Running auxiliary training sports equipment for physical sign monitoring and use method thereof
By designing running assisted training equipment with drag brakes and movement monitoring mechanisms, the problems of equipment impact and physical sign monitoring during weight-bearing running are solved, and safe, stable and real-time display of training parameters is achieved.
Patent Information
- Application Number
- CN202510756189.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-08
- Publication Date
- 2025-07-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
During the load-bearing process of existing sports equipment during running training, due to the rapid start and stop movement of running, it is easy to impact the equipment on the user, affecting the safety of training, and is inconvenient to monitor the intensity of training and the physical signs of personnel.
A sports equipment for assisted training for sign monitoring is designed, including a drag brake mechanism and a movement monitoring mechanism. It uses drag frame, guide rod, ball head rod, brake rack, power generation unit, pressure sensor and electrocardiogram to realize automatic braking, weight-bearing adjustment, sign monitoring and lighting warning functions.
The automatic brake mechanism reduces the impact of the equipment on the user, realizes balanced adjustment of the load and real-time sign monitoring, enhances the training effect, and provides safety warnings in dim light environments.
Smart Images

Figure CN120268020A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of sports equipment, and specifically relates to a sports equipment for running assisted training with physical sign monitoring and its using method. Background Technique
[0002] When running with weights, the body needs to overcome the extra weight, which stimulates muscle fibers, promotes muscle growth and strength improvement. Persisting in running with weights for a long time can significantly enhance the strength of the legs, hips and the whole body muscles. Running with weights increases the intensity of exercise, making the cardio-pulmonary system work harder to meet the body's demand for oxygen and energy. Persisting in it for a long time can enhance cardio-pulmonary endurance, speed up the breathing function, and improve the cardio-pulmonary function. Running with weights requires the body to move while maintaining balance, which helps to improve the body's coordination and stability.
[0003] During the weight-bearing process of existing sports equipment during running training, due to the too-fast starting and stopping actions of running, it is easy to cause impact of the equipment on the user, affecting training safety, and it is not convenient to monitor the training intensity and the physical signs of the personnel; Therefore, it does not meet the existing needs, and for this reason, we propose a sports equipment for running assisted training with physical sign monitoring and its using method. Summary of the Invention
[0004] The purpose of the present invention is to provide a sports equipment for running assisted training with physical sign monitoring and its using method to solve the problems mentioned in the above background technique that during the weight-bearing process of existing sports equipment during running training, due to the too-fast starting and stopping actions of running, it is easy to cause impact of the equipment on the user, affecting training safety, and it is not convenient to monitor the training intensity and the physical signs of the personnel.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A sports equipment for running assisted training with physical sign monitoring, including a dragging and braking mechanism and a moving monitoring mechanism. The moving monitoring mechanism is located in the middle of the dragging and braking mechanism. The dragging and braking mechanism includes a dragging frame. A guiding rod is installed at the front end of the dragging frame. A first supporting spring is arranged outside the guiding rod. A guiding sleeve is installed at the front end of the first supporting spring. A ball head rod is movably installed inside the front end of the guiding rod. A traction binding rope is fixedly installed at the front end of the ball head rod. Two transmission linkages are movably installed at the rear end of the dragging frame. A braking rack is fixedly installed at the rear end of the transmission linkage. The moving monitoring mechanism includes a limiting rod. A third supporting spring is arranged outside the bottom end of the limiting rod. A wheel seat is installed at the bottom end of the third supporting spring. A connecting shaft is rotatably connected inside the wheel seat. A contact roller is installed in the middle of the connecting shaft. An elastic scraper is fixedly installed on the rear end face of the wheel seat. Power generation units are installed on both sides of the wheel seat.
[0006] Preferably, the two power generation units are symmetrically installed relative to the wheel seat. The power generation unit includes a mounting cover, and a plurality of coil windings are fixedly installed inside the mounting cover. A magnet is rotatably connected inside the coil windings.
[0007] Preferably, a mobile mounting mechanism is installed outside the drag braking mechanism. The mobile mounting mechanism includes a counterweight box. A plurality of lateral light strips are fixedly provided on the outer surface of the counterweight box. A bottom light strip is fixedly provided on the lower end surface of the counterweight box. Rotating disks are rotatably connected to both end corners at the front end of the counterweight box. A universal wheel is rotatably connected inside the rotating disk. Support pulleys are rotatably connected to both end corners at the rear end of the counterweight box. Two rechargeable batteries are installed inside the counterweight box.
[0008] Preferably, a counterweight increasing and decreasing mechanism is installed at the upper end of the mobile monitoring mechanism. The counterweight increasing and decreasing mechanism includes a guide post. A positioning insert is slidably connected to the upper end surface of the guide post. A plurality of counterweight blocks are installed on the front end surface of the positioning insert. Support partitions are installed at both ends of the positioning insert. A second support spring is provided outside the support partition. A positioning cover plate is slidably connected to the upper end surface of the positioning insert. A display is fixedly installed at the rear end of the upper end surface of the positioning cover plate. The display is wirelessly connected to an electrocardiogram patch via Bluetooth.
[0009] Preferably, the bottom light strip, the display, and the plurality of lateral light strips are electrically connected to the two rechargeable batteries. The two universal wheels and the support pulleys are symmetrically installed relative to the counterweight box. Pressure sensors are built in between the two rotating disks and the counterweight box. The pressure sensors are electrically connected to the display.
[0010] Preferably, the guide sleeve is threadedly connected to the front end of the counterweight box. The rear end of the guide rod passes through the guide sleeve and the first support spring and is fixedly connected to the front end of the drag frame. The guide sleeve is connected to the guide rod through the first support spring. The rear end of the ball head rod swings in any direction inside the guide rod. Waist-shaped holes are provided at both end corners of the rear end of the drag frame. The front end of the transmission link is inserted into the inside of the waist-shaped hole and reciprocally slides along the axis of the waist-shaped hole. The counterweight box is rotatably connected to the middle parts of the two transmission links. The two transmission links and the brake rack are symmetrically installed relative to the drag frame. One side of the support pulley is in close contact with the brake rack.
[0011] Preferably, the bottom ends of the plurality of counterweight blocks penetrate through the positioning cover plate and are in close contact with the upper end surface of the guide post. A slot is provided at the rear end of the counterweight block. The front end of the positioning insert is inserted into the inside of the slot and is snap-fitted and installed with the plurality of counterweight blocks. The front ends of the two support partitions penetrate through the guide post and the second support spring and are fixedly connected to both ends of the positioning insert. Both ends of the positioning insert are connected to the guide post through the second support spring.
[0012] Preferably, a wheel speed sensor is provided on the inner side of the upper end of the wheel seat, and the wheel speed sensor and multiple coil windings are electrically connected to the rechargeable battery and the display, the mounting cover, coil winding, magnet and connecting shaft are coaxial, both ends of the connecting shaft pass through the contact roller, the wheel seat and multiple magnets and are rotatably connected to the mounting cover, the connecting shaft is fixedly connected to the contact roller and multiple magnets, and the wheel seat and two mounting covers are slidably connected to the counterweight box.
[0013] Preferably, the wheel seat and the contact roller are rotatably connected via a connecting shaft, a plurality of annular grooves are provided on the surface of the contact roller, the bottom end of the elastic scraper is inserted into the inner side of the annular groove and is in close contact with the surface of the contact roller, the rotation direction of the contact roller is counterclockwise, the bottom end of the limit rod passes through the guide column and the third support spring and is fixedly connected to the wheel seat, the limit rod is slidably connected to the guide column, and the wheel seat and the guide column are connected via the third support spring.
[0014] A method for using a sports equipment for running auxiliary training for vital sign monitoring comprises the following steps: S1: The two ends of the traction rope are fixed to the user's waist and the ball head rod respectively, and then the electrocardiogram patch is adhered to the user's chest and wirelessly connected to the display via Bluetooth. The number of counterweight blocks is adjusted according to the weight required for running training. Specifically, a card slot is provided at the rear end of the counterweight block, and the front end of the positioning strip is inserted into the inner side of the card slot under the elastic support of two second support springs and is clamped and installed with the counterweight block. The positioning strip can be separated from the plurality of counterweight blocks by moving the middle part of the positioning strip backward, thereby facilitating the increase or decrease of the number of counterweight blocks; S2: At the same time, pressure sensors are built in between the counterweight box and the two rotating disks. The pressure of the two universal wheels can be intuitively obtained by displaying the values of the two pressure sensors on the display, so as to facilitate balancing the load of the counterweight box. When the user drags the mobile installation mechanism forward by dragging the brake mechanism during running, the counterweight blocks play a role of weight bearing, thereby enhancing the running training effect. The rear end of the ball head rod swings in any direction relative to the guide rod, and the two universal wheels rotate and swing relative to the counterweight box, so as to facilitate the overall movement to meet the changes in running direction. At the same time, multiple counterweight blocks are located at the front end of the positioning cover plate to increase the weight of the front end of the mobile installation mechanism, so as to prevent the counterweight box from tilting and causing the universal wheel to separate from the ground. When the traction rope drags the ball head rod and the guide rod forward, the guide rod can buffer the user's running start under the elastic support of the first support spring, thereby reducing the impact of the equipment on the user. S3: Meanwhile, the guide rod drives the two transmission connecting rods to swing relative to the counterweight box synchronously through the dragging frame. Then, the transmission connecting rods drive the brake rack to separate from the support pulley, facilitating the stable movement of the equipment by the two universal wheels and the support pulley. When running stops, the guide rod drives the dragging frame, the transmission connecting rods, and the brake rack to automatically reset under the elastic support of the first support spring. Then, the brake rack comes into contact with the support pulley and performs a friction braking operation on the support pulley, achieving the automatic braking effect of the automatic equipment and preventing the equipment from continuously moving and causing collisions to the user. S4: The wheel seat can drive the contact roller and the two power generation units to move downward synchronously under the elastic support of the third support spring and keep the contact roller in continuous contact with the ground. Then, during the movement of the equipment, the contact roller can always rotate counterclockwise and drive multiple magnets to rotate inside the coil winding through the connecting shaft. Then, the charging battery can be automatically charged through the magnets and the coil winding, extending the service life of the charging battery. The elastic scraper can automatically scrape the contact roller to prevent soil from adhering to the surface of the contact roller. S5: A wheel speed sensor is provided inside the upper end of the wheel seat, enabling the display to monitor the rotation speed of the contact roller through the wheel speed sensor. At the same time, the heart rate of the user is monitored through the electrocardiogram patch. Then, it is convenient to display the running training parameters of the user in real time. The change of colors by the bottom light strip and multiple side light strips can dynamically display the training intensity and the heart rate of the user. At the same time, it is convenient to give a light warning in a dim environment to prevent others from accidentally touching.
[0015] Compared with the prior art, the beneficial effects of the present invention are: 1. In the present invention, the electrocardiogram patch is adhered to the user's chest and wirelessly connected to the display through Bluetooth. The number of counterweight blocks is adjusted according to the required negative weight for running training. The pressure on the two universal wheels can be intuitively obtained by displaying the values of the two pressure sensors on the display. Then, it is convenient to balance the load of the counterweight box. The rear end of the ball head rod can swing in any direction relative to the guide rod. At the same time, the two universal wheels rotate and swing relative to the counterweight box. Then, it is convenient to meet the change of the running direction during the movement of the whole. At the same time, multiple counterweight blocks are located at the front end of the positioning cover plate, which can increase the weight of the front end of the mobile mounting mechanism and prevent the counterweight box from tilting up and causing the universal wheels to separate from the ground. 2. The guiding rod of the present invention can buffer the start of the user's running under the elastic support of the first support spring, reducing the impact of the equipment on the user. At the same time, the guiding rod drives the two transmission connecting rods to swing relative to the counterweight box through the dragging frame, and then the transmission connecting rod drives the brake rack to separate from the supporting pulley, facilitating the stable movement of the equipment by the two universal wheels and the supporting pulley. When running stops, the guiding rod drives the dragging frame, the transmission connecting rod and the brake rack to automatically reset under the elastic support of the first support spring, and then the brake rack fits into contact with the supporting pulley and performs the friction braking operation on the supporting pulley, achieving the automatic braking effect of the equipment and avoiding the collision of the equipment with the user caused by continuous movement. 3. The wheel seat of the present invention can drive the contact roller and the two power generation units to move downward synchronously under the elastic support of the third support spring and keep the contact roller in continuous contact with the ground. Then, during the movement of the equipment, the contact roller can always rotate counterclockwise. The charging battery can be automatically charged through the magnet and the coil winding. The display can monitor the rotation speed of the contact roller through the wheel speed sensor, and at the same time monitor the user's heart rate through the electrocardiogram patch. Then, it is convenient to display the running training parameters of the user in real time. The dynamic display of the training intensity and the user's heart rate can be achieved through the color change of the bottom light strip and multiple side light strips. At the same time, it is convenient to perform light warning in a dim environment to avoid accidental touch by others. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 is the schematic structural diagram of the whole of the present invention; Figure 2 is the bottom view of the whole of the present invention; Figure 3 is the exploded structural diagram of the whole of the present invention; Figure 4 is the sectional structural diagram of the whole of the present invention; Figure 5 is the sectional structural diagram of the counterweight increasing and decreasing mechanism of the present invention; Figure 6 is the exploded structural diagram of the counterweight increasing and decreasing mechanism of the present invention; Figure 7 is the sectional structural diagram of the mobile installation mechanism of the present invention; Figure 8 is the sectional structural diagram of the mobile monitoring mechanism of the present invention; Figure 9 is the exploded structural diagram of the mobile monitoring mechanism of the present invention.
[0017] In the figure: 1. Mobile installation mechanism; 101. Counterweight box; 102. Lateral light strip; 103. Bottom light strip; 104. Universal wheel; 105. Rotary disk; 106. Support pulley; 107. Rechargeable battery; 2. Drag braking mechanism; 201. Drag frame; 202. Guide rod; 203. First support spring; 204. Guide sleeve; 205. Ball head rod; 206. Towing tie rope; 207. Transmission connecting rod; 208. Brake rack; 3. Counterweight increasing and decreasing mechanism; 301. Positioning cover plate; 302. Display; 303. Counterweight block; 304. Positioning insert; 305. Second support spring; 306. Guide post; 307. Support partition; 4. Mobile monitoring mechanism; 401. Contact roller; 402. Limit rod; 403. Power generation unit; 404. Third support spring; 405. Wheel seat; 406. Connecting shaft; 407. Elastic scraper; 408. Installation cover; 409. Coil winding; 410. Magnet. Detailed implementation manners
[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments.
[0019] Please refer to Figures 1 to 4 , an embodiment provided by the present invention: A sports equipment for physical sign monitoring and running assistance training, including a drag braking mechanism 2 and a mobile monitoring mechanism 4. A mobile installation mechanism 1 is installed outside the drag braking mechanism 2. The mobile installation mechanism 1 includes a counterweight box 101. A plurality of lateral light strips 102 are fixedly arranged on the outer surface of the counterweight box 101. A bottom light strip 103 is fixedly arranged on the lower end surface of the counterweight box 101. Rotary disks 105 are rotatably connected to both end corners at the front end of the counterweight box 101. Universal wheels 104 are rotatably connected to the inner sides of the rotary disks 105. Support pulleys 106 are rotatably connected to both end corners at the rear end of the counterweight box 101. The two universal wheels 104 and the support pulleys 106 are symmetrically installed relative to the counterweight box 101. Two rechargeable batteries 107 are installed inside the counterweight box 101. By rotating and swinging the two universal wheels 104 relative to the counterweight box 101, it is convenient to meet the change of the running direction during the overall movement.
[0020] Please refer to Figure 3 , Figure 4 and Figure 7, the dragging brake mechanism 2 includes a dragging frame 201. A guide rod 202 is installed at the front end of the dragging frame 201. A first support spring 203 is provided outside the guide rod 202. A guide sleeve 204 is installed at the front end of the first support spring 203. The guide sleeve 204 is threadedly connected to the front end of the counterweight box 101. The rear end of the guide rod 202 penetrates through the guide sleeve 204 and the first support spring 203 and is fixedly connected to the front end of the dragging frame 201. The guide sleeve 204 is connected to the guide rod 202 through the first support spring 203. A ball head rod 205 is movably installed inside the front end of the guide rod 202. The rear end of the ball head rod 205 swings in any direction inside the guide rod 202. A traction binding rope 206 is fixedly installed at the front end of the ball head rod 205. The guide rod 202 can buffer the user's running start under the elastic support of the first support spring 203, reducing the impact of the equipment on the user; Two transmission linkages 207 are movably installed at the rear end of the dragging frame 201. Waist-shaped holes are provided at both end corners of the rear end of the dragging frame 201. The front ends of the transmission linkages 207 are inserted into the inside of the waist-shaped holes and slide reciprocally along the axis of the waist-shaped holes. The counterweight box 101 is rotatably connected to the middle parts of the two transmission linkages 207. A brake rack 208 is fixedly installed at the rear end of the transmission linkage 207. The two transmission linkages 207 and the brake rack 208 are symmetrically installed relative to the dragging frame 201. One side of the support pulley 106 is in close contact with the brake rack 208. The brake rack 208 is in close contact with the support pulley 106 and performs a friction braking operation on the support pulley 106 to achieve the automatic braking effect of the automatic equipment and avoid the collision of the equipment with the user caused by continuous movement.
[0021] Please refer to Figures 3 to 6The mobile monitoring mechanism 4 is located in the middle of the dragging brake mechanism 2. The upper end of the mobile monitoring mechanism 4 is equipped with a counterweight increasing and decreasing mechanism 3. The counterweight increasing and decreasing mechanism 3 includes a guide column 306. The upper end surface of the guide column 306 is slidably connected with a positioning strip 304. The front end surface of the positioning strip 304 is equipped with a plurality of counterweight blocks 303. The rear end of the counterweight block 303 is provided with a card slot. The front end of the positioning strip 304 is plugged into the inner side of the card slot and is card-connected and installed with the plurality of counterweight blocks 303. Support baffles 307 are installed at both ends of the positioning strip 304. The outer side of the support baffle 307 is provided with a second support spring 305. The front ends of the two support baffles 307 penetrate the guide column 306. The column 306 and the second supporting spring 305 are fixedly connected to the two ends of the positioning insert 304, and the two ends of the positioning insert 304 are connected to the guide column 306 through the second supporting spring 305. The upper end surface of the positioning insert 304 is slidably connected with the positioning cover plate 301, and the bottom ends of the plurality of counterweights 303 penetrate the positioning cover plate 301 and are in close contact with the upper end surface of the guide column 306. The rear end of the upper end surface of the positioning cover plate 301 is fixedly installed with a display 302. The positioning insert 304 can be separated from the plurality of counterweights 303 by moving the middle part of the positioning insert 304 backward, so as to facilitate the increase or decrease of the number of counterweights 303. The display 302 is wirelessly connected to the electrocardiogram sticker via Bluetooth, the bottom light strip 103, the display 302 and the multiple lateral light strips 102 are electrically connected to the two rechargeable batteries 107, and pressure sensors are built-in between the two rotating disks 105 and the counterweight box 101. The pressure sensors are electrically connected to the display 302. The display 302 displays the values of the two pressure sensors to intuitively obtain the pressure of the two universal wheels 104, thereby facilitating the balancing of the load on the counterweight box 101; A wheel speed sensor is provided on the inner side of the upper end of the wheel seat 405. The wheel speed sensor and multiple coil windings 409 are electrically connected to the rechargeable battery 107 and the display 302. The display 302 can monitor the rotation speed of the contact roller 401 through the wheel speed sensor, and monitor the user's heart rate through the electrocardiogram patch, thereby facilitating the real-time display of the user's running training parameters.
[0022] See also Figure 4 , Figure 8 and Figure 9, the mobile monitoring mechanism 4 includes a limit rod 402. The limit rod 402 is slidably connected to the guide post 306. A third support spring 404 is provided on the outer side of the bottom end of the limit rod 402. The bottom end of the third support spring 404 is installed with a wheel seat 405. The wheel seat 405 and the guide post 306 are connected by the third support spring 404. The bottom end of the limit rod 402 penetrates through the guide post 306 and the third support spring 404 and is fixedly connected to the wheel seat 405. A connecting shaft 406 is rotatably connected to the inner side of the wheel seat 405. A contact roller 401 is installed in the middle of the connecting shaft 406. The wheel seat 405 and the contact roller 401 are rotatably connected by the connecting shaft 406. Under the elastic support of the third support spring 404, the wheel seat 405 can drive the contact roller 401 and the two power generation units 403 to move downward synchronously and keep the contact roller 401 in continuous contact with the ground; An elastic scraper 407 is fixedly installed on the rear end surface of the wheel seat 405. A plurality of annular grooves are provided on the surface of the contact roller 401. The bottom end of the elastic scraper 407 is inserted into the inner side of the annular groove and is in close contact with the surface of the contact roller 401. The rotation direction of the contact roller 401 is counterclockwise. Power generation units 403 are installed on both sides of the wheel seat 405. The contact roller 401 can be automatically scraped by the elastic scraper 407 to prevent soil from adhering to the surface of the contact roller 401.
[0023] Please refer to Figure 8 , the two power generation units 403 are symmetrically installed relative to the wheel seat 405. The power generation unit 403 includes an installation cover 408. A plurality of coil windings 409 are fixedly installed inside the installation cover 408. A magnet 410 is rotatably connected inside the coil windings 409. The installation cover 408, the coil windings 409, the magnet 410 and the connecting shaft 406 are coaxial. The two ends of the connecting shaft 406 penetrate through the contact roller 401, the wheel seat 405 and a plurality of magnets 410 and are rotatably connected to the installation cover 408. The connecting shaft 406 is fixedly connected to the contact roller 401 and a plurality of magnets 410. The wheel seat 405 and the two installation covers 408 are both slidably connected to the counterweight box 101. During the movement of the equipment, the contact roller 401 can always rotate counterclockwise and drive a plurality of magnets 410 to rotate inside the coil windings 409 through the connecting shaft 406. Then, the rechargeable battery 107 can be automatically charged through the magnet 410 and the coil windings 409.
[0024] A usage method of a sports equipment for physical sign monitoring and running-assisted training includes the following steps: S1: The two ends of the traction rope 206 are fixed to the user's waist and the ball head rod 205 respectively, and then the electrocardiogram patch is adhered to the user's chest and wirelessly connected to the display 302 via Bluetooth. The number of counterweight blocks 303 is adjusted according to the weight required for running training. Specifically, a card slot is provided at the rear end of the counterweight block 303, and the front end of the positioning strip 304 is inserted into the inner side of the card slot under the elastic support of the two second support springs 305 and is clamped and installed with the counterweight block 303. The positioning strip 304 can be separated from the plurality of counterweight blocks 303 by moving the middle part of the positioning strip 304 backward, thereby facilitating the increase or decrease of the number of counterweight blocks 303; S2: At the same time, pressure sensors are built in between the weight box 101 and the two rotating disks 105. The pressure of the two universal wheels 104 can be intuitively obtained by displaying the values of the two pressure sensors on the display 302, so as to facilitate balancing the load of the weight box 101. When the user drags the mobile installation mechanism 1 forward by dragging the brake mechanism 2 during running, the weight block 303 plays a role of weight bearing, thereby enhancing the running training effect. The rear end of the ball head rod 205 swings in any direction relative to the guide rod 202, and at the same time, through the two universal The wheel 104 rotates and swings relative to the weight box 101, so that the whole can meet the change of the running direction during the movement. At the same time, the multiple weight blocks 303 located at the front end of the positioning cover plate 301 can add weight to the front end of the mobile installation mechanism 1 to prevent the weight box 101 from tilting and causing the universal wheel 104 to separate from the ground. When the traction rope 206 drags the ball head rod 205 and the guide rod 202 forward, the guide rod 202 can buffer the user's running start under the elastic support of the first support spring 203, thereby reducing the impact of the equipment on the user; S3: At the same time, the guide rod 202 drives the two transmission links 207 to swing relative to the weight box 101 through the drag frame 201, and then the transmission link 207 drives the brake rack 208 to separate from the support pulley 106, so as to facilitate the stable movement of the equipment through the two universal wheels 104 and the support pulley 106. When the running stops, the guide rod 202 drives the drag frame 201, the transmission link 207 and the brake rack 208 to automatically reset under the elastic support of the first support spring 203, and then the brake rack 208 is in contact with the support pulley 106 and performs a friction brake operation on the support pulley 106, so as to achieve the automatic braking effect of the automatic equipment and avoid the collision of the user caused by the continuous movement of the equipment; S4: Under the elastic support of the third support spring 404, the wheel seat 405 can drive the contact roller 401 and the two power generation units 403 to move downward synchronously and keep the contact roller 401 in continuous contact with the ground. Thus, during the movement of the equipment, the contact roller 401 can always rotate counterclockwise and drive a plurality of magnets 410 to rotate inside the coil winding 409 through the connecting shaft 406. Then, the charging battery 107 can be automatically charged through the magnets 410 and the coil winding 409, extending the service life of the charging battery 107. The contact roller 401 can be automatically scraped by the elastic scraper 407 to prevent soil from adhering to the surface of the contact roller 401. S5: A wheel speed sensor is provided inside the upper end of the wheel seat 405, enabling the display 302 to monitor the rotation speed of the contact roller 401 through the wheel speed sensor. At the same time, the heart rate of the user is monitored through the electrocardiogram patch. Then, it is convenient to display the running training parameters of the user in real time. The change of colors by the bottom light strip 103 and the plurality of side light strips 102 can dynamically display the training intensity and the heart rate of the user. At the same time, it is convenient to give a light warning in a dim environment to prevent others from accidentally touching it.
[0025] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and the present invention can be implemented in other specific forms without departing from the spirit or basic characteristics of the present invention. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-restrictive. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be regarded as limiting the claims involved.
Claims
1. A sports equipment for running assisted training for physical sign monitoring, comprising a dragging braking mechanism (2) and a moving monitoring mechanism (4), wherein the moving monitoring mechanism (4) is located in the middle of the dragging braking mechanism (2), and is characterized in that: The dragging brake mechanism (2) includes a dragging frame (201). A guide rod (202) is installed at the front end of the dragging frame (201). A first support spring (203) is arranged outside the guide rod (202). A guide sleeve (204) is installed at the front end of the first support spring (203). A ball head rod (205) is movably installed inside the front end of the guide rod (202). A traction binding rope (206) is fixedly installed at the front end of the ball head rod (205). Two transmission link rods (207) are movably installed at the rear end of the dragging frame (201). A brake rack (208) is fixedly installed at the rear end of the transmission link rod (207). The mobile monitoring mechanism (4) includes a limit rod (402). A third support spring (404) is arranged outside the bottom end of the limit rod (402). A wheel seat (405) is installed at the bottom end of the third support spring (404). A connecting shaft (406) is rotatably connected inside the wheel seat (405). A contact roller (401) is installed in the middle of the connecting shaft (406). An elastic scraper (407) is fixedly installed on the rear end face of the wheel seat (405). Power generation units (403) are installed on both sides of the wheel seat (405).
2. The sports equipment for running-assisted training for physical sign monitoring according to claim 1, characterized in that: The two power generation units (403) are symmetrically installed relative to the wheel seat (405). The power generation unit (403) includes an installation cover (408). A plurality of coil windings (409) are fixedly installed inside the installation cover (408). A magnet (410) is rotatably connected inside the coil winding (409).
3. The sports equipment for running assisted training for physical sign monitoring according to claim 2, wherein: A mobile installation mechanism (1) is installed outside the dragging brake mechanism (2). The mobile installation mechanism (1) includes a counterweight box (101). A plurality of lateral light strips (102) are fixedly arranged on the outer surface of the counterweight box (101). A bottom light strip (103) is fixedly arranged on the lower end face of the counterweight box (101). Rotating disks (105) are rotatably connected to both end corners at the front end of the counterweight box (101). Universal wheels (104) are rotatably connected inside the rotating disks (105). Support pulleys (106) are rotatably connected to both end corners at the rear end of the counterweight box (101). Two rechargeable batteries (107) are installed inside the counterweight box (101).
4. A sports equipment for running assisted training for physical sign monitoring according to claim 3, characterized in that: A counterweight increasing and decreasing mechanism (3) is installed at the upper end of the mobile monitoring mechanism (4). The counterweight increasing and decreasing mechanism (3) includes a guide post (306). A positioning insert (304) is slidably connected to the upper end face of the guide post (306). A plurality of counterweight blocks (303) are installed on the front end face of the positioning insert (304). Support partition plates (307) are installed at both ends of the positioning insert (304). A second support spring (305) is arranged outside the support partition plate (307). A positioning cover plate (301) is slidably connected to the upper end face of the positioning insert (304). A display (302) is fixedly installed at the rear end of the upper end face of the positioning cover plate (301). The display (302) is wirelessly connected to an electrocardiogram patch via Bluetooth.
5. A sports equipment for running assisted training for physical sign monitoring according to claim 4, characterized in that: The bottom light strip (103), the display (302), and multiple side light strips (102) are electrically connected to two rechargeable batteries (107). Both of the universal wheels (104) and the support pulleys (106) are symmetrically installed relative to the counterweight box (101). Pressure sensors are built between both of the rotating disks (105) and the counterweight box (101), and the pressure sensors are electrically connected to the display (302).
6. The sports equipment for running assisted training for physical sign monitoring according to claim 5, characterized in that: The guide sleeve (204) is threadedly connected to the front end of the counterweight box (101). The rear end of the guide rod (202) penetrates through the guide sleeve (204) and the first support spring (203) and is fixedly connected to the front end of the drag frame (201). The guide sleeve (204) is connected to the guide rod (202) by the first support spring (203). The rear end of the ball head rod (205) swings in any direction inside the guide rod (202). Waist-shaped holes are provided at both end corners of the rear end of the drag frame (201). The front end of the transmission link (207) is inserted into the inside of the waist-shaped hole and reciprocally slides along the axis of the waist-shaped hole. The counterweight box (101) is rotatably connected to the middle parts of both of the transmission links (207). Both of the transmission links (207) and the brake rack (208) are symmetrically installed relative to the drag frame (201). One side of the support pulley (106) is in close contact with the brake rack (208).
7. A sports equipment for running assisted training for physical sign monitoring according to claim 6, characterized in that: The bottom ends of multiple counterweight blocks (303) penetrate through the positioning cover plate (301) and are in close contact with the upper end surface of the guide post (306). A card slot is provided at the rear end of the counterweight block (303). The front end of the positioning insert (304) is inserted into the inside of the card slot and is snap-fitted and installed with multiple counterweight blocks (303). The front ends of both of the support partition plates (307) penetrate through the guide post (306) and the second support spring (305) and are fixedly connected to both ends of the positioning insert (304). Both ends of the positioning insert (304) are connected to the guide post (306) by the second support spring (305).
8. A sports equipment for running-assisted training for physical sign monitoring according to claim 7, characterized in that: A wheel speed sensor is provided inside the upper end of the wheel seat (405). The wheel speed sensor and multiple coil windings (409) are both electrically connected to the rechargeable battery (107) and the display (302). The mounting cover (408), the coil windings (409), the magnet (410), and the connecting shaft (406) are coaxial. Both ends of the connecting shaft (406) penetrate through the contact roller (401), the wheel seat (405), and multiple magnets (410) and are rotatably connected to the mounting cover (408). The connecting shaft (406) is fixedly connected to the contact roller (401) and multiple magnets (410). The wheel seat (405) and both of the mounting covers (408) are slidably connected to the counterweight box (101).
9. A sports equipment for running-assisted training for physical sign monitoring according to claim 8, characterized in that: The wheel seat (405) is rotationally connected to the contact roller (401) via a connecting shaft (406); a plurality of annular grooves are provided on the surface of the contact roller (401); the bottom end of the elastic scraper (407) is inserted into the inner side of the annular groove and is in close contact with the surface of the contact roller (401); the rotation direction of the contact roller (401) is counterclockwise; the bottom end of the limit rod (402) passes through the guide column (306) and the third support spring (404) and is fixedly connected to the wheel seat (405); the limit rod (402) is slidably connected to the guide column (306); and the wheel seat (405) is connected to the guide column (306) via the third support spring (404).
10. A method for using a sports equipment for running assisted training for physical sign monitoring according to any one of claims 1-9, characterized in that, The following steps are involved: S1: The two ends of the traction rope (206) are respectively fixed to the waist and the ball head rod (205) of the user, and then an electrocardiogram patch is adhered to the chest of the user and wirelessly connected to the display (302) via Bluetooth. The number of counterweight blocks (303) is adjusted according to the weight required for running training. Specifically, a slot is provided at the rear end of the counterweight block (303), and the front end of the positioning strip (304) is inserted into the inner side of the slot under the elastic support of two second support springs (305) and is clamped and installed with the counterweight block (303). The positioning strip (304) can be separated from the plurality of counterweight blocks (303) by moving the middle part of the positioning strip (304) backward, thereby facilitating the increase or decrease of the number of counterweight blocks (303); S2: Pressure sensors are built between the weight box (101) and the two rotating disks (105). The pressure of the two universal wheels (104) can be intuitively obtained by displaying the values of the two pressure sensors on the display (302), thereby balancing the load of the weight box (101). When the user drags the moving installation mechanism (1) forward by dragging the brake mechanism (2) during running, the weight block (303) plays a role of weight bearing, thereby enhancing the running training effect. The rear end of the ball head rod (205) swings in any direction relative to the guide rod (202). At the same time, the two universal wheels ( 104) rotates and swings relative to the weight box (101), thereby facilitating the overall movement to meet the change of the running direction. At the same time, a plurality of weight blocks (303) located at the front end of the positioning cover plate (301) can add weight to the front end of the mobile installation mechanism (1), thereby preventing the weight box (101) from tilting and causing the universal wheel (104) to separate from the ground. When the traction rope (206) drags the ball head rod (205) and the guide rod (202) forward, the guide rod (202) can buffer the user's running start under the elastic support of the first support spring (203), thereby reducing the impact of the equipment on the user; S3: Meanwhile, the guide rod (202) drives the two transmission connecting rods (207) to swing relative to the counterweight box (101) synchronously through the drag frame (201). Then, the transmission connecting rod (207) drives the brake rack (208) to separate from the support pulley (106), facilitating the stable movement of the equipment by the two universal wheels (104) and the support pulley (106). When running stops, the guide rod (202) drives the drag frame (201), the transmission connecting rod (207), and the brake rack (208) to automatically reset under the elastic support of the first support spring (203). Then, the brake rack (208) comes into contact with the support pulley (106) and performs a friction braking operation on the support pulley (106), achieving the automatic braking effect of the equipment and preventing the equipment from continuously moving and colliding with the user. S4: The wheel seat (405) can drive the contact roller (401) and the two power generation units (403) to move downward synchronously under the elastic support of the third support spring (404) and keep the contact roller (401) in continuous contact with the ground. Then, during the movement of the equipment, the contact roller (401) can always rotate counterclockwise and drive a plurality of magnets (410) to rotate inside the coil winding (409) through the connecting shaft (406). Then, the charging battery (107) can be automatically charged through the magnets (410) and the coil winding (409), extending the service life of the charging battery (107). The elastic scraper (407) can automatically scrape the contact roller (401) to prevent soil from adhering to the surface of the contact roller (401). S5: A wheel speed sensor is provided inside the upper end of the wheel seat (405), enabling the display (302) to monitor the rotation speed of the contact roller (401) through the wheel speed sensor. At the same time, the heart rate of the user is monitored through the electrocardiogram patch. Then, it is convenient to display the running training parameters of the user in real time. The dynamic display of the training intensity and the heart rate of the user can be achieved through the color change of the bottom light strip (103) and the plurality of side light strips (102). At the same time, it is convenient to give a light warning in a dim environment to prevent others from accidentally touching.