A number of Dinggui stomach capsule counting machine
The Dinggui Wenwei Capsule Counting Machine, with its vertical multi-layer structure and rotating disc design, solves the problems of large equipment size and uneven granule distribution, enabling small-volume multi-channel bottle filling and uniform granule distribution, thus improving efficiency.
Patent Information
- Application Number
- CN202310643798.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-06-02
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2043-06-02
AI Technical Summary
While existing capsule counting equipment improves efficiency, it is also bulky and cannot fill multiple bottles in a small volume. Furthermore, the uneven distribution of capsules leads to low efficiency.
It adopts a vertical multi-layer structure design, including a granulation component and a conveying device. Through the cooperation of a rotating disk and a spiral plate, it achieves uniform distribution of drug granules. The specially shaped drug inlet end and the gradually decreasing diameter of the rotating disk holes ensure that the drug granules fall evenly into each medicine bottle.
The device enables multi-channel bottle filling in a small-volume environment, resulting in uniform distribution of the medicine particles, improved filling efficiency, and ensures that the number of medicine particles in each bottle is basically the same.
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Figure CN116729709B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of particle counting, and particularly relates to a Dinggui warm stomach capsule counting machine. BACKGROUND
[0002] Medicine capsules often need to be counted after being manufactured. At present, in order to improve the counting efficiency, the equipment often adopts a mode of simultaneously carrying out tanking in multiple ways. This kind of equipment can simultaneously tank multiple bottles. The medicine particles of each way need to be arranged from multiple particles to one particle on the transmission groove through vibration, and a long distance is needed. Therefore, this kind of equipment is long and occupies a large area.
[0003] However, the equipment with small volume can only tank one or two bottles at the same time, and the efficiency is low.
[0004] The present application adopts a vertical multi-layer structure, and realizes the tanking of multiple bottles in the case of small overall volume. SUMMARY
[0005] In order to achieve the above-mentioned purpose, the present application adopts the following technical scheme:
[0006] A Dinggui warm stomach capsule counting machine, which comprises a particle separating assembly and a conveying device, wherein the particle separating assembly is fixedly installed through multiple support rods; the lower side of the particle separating assembly is provided with the conveying device, and the conveying device is divided into a second conveying device in the shape of a circle located directly below the particle separating assembly and a first conveying device for conveying medicine to the second conveying device.
[0007] The particle separating assembly comprises a mounting shell, a rotating disc, a volute sheet, a feeding pipe and a first motor, wherein the mounting shell is fixedly installed through the support rods, and the top of the mounting shell is provided with a medicine inlet end; multiple rotating discs are uniformly and rotatably installed in the mounting shell from top to bottom, and the upper side of each rotating disc is provided with a volute sheet, which is fixedly installed on the mounting shell; multiple feeding pipes are circumferentially installed on the outer side of the mounting shell, and the upper end of the feeding pipe corresponds to the outer end of the corresponding volute sheet; multiple discharge ports are formed in the outer side of the mounting shell, and the upper end of the feeding pipe wraps the corresponding discharge port.
[0008] The rotating disc is provided with a hole penetrating from top to bottom in the middle thereof, and the diameter of the hole in the middle of the rotating disc gradually decreases from top to bottom; and the inner end of the volute sheet is aligned with the inner circular surface of the corresponding rotating disc.
[0009] As a preferred scheme, the first conveying device is composed of two side-by-side conveying devices of a medicine bottle input and a medicine bottle output; each conveying device is composed of an installation frame located on the outer side, a rotating wheel installed on the installation frame, a supporting roller and a second conveying belt, and the installation frame on the outer side of the first conveying device is provided with a third motor capable of driving the corresponding rotating wheel to rotate.
[0010] As a preferred scheme, the second conveying device is a ring-shaped conveying structure composed of a plurality of arc-shaped conveying units, each of which is composed of an outer mounting frame, a rotating wheel and a supporting roller mounted on the mounting frame, and a first conveying belt, and a second motor for driving the corresponding rotating wheel is mounted on the outer mounting frame of the second conveying device.
[0011] As a preferred scheme, a guide block for guiding the vials to smoothly enter the second conveying device is mounted between the input device of the first conveying device and the second conveying device, and a guide plate for guiding the vials to smoothly output to the first conveying device is mounted between the output device of the first conveying device and the second conveying device.
[0012] As a preferred scheme, the upper side of each layer of the spiral-shaped sheet is fixedly mounted on the mounting shell by a plurality of circumferentially uniformly distributed connecting plates.
[0013] As a preferred scheme, the upper end of each of the blanking pipes is fixedly mounted with a particle counting device for counting the number of feeding particles.
[0014] As a preferred scheme, the lower end of the rotating disc has a gear ring, a plurality of first motors are fixedly mounted on the outer side of the mounting shell, a first gear is fixedly mounted on the output shaft of the first motor, a plurality of second gears are circumferentially rotatably mounted on the mounting shell, the second gears correspond one-to-one to the first gears and are engaged with each other; the second gears correspond one-to-one to the rotating discs and are engaged with the teeth on the corresponding rotating discs.
[0015] As a preferred scheme, the medicine inlet end is funnel-shaped.
[0016] As a preferred scheme, the medicine inlet end is trumpet-shaped with thick upper and lower sides and a thin middle part.
[0017] As a preferred scheme, the inside of the lower side of the trumpet-shaped medicine inlet end has a plurality of layers of annular partitions distributed inside and outside.
[0018] Compared with the prior art, the advantages of the present application are:
[0019] 1. The vertical multi-layer structure adopted by the present application realizes the canning of multiple vials in a small overall volume.
[0020] 2、In order to ensure that the medicine particles can uniformly fall into the rotating disc from the medicine inlet end, a special-shaped medicine inlet end is specially designed in the application, the medicine inlet end is thick at the upper and lower ends and thin in the middle, after adding the medicine, the medicine will enter from the thick port of the upper end, because the middle is relatively thin, so the medicine entering from the thick port will quickly accumulate in the middle area, so that the medicine particles can be fully covered when falling, and the uneven falling or the partial area falling of some areas with medicine particles and some areas without medicine particles can be avoided.
[0021] 3、In the application, the diameters of the holes in the middle of the rotating discs distributed upwards and downwards gradually decrease, and the area difference of any two adjacent rotating discs upwards and downwards is the same; such design can ensure that the number of medicine particles falling into each rotating disc is basically the same, that is, the number of medicine particles finally filled into each medicine bottle is basically the same, and the number is determined by the rotating disc. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 is a schematic diagram of the overall component appearance.
[0023] Figure 2 is a schematic diagram of the appearance of the particle separating assembly.
[0024] Figure 3 is a schematic diagram of the internal structure distribution of the particle separating assembly.
[0025] Figure 4 is a schematic diagram of the cooperation of the spiral sheet and the discharging pipe.
[0026] Figure 5 is a schematic diagram of the distribution of the spiral sheet.
[0027] Figure 6 is a schematic diagram of the transmission of the rotating disc.
[0028] Figure 7 is a schematic diagram of the distribution of the conveying device.
[0029] Figure 8 is a schematic diagram of the distribution of the guide plate and the guide block.
[0030] Figure 9 is a schematic diagram of the structure of the medicine inlet end.
[0031] Label name in the figure: 1, medicine inlet end; 2, particle separating assembly; 3, supporting rod; 4, first conveying device; 5, second conveying device; 6, medicine bottle; 7, first motor; 8, discharging pipe; 9, mounting shell; 10, annular partition plate; 11, rotating disc; 12, spiral sheet; 13, first gear; 14, second gear; 15, second motor; 16, mounting frame; 17, first conveying belt; 18, second conveying belt; 19, third motor; 20, guide plate; 21, guide block; 22, particle counting equipment; 23, connecting plate. Detailed Implementation
[0032] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following embodiments and drawings are used to illustrate the present invention, but are not intended to limit the scope of the invention.
[0033] A counting machine for Dinggui Wenwei capsules, such as Figure 1 As shown, it includes a pelletizing component 2 and a conveying device, wherein the pelletizing component 2 is fixedly installed by multiple support rods 3; the conveying device is installed on the lower side of the pelletizing component 2.
[0034] like Figure 2 , 3 As shown, the pelletizing assembly 2 includes a mounting shell 9, a rotating disk 11, a volute plate 12, a feeding pipe 8, and a first motor 7. The mounting shell 9 is fixedly installed by a support rod 3. Figure 2 , 9 As shown, the top of the mounting housing 9 has a medicine inlet end 1; as Figure 3 , 4 As shown in Figure 5, multiple rotating disks 11 are evenly rotated and installed from top to bottom inside the mounting shell 9. Each rotating disk 11 has a volute 12 installed on its upper side. The upper side of each layer of volute 12 is fixedly installed on the mounting shell 9 by multiple circumferentially evenly distributed connecting plates 23. Multiple feeding pipes 8 are circumferentially installed on the outer side of the mounting shell 9. The feeding pipes 8 correspond one-to-one with the volute 12, and the upper end of the feeding pipe 8 and the outer end of the corresponding volute 12 are engaged. Multiple discharge ports are opened on the outer side of the mounting shell 9. The discharge ports correspond one-to-one with the feeding pipes 8, and the upper end of the feeding pipes 8 wraps around the corresponding discharge ports. A particle counting device 22 for counting the number of feed particles is fixedly installed on the upper end of each feeding pipe 8.
[0035] The accompanying drawings of this invention only illustrate six feeding pipes 8, but in actual equipment manufacturing, more feeding pipes 8 can be arranged according to the specific dimensions of the equipment to increase the particle separation efficiency.
[0036] like Figure 6 As shown, the lower end of the rotating disk 11 has a toothed ring, and multiple first motors 7 are circumferentially fixedly installed on the outside of the mounting shell 9. A first gear 13 is fixedly installed on the output shaft of the first motor 7, and multiple second gears 14 are circumferentially rotatably installed on the mounting shell 9. The second gears 14 correspond one-to-one with the first gears 13 and mesh with each other; the second gears 14 correspond one-to-one with the rotating disks 11 and mesh with the teeth on the corresponding rotating disks 11.
[0037] The first motor 7 can drive the first gear 13 to rotate when working, the first gear 13 drives the second gear 14 to rotate, the second gear 14 drives the corresponding rotating disc 11 to rotate, the rotating disc 11 drives the medicine particles falling thereon to rotate, the medicine particles slide along the outer wall surface of the volute sheet 12 under the guidance of the volute sheet 12, and finally fall into the medicine bottle 6 from the corresponding discharge pipe 8 and are collected.
[0038] The discharge opening formed in the mounting shell 9 is relatively long, and the number of particle machines designed in the application can be applied to medicine particles of different sizes within a certain size range.
[0039] The medicine inlet end 1 is funnel-shaped, as shown in the first scheme. Figure 3
[0040] The medicine inlet end 1 is funnel-shaped, as shown in the first scheme. Figure 9 In order to ensure that the medicine particles can uniformly fall into the rotating disc 11 from the medicine inlet end 1, a special-shaped medicine inlet end 1 is specially designed in the application, which is funnel-shaped with thick upper and lower parts and thin middle part. After adding medicine, the medicine will enter from the thick upper port, and the medicine entering from the thick port will be quickly accumulated in the middle area after the thick port is filled, so that the medicine particles can be fully covered when falling, and the intermittent and uneven falling or the partial area falling with some areas without falling of the medicine particles can be avoided.
[0041] As shown in the first scheme, the rotating disc 11 has a hole penetrating from top to bottom in the middle, and the diameter of the hole in the middle of the rotating disc 11 gradually decreases from top to bottom. Figure 3
[0042] In the application, the diameter of the hole in the middle of the rotating disc 11 gradually decreases, and the area difference of any two adjacent rotating discs 11 is the same. Such design can ensure that the particle output capacity is basically the same under the condition that the motor speed is the same, and the number of medicine particles falling into each rotating disc 11 is basically the same, that is, the number of medicine particles finally filled into each medicine bottle 6 is basically the same.
[0043] In addition, the application can adjust the specific motor to increase or decrease the speed according to the medicine particle packaging requirements, so as to ensure that the number of medicine particles in each medicine bottle 6 is basically the same.
[0044] As shown in the first scheme, the rotating disc 11 has a hole penetrating from top to bottom in the middle, and the diameter of the hole in the middle of the rotating disc 11 gradually decreases from top to bottom. Figure 7 As shown, the conveying device is divided into a circular-shaped second conveying device 5 located directly below the particle separation assembly 2 and a first conveying device 4 that conveys the medicine to the second conveying device 5; the first conveying device 4 is composed of two side-by-side conveying devices of a medicine bottle 6 input and a medicine bottle 6 output; each conveying device is composed of a mounting frame located on the outer side, a rotating wheel and a supporting roller mounted on the mounting frame, and a second conveying belt 18; the mounting frame on the outer side of the first conveying device 4 is mounted with a third motor 19 capable of driving the corresponding rotating wheel to rotate; the second conveying device 5 is a ring-shaped conveying structure composed of a plurality of arc-shaped conveying units; each conveying unit is composed of a mounting frame located on the outer side, a rotating wheel and a supporting roller mounted on the mounting frame, and a first conveying belt 17; the mounting frame on the outer side of the second conveying device 5 is mounted with a second motor 15 capable of driving the corresponding rotating wheel to rotate; as Figure 8 As shown, a guide block 21 is mounted between the input device in the first conveying device 4 and the second conveying device 5 to guide the medicine bottle 6 to smoothly enter the second conveying device 5; a guide plate 20 is mounted between the output device in the first conveying device 4 and the second conveying device 5 to guide the medicine bottle 6 to smoothly output to the first conveying device 4.
[0045] The above is only a preferred embodiment of the present application, and does not limit the present application in any form; any simple modification or equivalent change made according to the technical essence of the present application to the above embodiment falls within the protection scope of the present application.
Claims
1. A counting machine for Dinggui Wenwei capsules, characterized in that: It includes a particle classification assembly and a conveying device, wherein the particle classification assembly is fixedly installed through a plurality of support rods; the lower side of the particle classification assembly is provided with the conveying device, which is divided into a circular second conveying device located directly below the particle classification assembly and a first conveying device for conveying the medicine to the second conveying device; The particle classification assembly comprises a mounting shell, a rotating disc, a volute, a feeding pipe and a first motor, wherein the mounting shell is fixedly installed through a support rod, and the top of the mounting shell is provided with a medicine inlet end; a plurality of rotating discs are uniformly and rotatably installed in the mounting shell from top to bottom, and the upper side of each rotating disc is provided with a volute, which is fixedly installed on the mounting shell; a plurality of feeding pipes are circumferentially installed on the outer side of the mounting shell, and the upper end of the feeding pipe corresponds to the outer end of the volute, and the upper end of the feeding pipe wraps the corresponding discharge port; a plurality of discharge ports are formed in the outer side of the mounting shell, and the discharge ports correspond to the feeding pipes; the holes in the middle of the rotating discs are gradually reduced in diameter from top to bottom; the area difference of any two adjacent rotating discs is the same; the inner end of the volute is aligned with the inner circular surface of the corresponding rotating disc; The lower end of the rotating disc is provided with a gear ring, a plurality of first motors are circumferentially fixedly installed on the outer side of the mounting shell, a first gear is fixedly installed on the output shaft of the first motor, a plurality of second gears are circumferentially rotatably installed on the mounting shell, the second gears correspond to the first gears and are engaged with each other; the second gears correspond to the rotating discs, and the second gears are engaged with the teeth on the corresponding rotating discs; The medicine inlet end is a horn-shaped structure with a large upper and lower diameter and a small middle diameter; The inside of the lower side of the horn-shaped medicine inlet end is provided with a plurality of annular partitions distributed inside and outside. The first conveying device is composed of two parallel conveying devices for medicine bottle input and medicine bottle output; each conveying device is composed of an installation frame located on the outer side, a rotating wheel and a supporting roller installed on the installation frame, and a second conveying belt; a third motor is installed on the installation frame on the outer side of the first conveying device to drive the corresponding rotating wheel to rotate.
2. The Dinggui stomach-warming capsule counting machine according to claim 1, characterized in that: The second conveying device is a ring-shaped conveying structure composed of a plurality of arc-shaped conveying units; each conveying unit is composed of an installation frame located on the outer side, a rotating wheel and a supporting roller installed on the installation frame, and a first conveying belt; a second motor is installed on the installation frame on the outer side of the second conveying device to drive the corresponding rotating wheel to rotate.
3. The Dinggui stomach-warming capsule counting machine according to claim 1, characterized in that: A guide block is installed between the input device in the first conveying device and the second conveying device to guide the medicine bottles to smoothly enter the second conveying device; a guide plate is installed between the output device in the first conveying device and the second conveying device to guide the medicine bottles to smoothly output to the first conveying device.
4. The Dinggui stomach-warming capsule counting machine according to claim 1, characterized in that: The upper side of each volute is fixedly installed on the mounting shell through a plurality of circumferentially uniformly distributed connecting plates.
5. The Dinggui stomach-warming capsule counting machine according to claim 1, characterized in that: The upper end of each feeding pipe is fixedly installed with a particle counting device for counting the number of feeding particles.
6. The Dinggui stomach-warming capsule counting machine according to claim 1, characterized in that:
Citation Information
Patent Citations
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