Multi-cutter plane medicine cutting device
By designing a multi-blade planar medicine cutting device and using multiple cutters to synchronously cut block medicinal materials, the problems of low efficiency and safety hazards in medicine slicing in the existing technology are solved, and efficient and safe medicine slicing production is achieved.
Patent Information
- Application Number
- CN202422930232.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-11-28
AI Technical Summary
In the existing technology, drug slicing efficiency is low and there are safety hazards. Single-blade slicers lead to high production costs, and manual slicing is inefficient and dangerous.
A multi-blade planar medicine cutting device is designed, which includes a support frame, a cutting plate, a cutter, a material frame assembly, a driving mechanism and a pressing mechanism. Multiple cutters are used to cut block medicinal materials simultaneously, and the driving mechanism and the pressing mechanism are used to achieve synchronous slicing of multiple medicinal materials.
It improves the efficiency of drug slicing, reduces the safety risks of manual operation, and reduces production costs.
Smart Images

Figure CN223407042U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of pharmaceutical equipment, in particular to a multi-blade plane medicine cutting device. Background Art
[0002] During pharmaceutical processing, some drugs need to be sliced. Some factories currently perform this slicing manually, a method that is not only inefficient but also poses a risk of hand injuries. Other factories use dedicated slicers, but these typically only have a single blade, effectively cutting a single slice. This method significantly reduces efficiency and increases hidden production costs. Utility Model Content
[0003] In view of the deficiencies in the prior art, the technical problem to be solved by the present invention is to provide a multi-blade planar medicine cutting device that can process multiple slices at the same time, thereby greatly improving production efficiency.
[0004] In order to achieve the above-mentioned purpose, the present invention is realized through the following technical solutions: a multi-blade planar medicine cutting device, comprising:
[0005] Support frame;
[0006] A cutting plate is provided on the support frame, and the cutting plate is provided with vertically penetrating material leakage grooves at intervals along its length direction;
[0007] A cutter is provided next to each leakage trough, wherein the blade of the cutter is located at the top of the cutter, and the slices cut by the cutter can leak out from the adjacent leakage trough;
[0008] A material frame assembly is used to store block-shaped medicinal materials. The material frame assembly is suspended above the cutting plate and can slide along the length of the cutting plate. The top and bottom ends of the material frame assembly are both open;
[0009] a driving mechanism, disposed on the support frame and connected to the material frame assembly, for driving the material frame assembly to move along the length direction of the cutting plate; and
[0010] The pressing mechanism is arranged on the material frame assembly and is used to press the block medicinal materials in the material frame assembly into the material frame assembly.
[0011] Furthermore, the driving mechanism includes a guide rail, a slider, a bar tooth, a gear and a rotating power source. The guide rail is fixed on the cutting board and is arranged along the length direction of the cutting board. The slider is fixed on the material frame assembly. The slider and the guide rail can be slidably engaged, and the material frame assembly is suspended by the support of the slider. The bar tooth is fixed on the cutting board and is arranged parallel to the guide rail. The gear is rotatably arranged on the material frame assembly through a rotating shaft and engages with the bar tooth. The rotating power source is connected to the rotating shaft for driving the gear to rotate.
[0012] Furthermore, the pressing mechanism includes a mounting frame, a lifting mechanism and a pressure plate. The mounting frame is vertically arranged on the material frame assembly, the lifting mechanism is arranged on the mounting frame, and the pressure plate is arranged on the lifting shaft of the lifting mechanism and is located so as to be pressed against the inner frame of the material frame assembly. The lifting mechanism can drive the pressure plate to lift and lower perpendicularly to the material frame assembly.
[0013] Furthermore, it also includes a material blocking structure, which includes two material blocking components. The two material blocking components are respectively arranged on the material frame component relative to each other in the movement direction of the material frame component, and are respectively located close to the front outer wall and the rear outer wall of the material frame component. The material frame component can automatically rise when encountering the cutter, and can automatically fall after it is no longer in contact with the cutter.
[0014] Furthermore, the material blocking assembly includes a guide column, an elastic member, a guide plate and a baffle, there are two guide columns, the two guide columns are arranged on the material blocking structure at intervals along the width direction of the cutting plate, each of the elastic members is sleeved with an elastic member, the guide plate can slide up and down to be sleeved with the two guide columns, and is pressed against the top of the material frame assembly by the elastic member, the material frame assembly is provided with a slot that passes through the upper and lower parts, the top of the baffle is connected to the guide plate, and the bottom end can slide through the slot and be pressed against the cutting plate, the front and rear edges of the bottom end of the cutting plate are provided with arc chamfered surfaces, the arc chamfered surfaces can slide against the blade of the cutter to lift the cutter, and the length of the guide plate is greater than the length of the outer frame of the material frame assembly.
[0015] Furthermore, the material blocking structure also includes an auxiliary lifting member, and there are multiple auxiliary lifting members. The multiple auxiliary lifting members are arranged in a one-to-one correspondence with the leakage trough. The auxiliary lifting member is fixed on the cutting plate. During the contact process between the baffle and the cutter, the auxiliary lifting member can contact the two ends of the guide plate to assist in lifting the baffle over the cutter.
[0016] Furthermore, the auxiliary lifting member includes a lifting block, and the lifting block and the two ends in the length direction of the cutting plate are provided with inclined surfaces. During the movement of the baffle back and forth along the length direction of the cutting plate, the two ends of the baffle can move along the two inclined surfaces to lift the baffle over the cutter.
[0017] Furthermore, it also includes a material receiving plate, which is arranged below the cutting plate and is used to receive the slices falling from the leakage chute.
[0018] Beneficial effects of the utility model:
[0019] When using the multi-blade planar medicine cutting device, multiple bulk medicine raw materials are first laid flat in the material frame assembly. The bulk medicine is then pressed against the cutting plate by a material pressing mechanism. The driving mechanism then drives the material frame assembly to move horizontally along the cutting plate. Each time it moves to a cutting position, as the material frame assembly continues to move forward, the cutting blade cuts the bottom surface of the bulk medicine material into the next thin slice of medicine, which leaks downward along the leakage groove. Then, the material frame assembly continues to move forward, encounters the second cutter, and cuts the next thin slice again. After moving to the end, the driving mechanism drives the material frame assembly to move back and the slicing operation is repeated until all the bulk medicine materials in the material frame assembly are sliced.
[0020] The multi-blade planar herb cutting device can simultaneously slice multiple block-shaped herbal materials with a single blade during a single cutting process. Furthermore, since multiple cutters are provided, multiple cuts can be performed during a single forward or backward movement, greatly improving work efficiency. Furthermore, since manual cutting is not required, the risk of accidental hand injuries caused by manual slicing is reduced. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] In order to more clearly illustrate the specific embodiments of the present invention, the following briefly introduces the drawings required for use in the specific embodiments. In all the drawings, each element or part is not necessarily drawn according to the actual scale.
[0022] Figure 1 A schematic diagram of a multi-blade planar medicine cutting device provided by one embodiment of the present utility model;
[0023] Figure 2 for Figure 1 A partial schematic diagram of the middle part;
[0024] Figure 3 for Figure 1 The meshing mode of the strip teeth in a multi-blade planar medicine cutting device shown;
[0025] Figure 4 for Figure 1The diagram shows an assembly diagram of a material pressing mechanism and a material blocking structure in a multi-blade planar medicine cutting device;
[0026] Figure 5 for Figure 1 A schematic diagram of the assembly of a guide plate and a baffle in a multi-blade planar medicine cutting device is shown;
[0027] Reference numerals:
[0028] 100, support frame; 200, cutting plate; 210, leakage chute; 300, cutter; 400, material frame assembly; 500, driving mechanism; 510, guide rail; 520, slider; 530, bar gear; 540, gear; 550, rotary power source; 600, pressing mechanism; 610, mounting frame; 620, lifting mechanism; 630, pressing plate; 700, material blocking structure; 710, guide column; 720, elastic member; 730, guide plate; 740, baffle; 741, arc chamfer; 750, auxiliary lifting member. DETAILED DESCRIPTION
[0029] To make the above-mentioned objects, features, and advantages of the present invention more readily apparent, specific embodiments of the present invention are described in detail below with reference to the accompanying drawings. The following description sets forth numerous specific details to facilitate a full understanding of the present invention. However, the present invention can be implemented in many other ways than those described herein, and those skilled in the art may make similar modifications without departing from the scope of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.
[0030] See Figures 1 to 3 The utility model provides a multi-blade planar medicine cutting device, including a support frame 100, a cutting plate 200, a cutter 300, a material frame assembly 400, a driving mechanism 500 and a material pressing mechanism 600.
[0031] Specifically, a cutting board 200 is mounted on the support frame 100. Cutting board 200 is provided with vertically extending troughs 210 spaced apart along its length. A cutter 30 is positioned adjacent to each trough 210. The cutting edge of each cutter 300 is located at the top of the cutter 300, and slices cut by the cutter 300 can be discharged through the adjacent trough 210.
[0032] The material frame assembly 400 is used to store bulk medicinal materials. The material frame assembly 400 is suspended above the cutting plate 200 and can slide along the length of the cutting plate 200. The top and bottom ends of the material frame assembly 400 are both open. The drive mechanism 500 is disposed on the support frame 100 and connected to the material frame assembly 400, and is used to drive the material frame assembly 400 to move along the length of the cutting plate 200. The pressing mechanism 600 is disposed on the material frame assembly 400 and is used to press the bulk medicinal materials in the material frame assembly 400 into the material frame assembly 400.
[0033] During use, a plurality of bulk medicine raw materials are first spread flat in the material frame assembly 400, and then the bulk medicine is pressed against the cutting plate 200 by the material pressing mechanism 600. Then the driving mechanism 500 drives the material frame assembly 400 to move laterally along the cutting plate 200. Each time it moves to a cutter 300 position, as the material frame assembly 400 continues to move forward, the blade of the cutter 300 cuts the bottom surface of the bulk medicine into the next thin slice of medicine, and the medicine slice leaks downward along the leakage groove 210. Then, the material frame assembly 400 continues to move forward, and after encountering the second cutter 300, it cuts the next thin slice again. After moving to the end, the driving mechanism 500 drives the material frame assembly 400 to move back and perform the slicing operation again until all the bulk medicines in the material frame assembly 400 are sliced.
[0034] The multi-blade planar herb cutting device can simultaneously slice multiple block-shaped herbal materials with a single blade during a single cutting process. Furthermore, since multiple cutters 300 are provided, multiple cuts can be performed during a single forward or backward movement, greatly improving work efficiency. Furthermore, since manual cutting is not required, the risk of accidental hand injuries caused by manual slicing is reduced.
[0035] Specifically, the drive mechanism 500 includes a guide rail 510, a slider 520, a bar gear 530, a gear 540, and a rotary power source 550. The guide rail 510 is fixed to the cutting plate 200 and is arranged along the length direction of the cutting plate 200. The slider 520 is fixed to the material frame assembly 400. The slider 520 and the guide rail 510 can be slidably engaged, and the material frame assembly 400 is suspended by the support of the slider 520. The bar gear 530 is fixed to the cutting plate 200 and is arranged parallel to the guide rail 510. The gear 540 is rotatably arranged on the material frame assembly 400 via a rotating shaft and meshes with the bar gear 530. The rotary power source 550 is connected to the rotating shaft for driving the gear 540 to rotate. In a specific implementation, the rotary power source 550 can be a rotary motor commonly used in the prior art that can rotate in both directions.
[0036] When the rotary power source 550 drives the gear 540 to rotate forward, the bar teeth 530 can drive the entire frame assembly 400 forward. Conversely, when the rotary power source 550 drives the gear 540 to rotate backward, the bar teeth 530 can drive the entire frame assembly 400 backward.
[0037] In this embodiment, the pressing mechanism 600 includes a mounting frame 610, a lifting mechanism 620, and a pressing plate 630. The mounting frame 610 is vertically mounted on the material frame assembly 400. The lifting mechanism 620 is mounted on the mounting frame 610. The pressing plate 630 is mounted on the lifting shaft of the lifting mechanism 620 and is positioned so as to be pressed against the inner frame of the material frame assembly 400. The lifting mechanism 620 can drive the pressing plate 630 to rise and fall perpendicular to the material frame assembly 400.
[0038] When in use, the pressing plate 630 is first raised, and then the block medicinal materials are laid in the material frame assembly 400, and then the pressing plate 630 is driven down to press on the block medicinal materials.
[0039] As a preferred embodiment, the device further includes a material blocking structure 700, which is used to block the tablets being cut, prevent the tablets or fragments from escaping, and guide the slices to smoothly leak out of the leakage chute 210.
[0040] Specifically, the material blocking structure 700 includes two material blocking components, which are arranged on the material frame component 400 relative to each other in the movement direction of the material frame component 400, and are respectively located close to the front outer wall and the rear outer wall of the material frame component 400. The material frame component 400 can automatically rise when encountering the cutter 300, and can automatically fall after it is no longer in contact with the cutter 300.
[0041] In this embodiment, the material retaining assembly includes a guide post 710, an elastic member 720, a guide plate 730, and a baffle 740. There are two guide posts 710, spaced apart along the width of the cutting plate 200. Each elastic member 720 is fitted with an elastic member 720. The guide plate 730 can slide up and down to engage with the two guide posts 710 and is pressed against the top of the material frame assembly 400 via the elastic member 720. The material frame assembly 400 is provided with a slot extending vertically therethrough. The baffle 740 is connected to the guide plate 730 at its top and slides through the slot at its bottom to press against the cutting plate 200. The front and rear edges of the bottom of the cutting plate 200 are provided with arc chamfers 741, which can slide against the blade of the cutter 300, thereby raising the cutter 300. The length of the guide plate 730 is greater than the outer frame length of the material frame assembly 400.
[0042] During use, when the baffle 740 moves along the length direction of the cutting plate 200, after encountering the cutter 300, the arc chamfered surface 741 slides upward along the top of the cutter 300 until it passes over the cutter 300, and then automatically descends under the action of the elastic member 720 and its own gravity.
[0043] The blocking of the baffle 740 can prevent the sheets or fragments from escaping, while ensuring that the cut sheets can smoothly leak out of the leakage chute 210.
[0044] As a more preferred embodiment, the material retaining structure 700 further includes an auxiliary lifting member 750. Multiple auxiliary lifting members 750 are provided, one corresponding to each material leakage chute 210. The auxiliary lifting members 750 are fixed to the cutting plate 200. When the baffle 740 and the cutter 300 come into contact, the auxiliary lifting members 750 can contact both ends of the guide plate 730 to help lift the baffle 740 over the cutter 300. The auxiliary lifting members 750 assist in raising the baffle 740, thereby preventing the baffle 740 from physically contacting the cutter 300 and causing damage to the cutter 300.
[0045] Specifically, the auxiliary lifting member 750 includes a lifting block, and both ends of the lifting block and the cutting plate 200 in the length direction are provided with inclined surfaces. When the baffle 740 moves back and forth along the length direction of the cutting plate 200, the two ends of the baffle 740 can move along the two inclined surfaces to lift the baffle 740 over the cutter 300.
[0046] When the baffle 740 moves laterally, it contacts the cutter 300 and is first raised by the inclined surface. When it rises to the top, it passes over the cutter 300 and then continues to move forward after descending along another inclined surface.
[0047] In addition, this device also comprises a receiving plate 800, and the receiving plate 800 is arranged below the cutting plate 200, and is used for receiving the slices falling from the leakage trough 210. After slicing is completed, the sheet body on the receiving plate 800 is removed.
[0048] The usage of the above multi-blade planar medicine cutting device is as follows:
[0049] During use, a plurality of block-shaped medicinal raw materials are first spread flat in the material frame assembly 400, and then the lifting mechanism 620 and the rotary power source 550 are started, and the pressing plate 630 presses the block-shaped medicinal materials onto the cutting plate 200. During the lateral movement of the material frame assembly 400, each time it moves to a cutter 300 position, as the material frame assembly 400 continues to move forward, the blade of the cutter 300 cuts the bottom surface of the block-shaped medicinal material into a thin sheet of medicinal material, and the sheet-shaped medicinal material leaks downward along the leakage groove 210 to the receiving plate 800. After slicing is completed, the cut sheet-shaped medicinal material can be removed.
[0050] The multi-blade planar herb cutting device can slice multiple block-shaped herbal materials with a single blade in a single cutting process. Furthermore, since multiple cutters 300 are provided, multiple cuts can be performed during a single forward or backward movement, greatly improving work efficiency. Furthermore, since manual cutting is not required, the risk of accidental hand injuries caused by manual cutting with the cutters 300 is reduced.
[0051] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein with equivalents. These modifications or replacements do not deviate the essence of the corresponding technical solutions from the scope of the technical solutions of the embodiments of the present invention, and they should all be included in the scope of the claims and description of the present invention.
Claims
1. A multi-blade planar medicine cutting device, characterized in that: include: Support frame; A cutting plate is provided on the support frame, and the cutting plate is provided with vertically penetrating material leakage grooves at intervals along its length direction; A cutter is provided next to each leakage trough, wherein the blade of the cutter is located at the top of the cutter, and the slices cut by the cutter can leak out from the adjacent leakage trough; A material frame assembly is used to store block-shaped medicinal materials. The material frame assembly is suspended above the cutting plate and can slide along the length of the cutting plate. The top and bottom ends of the material frame assembly are both open; A driving mechanism, provided on the support frame and connected to the material frame assembly, for driving the material frame assembly to move along the length direction of the cutting plate; and The pressing mechanism is arranged on the material frame assembly and is used to press the block medicinal materials in the material frame assembly into the material frame assembly.
2. The multi-blade planar medicine cutting device according to claim 1, characterized in that: The driving mechanism includes a guide rail, a slider, a bar tooth, a gear and a rotating power source. The guide rail is fixed to the cutting board and is arranged along the length direction of the cutting board. The slider is fixed to the material frame assembly. The slider and the guide rail can be slidably engaged, and the material frame assembly is suspended by the support of the slider. The bar tooth is fixed to the cutting board and is arranged parallel to the guide rail. The gear is rotatably arranged on the material frame assembly through a rotating shaft and meshes with the bar tooth. The rotating power source is connected to the rotating shaft for driving the gear to rotate.
3. The multi-blade planar medicine cutting device according to claim 1, characterized in that: The pressing mechanism includes a mounting frame, a lifting mechanism and a pressing plate. The mounting frame is vertically arranged on the material frame assembly, the lifting mechanism is arranged on the mounting frame, and the pressing plate is arranged on the lifting shaft of the lifting mechanism and is located so as to be pressed against the inner frame of the material frame assembly. The lifting mechanism can drive the pressing plate to lift and lower perpendicularly to the material frame assembly.
4. The multi-blade planar medicine cutting device according to claim 1, characterized in that: It also includes a material blocking structure, which includes two material blocking components. The two material blocking components are respectively arranged on the material frame component in a direction of movement of the material frame component and are respectively located close to the front outer wall and the rear outer wall of the material frame component. The material frame component can automatically rise when encountering the cutter and can automatically fall after it is no longer in contact with the cutter.
5. The multi-blade planar medicine cutting device according to claim 4, characterized in that: The material blocking assembly includes a guide column, an elastic member, a guide plate and a baffle, and there are two guide columns, and the two guide columns are arranged on the material blocking structure at intervals along the width direction of the cutting plate, and each elastic member is sleeved with an elastic member, and the guide plate can slide up and down and be sleeved with the two guide columns, and be pressed against the top of the material frame assembly by the elastic member, and the material frame assembly is provided with a slot that passes through the upper and lower parts, and the top of the baffle is connected with the guide plate, and the bottom end can slide through the slot and be pressed against the cutting plate, and the front and rear edges of the bottom end of the cutting plate are provided with arc chamfered surfaces, and the arc chamfered surfaces can slide against the blade of the cutter to lift the cutter, and the length of the guide plate is greater than the length of the outer frame of the material frame assembly.
6. The multi-blade planar medicine cutting device according to claim 5, characterized in that: The material blocking structure also includes an auxiliary lifting member, and there are multiple auxiliary lifting members. The multiple auxiliary lifting members are arranged in a one-to-one correspondence with the leakage trough. The auxiliary lifting member is fixed on the cutting plate. During the contact process between the baffle and the cutter, the auxiliary lifting member can contact the two ends of the guide plate to assist in lifting the baffle over the cutter.
7. The multi-blade planar medicine cutting device according to claim 6, characterized in that: The auxiliary lifting member includes a lifting block, and the lifting block and the two ends in the length direction of the cutting plate are provided with inclined surfaces. During the movement of the baffle back and forth along the length direction of the cutting plate, the two ends of the baffle can move along the two inclined surfaces to lift the baffle over the cutter.
8. The multi-blade planar medicine cutting device according to claim 6, characterized in that: It also includes a material receiving plate, which is arranged below the cutting plate and is used to receive the slices falling from the leakage chute.