Artemisia argyi muscle and bone paste processing positioning tool with pre-pressing structure
By using a positioning fixture with a pre-compression structure, the mugwort tendon patch is automatically leveled using components such as inclined chutes and pre-compression rollers, which solves the problem of uneven cutting and achieves neatness and precision in cutting.
Patent Information
- Application Number
- CN202520083330.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-13
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-13
AI Technical Summary
The existing mugwort tendon and bone patch cutting and positioning device cannot ensure the neatness of the cutting area, resulting in uneven cutting in the later stages.
The positioning fixture with a pre-compression structure automatically flattens the tendons and ribs of the mugwort leaves through a combination of inclined chute, slide, rotating shaft, pre-compression roller, rack, gear, guide column and spring, ensuring neatness of the cut.
It improves the neatness of cutting mugwort bone and joint patches, ensuring the accuracy and uniformity of subsequent cutting, and is easy to use.
Smart Images

Figure CN223735017U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to moxa leaf muscle and bone paste processing technical field, specifically is a kind of moxa leaf muscle and bone paste processing with positioning tool with pre-press structure. BACKGROUND
[0002] Moxa leaf muscle and bone paste has the effect of warming meridian and dispersing cold, regulating blood circulation, relieving pain, enhancing immunity and regulating palace cold, and in the production process of moxa leaf muscle and bone paste, it is cut into the shape required by people by cutting device, when the cutting device is used, the cutting moxa leaf muscle and bone paste around needs to be extruded and limited by positioning device, part positioning device is provided with support frame on workbench, and the upper end of support frame is provided with rectangular pressing frame through the telescopic end of hydraulic rod, when using, moxa leaf muscle and bone paste is located on workbench, then the telescopic end of hydraulic rod drives rectangular pressing frame to move down by hydraulic pump, so as to cut and extrude and position moxa leaf muscle and bone paste on workbench, then external cutting device vertically moves down to cut moxa leaf muscle and bone paste in rectangular pressing frame, however, when the device cuts and positions moxa leaf muscle and bone paste, it can only extrude and position the outer edge of cutting part, cannot ensure that moxa leaf muscle and bone paste in rectangular pressing frame is neatly adhered to workbench, and further cannot ensure whether moxa leaf muscle and bone paste in rectangular pressing frame is cut neatly, therefore, we provide a kind of moxa leaf muscle and bone paste processing with positioning tool with pre-press structure. UTILITARY MODEL CONTENT
[0003] The utility model solves the technical problem of overcoming the defects of the prior art, and provides a positioning tool with pre-press structure for moxa leaf muscle and bone paste processing, which adopts a pre-pressing mode, can automatically flatten the moxa leaf muscle and bone paste to be cut before cutting and positioning the moxa leaf muscle and bone paste, ensures the subsequent cutting neatness of the moxa leaf muscle and bone paste, is convenient to use, and can effectively solve the problems in the background art.
[0004] To achieve the above object, the utility model provides the following technical scheme: a positioning tool with pre-press structure for moxa leaf muscle and bone paste processing, including connecting frame, the lower end of connecting frame is equipped with positioning bottom, and the rear wall of connecting frame is provided with sliding groove one at both ends, and one vertical moving seat is slidably connected between the sliding grooves one, and the upper side of vertical moving seat is provided with positioning pressing ring through connecting seat, and further including pre-pressing mechanism.
[0005] The pre-pressing mechanism includes an inclined sliding groove, a sliding seat, a rotating shaft and a pre-pressing roller, the inclined sliding groove is arranged on the front side of the vertical moving seat, the sliding seat is slidably connected in the inclined sliding groove, and the pre-pressing roller is rotatably connected to the front side of the sliding seat through the rotating shaft, the device adopts a pre-pressing mode, can automatically flatten the moxa leaf muscle and bone paste to be cut before cutting and positioning the moxa leaf muscle and bone paste through the transmission element, ensures the subsequent cutting neatness of the moxa leaf muscle and bone paste, and is convenient to use.
[0006] Further, the single-chip microcomputer is located outside the connecting frame, an input end of the single-chip microcomputer is electrically connected with an external power supply, and the single-chip microcomputer controls the electrical element.
[0007] Further, the pre-pressing mechanism further comprises a rack plate and a gear, the rack plate is arranged on the front side of the vertical moving seat, the outer side rear end of the rotating shaft is provided with the gear, the gear is in meshing connection with the rack plate, and the pre-pressing mechanism in the positioning tool for processing the eijia tendinous and bone paste can be reversely rotated while the pre-pressing roller moves to the right.
[0008] Further, the pre-pressing mechanism further comprises a guide column and a spring, the guide column is arranged in the interior of the inclined sliding groove, the sliding seat is in sliding connection with the outer side of the guide column through the sliding hole formed in the middle portion of the sliding seat, the spring is arranged between the right side of the sliding seat and the inclined sliding groove, the spring is movably sleeved with the outer side of the guide column, and the late automatic reset of the internal components of the pre-pressing mechanism is realized through the compression elastic force of the spring.
[0009] Further, the upper middle portion of the connecting frame is provided with an electro-hydraulic push rod one, an input end of the electro-hydraulic push rod one is electrically connected with an output end of the single-chip microcomputer, and the telescopic end of the electro-hydraulic push rod one is fixedly connected with the upper side of the connecting seat, so that the device provides power for the cutting and extruding positioning of the eijia tendinous and bone paste.
[0010] Further, the lower side of the positioning pressing ring is provided with a rectangular rubber pad, so that the contact and positioning pressure between the positioning pressing ring and the eijia tendinous and bone paste is improved.
[0011] Further, the lower right end of the vertical moving seat is provided with a fixing seat, the lower side of the fixing seat is provided with an electro-hydraulic push rod two, an input end of the electro-hydraulic push rod two is electrically connected with an output end of the single-chip microcomputer, the telescopic end of the electro-hydraulic push rod two is provided with a conical intercepting seat, the conical intercepting seat is installed in cooperation with the rotating shaft, and the rotating shaft left reset in the positioning tool for processing the eijia tendinous and bone paste is intercepted and limited.
[0012] Compared with the prior art, the eijia tendinous and bone paste processing positioning tool with the pre-pressing structure has the following advantages.
[0013] When the cutting and extruding positioning is performed in the eijia tendinous and bone paste cutting process, through the inclined sliding groove, the sliding seat, the rotating shaft, the pre-pressing roller, the rack plate, the gear, the guide column and the spring, the eijia tendinous and bone paste to be cut can be automatically leveled before the eijia tendinous and bone paste is cut and positioned, so that the subsequent cutting neatness of the eijia tendinous and bone paste is ensured, and the use is convenient. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a structural schematic view of the utility model;
[0015] Figure 2 It is a rear side structural schematic view of the utility model;
[0016] Figure 3The utility model discloses a top view structure schematic diagram shows that the utility model discloses a pre-pressing roller structure schematic diagram shows.
[0017] Figure 4 The utility model discloses a pre-pressing roller structure schematic diagram shows.
[0018] Figure 5 The utility model discloses a place amplification structure schematic diagram shows.
[0019] In the drawing: 1 connecting frame, 2 singlechip, 3 positioning base, 4 sliding groove one, 5 vertical displacement seat, 6 connecting seat, 7 positioning pressure ring, 8 pre-pressing mechanism, 81 inclined sliding groove, 82 sliding seat, 83 rotating shaft, 84 pre-pressing roller, 85 rack plate, 86 gear, 87 guide column, 88 spring, 9 electro-hydraulic push rod one, 10 rectangular rubber pad, 11 fixed seat, 12 electro-hydraulic push rod two, 13 conical intercepting seat. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative work fall within the scope of the utility model.
[0021] Please refer to Figures 1-5 The utility model discloses a kind of positioning tool for processing with pre-pressing structure's leafy artemisia muscle and bone paste, including connecting frame 1, the lower end of connecting frame 1 is equipped with positioning base 3, the rear wall of connecting frame 1 left and right ends are all equipped with sliding groove one 4, one vertical displacement seat 5 is slidably connected between sliding groove one 4, the upper side of vertical displacement seat 5 is equipped with positioning pressure ring 7 by connecting seat 6, further including singlechip 2, singlechip 2 is located at the outside of connecting frame 1, the input end of singlechip 2 is electrically connected with external power supply, the upper side middle part of connecting frame 1 is equipped with electro-hydraulic push rod one 9, the input end of electro-hydraulic push rod one 9 is electrically connected with the output end of singlechip 2, the telescopic end of electro-hydraulic push rod one 9 is fixedly connected with the upper side of connecting seat 6, the lower side of positioning pressure ring 7 is equipped with rectangular rubber pad 10, by the outside of material conveying device, uncut leafy artemisia muscle and bone paste is transported along the upper surface of positioning base 3 from left to right, when cutting positioning in the processing of leafy artemisia muscle and bone paste, external material conveying device is closed, so that leafy artemisia muscle and bone paste is in stationary fixed state, then singlechip 2 controls electro-hydraulic push rod one 9, and its telescopic end drives connecting seat 6 to move vertically downwards, the lower end of connecting seat 6 drives vertical displacement seat 5 to slide along sliding groove one 4, further including pre-pressing mechanism 8;
[0022] The pre-pressing mechanism 8 comprises an inclined sliding groove 81, a sliding seat 82, a rotating shaft 83 and a pre-pressing roller 84, the inclined sliding groove 81 is arranged on the front side of the vertical moving seat 5, the sliding seat 82 is slidably connected in the inclined sliding groove 81, the pre-pressing roller 84 is rotatably connected to the front side of the sliding seat 82 through the rotating shaft 83, the pre-pressing mechanism 8 further comprises a rack plate 85 and a gear 86, the rack plate 85 is arranged on the front side of the vertical moving seat 5, the gear 86 is arranged on the outer side of the rear end of the rotating shaft 83, the gear 86 is in meshing connection with the rack plate 85, the pre-pressing mechanism 8 further comprises a guide column 87 and a spring 88, the guide column 87 is arranged in the inclined sliding groove 81, the sliding seat 82 is slidably connected to the outer side of the guide column 87 through a sliding hole arranged in the middle of the sliding seat 82, the spring 88 is arranged between the right side of the sliding seat 82 and the inclined sliding groove 81, the spring 88 is movably sleeved with the outer side of the guide column 87, the lower right end of the vertical moving seat 5 is provided with a fixing seat 11, the lower side of the fixing seat 11 is provided with an electro-hydraulic push rod 12, the input end of the electro-hydraulic push rod 12 is electrically connected with the output end of the single-chip microcomputer 2, the telescopic end of the electro-hydraulic push rod 12 is provided with a conical intercepting seat 13, the conical intercepting seat 13 is cooperatively arranged with the rotating shaft 83, the spring 88 is always in compression, the front end of the connecting seat 6 drives the positioning pressing ring 7 to synchronously move downward, along with the vertical moving seat 5 sliding downward along the sliding groove 1, when the vertical moving seat 5 moves downward to the lower end of the outer side of the pre-pressing roller 84 and contacts with the upper side of the positioning base 3, along with the vertical moving seat 5 continuously moving downward, the pre-pressing roller 84 is pressed to drive the sliding seat 82 to overcome the compression force of the spring 88 and slide rightward along the inclined sliding groove 81 through the rotating shaft 83, the spring 88 is gradually contracted again, in this process, the lower end of the outer side of the pre-pressing roller 84 is always in contact with the upper side of the positioning base 3 with a certain pressure, along with the sliding seat 82 sliding rightward along the inclined sliding groove 81, the sliding seat 82 drives the gear 86 to synchronously move through the rotating shaft 83, the gear 86 is in meshing connection with the rack plate 85, so that the rotating shaft 83 drives the pre-pressing roller 84 to reversely rotate, the pre-pressing roller 84 is in contact with and extrudes the right moving positioning base 3 along the upper side of the positioning base 3 while reversely rotating, so that the uncut mugwort tendon paste on the positioning base 3 is horizontally moved rightward, at the same time, since two helical protrusions arranged on the upper side of the pre-pressing roller 84 are in opposite helical directions and both are directed to the end away from the center of the device in the longitudinal direction, along with the pre-pressing roller 84 moving rightward, the uncut mugwort tendon paste on the positioning base 3 is extruded and pulled by the two helical protrusions from the middle to the both ends in the longitudinal direction, so that the uncut mugwort tendon paste on the positioning base 3 is subjected to horizontal and longitudinal external force, the mugwort tendon paste is evenly and closely attached to the positioning base 3, the extrusion effect of the positioning pressing ring 7 on the mugwort tendon paste is improved, which facilitates the vertical downward cutting operation of the external cutting device on the mugwort tendon paste in the positioning pressing ring 7, when the pre-pressing roller 84 moves along the upper side of the positioning base 3 to the rightmost end of the positioning pressing ring 7 in the vertical direction, along with the pre-pressing roller 84 continuously moving rightward along the upper side of the positioning base 3, the lower side of the positioning pressing ring 7 gradually contacts with the upper side of the positioning base 3,This process involves cutting, positioning, and squeezing the uncut mugwort tendon patch on the positioning base 3. The rectangular rubber pad 10 increases the contact resistance between the positioning ring 7 and the uncut mugwort tendon patch on the positioning base 3, preventing relative sliding. Simultaneously, the microcontroller 2 activates the electro-hydraulic push rod 12, causing its telescopic end to move the conical interceptor seat 13 upwards. This intercepts the leftward movement of the rear end of the rotating shaft 83, preventing the rotating shaft 83 from sliding uninterrupted during the subsequent upward repositioning process of the positioning ring 7. The compression force of the spring 88 then allows the shaft to slide back to the left along the upper side of the positioning base 3, thus preventing damage to the cut mugwort tendon patch on the positioning base 3. After the mugwort tendon patch is positioned and cut on the positioning base 3, the microcontroller 2 controls the electro-hydraulic push rod 9 to move upward and reset. When the lower side of the vertical moving seat 5 rises to the upper side of the positioning base 3, the microcontroller 2 controls the electro-hydraulic push rod 12 to move its telescopic end to drive the conical intercepting seat 13 downward and reset, thereby releasing the leftward movement limit on the rotating shaft 83. Subsequently, the compression force of the spring 88 causes the slide 82 to slide left along the inclined slide groove 81, thereby resetting the pre-pressure roller 84. This device uses a pre-pressure method, which can automatically flatten the mugwort tendon patch to be cut before the mugwort tendon patch is cut and positioned through the transmission element, ensuring the neatness of the subsequent cutting of the mugwort tendon patch and making it convenient to use.
[0023] The working principle of the positioning tool for processing the ephedra muscle and bone paste with a pre-pressing structure is as follows: the spring 88 is always in a compressed state, and the uncut ephedra muscle and bone paste is conveyed from left to right along the upper surface of the positioning base 3 through an external conveying device; when the ephedra muscle and bone paste is cut and positioned during the processing, the external conveying device is closed, so that the ephedra muscle and bone paste is in a stationary and fixed state; then the single-chip microcomputer 2 controls the electro-hydraulic push rod one 9 to drive the connecting seat 6 to move vertically downwards, the lower end of the connecting seat 6 drives the vertical moving seat 5 to slide downwards along the sliding groove one 4, the front end of the connecting seat 6 drives the positioning pressing ring 7 to move downwards synchronously, and as the vertical moving seat 5 slides downwards along the sliding groove one 4, when the vertical moving seat 5 moves downwards to the outer lower end of the pre-pressing roller 84 and contacts the upper side of the positioning base 3, as the vertical moving seat 5 continues to move downwards, the pre-pressing roller 84 is pressed to drive the sliding seat 82 to overcome the compression elasticity of the spring 88 and slide rightwards along the inclined sliding groove 81 through the rotating shaft 83, and the spring 88 is gradually contracted again; during the process, the outer lower end of the pre-pressing roller 84 is always in contact with the upper side of the positioning base 3 with a certain pressure, as the sliding seat 82 slides rightwards along the inclined sliding groove 81, the sliding seat 82 drives the gear 86 to move synchronously through the rotating shaft 83, the gear 86 is connected with the rack plate 85 through meshing, so that the rotating shaft 83 drives the pre-pressing roller 84 to rotate reversely, so that the pre-pressing roller 84 contacts and extrudes the right-moving ephedra muscle and bone paste on the upper side of the positioning base 3 while reversely rotating, so that the uncut ephedra muscle and bone paste on the positioning base 3 is horizontally driven to the right side, and as the two helical protrusions provided on the upper side of the pre-pressing roller 84 are opposite in helical direction and are directed away from the device center in the longitudinal direction, as the pre-pressing roller 84 moves rightwards, the two helical protrusions apply extrusion and pulling forces to the ephedra muscle and bone paste on the positioning base 3 from the middle part to the longitudinal two ends, so that the uncut ephedra muscle and bone paste on the positioning base 3 is subjected to horizontal and longitudinal external forces, the ephedra muscle and bone paste is flatly attached to the positioning base 3, the ephedra muscle and bone paste in the positioning pressing ring 7 is closely attached to the upper side of the positioning base 3, the extrusion effect of the positioning pressing ring 7 on the ephedra muscle and bone paste is improved, the ephedra muscle and bone paste in the positioning pressing ring 7 is conveniently subjected to vertical downward cutting operation by the external cutting device, when the pre-pressing roller 84 moves along the upper side of the positioning base 3 to the rightmost vertical end of the positioning pressing ring 7, as the pre-pressing roller 84 continues to move rightwards along the upper side of the positioning base 3, the lower side of the positioning pressing ring 7 gradually contacts the upper side of the positioning base 3, so that the uncut ephedra muscle and bone paste on the positioning base 3 is cut and positioned and extruded, the contact resistance between the positioning pressing ring 7 and the uncut ephedra muscle and bone paste on the positioning base 3 is increased through the rectangular rubber pad 10, so that the relative sliding phenomenon between the two is avoided, and at the same time, the single-chip microcomputer 2 drives the electro-hydraulic push rod two 12 to drive the conical intercepting seat 13 to move upwards, so that the rear end of the rotating shaft 83 is intercepted, and the pre-pressing roller 84 is prevented from moving leftwards along the upper side of the positioning base 3 and returning to the original position through the compression elasticity of the spring 88.This damages the cut mugwort tendon patch on the positioning base 3. After the mugwort tendon patch is positioned and cut on the positioning base 3, the microcontroller 2 controls the electro-hydraulic push rod 9 to move upward and reset. When the lower side of the vertical moving seat 5 rises to the upper side of the positioning base 3, the microcontroller 2 controls the electro-hydraulic push rod 12 to move its telescopic end to drive the conical intercepting seat 13 downward and reset, thereby releasing the leftward movement limit on the rotating shaft 83. Subsequently, the compression force of the spring 88 causes the slide 82 to slide left along the inclined slide groove 81, thereby resetting the pre-pressure roller 84.
[0024] It is worth noting that the microcontroller 2 disclosed in the above embodiments can be MCS-51, the electro-hydraulic actuator 9 can be DYTZ-1000, and the electro-hydraulic actuator 12 can be DYZW integral straight micro electro-hydraulic actuator. The microcontroller 2 controls the operation of the electro-hydraulic actuator 9 and the electro-hydraulic actuator 12 using methods commonly used in the prior art.
[0025] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A positioning fixture for processing Artemisia argyi plaster with a pre-compression structure, comprising a connecting frame (1), wherein the lower end of the connecting frame (1) is provided with a positioning base (3), and both the left and right ends of the rear wall of the connecting frame (1) are provided with sliding grooves (4), and a vertical sliding seat (5) is slidably connected between the sliding grooves (4), and a positioning pressure ring (7) is provided on the upper side of the vertical sliding seat (5) through the connecting seat (6), characterized in that: It also includes a pre-press mechanism (8); The pre-press mechanism (8) comprises an inclined chute (81), a sliding seat (82), a rotating shaft (83) and a pre-press roller (84), the inclined chute (81) is arranged on the front side of the vertical moving seat (5), the sliding seat (82) is slidably connected in the inclined chute (81), and the pre-press roller (84) is rotatably connected to the front side of the sliding seat (82) through the rotating shaft (83).
2. The positioning fixture for processing Artemisia argyi plaster with a pre-compression structure according to claim 1, characterized in that: It also includes a single-chip microcomputer (2), which is located outside the connecting frame (1), and the input end of the single-chip microcomputer (2) is electrically connected with an external power supply.
3. The positioning fixture for processing Artemisia argyi plaster with a pre-compression structure according to claim 1, characterized in that: The pre-press mechanism (8) further comprises a rack plate (85) and a gear (86), the rack plate (85) is arranged on the front side of the vertical moving seat (5), the outer side rear end of the rotating shaft (83) is provided with the gear (86), and the gear (86) is in meshing connection with the rack plate (85).
4. The positioning fixture for processing Artemisia argyi plaster with a pre-compression structure according to claim 1, characterized in that: The pre-press mechanism (8) further comprises a guide column (87) and a spring (88), the guide column (87) is arranged in the inclined chute (81), the sliding seat (82) is slidably connected with the outer side of the guide column (87) through a sliding hole formed in the middle of the sliding seat (82), the spring (88) is arranged between the right side of the sliding seat (82) and the inclined chute (81), and the spring (88) is movably sleeved with the outer side of the guide column (87).
5. The positioning fixture for processing Artemisia argyi plaster with a pre-compression structure according to claim 2, characterized in that: The upper side of the connecting frame (1) is provided with an electro-hydraulic push rod (9), the input end of the electro-hydraulic push rod (9) is electrically connected with the output end of the single-chip microcomputer (2), and the telescopic end of the electro-hydraulic push rod (9) is fixedly connected with the upper side of the connecting seat (6).
6. The positioning fixture for processing Artemisia argyi plaster with a pre-compression structure according to claim 1, characterized in that: The lower side of the positioning pressure ring (7) is provided with a rectangular rubber pad (10).
7. The positioning fixture for processing Artemisia argyi plaster with a pre-compression structure according to claim 2, characterized in that: The lower side of the vertical moving seat (5) is provided with a fixed seat (11), the lower side of the fixed seat (11) is provided with an electro-hydraulic push rod (12), the input end of the electro-hydraulic push rod (12) is electrically connected with the output end of the single-chip microcomputer (2), and the telescopic end of the electro-hydraulic push rod (12) is provided with a conical intercepting seat (13), and the conical intercepting seat (13) is installed in cooperation with the rotating shaft (83).