Mixing machine for various materials

By designing multiple feeding hoppers and storage chambers, and utilizing feeding pipes and drive components to achieve sequential material conveying, the problems of high cost and material damage in existing material mixers are solved, and low-energy material mixing is achieved.

CN223602450UActive Publication Date: 2025-11-28SHIJIAZHUANG ZHENGCHENG FEED MACHINERY CO LTD
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Patent Information

Application Number
CN202423075002.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-12
Publication Date
2025-11-28
Estimated Expiration
2034-12-12

AI Technical Summary

Technical Problem

Existing material mixers are costly to use and can easily damage materials, affecting their stability.

Method used

The design incorporates multiple feeding hoppers and storage chambers. Materials are conveyed sequentially in the vertical and circumferential directions via feeding pipes and drive components, avoiding mixing. Material mixing is achieved by using a motor to drive the feeding pipes to rotate.

Benefits of technology

It reduces energy consumption, avoids damage to materials, and ensures the performance of materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a multi-material mixing machine. The multi-material mixing machine comprises a feeding bin, a storage chamber, an opening and closing assembly, a feeding pipe and a driving part, when the multi-material mixing machine provided by the utility model is used, materials are added into the feeding hole in the uppermost feeding bin. And then the same material is sequentially conveyed into each material storage chamber through a feeding pipe. And then materials needing to be mixed are sequentially added into the material storage chamber through the feeding pipe. Various materials are sequentially added into the material storage chamber, the bottom of the material storage chamber is opened through the opening and closing assembly to flow into the lower feeding bin, and then the materials are sequentially added into the material storage chamber through the feeding pipe in the lower feeding bin to be mixed. And mixed materials can be obtained after the materials pass through a plurality of feeding bins. The stirring of the materials can be avoided, the use of a large-scale motor is avoided, the damage to the materials can be avoided, and the use performance of the materials is ensured.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to material mixing technical field, concretely relates to a kind of multiple material mixing machine. BACKGROUND

[0002] Mixing machine is the equipment that multiple materials are mixed together, and mixed evenly, currently most material mixing machines usually adopt the mode of stirring paddle stirring, by multiple materials are placed into inside mixing barrel, and by starting stirring paddle to material mixing stirring.This mode needs to use larger power motor to drive stirring paddle rotation, and in the process of stirring paddle rotation, material body is easily damaged.On the one hand, it is easy to cause high electricity cost, and it is easy to affect the stability of material in use process. SUMMARY

[0003] The utility model embodiment provides a kind of multiple material mixing machine, to solve the problem that material mixing machine in prior art is high in cost and is easy to affect the characteristics of material itself when using.

[0004] To achieve the above object, the technical scheme adopted by the utility model is as follows: provide a kind of multiple material mixing machine, comprising:

[0005] Feed bin, the number is multiple, multiple the feed bin is adjacently arranged along vertical direction, and the discharge port of upper feed bin and the feed inlet of lower feed bin are interconnectedly arranged;

[0006] Storage chamber, the number is multiple, multiple the storage chamber is evenly distributed in the feed bin inside along the radial direction of the feed bin, and the bottom end of the storage chamber and the discharge end of the feed bin are interconnectedly arranged;

[0007] Opening and closing assembly, installed at the bottom end of the storage chamber, for controlling the material falling state of the storage chamber;

[0008] Feeding pipe, rotationally arranged on the feed bin, and coaxially arranged with the feed bin, the top end of the feeding pipe is communicated with the feed inlet of the feed bin, and the bottom end of the feeding pipe is used to deliver material to the inside of the storage chamber;

[0009] Driving part, installed between the feed bin and the feeding pipe, for driving the feeding pipe rotation.

[0010] In a possible implementation manner, the feeding pipe includes main pipeline communicated with the feed inlet of the feed bin and shunt pipe communicated with the bottom of the main pipeline, and the shunt pipe is inclinedly arranged away from the axis direction of the feed bin from top to bottom.

[0011] In a possible implementation, the number of the flow distribution pipes is multiple, and the multiple flow distribution pipes are arranged uniformly along the circumference of the charging bin.

[0012] In a possible implementation, a conical pipe is fixedly installed at the feeding port of the charging bin, the inner diameter of the conical pipe gradually decreases from top to bottom, and the main pipe is sleeved outside the conical pipe.

[0013] In a possible implementation, a bottom end of the storage chamber is hingedly provided with a cover plate used for covering the bottom of the storage chamber, and the charging bin is further provided with a driving assembly used for driving the cover plate to swing.

[0014] In a possible implementation, the driving assembly comprises:

[0015] a rotating shaft rotatably arranged at the bottom of the sidewall of the storage chamber, the cover plate is fixedly installed on the rotating shaft, one end of the rotating shaft extends out of the outside of the charging bin, and the charging bin is further provided with a pushing assembly used for pushing the rotating shaft to rotate.

[0016] In a possible implementation, the pushing assembly comprises:

[0017] a swing rod, one end of which is fixedly installed on the rotating shaft;

[0018] a switching rod, a middle part of which is hingedly arranged on the charging bin;

[0019] a connecting rod, two ends of which are respectively hingedly arranged at the other end of the swing rod and one end of the switching rod;

[0020] a pushing piece, a fixed end of which is hingedly arranged on the charging bin, and a driving end of which is hingedly arranged at the other end of the switching rod.

[0021] In a possible implementation, the two ends of the connecting rod are threadedly connected with connecting pieces, the two connecting pieces are respectively hingedly arranged on the switching rod and the swing rod, and the screw holes on the two connecting pieces are in opposite directions.

[0022] In a possible implementation, the discharging port at the bottom of the storage chamber is in a conical structure, and the cover plate can be lapped at the bottom of the discharging port to prevent the storage chamber from discharging.

[0023] Compared with the prior art, the scheme shown in the embodiment of the application has the following advantages: a plurality of feeding bins are arranged, the plurality of feeding bins are sequentially and end-to-end communicated in the vertical direction, a feeding opening is arranged at the top of the feeding bin, and a discharging opening is arranged at the bottom of the feeding bin. The application has a plurality of storage chambers arranged at the middle of the feeding bin in the vertical direction, and the plurality of storage chambers are sequentially and adjacently arranged in the circumferential direction of the feeding bin. A feeding pipe is arranged at the feeding opening of the feeding bin and is rotatably arranged in the feeding bin. An opening and closing assembly for controlling the flow of materials is arranged at the bottom of the storage chamber, and a driving member is a motor. The feeding pipe can be driven to rotate by the driving member, so that materials are sequentially added into the plurality of storage chambers. In use, materials are added into the feeding opening of the uppermost feeding bin. Then the same kind of materials are sequentially fed into the plurality of storage chambers by the feeding pipe. The materials to be mixed are sequentially added into the plurality of storage chambers by the feeding pipe. The plurality of materials are sequentially added into the plurality of storage chambers, respectively. The bottom of the storage chamber is opened by the opening and closing assembly, and the materials flow into the lower feeding bin. Then the materials are sequentially added into the plurality of storage chambers by the feeding pipe in the lower feeding bin, and the materials are mixed. After passing through the plurality of feeding bins, the mixed materials can be obtained. The mixing of the materials can be avoided, the use of a large motor can be avoided, and the materials can be prevented from being damaged, so that the use performance of the materials is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 A structure schematic view of the multiple-material mixing machine is provided for the embodiment of the application.

[0025] Figure 2 An installation structure schematic view of the feeding pipe is provided for the embodiment of the application.

[0026] Figure 3 An installation structure schematic view of the opening and closing assembly is provided for the embodiment of the application.

[0027] BRIEF DESCRIPTION OF DRAWINGS

[0028] 1, feeding bin; 11, conical pipe; 2, storage chamber; 3, opening and closing assembly; 31, cover plate; 32, rotating shaft; 33, swing rod; 34, connecting rod; 341, connecting piece; 35, adapter rod; 36, pushing member; 4, feeding pipe; 41, shunt pipe; 42, main pipe; 5, driving member. DETAILED DESCRIPTION

[0029] In order to make the technical problems, technical solutions and beneficial effects of the application clearer, the application will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the application and do not limit the application.

[0030] Please refer to Figures 1 to 3The utility model provides a variety of material mixing machine, and the utility model discloses a variety of material mixing machine, including charging bin 1, storage chamber 2, open and close subassembly 3, feeding pipe 4 and driving part 5. The number of charging bin 1 is multiple, multiple charging bin 1 is adjacent along vertical direction and is located the discharge port of upper charging bin 1 and the feed port of lower charging bin 1 intercommunication arrangement, the number of storage chamber 2 is multiple, multiple storage chamber 2 is evenly distributed in charging bin 1 inside along the radial direction of charging bin 1, and the bottom end of storage chamber 2 and the discharge end of charging bin 1 are intercommunication arrangement, open and close subassembly 3 is installed at the bottom end of storage chamber 2 and is used for controlling the blanking condition of storage chamber 2, feeding pipe 4 is rotationally arranged on charging bin 1, and is coaxially arranged with charging bin 1, and the top end of feeding pipe 4 is communicated with the feed port of charging bin 1, and the bottom end of feeding pipe 4 is used to deliver material to the inside of storage chamber 2, and driving part 5 is installed between charging bin 1 and feeding pipe 4 and is used to drive feeding pipe 4 to rotate.

[0031] Compared with the prior art, the multiple material mixing machine provided by the embodiment is provided with multiple charging bins 1, the multiple charging bins 1 are sequentially and end-to-end interconnected along the vertical direction, a feeding port is arranged at the top of the charging bin 1, and a discharge port is arranged at the bottom of the charging bin 1. In the application, multiple storage chambers 2 are installed at the middle part of the charging bin 1 along the vertical direction, and the multiple storage chambers 2 are sequentially and adjacently arranged along the circumferential direction of the charging bin 1. A feeding pipe 4 is installed at the feed port of the charging bin 1, and the feeding pipe 4 is rotationally arranged in the charging bin 1. An open and close assembly 3 for controlling the flow of material is arranged at the bottom of the storage chamber 2, and a driving part 5 is a motor. The feeding pipe 4 can be driven to rotate by the driving part 5, so that the material is sequentially added to the inside of the multiple storage chambers 2. In use, the material is added to the feed port of the uppermost charging bin 1. Then the same kind of material is sequentially delivered to the inside of each storage chamber 2 by the feeding pipe 4. The material to be mixed is sequentially added to the inside of the storage chamber 2 by the feeding pipe 4. The multiple materials are sequentially added to the inside of the storage chamber 2, respectively. The bottom of the storage chamber 2 is opened by the open and close assembly 3, and the material flows into the inside of the lower charging bin 1. Then the material is sequentially added to the inside of the storage chamber 2 by the feeding pipe 4 in the inside of the lower charging bin 1 for mixing. After passing through the multiple charging bins 1, the mixed material can be obtained. The stirring of the material can be avoided, the use of the large motor can be avoided, and the damage to the material can be avoided, so that the use performance of the material is ensured.

[0032] Specifically, in the embodiment, the driving part 5 is a synchronous motor, the driving end of the driving part 5 is in transmission connection with the feeding pipe 4, and the feeding pipe 4 is driven to rotate, so that the discharge end of the feeding pipe 4 is sequentially located at the top of the storage chamber 2, and the material is added to the inside of the storage chamber 2.

[0033] In some embodiments, the above-mentioned feeding pipe 4 can adopt the structure as shown in Figure 2 The structure is shown in Figure 2The feeding pipe 4 comprises a main pipe 42 communicated with the feeding port of the feeding bin 1 and a shunt pipe 41 communicated with the bottom of the main pipe 42, and the shunt pipe 41 is arranged obliquely from top to bottom and away from the axis of the feeding bin 1. The main pipe 42 is installed at the feeding port of the feeding bin 1, and the axis of the main pipe 42 is arranged vertically and coaxially with the feeding bin 1. The shunt pipe 41 is arranged obliquely at the bottom of the main pipe 42. The material falls into the main pipe 42 from the feeding port of the feeding bin 1 and then falls into the storage chamber 2 through the shunt pipe 41, thereby completing the addition of the material in the storage chamber 2.

[0034] In some embodiments, the shunt pipe 41 can adopt the structure as shown in Figure 2 . Referring to Figure 2 , the number of the shunt pipes 41 is multiple, and the multiple shunt pipes 41 are arranged uniformly and spaced apart along the circumference of the feeding bin 1. The number of the shunt pipes 41 is multiple, and the multiple shunt pipes 41 are arranged uniformly and spaced apart along the circumference of the feeding bin 1, so that the material can be added to multiple storage chambers 2 at the same time, thereby improving the production efficiency of adding the material to multiple storage chambers 2.

[0035] Specifically, in the embodiment, the fixed plates are fixedly installed between the multiple shunt pipes 41, and the driving end of the driving member 5 is fixedly connected to the fixed plates, so that the multiple shunt pipes 41 can be driven synchronously.

[0036] In some embodiments, the feeding bin 1 can adopt the structure as shown in Figure 2 . Referring to Figure 2 , the conical pipe 11 is fixedly installed at the feeding port of the feeding bin 1, the inner diameter of the conical pipe 11 gradually decreases from top to bottom, and the main pipe 42 is sleeved outside the conical pipe 11. The feeding pipe is fixedly installed at the feeding port of the feeding bin 1, the top end of the conical pipe 11 is fixedly installed at the feeding port of the feeding bin 1, and the conical pipe 11 is located inside the feeding pipe. The top end of the main pipe 42 is located between the conical pipe 11 and the feeding pipe. When the material falls into the feeding bin 1 through the feeding port, it can fall into the main pipe 42 through the guidance of the conical pipe 11.

[0037] Preferably, in the embodiment, the main pipe 42 is spaced apart from the conical pipe 11, so that when the driving member 5 drives the feeding pipe 4 to rotate, the friction between the main pipe 42 and the feeding port of the feeding bin 1 is avoided, and the structure is simple and convenient for installation between the feeding bin 1 and the feeding pipe 4. The multiple storage chambers 2 surround the installation space for installing the driving member 5, the mounting plate is fixedly installed at the top of the installation space, the mounting plate is fixedly connected to the multiple storage chambers 2, the driving member 5 is installed in the installation space and fixedly installed on the mounting plate, and the driving member 5 drives the feeding pipe 4 to rotate.

[0038] In some embodiments, the storage chamber 2 can adopt the structure as shown inFigure 3 The structure shown. See also Figure 3 The bottom of the storage chamber 2 is hinged with a cover plate 31 for covering the bottom of the storage chamber 2, and the feeding hopper 1 is also equipped with a drive assembly for driving the cover plate 31 to swing. The cover plate 31 is hinged to the bottom of the storage chamber 2, and is mounted on one side wall of the storage chamber 2, abutting against the bottom of the other side wall. The working state of the cover plate 31 can be switched by rotating it. The structure is simple and facilitates switching between the material feeding states of the storage chamber 2.

[0039] In some embodiments, the aforementioned driving component may employ, for example... Figure 3 The structure shown. See also Figure 3 The drive assembly includes a rotating shaft 32 and a pushing assembly. The rotating shaft 32 is rotatably mounted on the bottom of the side wall of the storage chamber 2. A cover plate 31 is fixedly mounted on the rotating shaft 32, and one end of the rotating shaft 32 extends outward from the outer side of the feeding hopper 1. The feeding hopper 1 is also equipped with a pushing assembly for rotating the rotating shaft 32. One end of the rotating shaft 32 is rotatably mounted on the side wall of the storage chamber 2 via a bearing and is located inside the feeding hopper 1. The other end of the rotating shaft 32 extends to the outer side of the feeding hopper 1 and is rotatably mounted on the outer side wall of the feeding hopper 1 via a bearing. By designing one end of the rotating shaft 32 to be located on the outer side of the feeding hopper 1, the installation of the pushing assembly is facilitated, making future maintenance and repair easier.

[0040] In some embodiments, the aforementioned actuating component may employ, for example... Figure 1 , Figure 3 The structure shown. See also... Figure 1 , Figure 3 The pushing assembly includes a swing arm 33, a rotating rod, a connecting rod 34, and a pushing member 36. One end of the swing arm 33 is fixedly mounted on the rotating shaft 32; the middle of the connecting rod 35 is hinged to the feeding bin 1; both ends of the connecting rod 34 are hinged to the other end of the swing arm 33 and one end of the connecting rod 35, respectively; the fixed end of the pushing member 36 is hinged to the feeding bin 1, and the driving end is hinged to the other end of the connecting rod 35. One end of the swing arm 33 is fixedly mounted on the rotating shaft 32, and the other end extends away from the rotating shaft 32. The connecting rod 34 is hinged to the other end of the swing arm 33. The connecting rod 35 includes two wing plates arranged at an included angle. The connection point of the two wing plates is hinged to the outer wall of the feeding bin 1, and the two wing plates are respectively hinged to the driving end of the pushing member 36 and the connecting rod 34, thereby driving the rotating shaft 32 to rotate on the feeding bin 1 via the pushing member 36.

[0041] In some embodiments, the connecting rod 34 may be adopted as follows: Figure 3 The structure shown. See also Figure 3The two ends of the connecting rod 34 are threadedly connected with connecting pieces 341, the two connecting pieces 341 are respectively hingedly arranged on the adapter rod 35 and the swing rod 33, and the screw holes on the two connecting pieces 341 are in opposite directions. The two connecting pieces 341 are respectively hingedly connected to the adapter rod 35 and the swing rod 33 through the hinge shafts. The spacing between the two connecting pieces 341 can be adjusted by rotating the connecting pieces 341, so that the opening angle of the cover plate 31 when the pusher 36 drives the cover plate 31 to open can be adjusted. Thus, the flow of the material during the material falling process when the cover plate 31 is opened can be adjusted.

[0042] Preferably, in the embodiment, two fixing pieces are threadedly connected at the two ends of the connecting rod 34, and the two fixing pieces are used to abut against the outer sides of the connecting pieces 341 to fix the connecting pieces 341 to the connecting rod 34.

[0043] In some embodiments, the above-mentioned material storage chamber 2 can adopt the structure as shown in Figure 3 Referring to Figure 3 , the material falling port at the bottom of the material storage chamber 2 is a conical structure, and the cover plate 31 can be overlapped at the bottom of the material falling port to prevent the material storage chamber 2 from falling. Two material guide plates are fixedly installed on the two opposite side walls at the bottom of the material storage chamber 2, and the spacing between the two material guide plates gradually decreases from top to bottom, so that in the effective space, the cover plate 31 can be abutted against the bottom side of the two material guide plates, thereby improving the sealing effect of the baffle on the lower end of the material storage chamber 2.

[0044] The above only describes the preferred embodiments of the present application and is not intended to limit the present application, and any modification, equivalent replacement and improvement made within the spirit and principle of the present application shall be included in the protection scope of the present application.

Claims

1. A multi-material mixing machine characterized by, It includes: The feeding bin (1) is provided in multiple numbers, and the multiple feeding bins (1) are arranged adjacent to each other in the vertical direction, and the discharge port of the feeding bin (1) located at the upper portion is arranged in communication with the feeding port of the feeding bin (1) located at the lower portion; The storage chamber (2) is provided in multiple numbers, and the multiple storage chambers (2) are uniformly distributed in the radial direction of the feeding bin (1) inside the feeding bin (1), and the bottom end of the storage chamber (2) is arranged in communication with the discharge end of the feeding bin (1); The opening and closing assembly (3) is installed at the bottom end of the storage chamber (2) and is used for controlling the material falling state of the storage chamber (2); The feeding pipe (4) is rotatably arranged on the feeding bin (1) and is coaxially arranged with the feeding bin (1), the top end of the feeding pipe (4) is arranged in communication with the feeding port of the feeding bin (1), and the bottom end of the feeding pipe (4) is used for conveying materials into the storage chamber (2); The driving member (5) is installed between the feeding bin (1) and the feeding pipe (4) and is used for driving the feeding pipe (4) to rotate.

2. The multi-material mixing machine of claim 1, wherein, The feeding pipe (4) includes a main pipe (42) in communication with the feeding port of the feeding bin (1) and a shunt pipe (41) in communication with the bottom of the main pipe (42), and the shunt pipe (41) is arranged in an inclined manner from top to bottom away from the axis direction of the feeding bin (1).

3. The multi-material mixing machine of claim 2, wherein, The number of the shunt pipe (41) is multiple, and the multiple shunt pipes (41) are uniformly arranged in the circumferential direction of the feeding bin (1).

4. The multi-material mixing machine of claim 2, wherein, The feeding port of the feeding bin (1) is fixedly installed with a conical pipe (11), the inner diameter of the conical pipe (11) gradually decreases from top to bottom, and the main pipe (42) is sleeved on the outer side of the conical pipe (11).

5. The multi-material mixing machine of claim 1, wherein, The bottom end of the storage chamber (2) is hingedly provided with a cover plate (31) used for covering the bottom of the storage chamber (2), and the feeding bin (1) is further provided with a driving assembly used for driving the cover plate (31) to swing.

6. The multi-material mixing machine of claim 5, wherein, The driving assembly includes: A rotating shaft (32) is rotatably arranged at the bottom of the side wall of the storage chamber (2), the cover plate (31) is fixedly installed on the rotating shaft (32), one end of the rotating shaft (32) extends out of the outer side of the feeding bin (1), and the feeding bin (1) is further provided with a pushing assembly used for pushing the rotating shaft (32) to rotate.

7. The multi-material mixing machine of claim 6, wherein, The pushing assembly includes: A swing rod (33) is fixedly installed at one end of the rotating shaft (32); An adapter rod (35) is hingedly arranged at the middle portion of the feeding bin (1); A connecting rod (34) is hingedly arranged at the other end of the swing rod (33) and one end of the adapter rod (35); A pushing member (36) is hingedly arranged at the fixed end of the feeding bin (1) and the driving end of the adapter rod (35).

8. The multi-material mixing machine of claim 7, wherein, The two ends of the connecting rod (34) are threadedly connected with connecting members (341), the two connecting members (341) are hingedly arranged on the adapter rod (35) and the swing rod (33), respectively, and the screw holes on the two connecting members (341) are in opposite directions.

9. The multi-material mixing machine of claim 5, wherein, The blanking opening at the bottom of the storage chamber (2) is of a conical structure, and the cover plate (31) can be overlapped at the bottom of the blanking opening to prevent blanking of the storage chamber (2).