Double-station pelleting device

The dual-station pelleting device divides the granules into two strips and conveys them unidirectionally to two pelleting machines, solving the problems of large space occupation and low feeding efficiency in the existing technology, and achieving space saving and improved feeding efficiency.

CN223453495UActive Publication Date: 2025-10-21ZHONGJING WANXI PHARMA CO LTD
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Patent Information

Application Number
CN202422004240.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-19
Publication Date
2025-10-21
Estimated Expiration
2034-08-19

AI Technical Summary

Technical Problem

Existing pelletizing equipment occupies a large space, resulting in wasted space in the production workshop and low material supply efficiency.

Method used

The dual-station pelletizing device, including a material distribution mechanism and a conveying device, divides the clump of medicine discharged from the mixer into two strips, which are then conveyed to two pelletizing machines by a unidirectional conveying device. It has a simple structure, saves space, and provides continuous material supply.

Benefits of technology

It effectively saves production workshop space, improves material supply efficiency, simplifies operation, extends the service life of conveying devices, and reduces production costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a double-station pelleting device. The double-station pelleting device comprises a material distributing mechanism and a conveying device, the material distributing mechanism is configured to divide a medicine lump discharged by the stirring machine into two medicine strips. The conveying device is located below the material distributing mechanism and is configured to convey the medicine strips from back to front, one medicine strip is conveyed to one pill making machine, and the other medicine strip is conveyed to the other pill making machine. Due to the fact that the distributing mechanism and the conveying device can supply the medicine strips to the two pelleting machines, and the distributing mechanism is directly installed at the outlet of the stirring machine. Compared with the prior art that a two-way conveying device is used for supplying the medicine strips to the two pill making machines, the double-station pill making device is simpler in structure and smaller in occupied space, space in a production workshop is saved, and reasonable utilization of the space in the production workshop is facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to traditional Chinese medicine pill making technical field, especially a double-station pill making device. BACKGROUND

[0002] In the present industrial production, the traditional Chinese medicine pill is made by a pill making production line. The pill making production line is composed of a mixer for mixing medicine powder and medicine paste into medicine lumps and a pill making machine for making pills. After the medicine lumps are transported to the pill making machine, the medicine lumps need to be first rolled into medicine strips, and then the medicine strips are transported to the pill making machine to be rolled into pills on the pill rolling wheel. Since the production speed of the mixer is higher than the pill rolling speed of the pill making machine, in order to ensure the production efficiency of the pills, a bidirectional conveying mechanism is added to the pill making production line in the prior art, and the bidirectional conveying mechanism intermittently conveys the medicine strips to two pill making machines. However, since the structure of the bidirectional conveying mechanism is large and occupies a large space, although the production efficiency of the pills is ensured, the space in the production workshop is greatly wasted. SUMMARY

[0003] In view of the above problems, the utility model is provided to overcome the above problems or at least partially solve the above problems, so as to solve the problem of large space occupied by the pill making device in the prior art and achieve the effect of saving the space in the production workshop.

[0004] Specifically, the utility model provides a double-station pill making device, which comprises:

[0005] a distributing mechanism configured to divide the medicine lumps discharged from the mixer into two medicine strips;

[0006] a conveying device located below the distributing mechanism, the conveying device being configured to convey the medicine strips from back to front and convey one of the medicine strips to one of the pill making machines and convey the other medicine strip to the other pill making machine.

[0007] Optionally, the conveying device comprises:

[0008] a first conveying belt located below the distributing mechanism and configured to convey the medicine strips from back to front; the inlet of one of the pill making machines is located below the rear end of the first conveying belt and used to feed one of the medicine strips into the pill making machine;

[0009] a second conveying belt located below the rear end of the first conveying belt and configured to convey the other medicine strip from back to front; the inlet of the other pill making machine is located below the rear end of the second conveying belt and used to feed the medicine strip on the second conveying belt into the pill making machine.

[0010] Optionally, the material distribution mechanism comprises:

[0011] a material distribution body;

[0012] a feeding port, which is arranged on the material distribution body and is connected to the outlet of the mixer;

[0013] two discharge pipes, which are both arranged on the material distribution body, the inlets of the discharge pipes are communicated with the feeding port, and the two discharge pipes are both located above the conveying device.

[0014] Optionally, the outlets of the two discharge pipes are spaced.

[0015] Optionally, the discharge channel inside the discharge pipe gradually narrows along the discharge direction of the discharge pipe; the inlet of the discharge pipe is larger than the outlet of the discharge pipe.

[0016] Optionally, the backward extension line of one of the discharge pipes along the discharge direction forms an angle with the backward extension line of the other discharge pipe along the discharge direction.

[0017] Optionally, the discharge pipes are symmetrically arranged along the center line of the material distribution body.

[0018] Optionally, the inlet of the discharge pipe is the feeding port, and the outlet of the discharge pipe is located above the conveying device.

[0019] Optionally, the double-station pill making device further comprises a connecting structure, which comprises:

[0020] a first connecting column, which is arranged at the feeding port of the material distribution mechanism;

[0021] a second connecting column, which is arranged at the outlet of the mixer corresponding to the first connecting column;

[0022] the first connecting column is threadedly connected with the second connecting column.

[0023] Optionally, the first connecting column is a plurality of and is arranged at intervals along the periphery of the feeding port.

[0024] the second connecting column is a plurality of and is arranged at intervals along the periphery of the outlet of the mixer, and each second connecting column corresponds to one first connecting column.

[0025] The double-station pill making device of the utility model, since the material distributing mechanism and the conveying device can complete supplying medicine strips for two pill making machines, and the material distributing mechanism is directly installed at the outlet of the mixer, compared with the prior art of supplying medicine strips for two pill making machines by using a bidirectional conveying device, the structure of the double-station pill making device is simpler, occupies less space, saves the space in the production workshop, and is favorable for the rational use of the space in the production workshop.

[0026] Further, the double-station pill making device of the utility model, since the double-station pill rolling device continuously supplies medicine strips for two pill making machines, compared with the prior art of intermittently conveying medicine strips for two pill making machines by using a bidirectional conveying mechanism, the feeding efficiency of the double-station pill rolling device is higher.

[0027] The above and other objects, advantages and features of the utility model will be more apparent from the following detailed description of the specific embodiments of the utility model, taken in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF DRAWINGS

[0028] Some specific embodiments of the utility model will be described in detail hereinafter with reference to the accompanying drawings in an exemplary and non-restrictive manner. The same reference signs in the drawings denote the same or similar components or parts. It should be understood by those skilled in the art that the drawings are not necessarily drawn to scale. In the drawings:

[0029] Figure 1 is a schematic structural view of the double-station pill making device according to one embodiment of the utility model;

[0030] Figure 2 is Figure 1 is an enlarged view of A in

[0031] Figure 3 is a schematic structural view of the mixer and the material distributing mechanism according to one embodiment of the utility model. DETAILED DESCRIPTION

[0032] The double-station pill making device of the embodiments of the utility model will be described below with reference to Figures 1 to 3 In the description of the embodiments, it should be understood that the terms "first", "second" are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features, i.e. one or more of the features. In the description of the utility model, the meaning of "multiple" is at least two, such as two, three, etc., unless otherwise specifically limited. When a certain feature "includes or contains" a certain or certain features, unless otherwise specifically described, it indicates that other features and can further include other features are not excluded.

[0033] Unless otherwise clearly indicated or implied to the contrary by context, the terms "set," "mounted," "connected," "coupled," "fixed," "attached," and like terms contemplate a fixed connection, detachable connection, or integral connection, mechanical or electrical connection, direct or indirect connection, or communication between components, unless otherwise indicated by context. Those of ordinary skill in the art will appreciate that the terms "set," "mounted," "connected," "coupled," "fixed," "attached," and like terms can have different meanings depending on the context in which they are used.

[0034] In addition, in the description of the embodiments, a first feature being "on" or "under" a second feature can include the first and second features being in direct contact, or can include the first and second features not being in direct contact but being in contact through another feature between them. That is, in the description of the embodiments, a first feature being "on," "above," and "over" a second feature includes the first feature being directly above and obliquely above the second feature, or simply means that the first feature is higher in horizontal height than the second feature. A first feature being "under," "below," or "underneath" a second feature can be the first feature being directly below or obliquely below the second feature, or simply means that the first feature is lower in horizontal height than the second feature.

[0035] In the description of the embodiments, the description of the terms "one embodiment," "some embodiments," "exemplary embodiments," "example," "specific example," or "some examples" means that the specific feature, structure, material, or characteristic being described is included in at least one embodiment or example of the present application. In the description of the present application, the exemplary description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific feature, structure, material, or characteristic being described can be combined in any appropriate manner in any one or more embodiments or examples.

[0036] Figure 1 is a schematic structural diagram of a double-station pill making device according to an embodiment of the present application, as shown in Figure 1 and referring to Figures 2 to 3 The embodiment of the present application provides a double-station pill making device, which comprises a material distributing mechanism 130 and a conveying device. The material distributing mechanism 130 is configured to divide the medicine lumps discharged by the mixer 110 into two medicine strips. The conveying device is located below the material distributing mechanism 130, and is configured to convey the medicine strips from back to front, and convey one of the medicine strips to one of the pill making machines 170, and convey the other medicine strip to the other pill making machine 170.

[0037] The double-station pill making device 100 of the embodiment of the present application, when the double-station pill making device 100 is opened, the mixer 110 will fully stir the medicinal materials to form medicinal lumps, and then the medicinal lumps will enter the feed inlet 132 of the distributing mechanism 130 from the outlet 111 of the mixer 110. The medicinal lumps are subjected to extrusion in the distributing mechanism 130 to form two medicinal strips, and fall on the conveying device below the distributing mechanism 130. The conveying device conveys one medicinal strip to one of the pill making machines 170 and conveys the other medicinal strip to the other pill making machine 170, so that the medicinal strips continue to be processed into medicinal pills in the pill making machines 170. That is, the distributing mechanism 130 and the conveying device can complete the supply of medicinal strips to the two pill making machines 170, and the distributing mechanism 130 is directly installed at the outlet 111 of the mixer 110. Compared with the prior art which utilizes a bidirectional conveying device to supply medicinal strips to the two pill making machines 170, the double-station pill making device 100 has a simpler structure, occupies less space, saves the space in the production workshop, and is beneficial to the rational utilization of the space in the production workshop.

[0038] Further, since the double-station pill making device continuously supplies medicinal strips to the two pill making machines 170, compared with the prior art which intermittently supplies medicinal strips to the two pill making machines 170 by the bidirectional conveying mechanism, the double-station pill making device has higher feeding efficiency.

[0039] In some embodiments of the present application, as shown in Figure 1 The conveying device includes a first conveying belt 140 and a second conveying belt 160. The first conveying belt 140 is located below the distributing mechanism 130 and is configured to convey medicinal strips from back to front. The inlet 171 of one of the pill making machines 170 is located below the rear end of the first conveying belt 140, for conveying one medicinal strip into the pill making machine 170. The second conveying belt 160 is located below the rear end of the first conveying belt 140 and is configured to convey the other medicinal strip from back to front. The inlet 171 of the other pill making machine 170 is located below the rear end of the second conveying belt 160, for conveying the medicinal strip on the second conveying belt 160 into the pill making machine 170.

[0040] In the embodiment, the medicine lumps are subjected to extrusion in the distributing mechanism 130 to form two medicine strips, and fall on the first conveying belt below the distributing mechanism 130, and the two medicine strips are conveyed forward freely by the first conveying belt. When the medicine strips reach the rear end of the first conveying belt, one of the medicine strips falls into the pill making machine 170 below the first conveying belt, and is made into medicine pills by the pill making machine 170. The other medicine strip falls on the second conveying belt below the rear end of the first conveying belt, and falls into the pill making machine 170 below the rear end of the second conveying belt after reaching the rear end of the second conveying belt, and is made into medicine pills by the pill making machine 170. That is, the conveying device only needs to move in one direction, and the motor of the conveying device does not need to frequently change the running direction and frequency, thereby ensuring the service life of the conveying device and saving the production cost in a certain sense.

[0041] In some embodiments of the present application, the double-station pill making device 100 further comprises a driving mechanism. The driving mechanism comprises a first driving motor 151 and a second driving motor 152. The first driving motor 151 is in driving connection with the first conveying belt 140 to drive the first conveying belt 140 to move. The second driving motor 152 is in driving connection with the second conveying belt 160 to drive the second conveying belt 160 to move.

[0042] In the embodiment, when the first conveying belt 140 needs to move, the first driving motor 151 is turned on, and when the first conveying belt 140 needs to stop, the first driving motor 151 is turned off. When the second conveying belt 160 needs to move, the second driving motor 152 is turned on, and when the second conveying belt 160 needs to stop, the first driving motor 151 is turned off. The operation is very simple and easy to use.

[0043] In some embodiments of the present application, as shown in Figure 2 and Figure 3 , the distributing mechanism 130 comprises a distributing body, a feeding port 132 and two discharge pipes 131. The feeding port 132 is arranged on the distributing body, and the feeding port 132 is connected to the outlet 111 of the mixer 110. The two discharge pipes 131 are both arranged on the distributing body, the inlet of the discharge pipe 131 is in communication with the feeding port 132, and the two discharge pipes 131 are both located above the conveying device.

[0044] In the embodiment, when the double-station pill making device 100 works, the medicine materials are formed into medicine lumps under the stirring of the mixer 110, the medicine lumps enter the feeding port 132 of the distributing mechanism 130 through the outlet 111 of the mixer 110, then enter the discharge pipe 131 through the inlet of the discharge pipe 131, and finally are conveyed to the above of the conveying device by the discharge pipe 131. The distributing mechanism 130 has simple structure and simple manufacturing process.

[0045] In some embodiments of the present application, as shown inFigures 1 to 3 As shown in the figure, the outlets 1311 of the two discharge pipes 131 are spaced apart.

[0046] As shown in the above embodiment, the medicine strips are sent out through the discharge pipes 131. In this embodiment, the outlets 1311 of the two discharge pipes 131 are spaced apart, that is, there is a certain space between the outlets 1311 of the two discharge pipes 131, and when the outlets 1311 of each discharge pipe 131 send out the medicine strips, it is ensured that the two medicine strips will not be adhered due to too close distance, further preventing the possibility of two medicine strips entering the pill making machine 170, and maintaining the normal operation of the device.

[0047] In some embodiments of the present application, as shown in the figure, Figures 1 to 3 As shown in the figure, the discharge passage inside the discharge pipe 131 gradually narrows along the discharge direction of the discharge pipe 131. The inlet of the discharge pipe 131 is larger than the outlet 1311 of the discharge pipe 131.

[0048] As shown in the above embodiment, the medicine strips are sent out through the discharge pipes 131. In this embodiment, the discharge passage gradually narrows along the discharge direction of the discharge pipe 131, and the inlet of the discharge pipe 131 is larger than the outlet 1311 of the discharge pipe 131. That is, the cross-sectional area of the discharge pipe 131 perpendicular to its axis gradually decreases in the discharge direction. When the medicine lump enters through the discharge port, due to the shape design of the discharge pipe 131, the medicine lump is gradually extruded by the inner wall of the discharge pipe 131 into a medicine strip in the discharge pipe 131, and finally sent out through the outlet 1311 of the discharge pipe 131. The simple structure of the discharge pipe 131 can change the medicine lump into a medicine strip to facilitate the subsequent pill making machine 170 to make medicine pills.

[0049] In some embodiments of the present application, as shown in the figure, Figures 1 to 3 As shown in the figure, the rear extension line of one of the discharge pipes 131 along the discharge direction forms an included angle with the rear extension line of the other discharge pipe 131 along the discharge direction.

[0050] In this embodiment, the rear extension line of one of the two discharge pipes 131 forms an included angle with the rear extension line of the other discharge pipe 131, that is, the two discharge pipes 131 respectively transport medicine strips in two different directions. This allows the two medicine strips to have a certain distance, preventing the two medicine strips from adhering due to too close distance.

[0051] In some embodiments of the present application, as shown in the figure, Figures 1 to 3 As shown in the figure, the discharge pipe 131 is symmetrically arranged along the center line of the material distribution body.

[0052] In the embodiment, the discharge pipes 131 are symmetrically arranged along the center line of the distribution body, that is, the distribution mechanism 130 is symmetrically arranged along the center thereof, which conforms to the public aesthetic. In addition, the two discharge pipes 131 are symmetrically arranged, and the shapes of the two discharge pipes 131 are the same, so that the same strip of medicine is discharged from each discharge pipe 131.

[0053] In some embodiments of the utility model, the shapes of the two discharge pipes 131 can be determined according to the different working efficiencies of the two pill making machines 170. When the efficiency of one of the pill making machines 170 is higher, the discharge passage of the discharge pipe 131 for conveying the strip of medicine to the pill making machine 170 can be larger. When the efficiency of one of the pill making machines 170 is lower, the discharge passage of the discharge pipe 131 for conveying the strip of medicine to the pill making machine 170 can be smaller. The staff can set different sizes of the discharge pipes 131 according to the specific conditions of the pill making machine 170, and the application range is wide.

[0054] In some embodiments of the utility model, as shown in Figure 1 the inlet of the discharge pipe 131 is the feeding port 132, and the outlet 1311 of the discharge pipe 131 is located above the conveying device.

[0055] As known from the above embodiment, the feeding port 132 of the distribution mechanism 130 is in communication with the outlet 111 of the mixer 110, so that the medicine lumps in the mixer 110 can enter the distribution mechanism 130. In the embodiment, the inlet of the discharge pipe 131 is the feeding port 132, that is, the feeding port 132 includes the inlets of the two discharge pipes 131, and the medicine lumps in the mixer 110 directly enter the discharge pipe 131 through the outlet 111 of the mixer 110.

[0056] In some embodiments of the utility model, the distribution mechanism 130 includes a distribution cavity in the distribution body. The distribution cavity is in communication with the feeding port 132 and the inlets of the discharge pipes 131.

[0057] In the embodiment, when the double-station pill making device 100 is in operation, the medicine lumps in the mixer 110 enter the feeding port 132 of the distribution mechanism 130 through the outlet 111 of the mixer 110, enter the distribution cavity through the feeding port 132 of the distribution mechanism 130, and are collected in the distribution cavity. Since the mixer 110 continuously outputs the medicine lumps to the outlet 111 of the mixer 110, that is, the medicine lumps continuously enter the feeding port 132 of the distribution mechanism 130, so as to fill the distribution cavity, and the pressure of the newly entered medicine lumps in the distribution mechanism 130 extrudes the medicine lumps in the distribution cavity into the inlets of the discharge pipes 131.

[0058] As can be seen from the above embodiment, the inlet of the discharge pipe 131 is larger than the outlet 1311 of the discharge pipe 131, and the discharge channel in the discharge pipe 131 gradually decreases along the discharge direction of the discharge pipe 131. In the embodiment, the inlet end of the discharge pipe 131 is continuously subjected to the force applied to the outlet 1311 of the discharge pipe 131, so that the medicine lump is extruded in the discharge channel, and the outlet 1311 of the discharge pipe 131 outputs the medicine strip.

[0059] In some embodiments of the present application, the discharge pipe 131 is symmetrically arranged along the center line of the distribution cavity.

[0060] As can be seen from the above embodiment, the medicine lump needs to pass through the distribution cavity into the discharge pipe 131. In the embodiment, since the discharge pipe 131 is symmetrically arranged along the center line of the distribution cavity, the amount of medicine lump entering different discharge pipes 131 can be more uniform.

[0061] In some embodiments of the present application, as shown in Figures 1 to 3 The double-station pill making device 100 further includes a connecting structure 120, and the connecting structure 120 includes a first connecting column 121 and a second connecting column 122. The first connecting column 121 is arranged at the inlet 132 of the distribution mechanism 130. The second connecting column 122 is arranged at the outlet 111 of the mixer 110 corresponding to the first connecting column 121. The first connecting column 121 is threadedly connected with the second connecting column 122.

[0062] In the embodiment, during the installation of the distribution mechanism 130 on the mixer 110, first, the first connecting column 121 is aligned with the second connecting column 122, and the first connecting column 121 and the second connecting column 122 are connected by screws. In this way, the outlet 111 of the mixer 110 and the inlet 132 of the distribution mechanism 130 are connected. The installation steps are simple, time-saving and labor-saving.

[0063] In some embodiments of the present application, as shown in Figures 1 to 3 The first connecting column 121 is a plurality of columns and is arranged at intervals along the periphery of the inlet 132. The second connecting column 122 is a plurality of columns and is arranged at intervals along the periphery of the outlet 111 of the mixer 110, and each second connecting column 122 corresponds to a first connecting column 121.

[0064] As can be known from the above embodiment, the stirring machine 110 and the distributing mechanism 130 are connected together through the first connecting columns 121 and the second connecting columns 122. In the embodiment, the first connecting columns 121 are arranged at intervals along the periphery of the feeding port 132, the second connecting columns 122 are arranged at intervals along the periphery of the outlet 111 of the stirring machine 110, and each second connecting column 122 corresponds to a first connecting column 121. That is, the stirring machine 110 and the distributing mechanism 130 are connected together through multiple pairs of first connecting columns 121 and second connecting columns 122, so that the connection between the stirring machine 110 and the distributing mechanism 130 is more stable.

[0065] In some embodiments of the utility model, the double-station pill making device 100 further comprises a material blocking plate, which is arranged on one side of the inlet 171 of the pill making machine 170 away from the conveying device, and is used for preventing the medicine strip from reaching the area outside the inlet 171 of the pill making machine 170.

[0066] As can be known from the above embodiment, the inlet 171 of one of the pill making machines 170 is below the rear end of the first conveying belt 140, and is used for allowing one of the medicine strips on the first conveying belt 140 to enter the pill making machine 170. The inlet 171 of the other pill making machine 170 is below the rear end of the second conveying belt 160, and is used for allowing the medicine strip on the second conveying belt 160 to enter the pill making machine 170. In the embodiment, the opening of the pill making machine 170 below the first conveying belt 140 is provided with a material blocking plate on the side away from the first conveying belt 140, so as to prevent the medicine strip entering the pill making machine 170 from falling into the area outside the pill making machine 170. The opening of the pill making machine 170 below the second conveying belt 160 is provided with a material blocking plate on the side away from the second conveying belt 160, so as to prevent the medicine strip entering the pill making machine 170 from falling into the area outside the pill making machine 170.

[0067] In some embodiments of the utility model, the material blocking plate is vertically arranged, so as to prevent the medicine strip from falling into the area outside the pill making machine 170.

[0068] In some alternative embodiments of the utility model, the lower end of the material blocking plate forms an angle with the vertical line of the conveying device.

[0069] In the embodiment, the material blocking plate of the pill making machine 170 below the first conveying belt 140 extends upwards, and the material blocking plate gradually moves away from the vertical line of the first conveying belt 140 from bottom to top. The material blocking plate of the pill making machine 170 below the second conveying belt 160 extends upwards, and the material blocking plate gradually moves away from the vertical line of the second conveying belt 160 from bottom to top.

[0070] In some embodiments of the present application, the upper end of the material blocking plate is higher than the height of the conveying device. In this embodiment, the upper end of the material blocking plate above the pelletizer 170 under the first conveying belt 140 is higher than the height of the first conveying belt 140. The upper end of the material blocking plate above the pelletizer 170 under the second conveying belt 160 is higher than the height of the second conveying belt 160, so as to prevent the medicine strip from falling to the area outside the pelletizer 170.

[0071] In some alternative embodiments of the present application, the height of the upper end of the material blocking plate is flush with the height of the conveying device. In this embodiment, the height of the upper end of the material blocking plate above the pelletizer 170 under the first conveying belt 140 is flush with the height of the first conveying belt 140. The height of the upper end of the material blocking plate above the pelletizer 170 under the second conveying belt 160 is flush with the height of the second conveying belt 160.

[0072] At this point, those skilled in the art should recognize that, although the present application has been shown and described in detail herein in terms of a number of exemplary embodiments, many other variations or modifications of the present application, in addition to those shown and described herein, can be determined or deduced from the disclosure of the present application without departing from the spirit and scope of the present application. Therefore, the scope of the present application should be understood and recognized as covering all such other variations or modifications.

Claims

1. A double-station pill-making device, characterized in that, The device comprises: a distribution mechanism configured to divide the medicine lump discharged by the blender into two medicine strips; a conveying device located below the distribution mechanism, the conveying device being configured to convey the medicine strips from back to front and convey one of the medicine strips to one of the pill making machines and the other medicine strip to the other pill making machine.

2. The double-station pill making apparatus of claim 1, wherein The conveying device comprises: a first conveying belt located below the distribution mechanism and configured to convey the medicine strips from back to front; the inlet of one of the pill making machines is located below the rear end of the first conveying belt for feeding one of the medicine strips into the pill making machine; a second conveying belt located below the rear end of the first conveying belt and configured to convey the other medicine strip from back to front; the inlet of the other pill making machine is located below the rear end of the second conveying belt for feeding the medicine strip on the second conveying belt into the pill making machine.

3. The double-station pill making apparatus of claim 1, wherein The distribution mechanism comprises: a distribution body; a feeding port provided on the distribution body, the feeding port being connected to the outlet of the blender; two discharge pipes, both of which are provided on the distribution body, the inlets of the discharge pipes being in communication with the feeding port, and both of the discharge pipes being located above the conveying device.

4. The double-station pill making device according to claim 3, wherein the outlets of the two discharge pipes are spaced apart.

5. The double-station pill making device according to claim 3, wherein the discharge passage inside the discharge pipe gradually narrows along the discharge direction of the discharge pipe; and the inlet of the discharge pipe is larger than the outlet of the discharge pipe.

6. The double-station pill making device according to claim 3, wherein the backward extension line of one of the discharge pipes along the discharge direction forms an angle with the backward extension line of the other discharge pipe along the discharge direction.

7. The double-station pill making device according to claim 3, wherein the discharge pipes are symmetrically arranged along the center line of the distribution body.

8. The double-station pill making device according to claim 3, wherein the inlet of the discharge pipe is a feeding port, and the outlet of the discharge pipe is located above the conveying device.

9. The double-station pill-making device according to claim 3, characterized in that The device further comprises a connecting structure, which comprises: a first connecting column provided at the feeding port of the distribution mechanism; a second connecting column provided at the outlet of the blender corresponding to the first connecting column; the first connecting column and the second connecting column are threadedly connected.

10. The double-station pill making device according to claim 9, wherein the first connecting column is a plurality of columns and is arranged in a spaced apart manner along the periphery of the feeding port; the second connecting column is a plurality of columns and is arranged in a spaced apart manner along the periphery of the outlet of the blender, each of the second connecting columns corresponding to one of the first connecting columns.