed to the inner surface of the lower wall of the hull, the first and second struts are an integral structure, the first and second struts are mounted on the fixed chassis through bearings, and the third strut is vertically set on the upper surface of the fixed chassis, the third strut and the fixed chassis are an integral structure.

[0071] Specifically, the cannon barrel is made of high-strength steel. During training, it can be placed in any horizontal location, unaffected by the environment.

[0072] The makeshift hospital also includes a variety of training equipment, including hard kettlebells, super suspension straps, combat ropes, hand grip weight plates, dumbbells, short straight bars for fitness training, special bars for squatting and pulling, adjustable bench press benches, agility rings, agility ladders, agility rails, diamond-shaped marker discs, resistance bands, mini straps, fascia balls, and upright poles.

[0073] Specifically, each piece of equipment comes in multiple specifications, which can be combined arbitrarily during training to ensure flexibility in equipment use.

[0074] A ceiling light is installed on the top wall of the housing, and the ceiling light is powered by a storage battery.

[0075] Specifically, the ceiling light is powered by a battery and is not limited by the lack of mains power in the venue, providing a lighting environment for trainees.

[0076] Compared with existing technologies, the intelligent physical training cabin provided in this embodiment includes an intelligent training all-in-one machine 2 and a Bluetooth headset. The intelligent training all-in-one machine 2 can provide personalized and customized training strategies according to the actual situation of the trainee. The trainee can connect to the intelligent training all-in-one machine 2 by wearing the Bluetooth headset and train under the guidance of the intelligent training all-in-one machine 2. This intelligent physical training cabin has strong storage capacity, including shelves and equipment storage racks; the shelves are fixed to the inner side of the rear wall of the shell; each vertical support of the shelves is provided with multiple crossbeams; both the vertical supports and crossbeams are provided with multiple holes for storing training equipment. The equipment storage rack has four storage layers, each layer is designed with a different structure, including partitions, inverted T-shaped brackets, and notches to store various different equipment; the bottom of the storage rack legs is fixed to the inner surface of the lower wall of the shell, making the equipment storage rack more stable during transportation. It is a training cabin that is easy to assemble, disassemble, and move. The intelligent physical training cabin provided in this embodiment adopts a three-door design (front, left, and right), meaning that doors 1 are provided in three different directions for personnel or equipment to enter and exit. Under various site and deployment conditions, the cabin can provide flexible access and adapt to different spatial layout requirements. It can also be used flexibly in confined spaces, reducing restrictions on the placement direction of the cabin. The intelligent physical training cabin provided in this embodiment uses a stretchable training frame. When each door 1 is opened, the horizontal slide rails 4 of the stretchable training frame can be extended beyond the shell. Each horizontal slide rail 4 has a retractable support leg 3 at one end extending from the shell. After being extended, the retractable support leg 3 can be fixed to the ground outside the shell and is used to install training equipment. The training frame can be used by multiple people for training, greatly saving training space. The intelligent physical training cabin provided in this embodiment is equipped with various cabin accessories, including arm extension racks, ground cannons, and power push arms; it also features a variety of training equipment, including hard kettlebells, super suspension straps, combat ropes, barbell plates, dumbbells, short straight bars for fitness training, special bars for squats and pull-ups, adjustable bench press benches, agility rings, agility ladders, agility rails, diamond-shaped marker discs, resistance bands, mini straps, fascia balls, and upright poles; it can meet the different training needs of trainees. The intelligent physical training cabin shell of this embodiment is equipped with a ceiling light on its top wall, which is powered by a rechargeable battery and can provide lighting for trainees in dark environments.

[0077] Those skilled in the art will understand that the training strategy generated by the intelligent training all-in-one machine 2 in the above embodiments can be generated using existing strategy generation software, and this utility model does not involve any software improvements. This utility model only requires connecting the various devices with corresponding functions through the connection relationships given in the embodiments of this utility model, which does not involve any program software improvements. As for the connection methods between the various hardware devices with corresponding functions, they can all be implemented by those skilled in the art using existing technology, and will not be described in detail here.

[0078] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any changes or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in the present utility model should be included within the protection scope of the present utility model.

Claims

1. A smart physical training cabin, characterized in that, The modular training facility includes a shell, a training frame, an integrated intelligent training machine, a storage rack, and an equipment storage rack. The shell has double doors on its front, left, and right sides. Each pair of doors includes a left door and a right door, and an integrated intelligent training machine is mounted on the inner surface of each door. The storage rack is fixed to the inner side of the rear wall of the shell, and the equipment storage rack is fixed to the bottom wall of the shell. The storage rack and equipment storage rack are used to store training equipment. The training frame is a telescopic structure; when extended, it can extend outside the shell and be fixed to the ground for trainees to perform physical training.

2. The physical training cabin according to claim 1, characterized in that, The shelf includes two vertical supports; the vertical supports are fixed to the inner side of the rear wall of the housing; each vertical support is provided with multiple crossbeams; one end of each crossbeam is provided with a U-shaped fixing piece; the crossbeams are fixed to the vertical supports by the U-shaped fixing pieces; both the vertical supports and the crossbeams are provided with multiple holes for storing training equipment.

3. The physical training cabin according to claim 1, characterized in that, The training frame includes multiple horizontal slide rails and retractable support legs. The horizontal slide rails are installed on the top wall of the housing and can slide horizontally. When the hatch is opened, each horizontal slide rail can be extended outside the housing. Each horizontal slide rail has a retractable support leg at one end extending from the housing. The retractable support leg has multiple positioning holes. After being extended, the retractable support leg can be fixed to the ground outside the housing. The positioning holes on the retractable support leg are used to install training equipment.

4. The physical training cabin according to claim 1, characterized in that, The modular cabin also includes cabin accessories; the cabin accessories include an arm extension frame; the arm extension frame includes two cylindrical beams of equal length, a square connecting rod, and a fixed connecting block; one end of each of the two cylindrical beams is fixed to both ends of the square connecting rod, and the square connecting rod and the cylindrical beams are an integrated structure; one end of the fixed connecting block is fixed to the opposite side of the cylindrical beam in the middle of the square connecting rod, and the other end of the fixed connecting block is provided with a fixed bracket, on which two connecting rods of different diameters are provided; during training, the arm extension frame is installed on the positioning holes of the retractable outriggers of the training frame through the connecting rods.

5. The physical training cabin according to claim 4, characterized in that, The cabin accessories also include power push arms, each of which includes a support column, bearing, mounting base, connecting rod, handle, and U-shaped handle. A mounting base is located at the upper end of the support column, and a connecting rod is located on the back of the mounting base. The connecting rod is fixed to the positioning holes of the retractable outriggers of the training frame using a socket-type connection, thereby securing the support column. The bearing is located at the upper end of the support column and fixed by the mounting base, allowing the support column to rotate relative to the outriggers of the training frame. The handle is fixed to the outside of the power push arm support column; the U-shaped handle is fixed to the inside of the power push arm support column; a diagonal beam is located in the middle of the U-shaped handle; and multiple holes are provided on the support column for adjusting the torque.

6. The physical training cabin according to claim 4, characterized in that, The hull accessories also include a ground gun barrel; the ground gun barrel includes a fixed chassis, bearings, and first to third struts; the fixed chassis is fixed to the inner surface of the lower wall of the hull, the first and second struts are an integral structure, the first and second struts are mounted on the fixed chassis through bearings, and the third strut is vertically set on the upper surface of the fixed chassis, the third strut and the fixed chassis are an integral structure.

7. The physical training cabin according to claim 1, characterized in that, The equipment storage rack includes two legs, four pairs of adapter plates, and first to fourth storage layers. The bottom of the legs is fixed to the inner surface of the lower wall of the shell. Positioning holes are provided on the legs. Each pair of adapter plates is symmetrically fixed to the positioning holes at the same height on the two legs. Each storage layer is fixed between each pair of adapter plates. The first storage layer includes multiple crossbeams, both sides of which are fixed to the adapter plates. The other end of the adapter plates is inserted into the positioning holes on the legs. The multiple crossbeams are arranged in an arc shape for storing spheres. The second storage layer is a rectangular box structure, with a longitudinal dividing screw at regular intervals. The third storage layer is a narrow rectangular box structure, with multiple notches on the front and back surfaces for placing bar-shaped training equipment. The fourth storage layer is a rectangular ring, with multiple inverted T-shaped supports vertically arranged on the ring. The inverted T-shaped supports and the rectangular ring are an integrated structure. Each inverted T-shaped support is used to place a barbell plate.

8. The physical training cabin according to claim 1, characterized in that, The makeshift hospital also includes a variety of training equipment, including hard kettlebells, super suspension straps, combat ropes, hand grip weight plates, dumbbells, short straight bars for fitness training, special bars for squatting and pulling, adjustable bench press benches, agility rings, agility ladders, agility rails, diamond-shaped marker discs, resistance bands, mini straps, fascia balls, and upright poles.

9. The physical training cabin according to claim 3, characterized in that, The training rack is made of high-strength steel.

10. The physical training cabin according to claim 1, characterized in that, The mobile training unit includes Bluetooth headsets, which connect to an integrated smart training machine to guide trainees in their training.