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CN221555689U - Assembled nerve percussion inspection device - Google Patents

Assembled nerve percussion inspection device Download PDF

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Publication number
CN221555689U
CN221555689U CN202323441851.3U CN202323441851U CN221555689U CN 221555689 U CN221555689 U CN 221555689U CN 202323441851 U CN202323441851 U CN 202323441851U CN 221555689 U CN221555689 U CN 221555689U
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tapping
lifting
head
base
inspection device
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CN202323441851.3U
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Chinese (zh)
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龚意群
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Abstract

The utility model provides an assembled nerve tapping inspection device, which relates to the technical field of medical equipment and comprises a base component and a lifting adjusting component, wherein the lifting adjusting component assembled by bolts is arranged above two ends of the base component, one side of the lifting end of the lifting adjusting component is provided with a tapping inspection mechanism assembled by bolts, the lifting adjusting component comprises an assembly base, a gear shaft cabin, a sleeve column, a hand rocker, a meshing gear set, a thread bush, a threaded rod and a lifting arm, and the gear shaft cabin is connected above two ends of the base component by bolts of the assembly base; the utility model mainly uses the interaction of the winding drum and the winding motor to enable the steel wire rope to be in the winding connection, and the tapping head is located at the optimal position by matching with the distance adjustment of the threaded adjusting rod under the winding connection, and the spring stress head is located at the optimal position by the telescopic action of the hydraulic cylinder bar, so that the effect of adapting most people can be achieved, and the use comfort of users is improved.

Description

Assembled nerve percussion inspection device
Technical Field
The utility model relates to the technical field of medical equipment, in particular to an assembled nerve percussion inspection device.
Background
The neurology is a secondary subject related to the nerve, mainly receives and treats cerebrovascular diseases, migraine, brain inflammatory diseases, myelitis, epilepsy, dementia, metabolic diseases, genetic predisposing diseases, trigeminal neuralgia, sciatica, peripheral neuropathy, myasthenia gravis and the like, the nerve percussion device is usually detected by a percussion hammer, the percussion hammer is an instrument for examining neuromuscular reflex by doctors, and the percussion hammer is mainly composed of a rubber and a wooden or metal handle, and the rubber end slightly taps related parts to observe neuromuscular reflex when in use.
When the conventional nerve percussive examination device is used, as disclosed in application number CN202021817156.6, the conventional nerve percussive examination device comprises a box body, wherein a motor is fixedly connected to the lower part of one side of the box body, the output end of the motor penetrates through the box body, one end of the output end of the motor is fixedly connected with the middle part of one side of a gear, the first gear is meshed with the second gear, a central shaft bearing on one side of the second gear is connected with one side in the box body, the eccentric part of the other side of the second gear is fixedly connected with one end of a sliding column, the upper sides of the inner sides of the box body are fixedly connected with symmetrical guide rod upper ends, and the lower ends of the two guide rods are respectively fixedly connected with the middle parts of the corresponding upper sides of the stop blocks; however, in the above-mentioned technique, the strut and the gear two and the lower loop-shaped block are fixed in radius, and because they are fixed, the detected acting force is fixed, so that some patients have uncomfortable feeling in the test, therefore, the utility model proposes an assembled nerve tapping inspection device to solve the problems existing in the prior art.
Disclosure of utility model
Aiming at the problems, the utility model provides an assembled nerve-percussion inspection device, which mainly utilizes the interaction of a winding drum and a winding motor to enable a steel wire rope to be in a winding connection arrangement, and the tapping head is located at an optimal impact position by matching with the distance adjustment of an upper thread adjusting rod under the winding connection arrangement, and the spring stress head is located at an optimal position by the telescopic action of a hydraulic cylinder bar, so that the effect of adapting to most people can be achieved, and the use comfort of users is improved.
In order to achieve the purpose of the utility model, the utility model is realized by the following technical scheme: the spliced nerve tapping inspection device comprises a base assembly and a lifting adjusting part, wherein the lifting adjusting part assembled by bolts is arranged above two ends of the base assembly, and a tapping inspection mechanism assembled by bolts is arranged on one side of the lifting end of the lifting adjusting part;
The lifting adjusting part comprises an assembly base, a gear shaft cabin, a sleeve column, a hand rocker, a meshing gear set, a thread sleeve, a threaded rod and a lifting arm, wherein the gear shaft cabin is connected with the upper side of two ends of the base assembly through an assembly base bolt, the sleeve column is arranged above the gear shaft cabin, the meshing gear set connected with the output end of the hand rocker is arranged inside the gear shaft cabin, the output end of the meshing gear set is provided with the thread sleeve of the threaded rod in threaded connection, and the lifting arm is arranged on the top side of the threaded rod.
As a preferred embodiment of the utility model, the central axes of the thread bush and the threaded rod are distributed vertically to the horizontal plane of the lifting arm, and the gear shaft cabin and the sleeve column are in a sleeved structure.
As a preferred embodiment of the utility model, the base assembly comprises a base block, a bracket, a platform plate, a shock absorber and a foot plate, wherein the bracket is arranged above the inner end of the base block, the platform plate is arranged on the top side of the bracket, and the shock absorber for installing the foot plate is connected with the top side of the platform plate through bolts.
As a preferred implementation mode of the utility model, the tapping inspection mechanism comprises a front block, a limiting bar, a bolt bracket, a baffle arm, a damping hinge seat, a thread adjusting rod, a binding joint, a tapping head, a steel wire rope, a carrying hinge head, an outer frame, a pneumatic pressing bar, a winding drum, a winding motor, an inner convex plate, a hydraulic cylinder bar and a spring stress head, wherein the front block is connected with one end of the lifting arm in a bolt manner, the limiting bar is arranged above one end of the front block, the baffle arm is connected to the top side of the front block through the bolt bracket in a bolt manner, the damping hinge seat is arranged on the inner side of one end of the baffle arm, the thread adjusting rod is arranged at one end of the damping hinge seat, and the tapping head is arranged at one end of the thread adjusting rod.
As a preferable implementation mode of the utility model, one side of the tapping head is provided with a binding joint, the binding joint is connected with a steel wire rope in a binding mode, the side of the steel wire rope is provided with a carrying articulated head, one end of the carrying articulated head is provided with an outer frame, the inner side of the outer frame is provided with a pneumatic pressing strip, and one end of the steel wire rope is bound with a winding drum connected with the output end of a winding motor.
As a preferable implementation mode of the utility model, the inner end of the baffle arm is provided with an inner convex plate, the inner side of one end of the inner convex plate is provided with a sleeved hydraulic cylinder strip, and the output end of the hydraulic cylinder strip is provided with a spring stress head.
The beneficial effects of the utility model are as follows:
The utility model mainly uses the interaction of the winding drum and the winding motor to enable the steel wire rope to be in the winding connection, and the tapping head is located at the optimal position by matching with the distance adjustment of the threaded adjusting rod under the winding connection, and the spring stress head is located at the optimal position by the telescopic action of the hydraulic cylinder bar, so that the effect of adapting most people can be achieved, and the use comfort of users is improved.
Drawings
FIG. 1 is a schematic perspective view of the present utility model;
FIG. 2 is a schematic side view of the present utility model;
FIG. 3 is a schematic view of a lifting adjusting part of the present utility model;
FIG. 4 is a schematic perspective view of a tapping inspection mechanism according to the present utility model.
Wherein: 1. a base assembly; 101. a base block; 102. a bracket; 103. a platform plate; 104. a damper; 105. foot plates; 2. a lifting adjusting part; 201. assembling a base; 202. a gear shaft compartment; 203. a sleeve column; 204. a hand rocker; 205. a meshing gear set; 206. a thread sleeve; 207. a threaded rod; 208. a lifting arm; 3. tapping the inspection mechanism; 301. a front block; 302. a limit bar; 303. a bolt bracket; 304. a gear arm; 305. damping hinge seat; 306. a threaded adjusting rod; 307. binding the sections; 308. a tapping head; 309. a wire rope; 3010. carrying a hinge joint; 3011. an outer frame; 3012. pneumatic pressing strips; 3013. winding up a winding drum; 3014. a winding motor; 3015. an inner convex plate; 3016. a hydraulic cylinder bar; 3017. a spring force-bearing head.
Detailed Description
The present utility model will be further described in detail with reference to the following examples, which are only for the purpose of illustrating the utility model and are not to be construed as limiting the scope of the utility model.
According to fig. 1 to 4, the embodiment provides an assembled nerve tapping inspection device, which comprises a base component 1 and a lifting adjusting component 2, wherein the lifting adjusting component 2 assembled by bolts is arranged above two ends of the base component 1, and a tapping inspection mechanism 3 assembled by bolts is arranged on one side of a lifting end of the lifting adjusting component 2;
The lifting adjusting part 2 comprises an assembly base 201, a gear shaft cabin 202, a sleeve column 203, a hand rocker 204, a meshing gear set 205, a threaded sleeve 206, threaded rods 207 and lifting arms 208, wherein the gear shaft cabin 202 is connected above two ends of the base assembly 1 through bolts of the assembly base 201, the sleeve column 203 is arranged above the gear shaft cabin 202, the meshing gear set 205 connected with the output end of the hand rocker 204 is arranged in the gear shaft cabin 202, the threaded sleeve 206 in threaded connection with the threaded rods 207 is arranged at the output end of the meshing gear set 205, and the lifting arms 208 are arranged on the top side of the threaded rods 207.
The central axes of the thread sleeve 206 and the threaded rod 207 are vertically distributed with the horizontal plane of the lifting arm 208, and the gear shaft cabin 202 and the sleeve column 203 are in a sleeved structure.
In this embodiment, the output end is driven to operate by using the power output by the hand rocker 204, and then the output end of the hand rocker 204 is used to drive the power output by the meshing gear set 205 inside the gear shaft cabin 202 to perform meshing transmission, so that the meshing gear set 205 drives the threaded sleeve 206 and the threaded rod 207 to perform meshing transmission operation after outputting the power, and the threaded rod 207 can drive the lifting arm 208 to operate the tapping inspection mechanism 3 to a proper height.
The base assembly 1 comprises a base block 101, a bracket 102, a platform plate 103, a damper 104 and a foot plate 105, wherein the bracket 102 is arranged above the inner end of the base block 101, the platform plate 103 is arranged on the top side of the bracket 102, and the damper 104 for mounting the foot plate 105 is connected with the top side of the platform plate 103 through bolts.
In the present embodiment, in use, the base block 101 below the bracket 102 is placed at the position of use, then the damper 104 is mounted on the foot board 105 by using the top side joint damper 104 of the platform plate 103, and after the mounting is completed, both feet are placed on the top side of the foot board 105.
The tapping inspection mechanism 3 comprises a front block 301, a limiting rod bar 302, a bolt bracket 303, a baffle arm 304, a damping hinge seat 305, a threaded adjusting rod 306, a binding joint 307, a tapping head 308, a steel wire rope 309, a carrying hinge head 3010, an outer frame 3011, a pneumatic pressing bar 3012, a winding drum 3013, a winding motor 3014, an inner convex plate 3015, a hydraulic cylinder bar 3016 and a spring stress head 3017, wherein the front block 301 is connected with one end of a lifting arm 208 in a bolt manner, the limiting rod bar 302 is arranged above one end of the front block 301, the baffle arm 304 is connected with the top side of the front block 301 in a bolt manner through the bolt bracket 303, the damping hinge seat 305 is arranged on the inner side of one end of the baffle arm 304, the threaded adjusting rod 306 is arranged at one end of the damping hinge seat 305, and the tapping head 308 is arranged at one end of the threaded adjusting rod 306.
In this embodiment, after the pneumatic pressing strip 3012 is matched with the carrying articulated head 3010 to achieve the braking effect, when a test is needed, the output end is driven to operate by using the output power of the pneumatic pressing strip 3012 on the outer frame 3011, so that one end of the pneumatic pressing strip 3012 is loosened, after the loosening, the elastic force on the damping articulated seat 305 can be formed to form elastic acting force, so that the damping articulated seat 305, the threaded adjusting rod 306 and the tapping head 308 are struck, and the steel wire rope 309 on the winding drum 3013 is driven to transmit, so that the tapping head 308 is struck to the detection position of a patient.
One side of the tapping head 308 is provided with a binding joint 307, the binding joint 307 is bound and connected with a steel wire rope 309, a carrying hinge head 3010 is carried on the side of the steel wire rope 309, an outer frame 3011 is arranged on one end side of the carrying hinge head 3010, a pneumatic pressing strip 3012 is arranged on the inner side of the outer frame 3011, and a winding cylinder 3013 connected with the output end of a winding motor 3014 is bound at one end of the steel wire rope 309.
In this embodiment, when the tapping inspection mechanism 3 is operated to a proper height, the threaded adjusting rod 306 is made to perform spiral operation so as to achieve the effect of adjusting to a proper length, then the binding section 307 is made to bind the steel wire rope 309, the output end of the winding motor 3014 is used for outputting power to drive the output end of the winding motor 3014 to perform operation, then the winding tube 3013 connected with the output end of the winding motor 3014 is used for winding the steel wire rope 309, and the pneumatic pressing strip 3012 is used for being matched with the carrying articulated joint 3010 after being wound to a proper position so as to achieve the braking effect.
The inner end of the retaining arm 304 is provided with an inner convex plate 3015, and the inner side of one end of the inner convex plate 3015 is provided with a sleeved hydraulic cylinder strip 3016, and the output end of the hydraulic cylinder strip 3016 is provided with a spring stress head 3017.
In this embodiment, when the damping hinge seat 305, the threaded adjusting rod 306 and the tapping head 308 strike, the side of the threaded adjusting rod 306 strikes the spring stress head 3017, so as to achieve the effect of limiting, and avoid damage to the patient caused by excessive force.
The working principle of the assembled nerve percussion checking device is as follows: when in use, the base block 101 below the bracket 102 is placed at a using position, then the damper 104 is spliced at the top side of the platform plate 103 to carry the foot plate 105, after carrying is finished, feet are placed at the top side of the foot plate 105, then the hand rocker 204 is used for outputting power to drive the output end to operate, then the output end of the hand rocker 204 is used for driving the meshing gear set 205 in the gear shaft cabin 202 to output power for meshing transmission, thus the meshing gear set 205 outputs power to drive the threaded sleeve 206 and the threaded rod 207 to operate, thus the threaded rod 207 can drive the lifting arm 208 to operate the tapping inspection mechanism 3 to a proper height, when the tapping inspection mechanism 3 is operated to a proper height, the threaded adjusting rod 306 is in spiral operation to achieve proper length adjustment, and then the steel wire rope 309 on the binding joint 307 is bound, then the output end of the winding motor 3014 is used for outputting power to drive the output end of the winding motor 3014 to operate, then the winding drum 3013 connected with the output end of the winding motor 3014 is used for winding the steel wire rope 309, after the winding drum is wound to a proper position, the pneumatic pressing bar 3012 is matched with the carrying hinging head 3010 to achieve the braking effect, when the pneumatic pressing bar 3012 is matched with the carrying hinging head 3010 to achieve the braking effect, the pneumatic pressing bar 3012 on the outer frame 3011 is used for outputting power to drive the output end to operate, one end of the pneumatic pressing bar 3012 is released, after the pneumatic pressing bar 3012 is released, the elastic force on the damping hinging seat 305 is formed, the damping hinging seat 305, the threaded adjusting rod 306 and the tapping head 308 are hit, the steel wire rope 309 on the winding drum 3013 is driven to transmit, the tapping head 308 is hit to the detection position of a patient, when the damping hinge seat 305, the threaded adjusting rod 306 and the tapping head 308 strike, the side of the threaded adjusting rod 306 is struck on the spring stress head 3017, so that the limiting effect is achieved, and damage to a patient caused by excessive force can be avoided.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present utility model, and various changes and modifications may be made without departing from the spirit and scope of the utility model, which is defined in the appended claims. The scope of the utility model is defined by the appended claims and equivalents thereof.

Claims (6)

1. The utility model provides an inspection device is hit to pin-connected panel nerve, includes base subassembly (1) and lift adjustment part (2), its characterized in that: lifting adjusting parts (2) assembled by bolts are arranged above two ends of the base assembly (1), and a tapping checking mechanism (3) assembled by bolts is arranged on one side of the lifting end of the lifting adjusting part (2);
The lifting adjusting part (2) comprises an assembly base (201), a gear shaft cabin (202), a sleeve column (203), a hand lever (204), a meshing gear set (205), a thread sleeve (206), a threaded rod (207) and a lifting arm (208), wherein the gear shaft cabin (202) is connected above two ends of the base assembly (1) through the assembly base (201) through bolts, the sleeve column (203) is arranged above the gear shaft cabin (202), the meshing gear set (205) connected with the output end of the hand lever (204) is arranged inside the gear shaft cabin (202), the output end of the meshing gear set (205) is provided with the thread sleeve (206) connected with the threaded rod (207) through threads, and the lifting arm (208) is arranged on the top side of the threaded rod (207).
2. The split mounting type nerve tapping inspection device according to claim 1, wherein: the thread sleeve (206) and the central axis of the threaded rod (207) are vertically distributed with the horizontal plane of the lifting arm (208), and the gear shaft cabin (202) and the sleeve column (203) are in a sleeved structure.
3. The split mounting type nerve tapping inspection device according to claim 1, wherein: the base assembly (1) comprises a base block (101), a bracket (102), a platform plate (103), a shock absorber (104) and a foot plate (105), wherein the bracket (102) is arranged above the inner end of the base block (101), the platform plate (103) is arranged on the top side of the bracket (102), and the shock absorber (104) for installing the foot plate (105) is connected with the top side of the platform plate (103) through bolts.
4. The split mounting type nerve tapping inspection device according to claim 1, wherein: the utility model provides a click inspection mechanism (3) includes leading piece (301), spacing stick (302), bolt bracket (303), shelves arm (304), damping articulated seat (305), screw thread regulation stick (306), bind festival (307), click head (308), wire rope (309), carry on articulated head (3010), outer frame (3011), pneumatic layering (3012), rolling section of thick bamboo (3013), rolling motor (3014), interior flange (3015), pneumatic cylinder strip (3016) and spring stress head (3017), leading piece (301) bolted connection be in the one end of lifting arm (208), the one end top of leading piece (301) is provided with spacing stick (302), the top side of leading piece (301) is provided with shelves arm (304) through bolt bracket (303) bolted connection, the one end inboard of shelves arm (304) is provided with damping articulated seat (305), just the one end of damping articulated seat (305) is provided with screw thread regulation stick (306), screw thread regulation stick (306) are provided with click head (308).
5. The split mounting type nerve tapping inspection device according to claim 4, wherein: one side of the tapping head (308) is provided with a binding joint (307), the binding joint (307) is bound and connected with a steel wire rope (309), a carrying hinge joint (3010) is carried on the side of the steel wire rope (309), an outer frame (3011) is arranged on one end side of the carrying hinge joint (3010), a pneumatic pressing strip (3012) is arranged on the inner side of the outer frame (3011), and a winding drum (3013) connected with the output end of a winding motor (3014) is bound at one end of the steel wire rope (309).
6. The split mounting type nerve tapping inspection device according to claim 4, wherein: the inner end of the baffle arm (304) is provided with an inner convex plate (3015), the inner side of one end of the inner convex plate (3015) is provided with a sleeved hydraulic cylinder strip (3016), and the output end of the hydraulic cylinder strip (3016) is provided with a spring stress head (3017).
CN202323441851.3U 2023-12-18 2023-12-18 Assembled nerve percussion inspection device Active CN221555689U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202323441851.3U CN221555689U (en) 2023-12-18 2023-12-18 Assembled nerve percussion inspection device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202323441851.3U CN221555689U (en) 2023-12-18 2023-12-18 Assembled nerve percussion inspection device

Publications (1)

Publication Number Publication Date
CN221555689U true CN221555689U (en) 2024-08-20

Family

ID=92296421

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202323441851.3U Active CN221555689U (en) 2023-12-18 2023-12-18 Assembled nerve percussion inspection device

Country Status (1)

Country Link
CN (1) CN221555689U (en)

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