Needle crack detection device for acupuncture and moxibustion
By using a needle tail fixing bracket and a rotary motor in conjunction with a unidirectional translation component, the problem of excessive swing arc during needle testing is solved, achieving efficient and stable needle crack detection.
Patent Information
- Application Number
- CN202520196391.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-08
AI Technical Summary
Existing acupuncture needle crack detection devices are prone to excessive swinging arcs during testing due to the thin and long needles, which affects the testing speed.
The needle tail fixing bracket and replaceable needle tail fixing soft washer are used, combined with a rotary motor and unidirectional translation component to ensure that the needle does not swing significantly during the detection process, and multi-angle observation is achieved through 3D microscope and analyzer.
It improves the speed and accuracy of needle detection and avoids the risk of needles bending or scratching the lens due to improper clamping.
Smart Images

Figure CN223808336U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to acupuncture field, specifically point to acupuncture needle utensil crack detection device. BACKGROUND
[0002] In the existing traditional Chinese medicine treatment type, acupuncture as our country's traditional medical skill is widely used in the treatment of orthopedics, internal medicine, gynecology, ophthalmology, dermatology and other departments, in order to ensure the normal operation in the process of acupuncture, the needle utensil used by doctors must be strictly inspected, so as to prevent the needle from breaking in the human body during acupuncture; In the detection type of acupuncture, firstly, whether the crack appears on the surface of the needle utensil is determined, and the depth of the crack is detected, and whether it will affect the quality of the needle utensil is analyzed.
[0003] The existing acupuncture needle utensil crack detection device mainly detects the surface of the needle utensil through the crack electronic analysis device, installs the needle clamping assembly and the one-way translation assembly for controlling the displacement of the needle clamping assembly under the lens of the crack electronic analysis device, clamps the needle on the chuck of the needle clamping assembly during detection, moves the needle to the lens of the crack electronic analysis device through the one-way translation assembly, starts the crack electronic analysis device to analyze the outer edge of the needle, and rotates the angle of the needle clamping assembly during detection, so that the crack electronic analysis device can observe the angle of the needle under the lens, and moves the one-way translation assembly to detect other areas of the needle after observation.
[0004] Although this detection method can accurately detect the crack data of the needle utensil, some needle utensils are thin and long, which makes it often swing with large amplitude during detection if a motor is used, so all operations need to be manually operated, which makes the detection speed slow. UTILITY MODEL CONTENTS
[0005] The technical problem to be solved by the utility model is that the existing acupuncture needle utensil crack detection device will cause the needle to bend during measurement due to the thin and long characteristics of some needle utensils, and the swing amplitude of the needle is large when the needle is rotated, thereby greatly affecting the detection speed.
[0006] To solve the above technical problems, the technical scheme provided by the utility model is as follows: an acupuncture needle utensil crack detection device, comprising a crack electronic analysis device, a needle clamping assembly is arranged below the lens of the crack electronic analysis device, a one-way translation assembly is arranged below the needle clamping assembly, a needle tail fixing frame is arranged on the opposite side of the needle clamping assembly, a replaceable needle tail fixing soft gasket is arranged in the needle tail fixing frame, and a rotary motor for controlling the autonomous rotation of the needle clamping assembly is arranged on one side of the bottom surface of the needle clamping assembly.
[0007] As an improvement, the crack electronic analysis device comprises a 3D microscope for detecting the needle, a height adjusting assembly for controlling the height of the 3D microscope, and an analyzer for displaying and analyzing the 3D microscope data, and the height adjusting assembly controls the height of the 3D microscope through the engagement of the gear set.
[0008] As an improvement, a fixing table is arranged below the height adjusting assembly and the analyzer, the one-way translation assembly comprises a rotating plate penetrating through the upper surface of the fixing table, a convex sliding fixed block penetrating through one side of the rotating plate, and a screw rod penetrating through the convex sliding fixed block, the side surface open end of the rotating plate is provided with a sealing plate fixed through a bolt mechanism, and the cylindrical end of the screw rod penetrates through the sealing plate.
[0009] As an improvement, a rotating handle is arranged on one side of the sealing plate of the screw rod.
[0010] As an improvement, the needle clamping assembly comprises a T-shaped clamping plate penetrating through the side wall of the convex sliding fixed block, and a movable sliding plate penetrating through the thick cylindrical surface side wall of the T-shaped clamping plate, the side surface groove of the T-shaped clamping plate is connected with the movable sliding plate through a plurality of bolt structures, and the thin column end bottom surface of the T-shaped clamping plate is connected with the output shaft of the rotating motor through a connecting key.
[0011] As an improvement, the bottom surface of the movable sliding plate and the bottom surface of the side surface groove of the T-shaped clamping plate are both provided with a needle head clamping groove corresponding to the center through hole of the replaceable needle tail fixed soft gasket.
[0012] Compared with the prior art, the device has the following advantages: the needle tail fixing frame is installed on the other side of the needle clamping assembly, and the replaceable needle tail fixed soft gasket is installed in the needle tail fixing frame, which can ensure that the needle does not have a large swing arc during monitoring, and the replaceable needle tail fixed soft gasket can be matched with the size of the needle, so that the needle clamping is not too tight and cannot rotate during detection, and when the swing arc of the needle is stable, the rotating motor can be installed on the other side of the needle tail fixing frame to improve the detection speed. BRIEF DESCRIPTION OF DRAWINGS
[0013] Figure 1 is the overall structure diagram of the needle crack detection device for acupuncture and moxibustion.
[0014] Figure 2 is the crack electronic analysis device sectional view of the needle crack detection device for acupuncture and moxibustion.
[0015] Figure 3 is the one-way translation assembly sectional view of the needle crack detection device for acupuncture and moxibustion.
[0016] Figure 4The utility model relates to an explosion map of needle tail fixing frame of acupuncture needle crack detection device.
[0017] As shown in the drawing: 1, crack electronic analysis device, 11, 3D microscope, 12, height adjusting assembly, 13, analyzer, 2, needle clamp assembly, 21, T-shaped clamp plate, 22, movable slide plate, 3, one-way translation assembly, 31, rotating plate, 32, convex sliding fixed block, 33, screw rod, 331, rotating handle, 34, sealing plate, 4, needle tail fixing frame, 41, replaceable needle tail fixing soft washer, 5, rotating motor, 6, fixed table. Specific embodiments
[0018] The utility model makes further detailed description in combination with the drawings.
[0019] As shown in the drawing Figure 1 , 2 , including crack electronic analysis device 1, crack electronic analysis device 1 includes the 3D microscope 11 of detection needle, the height adjusting assembly 12 of control 3D microscope 11 height and the analyzer 13 of display and analysis 3D microscope 11 data, and height adjusting assembly 12 controls the height of 3D microscope 11 through the meshing of gear group, the lower of height adjusting assembly 12 and analyzer 13 is equipped with fixed table 6, height adjusting assembly 12 is fixed on fixed table 6 using screw, then uses data line to communicate 3D microscope 11 and analyzer 13, 3D microscope 11 can rotate lens under normal circumstances, to this adaptation different angle observation, and height adjusting assembly 12 controls height through the mutual meshing of gear combination, can guarantee the accuracy of height adjustment.
[0020] As shown in the drawing Figure 1 , 3As shown, the lens of the crack electronic analysis device 1 is provided with a needle clamping assembly 2, and the lower side of the needle clamping assembly 2 is provided with a one-way translation assembly 3, the opposite side of the needle clamping assembly 2 is provided with a needle tail fixing frame 4, and the inside of the needle tail fixing frame 4 is provided with a replaceable needle tail fixing soft gasket 41 which passes through the needle tail fixing frame 4, the one-way translation assembly 3 includes a rotating plate 31 which passes through the upper surface of the fixed table 6, a convex sliding fixed block 32 which passes through one side of the rotating plate 31, and a screw rod 33 which passes through the convex sliding fixed block 32, the side open end of the rotating plate 31 is provided with a sealing plate 34 which is fixed by a bolt mechanism, and the cylindrical end of the screw rod 33 passes through the sealing plate 34, the side of the sealing plate 34 of the screw rod 33 is provided with a rotating handle 331, a bearing is installed on the shaft of the bottom surface of the rotating plate 31, and then the bearing is inserted into the bearing hole on the fixed table 6, so as to control the angle of the rotating plate 31, realize multi-angle observation of the needle clamping assembly 2, the rough end surface of the convex sliding fixed block 32 is slid into the side sliding groove of the rotating plate 31, and then the threaded end of the screw rod 33 is screwed into the screw hole of the rough end surface of the convex sliding fixed block 32, the sliding of the convex sliding fixed block 32 in the side sliding groove of the rotating plate 31 is controlled by the rotation of the screw rod 33, the sealing plate 34 is sleeved on the shaft of the outer end of the screw rod 33, and it is fixed on the side sliding groove open end of the rotating plate 31 by using a screw, so as to close the opening, and then the rotating handle 331 is installed on the shaft of the outer end of the screw rod 33 by using a pin, so as to facilitate the rotation of the screw rod 33.
[0021] As shown in the description accompanying drawings Figure 3 、 4 As shown, the bottom side of the needle clamping assembly 2 is provided with a rotating motor 5 which controls the autonomous rotation of the needle clamping assembly 2, the needle clamping assembly 2 includes a T-shaped clamping plate 21 which passes through the side wall of the convex sliding fixed block 32, and a movable sliding plate 22 which passes through the rough cylindrical surface side wall of the T-shaped clamping plate 21, the side groove of the T-shaped clamping plate 21 is connected with the movable sliding plate 22 by a plurality of bolt structures, and the bottom surface of the thin column end of the T-shaped clamping plate 21 is connected with the output shaft of the rotating motor 5 by a connecting key, the bottom surface of the movable sliding plate 22 and the bottom surface of the side groove of the T-shaped clamping plate 21 are both provided with a needle head clamping groove 23 which corresponds to the center through hole of the replaceable needle tail fixing soft gasket 41, the thin column end of the T-shaped clamping plate 21 passes through the side wall through hole of the convex sliding fixed block 32, the output shaft of the rotating motor 5 is connected in the top surface connecting key groove of the thin column end of the T-shaped clamping plate 21 by using a connecting key, the rotating motor 5 is fixed on the convex sliding fixed block 32 by using a screw, and it is connected on the control interface of the analyzer 13 by using a data line, then the needle head clamping groove 23 of the movable sliding plate 22 is aligned with the needle head clamping groove 23 of the bottom surface of the movable sliding plate 22, and the relative position of the two needle head clamping grooves 23 is fixed by screwing the screw holes on both sides of the needle head clamping groove 23.
[0022] The opposite side of the needle clamp assembly 2 is provided with a needle tail fixing frame 4, and the inside of the needle tail fixing frame 4 is provided with a replaceable needle tail fixing soft gasket 41 penetrating through the needle tail fixing frame 4, the needle tail fixing frame 4 is welded on the opposite end of the convex sliding fixing block 32 by using a welding machine, and a through hole for storing the replaceable needle tail fixing soft gasket 41 is opened on the needle tail fixing frame 4 according to the center of the needle head clamping groove 23 as the origin, the replaceable needle tail fixing soft gasket 41 is a soft structure and has high deformation ability, so that the situation that the needle is twisted off due to the too small center hole of the replaceable needle tail fixing soft gasket 41 can be avoided when the needle is detected.
[0023] In the specific implementation, the needle to be detected is clamped in the needle head clamping groove 23, and the screw above the movable sliding plate 22 is tightened to clamp the needle, the rotating handle 331 is slowly rotated to move the convex sliding fixing block 32 towards the needle tail fixing frame 4, then the needle tail is inserted into the center hole of the replaceable needle tail fixing soft gasket 41, the focal length of the 3D microscope 11 is adjusted by the analyzer 13 to make the needle clearly displayed on the screen of the analyzer 13, then the rotating speed of the rotating motor 5 is adjusted according to the size of the needle to make the needle rotate independently to speed up the quality inspection, then the rotating handle 331 is slowly reversed to gradually move the convex sliding fixing block 32 away from the needle tail fixing frame 4, so that other parts of the needle are measured, and when the needle tail is detected, the rotating speed of the rotating motor 5 needs to be adjusted to avoid scratching the 3D microscope 11 by the needle.
[0024] The above describes the utility model and its implementation, which is not limited, and the drawings only show one of the embodiments of the utility model, and the actual structure is not limited. In summary, if a person skilled in the art is inspired, without departing from the purpose of the utility model, without creative design, similar structure and embodiments of the technical scheme should belong to the protection scope of the utility model.
Claims
1. An acupuncture needle crack detection device, comprising a crack electronic analysis device (1), a needle clamping assembly (2) is arranged below the lens of the crack electronic analysis device (1), and a one-way translation assembly (3) is arranged below the needle clamping assembly (2), characterized in that: The opposite side of the needle clamp assembly (2) is provided with a needle tail fixing frame (4), and the inside of the needle tail fixing frame (4) is provided with a replaceable needle tail fixing soft washer (41) penetrating through the needle tail fixing frame (4), and the bottom side of the needle clamp assembly (2) is provided with a rotary motor (5) for controlling the autonomous rotation of the needle clamp assembly (2).
2. The needle crack detection device for acupuncture according to claim 1, characterized in that: The crack electronic analysis device (1) comprises a 3D microscope (11) for detecting a needle, a height adjusting assembly (12) for controlling the height of the 3D microscope (11), and an analyzer (13) for displaying and analyzing the data of the 3D microscope (11), and the height adjusting assembly (12) controls the height of the 3D microscope (11) through the engagement of the gear set.
3. The needle crack detection device for acupuncture according to claim 2, characterized in that: The lower side of the height adjusting assembly (12) and the analyzer (13) is provided with a fixed table (6), the one-way translation assembly (3) comprises a rotating plate (31) penetrating through the upper surface of the fixed table (6), a convex sliding fixed block (32) penetrating through one side of the rotating plate (31), and a screw rod (33) penetrating through the convex sliding fixed block (32), the side open end of the rotating plate (31) is provided with a sealing plate (34) fixed by a bolt mechanism, and the cylindrical end of the screw rod (33) penetrates through the sealing plate (34).
4. The needle crack detection device for acupuncture according to claim 3, characterized in that: The side of the sealing plate (34) of the screw rod (33) is provided with a rotating handle (331).
5. The needle crack detection device for acupuncture according to claim 3, characterized in that: The needle clamp assembly (2) comprises a T-shaped clamping plate (21) penetrating through the side wall of the convex sliding fixed block (32) and a movable sliding plate (22) penetrating through the coarse cylindrical side wall of the T-shaped clamping plate (21), the side groove of the T-shaped clamping plate (21) is connected with the movable sliding plate (22) through a plurality of bolt structures, and the fine column end bottom surface of the T-shaped clamping plate (21) is connected with the output shaft of the rotary motor (5) through a connecting key.
6. The needle crack detection device for acupuncture according to claim 5, characterized in that: The bottom surface of the movable sliding plate (22) and the bottom surface of the side groove of the T-shaped clamping plate (21) are both provided with a needle head clamping groove (23) corresponding to the center through hole of the replaceable needle tail fixing soft washer (41).