CN210472982U - Balance test training system - Google Patents
Balance test training system Download PDFInfo
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- CN210472982U CN210472982U CN201921257341.1U CN201921257341U CN210472982U CN 210472982 U CN210472982 U CN 210472982U CN 201921257341 U CN201921257341 U CN 201921257341U CN 210472982 U CN210472982 U CN 210472982U
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Abstract
The utility model discloses balance test training system relates to a mechanical device who carries out human balance test and training. Its purpose is in order to provide a training effect well, simple structure, with low costs balance test training system. The utility model discloses balance test training system includes that machinery rocks the mechanism, machinery rocks the mechanism and includes the base subassembly, suspend bracket component and footboard subassembly in midair, the base subassembly is provided with down respectively all around and suspends the bent plate in midair, the top that suspends the bent plate in midair has the kink down, be fixed with first flexible wire rope on the kink of the bent plate in midair down, first flexible wire rope's lower extreme is fixed on suspending the bracket component in midair, it is provided with the suspension bent plate all around respectively to suspend the bracket component in midair, the top that goes up the suspension bent plate has the kink, it is fixed with the flexible wire rope of second on the kink of the bent plate to go up the suspension, the lower extreme of the flexible wire rope of second is fixed on the footboard subassembly, the pedal panel is installed to.
Description
Technical Field
The utility model relates to a balance training technical field especially relates to a mechanical device who carries out human balance test and training.
Background
The balance function is an important function of the nervous and motor systems of the human body. Many neurological disorders exhibit varying degrees of balance dysfunction. In the past, the examination and the test of the balance dysfunction are mainly completed by some examination means, and objective and effective quantitative determination indexes are lacked, so that people often lack sufficient understanding on the degree and the characteristics of the balance dysfunction in different nervous system diseases.
At present, a plurality of balance training devices for detection and rehabilitation are available on the market, and the balance training devices are used for testing and recovering the balance function of the human body. The common mode is to adopt equipment to simulate an unbalanced scene manually, so that the difficulty of a user standing on the test equipment in balance standing is increased. The purpose of testing and training is achieved by continuously adjusting the unbalance degree of the standing surface.
The mode that existing equipment adopted to make unbalanced scene adopts a plurality of motors to drive more, noise and product cost when greatly increased the use are unfavorable for using widely. And the equipment can only provide static mechanical structure when using, can not adjust the exercise degree of difficulty, is not convenient to use.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a balance test training system that training is effectual, simple structure, with low costs.
The utility model discloses balance test training system, including mechanical rocking mechanism, mechanical rocking mechanism from bottom to top includes base subassembly in proper order, suspends bracket component and footboard subassembly in midair, base subassembly is provided with down the curved plate that suspends in midair respectively all around, and the top of the curved plate that suspends in midair down has the kink, is fixed with first flexible wire rope on the kink of the curved plate that suspends in midair down, and first flexible wire rope's lower extreme is fixed on suspending in midair the bracket component, suspends in midair the bracket component and is provided with the overhead suspension curved plate all around respectively, and the top of overhead suspension curved plate has the kink, is fixed with the flexible wire rope of second on the kink of overhead suspension curved plate, and the lower extreme of the flexible wire rope of second is fixed on the footboard subassembly, and pedal panel is installed to footboard subassembly top, install.
The utility model discloses balance test training system, wherein locking mechanical system adopts magnetic lock structure, and locking mechanical system includes connecting seat, activity suction piece, magnetic lock main part and auxiliary motion motor, connecting seat and auxiliary motion motor are installed on the inner connecting plate that sets up on the base subassembly; the magnetic lock body is arranged on an inner connecting plate arranged on the pedal assembly; the movable suction sheet is arranged on the connecting seat; the auxiliary motion motor is used for assisting the movable suction piece to do up-and-down reciprocating motion.
The utility model discloses balance test training system, wherein the interior connecting plate on base subassembly and the footboard subassembly is cross backup pad.
The utility model discloses balance test training system, wherein machinery rocks the left and right sides of structure and installs the guard shield, the guard shield cover suspends flexural plate, first flexible wire rope in midair down, goes up the outside of the region at the flexible wire rope place of suspension flexural plate and second.
The utility model discloses balance test training system, wherein the leg joint board is installed to base subassembly below, installs the riser on the leg joint board, and the top of riser is provided with the support, has placed the panel computer in the support.
The utility model discloses balance test training system, wherein be connected with two handrails on the riser, the other end of handrail passes the through-hole of processing on the guard shield, connects under hang in midair on the bent plate.
The utility model discloses balance test training system, wherein suspend in midair the bracket component and include the rectangular frame who splices into by two long connecting plates and two short connecting plates, first flexible wire rope's lower extreme is fixed on suspending in midair the rectangular frame of bracket component.
The utility model discloses balance test training system, wherein the footboard subassembly includes the rectangular frame who splices into by two long connecting plates and two short connecting plates, and the lower extreme of the flexible wire rope of second is fixed on the rectangular frame of footboard subassembly.
The utility model discloses balance test training system, wherein the base subassembly is provided with pressure sensor all around, and the pressure sensor lower part is provided with the rubber pad.
The utility model discloses balance test training system and prior art difference lie in, the utility model discloses balance test training system has designed two-layer mechanical structure that rocks, and according to the instability of quadrangle platform, the plane that realizes manned platform rocks to less cost has realized that the people who has the balance obstacle hopes to increase the demand of balanced interference, adopts two-layer rocking structure can increase the stack and rock the displacement, makes the footboard range of rocking enlarge. The utility model discloses a machinery rocks the structure and need not use the motor, just can realize through the user is pedal that the displacement is rocked to the maximum in the horizontal direction more than 25 millimeters, has simplified the structure of equipment, has reduced manufacturing cost, has also reduced the noise that uses the motor to bring.
The utility model discloses balanced test training system still provides two kinds of operating condition of developments and static state on the basis of realizing balanced test and training, through set up locking mechanical system in the structure is rocked to machinery, realizes the switching of equipment developments and static state, and the person of facilitating the use carries out pertinence test and training as required to the effect of reinforcing training.
The balance testing training system of the present invention will be further described with reference to the accompanying drawings.
Drawings
Fig. 1 is a schematic structural diagram of the balance test training system of the present invention;
FIG. 2 is a schematic structural view of a mechanical shaking structure in the balance testing training system of the present invention;
fig. 3 is an exploded schematic view of a locking mechanism in the balance testing training system of the present invention;
the notation in the figures means: 1-a bracket connection plate; 2-a pedal panel; 3-a handrail; 4-a tablet computer; 5-a riser; 6-a shield; 7-a base assembly; 8-a suspension bracket assembly; 9-a pedal assembly; 10-lower suspension bent plate; 11-upper suspension bent plate; 12-a second flexible wire rope; 13-a first flexible steel cord; 14-an internal connection plate; 15-rubber pad; 16-a movable suction sheet; 17-a magnetic lock body; 18-a connecting socket; 19-auxiliary movement motor.
Detailed Description
The following examples are intended to illustrate the invention, but are not intended to limit the scope of the invention.
As shown in FIG. 1 and FIG. 2, the balance testing training system of the present invention comprises a base assembly 7, wherein the base assembly 7 is provided with pressure sensors all around, and the lower part of each pressure sensor is provided with a rubber pad 15. The pressure sensor is used for measuring the gravity center movement data of the human body, and external equipment can conveniently draw the movement track of the gravity center of the human body.
As shown in fig. 2, the base assembly 7, the suspension bracket assembly 8 above the base assembly, and the pedal assembly 9 form a mechanical shaking structure, and the mechanical shaking structure is formed by an upper-layer suspension structure and a lower-layer suspension structure. The periphery of the base component 7 is respectively provided with a lower suspension bent plate 10, the top of the lower suspension bent plate 10 is provided with a bending part, a first flexible steel wire rope 13 is fixed on the bending part, and the lower end of the first flexible steel wire rope 13 is fixed on the suspension bracket component 8.
The suspension bracket assembly 8 is positioned above the base assembly 7, the suspension bracket assembly 8 comprises a rectangular frame formed by splicing two long connecting plates and two short connecting plates, and the lower end of the first flexible steel wire rope 13 is fixed on the rectangular frame of the suspension bracket assembly 8. An upper suspension bent plate 11 is arranged around the suspension support assembly 8, a bent part is arranged at the top of the upper suspension bent plate 11, a second flexible steel wire rope 12 is fixed on the bent part, and the lower end of the second flexible steel wire rope 12 is fixed on the pedal assembly 9.
The pedal assembly 9 is positioned above the suspension bracket assembly 8, the pedal assembly 9 comprises a rectangular frame formed by splicing two long connecting plates and two short connecting plates, and the lower end of a second flexible steel wire rope 12 is fixed on the rectangular frame of the pedal assembly 9. Above the pedal assembly 9 is mounted a pedal panel 2, and a user stands on the pedal panel 2 for testing and training.
In the mechanical shaking structure, the length of the first flexible steel wire rope 13 is smaller than the height of the lower suspension bent plate 10, and the length of the second flexible steel wire rope 12 is smaller than the height of the upper suspension bent plate 11, so that after the installation of each flexible steel wire rope is completed, certain gaps exist among the bottom plate, the suspension bracket and the pedal, and the suspension bracket and the pedal have inclined shaking spaces.
As shown in fig. 3, a locking mechanism is installed between the base assembly 7 and the pedal assembly 9, and the locking mechanism is used for locking the positions of the components in the mechanical shaking structure to realize dynamic and static switching. In this embodiment, the locking mechanism is a magnetic lock. The magnetic lock comprises a connecting seat 18, a movable suction piece 16, a magnetic lock body 17 and an auxiliary movement motor 19. Wherein the connecting base 18 and the auxiliary movement motor 19 are mounted on an inner connecting plate provided on the base assembly 7; the magnetic lock body 17 is arranged on an inner connecting plate arranged on the pedal assembly 9; the movable suction piece 16 is arranged on the connecting seat 18; the auxiliary movement motor 19 can assist the movable suction piece 16 to reciprocate up and down. The magnetic lock body 17 is connected to an external power source through a wire. When the magnetic lock body 17 is electrified, magnetic force is generated, the magnetic lock works to lock the mechanical shaking structure, and the equipment is in a static working state; when the magnetic lock body 17 is powered off, the mechanical shaking structure is unlocked, and the equipment is in a dynamic working state. The inner attachment plates 14 on the base assembly 7 and the pedal assembly 9 may be cross-shaped support plates or attachment plates of other configurations.
As shown in fig. 1, the left and right sides of the mechanical shaking structure are provided with the protective covers 6, and the protective covers 6 wrap the areas where the lower suspension bending plate 10, the upper suspension bending plate 11 and the flexible steel wire rope are located, so that the overall appearance of the equipment is more attractive, and the damage to a user caused by the exposure of the mechanical structure in the use process can be avoided.
Two handrails 3 are connected to the vertical pipe 5, the handrails 3 are respectively positioned at the left side and the right side of the equipment, and the other ends of the handrails 3 penetrate through holes processed on the shield 6 and are connected to the lower suspension bent plate 10. The user can hold up on the handrail 3 of both sides when testing and training, and supplementary health is balanced, increases the security that equipment used simultaneously.
The utility model discloses balance test training system's advantage has designed two-layer mechanical structure that rocks, according to the instability of quadrangle platform, realizes that manned platform's plane rocks to less cost has realized that the people who has the balance obstacle hopes to increase the demand of balanced interference, adopts two-layer structure of rocking to increase the stack and rocks the displacement, makes the footboard range of rocking enlarge. The utility model discloses a machinery rocks the structure and need not use the motor, just can realize through the user is pedal that the displacement is rocked to the maximum in the horizontal direction more than 25 millimeters, has simplified the structure of equipment, has reduced manufacturing cost, has also reduced the noise that uses the motor to bring.
The utility model discloses balanced test training system still provides two kinds of operating condition of developments and static state on the basis of realizing balanced test and training, through set up locking mechanical system in the structure is rocked to machinery, realizes the switching of equipment developments and static state, and the person of facilitating the use carries out pertinence test and training as required to the effect of reinforcing training.
Although the invention has been described in detail with respect to the general description and the specific embodiments, it will be apparent to those skilled in the art that modifications and improvements can be made based on the invention. Therefore, such modifications and improvements are intended to be within the scope of the invention as claimed.
Claims (9)
1. A balance testing training system, characterized by: the mechanism is rocked including machinery, machinery rocks the mechanism and includes base subassembly, suspends bracket component and footboard subassembly in proper order from bottom to top, base subassembly is provided with down respectively all around and suspends the bent plate in midair, the top that suspends the bent plate in midair has the kink, be fixed with first flexible wire rope on the kink of the bent plate that suspends in midair down, first flexible wire rope's lower extreme is fixed on suspending the bracket component in midair, it is provided with the hanging bent plate in midair all around respectively to suspend the bracket component in midair, the top that goes up the hanging bent plate has the kink, be fixed with the flexible wire rope of second on the kink of the hanging bent plate in midair, the lower extreme of the flexible wire rope of second is fixed on the footboard subassembly, pedal panel is installed to footboard subassembly top.
2. The balance test training system of claim 1, wherein: the locking mechanism adopts a magnetic lock structure, and comprises a connecting seat, a movable suction piece, a magnetic lock body and an auxiliary motion motor, wherein the connecting seat and the auxiliary motion motor are arranged on an inner connecting plate arranged on the base assembly; the magnetic lock body is arranged on an inner connecting plate arranged on the pedal assembly; the movable suction sheet is arranged on the connecting seat; the auxiliary motion motor is used for assisting the movable suction piece to do up-and-down reciprocating motion.
3. The balance test training system of claim 2, wherein: the inner connecting plates on the base component and the pedal component are cross-shaped supporting plates.
4. The balance test training system of claim 1, wherein: the left side and the right side of the mechanical shaking structure are provided with protective covers, and the protective covers cover the outer parts of the areas where the lower suspension bending plate, the first flexible steel wire rope, the upper suspension bending plate and the second flexible steel wire rope are located.
5. The balance test training system of claim 1, wherein: a support connecting plate is installed below the base assembly, a vertical pipe is installed on the support connecting plate, a support is arranged at the top of the vertical pipe, and a tablet personal computer is placed in the support.
6. The balance test training system of claim 5, wherein: the vertical pipe is connected with two handrails, and the other ends of the handrails penetrate through holes processed on the protective cover and are connected to the lower suspension bent plate.
7. The balance test training system of claim 1, wherein: the suspension bracket assembly comprises a rectangular frame formed by splicing two long connecting plates and two short connecting plates, and the lower end of the first flexible steel wire rope is fixed on the rectangular frame of the suspension bracket assembly.
8. The balance test training system of claim 1, wherein: the pedal assembly comprises a rectangular frame formed by splicing two long connecting plates and two short connecting plates, and the lower end of the second flexible steel wire rope is fixed on the rectangular frame of the pedal assembly.
9. The balance test training system of claim 1, wherein: and pressure sensors are arranged around the base assembly, and rubber pads are arranged at the lower parts of the pressure sensors.
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CN201921257341.1U CN210472982U (en) | 2019-08-05 | 2019-08-05 | Balance test training system |
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CN201921257341.1U CN210472982U (en) | 2019-08-05 | 2019-08-05 | Balance test training system |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113143218A (en) * | 2021-05-14 | 2021-07-23 | 吉林大学 | Device and method for testing human body autonomic balance capability in multiple dimensions |
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2019
- 2019-08-05 CN CN201921257341.1U patent/CN210472982U/en active Active
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113143218A (en) * | 2021-05-14 | 2021-07-23 | 吉林大学 | Device and method for testing human body autonomic balance capability in multiple dimensions |
CN113143218B (en) * | 2021-05-14 | 2022-06-17 | 吉林大学 | Device and method for testing human body autonomic balance capability in multiple dimensions |
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