Neck joint rehabilitation training device
Technical Field
The invention belongs to the field of medical rehabilitation instruments, and particularly relates to a neck joint rehabilitation training device.
Background
The popularization of mobile phones at present causes more and more low-head families, and the problems are neck pain, cervical vertebra bone deformation and bending, if correction and treatment are not performed in time, the cervical vertebra bone deformation and bending become serious diseases in the long term; in addition, many office staff can see computers for a long time, the neck can be stiff and painful, and serious diseases can be developed for a long time, so that cervical vertebra rehabilitation exercise equipment is needed. At present, when a patient uses the rehabilitation exercise equipment to perform rehabilitation training, the patient can only passively exercise along with the movement of the equipment, and the body part of the patient performing rehabilitation exercise cannot be massaged correspondingly.
Disclosure of Invention
The invention aims to solve the problems in the prior art and provides a cervical joint rehabilitation training device.
The aim of the invention can be achieved by the following technical scheme: the neck joint rehabilitation training device comprises a shoulder clamping and massaging component, wherein the neck rehabilitation training component is arranged at the upper end of the shoulder clamping and massaging component and is used for fixing the neck of a patient, the neck fixing component is arranged below the neck rehabilitation training component and is used for rehabilitation training of the patient, the vibration hot air massaging component is arranged above the neck fixing component and is used for vibrating hot air massaging the back neck and two sides of the patient, and the shoulder clamping and massaging component is used for clamping and massaging the shoulders of the patient.
Preferably, the shoulder clamping and massaging component comprises a neck fixing block, the neck fixing block is located below the neck rehabilitation training component, a first shoulder clamping plate is rotationally arranged on one side of the neck fixing block, a first rotating shaft is connected between the first shoulder clamping plate and the neck fixing block, a second shoulder clamping plate is rotationally connected on one side, away from the first shoulder clamping plate, of the neck fixing block, a second rotating shaft is rotationally connected between the second shoulder clamping plate and the neck fixing block, and an adjusting group is arranged on one side of the neck fixing block.
Preferably, the adjusting group comprises a first linkage column, the first linkage column is slidably connected in the shoulder clamping massage part, a first rotation column is fixedly arranged outside the neck fixing block and far away from one end of the first linkage column, an adjusting rotation column is fixedly arranged on the outer circumferential surface of the first rotation column, a linkage sleeve is fixedly arranged on the upper end of the linkage sleeve, a first linkage block is arranged at the upper end of the linkage sleeve in a linkage manner, one end of the first linkage block far away from the linkage sleeve is in linkage connection with the second rotating shaft, and the first linkage column is in linkage connection with the first shoulder clamping plate.
Preferably, the lower extreme linkage is equipped with the third pivot in the middle of the first linkage piece, and the third pivot both sides have set firmly two massage boards, are equipped with a plurality of neck massage group on two massage boards, and neck massage group contains and is equipped with the motor, and the motor is fixed on the massage board, and the motor lower extreme has set firmly first massage soft ball, and first massage soft ball lower extreme has set firmly the massage lug, and the massage lug periphery is equipped with first telescopic column, and first telescopic column is inside to be equipped with the cavity, and cavity and massage board external connection are equipped with business turn over gas pocket.
Preferably, the neck rehabilitation training component comprises a rear side fixing block, the rear side fixing block is located at the upper end of the shoulder clamping massaging component in the direction away from the first shoulder clamping plate, a training arc plate is fixedly arranged at the upper end of the rear side fixing block, a sliding groove is formed in the training arc plate, a horizontal rotating sliding block is arranged in the sliding groove in a sliding manner, a vertical arc plate is fixedly arranged at one end of the horizontal rotating sliding block, away from the first shoulder clamping plate, of the vertical rotating sliding block, a vertical column rotating sliding block is arranged in the vertical arc plate in a sliding manner, a neck fixing plate is fixedly arranged in the direction of the vertical column rotating sliding block towards the first shoulder clamping plate, two arc piston rods are fixedly arranged at two sides of the horizontal rotating sliding block, the two arc piston rods slide in the sliding groove in a sealing manner, and springs are respectively connected with inner walls at two ends of the sliding groove of the training arc plate.
Preferably, the neck fixed part includes the side fixed block, the side fixed block is located the neck fixed block upper end of training arc both sides, the inside rotation of side fixed block is equipped with the second linkage post, second linkage post and second linkage block linkage are connected, second linkage post is kept away from second linkage block one side linkage and is equipped with the third linkage post, the third linkage post rotates to be connected in the side fixed block, third linkage post upper end has set firmly the second and rotates the post, second rotates the post upper end and slides and be equipped with flexible linkage post, flexible linkage post upper end rotates and is equipped with the third and rotates the post, the second rotates the post and rotates to connect in training arc both sides, the third rotates the post and rotates to be connected in neck fixed plate both sides, first neck grip block has been set firmly on the second rotation post, second neck grip block one side is rotated and is equipped with the post, second neck grip block is kept away from the post one side and is slided and is equipped with the post, it has the connection cardboard to have set firmly on the post, connect the cardboard and have set firmly two chin cushion blocks.
Preferably, the neck fixed block includes first back neck massage group, first back neck massage group is located the inside rear side of neck fixed plate, be equipped with neck side massage group in first neck grip block and the second neck grip block, neck side massage group contains and is equipped with the air cavity, the second telescopic column has been set firmly in the air cavity, the second telescopic column has set firmly the vibrations arc board to the middle direction, vibrations arc board keep away from second telescopic column direction and evenly be equipped with a plurality of first massage balls, first back neck massage group contains and is equipped with the heating chamber, the heating intracavity has set firmly the heating block, heating chamber and neck fixed plate external connection are equipped with the admission valve, it is equipped with a plurality of second back neck massage groups to slide on the neck fixed plate, second back neck massage group contains the body sliding block, neck pressing ball has been set firmly to neck fixed middle direction, be equipped with the passageway of ventilating in the third rotation post.
The beneficial effects are that:
1. through the setting of shoulder centre gripping massage part, the patient's neck is steadily tightened and is massaged patient's neck, prevents that neck joint rehabilitation training device from dropping and patient's shoulder from wearing neck joint rehabilitation training device for a long time and feel uncomfortable.
2. Through neck rehabilitation training part and vibrations steam massage part setting, massage and helping hand to patient's neck both sides through the extruded gas of training when carrying out rehabilitation training to the patient, carry out steam vibration massage to patient's neck after the training, be favorable to patient's recovery.
Drawings
The invention is further explained below with reference to the drawings and examples:
FIG. 1 is a schematic view of an isometric structure of the present invention.
Fig. 2 is a schematic diagram of the front view structure of the present invention.
FIG. 3 is a schematic cross-sectional view of the structure at A-A in FIG. 2.
FIG. 4 is a schematic cross-sectional view of the structure at B-B in FIG. 2.
FIG. 5 is a schematic cross-sectional view of the structure at C-C in FIG. 2.
FIG. 6 is a schematic cross-sectional view of the structure at D-D in FIG. 2.
Fig. 7 is a schematic diagram of a partial enlarged view at H in fig. 5.
Fig. 8 is a schematic diagram of the front view structure of the present invention.
FIG. 9 is a schematic cross-sectional view of the structure at E-E in FIG. 8.
FIG. 10 is a schematic cross-sectional view of the structure of F-F in FIG. 8.
FIG. 11 is a schematic cross-sectional view of the structure at G-G in FIG. 8.
In the figures, the shoulder clamping massage part 10, the neck rehabilitation training part 11, the neck fixing part 12, the vibration hot air massage part 13, the neck fixing block 14, the first shoulder clamping plate 15, the first rotating shaft 16, the adjusting group 17, the first linkage post 18, the first rotation post 19, the adjusting rotation post 20, the linkage sleeve 21, the first linkage block 22, the second linkage block 23, the second shoulder clamping plate 24, the second rotating shaft 25, the third rotating shaft 26, the massage plate 27, the neck massage group 28, the motor 29, the first telescopic post 30, the first massage soft ball 31, the cavity 32, the massage convex block 33, the air inlet and outlet holes 34, the rear fixing block 35, the side fixing block 36, the training arc plate 37, the horizontal rotation slide 38, the vertical arc plate 39, the vertical column rotation slide 40, the neck fixing plate 41, the second linkage post 42, the third linkage post 43, the second rotation post 44, the telescopic linkage post 45, the third rotation post 46, the first neck clamping plate 47, the second neck clamping plate 48, the rotation post 49, the sliding rotation post 50, the connecting neck clamping plate 52, the lower clamping plate 52, the arc-shaped block 52, the air inlet and the second air inlet and outlet hole 60, the second arc-shaped air inlet and the air cavity 60, the air cavity group 60, the neck clamping plate and the air heating and the air cavity 60.
Detailed Description
The following are specific embodiments of the present invention and the technical solutions of the present invention will be further described with reference to the accompanying drawings, but the present invention is not limited to these embodiments.
Referring to fig. 1-11, a neck joint rehabilitation training device comprises a shoulder clamping and massaging component 10, wherein a neck rehabilitation training component 11 is arranged at the upper end of the shoulder clamping and massaging component 10 to fix the neck of a patient, a neck fixing component 12 is arranged below the neck rehabilitation training component 11 to perform rehabilitation training on the patient, a vibration hot air massaging component 13 is arranged above the neck fixing component 12 to perform vibration hot air massage on the back neck and two sides of the patient, and the shoulder clamping and massaging component 10 is used for clamping and massaging the shoulders of the patient.
Further, referring to fig. 1 to 11, the shoulder clamping massage component 10 includes a neck fixing block 14, the neck fixing block 14 is located below the neck rehabilitation training component 11, a first shoulder clamping plate 15 is rotatably disposed on one side of the neck fixing block 14, a first rotating shaft 16 is connected between the first shoulder clamping plate 15 and the neck fixing block 14, a second shoulder clamping plate 24 is rotatably connected on one side of the neck fixing block 14 far away from the first shoulder clamping plate 15, a second rotating shaft 25 is rotatably connected between the second shoulder clamping plate 24 and the neck fixing block 14, and an adjusting group 17 is disposed on one side of the neck fixing block 14.
Further, referring to fig. 1 to 11, the adjusting unit 17 includes a first linkage post 18, the first linkage post 18 is slidably connected in the shoulder clamping massage component 10, a first rotation post 19 is fixedly disposed outside the neck fixing block 14 on the first linkage post 18, an adjusting rotation post 20 is fixedly disposed at one end of the first rotation post 19 away from the first linkage post 18, a linkage sleeve 21 is fixedly disposed on an outer circumferential surface of the first rotation post 19, a first linkage block 22 is disposed at an upper end of the linkage sleeve 21 in a linkage manner, one end of the first linkage block 22 away from the linkage sleeve 21 is connected with the second rotating shaft 25 in a linkage manner, and the first linkage post 18 is connected with the first shoulder clamping plate 15 in a linkage manner.
Further, referring to fig. 1-11, a third rotating shaft 26 is linked to the lower end in the middle of the first linkage block 22, two massage plates 27 are fixedly arranged at two sides of the third rotating shaft 26, a plurality of neck massage groups 28 are arranged on the two massage plates 27, the neck massage groups 28 comprise motors 29, the motors 29 are fixed on the massage plates 27, first massage soft balls 31 are fixedly arranged at the lower ends of the motors 29, massage protruding blocks 33 are fixedly arranged at the lower ends of the first massage soft balls 31, first telescopic columns 30 are arranged at the peripheries of the massage protruding blocks 33, cavities 32 are arranged in the first telescopic columns 30, and air inlet and outlet holes 34 are formed in the cavities 32 and the massage plates 27 in an external connection mode.
Further, referring to fig. 1-11, the neck rehabilitation training device 11 includes a rear side fixing block 35, the rear side fixing block 35 is located at an upper end of the shoulder clamping massaging device 10 in a direction away from the first shoulder clamping plate 15, a training arc plate 37 is fixedly arranged at an upper end of the rear side fixing block 35, a sliding groove 68 is formed in the training arc plate 37, a horizontal rotating sliding block 38 is slidably arranged in the sliding groove 68, a vertical arc plate 39 is fixedly arranged at one end of the horizontal rotating sliding block 38 away from the first shoulder clamping plate 15, a vertical column rotating sliding block 40 is slidably arranged in the vertical arc plate 39, a neck fixing plate 41 is fixedly arranged at the vertical column rotating sliding block 40 in a direction towards the first shoulder clamping plate 15, two arc piston rods 53 are fixedly arranged at two sides of the horizontal rotating sliding block 38, the two arc piston rods 53 are hermetically slid in the sliding groove 68, and springs 54 are respectively connected with inner walls at two ends of the sliding groove 68 of the training arc plate 37.
Further, referring to fig. 1-11, the neck fixing part 12 includes a side fixing block 36, the side fixing block 36 is located at the upper end of the neck fixing block 14 at two sides of the training arc 37, a second linkage column 42 is rotatably provided in the side fixing block 36, the second linkage column 42 is connected with the second linkage block 23 in a linkage manner, a third linkage column 43 is rotatably provided at one side of the second linkage column 42 away from the second linkage block 23, the third linkage column 43 is rotatably connected in the side fixing block 36, a second rotation column 44 is fixedly provided at the upper end of the third linkage column 43, a telescopic linkage column 45 is slidably provided at the upper end of the second rotation column 44, a third rotation column 46 is rotatably provided at the upper end of the telescopic linkage column 45, the second rotation column 44 is rotatably connected at two sides of the training arc 37, the third rotation column 46 is rotatably connected at two sides of the neck fixing plate 41, a first neck clamping plate 47 is fixedly provided on the second rotation column 44, a second neck clamping plate 48 is rotatably provided at one side of the second neck clamping plate 48, a second neck clamping plate 48 is slidably provided at one side of the second neck clamping plate 49, a sliding upper clamping plate 51 is fixedly provided at two clamping plates 51 are slidably connected at one side of the second neck clamping plate 48 away from the rotating column 50.
Further, referring to fig. 1-11, the neck fixing block 14 includes a first back neck massage set 60, the first back neck massage set 60 is located at the rear side inside the neck fixing plate 41, a neck side massage set 55 is provided in the first neck clamping plate 47 and the second neck clamping plate 48, the neck side massage set 55 includes an air cavity 56, a second telescopic column 57 is fixedly provided in the air cavity 56, a vibration arc plate 58 is fixedly provided in the middle direction of the second telescopic column 57, a plurality of first massage balls 59 are uniformly provided in the direction of the vibration arc plate 58 away from the second telescopic column 57, the first back neck massage set 60 includes a heating cavity 61, a heating block 63 is fixedly provided in the heating cavity 61, an air inlet valve 62 is provided in the outer connection between the heating cavity 61 and the neck fixing plate 41, a plurality of second back neck massage sets 64 are slidably provided on the neck fixing plate 41, the second back neck massage sets 64 include a body sliding block 65, a back neck pressing ball 66 is fixedly provided in the middle direction of the neck fixing plate 41, and a ventilation channel 67 is provided in the third rotary column 46.
Principle of operation
The neck fixing block 14 is placed on two shoulders of a patient, the rotation adjusting rotating column 20 rotates through the first rotating column 19 to drive the first linkage column 18 to rotate, the first linkage column 18 rotates to drive the first shoulder clamping plate 15 to rotate, the first rotation column 19 rotates through the linkage sleeve 21 to drive the first linkage block 22 to slide, the first linkage block 22 slides to drive the second rotating shaft 25 to rotate to drive the second shoulder clamping plate 24 to rotate, the first shoulder clamping plate 15 and the second shoulder clamping plate 24 rotate to clamp the shoulders of the patient, the first linkage block 22 slides to drive the third rotating shaft 26 to rotate, and the third rotating shaft 26 rotates to drive the massage plate 27 to rotate to clamp the shoulders.
The neck of the patient is put into the neck rehabilitation training device 11, the adjusting rotating column 20 pushes the first linkage column 18 to slide inwards according to the condition that the first linkage column 19 is pushed to slide through the first rotating column 19, when the adjusting rotating column 20 is rotated, the first linkage column 18 rotates to drive the second linkage block 23 to slide, the second linkage block 23 slides to drive the second linkage column 42 to rotate, the second linkage column 42 rotates to drive the third linkage column 43 to rotate, the third linkage column 43 rotates to drive the second rotating column 44 to rotate, the second rotating column 44 rotates to drive the third rotating column 46 to rotate through the telescopic linkage column 45, the second rotating column 44 rotates to drive the first neck clamping plate 47 to rotate, the third rotating column 46 rotates to drive the second neck clamping plate 48 to rotate, the first neck clamping plate 47 and the second neck clamping plate 48 rotate to fix the neck of the patient, the connecting clamping plate 51 rotates to drive the connecting clamping plate 51 to be clamped into the second neck clamping plate 48, the sliding rotating column 50 slides on the second neck clamping plate 48 to drive the connecting clamping plate 51, and the chin of the patient is put on the chin cushion block 52.
The patient starts rehabilitation training and carries out horizontal rotation, the horizontal rotation sliding block 38 horizontally rotates in the chute 68, the horizontal rotation sliding block 38 slides and pushes the arc-shaped piston rod 53 to slide and compress the air in the chute 68 to be pressed into the air cavity 56 through the arc-shaped piston rod 53, the air in the air cavity 56 is pressed into the first massage ball 59, the second telescopic column 57 pushes the vibration arc plate 58 to vibrate, vibration massage is carried out on two sides of the neck of the patient, the spring 54 is compressed to a certain extent, elasticity is carried out on the arc-shaped piston rod 53 to help the patient to carry out neck rotation, and the patient can also vertically rotate and train.
The motor 29 starts to rotate the massage convex block 33 and the first telescopic column 30 to rotationally massage the neck of the patient through the rotation of the first massage soft ball 31, air enters the heating cavity 61 through the air inlet valve 62, the heating block 63 heats and expands air in the heating cavity 61 to enable the neck to be inflated to compress the patient, the sliding block 65 slides to drive the neck to slide to enable the neck to be inflated to enable the neck to be massaged up and down, hot air enters the air cavity 56 through the ventilation channel 67, and the second telescopic column 57 stretches and stretches to push the vibration arc plate 58 to vibrate so that the first massage ball 59 vibrates and charges hot air to vibrate the patient.
The foregoing description is only illustrative of the present invention and is not intended to limit the scope of the invention, and all equivalent structures or equivalent processes using the descriptions and the drawings of the present invention or directly or indirectly applied to other related technical fields are included in the scope of the invention.