Charging barrel capable of realizing multi-motion superposition mixing
By designing a multi-motion superimposed mixing cylinder, and utilizing the combination of the cylinder body, the uniform mixing mechanism, and the flipping mechanism, the problem of insufficient mixing of powdered materials is solved, achieving rapid and uniform mixing and avoiding clumping, thus improving equipment efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-03-24
AI Technical Summary
Existing powder mixers mix powdered materials by rotating and stirring, but the stirring range is small, resulting in insufficient mixing, which requires longer mixing time and affects equipment efficiency.
A multi-motion superimposed mixing cylinder is designed. Through the cylinder body, the uniform material mechanism and the flipping mechanism, combined with the reciprocating movement and rotation of the stirring blade, multi-motion superimposed mixing is achieved. The cylinder body, the uniform material mechanism and the flipping mechanism, combined with the reciprocating movement and rotation of the stirring blade, enable multi-motion superimposed mixing. The cylinder body includes the cooperation of components such as rectangular rod, fixed ring, cam groove, L rod, and guide shaft, which drive the stirring blade to reciprocate and rotate within the cylinder, thereby enhancing the mixing effect.
It enables rapid and uniform mixing of powdered materials, avoids clumping, and improves mixing efficiency.
Smart Images

Figure CN224024875U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to powder shape material mixing technical field, specifically to a material cylinder that can realize multiple motion superposition mixing. BACKGROUND
[0002] Powder shape material needs to utilize the mixer to carry out the mixture in the processing, and the mixer is the mechanical equipment that two or more than two materials are mixed evenly by using mechanical force and gravity etc.
[0003] The basic form of powder mixer on the market has been shaped, usually including external material cylinder and internal stirring blade, through the bidirectional stirring of material cylinder and stirring blade, the powder material is mixed uniformly, but the stirring range is small by rotating stirring, and it is difficult to mix the powder material together quickly only by rotating, and only the problem of insufficient stirring can be made up by prolonging the stirring time, although the powder material can be mixed together, but the mixing time is too long to affect the processing efficiency of equipment, and the production efficiency is reduced. UTILITY MODEL CONTENTS
[0004] The utility model discloses a kind of material cylinders that can realize multiple motion superposition mixing, to solve the problem raised in above background technology.
[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of material cylinder that can realize multiple motion superposition mixing, including material cylinder body, one end of the material cylinder body is rotatably connected with a bearing seat, the other end of the material cylinder body is rotatably connected with second bearing seat, the outer wall of the material cylinder body is fixedly installed with feed pipe, the outer wall of the material cylinder body is fixedly installed with lower hopper, the outer wall of the material cylinder body is fixedly installed with chain wheel, the outer wall of the chain wheel is engaged with chain, the inner wall of the bearing seat and second bearing seat is rotatably connected with driving shaft, the outer wall of the driving shaft is fixedly installed with coupling, the material cylinder body is provided with material uniformizing mechanism, the material uniformizing mechanism is provided with turnover mechanism, the material uniformizing mechanism includes:
[0006] Rectangular rod, the rectangular rod is slidably connected in the inner wall of driving shaft, the inner wall of the rectangular rod is rotatably connected with shaft, the lateral wall of the shaft is fixedly installed with stirring blade, by setting shaft cooperation stirring blade, not only material cylinder body internal material can be back and forth turned, but also material that is bonded into block can be dispersed;
[0007] Fixed ring, the fixed ring is fixedly installed on the outer wall of the material cylinder body, cam groove is opened on the fixed ring;
[0008] The convex plate is fixedly installed on the top of the second bearing seat, the inner wall of the convex plate is slidably connected with an L-shaped rod, one end of the L-shaped rod is rotatably connected with the outer wall of the rectangular rod, the other end of the L-shaped rod is fixedly installed with a guide shaft, the outer wall of the guide shaft is attached to the inner wall of the cam groove, and the cam groove is a spiral groove connected at the head and tail, so that the guide shaft is guided.
[0009] Preferably, the turnover mechanism comprises a transmission rod, one end of the transmission rod is rotatably connected with the inner wall of the rectangular rod, and the other end of the transmission rod is fixedly installed with a transmission gear penetrating through the rectangular rod.
[0010] Preferably, the outer wall of the L-shaped rod is slidably connected with a sliding block, the outer wall of the sliding block is fixedly installed with a rack, and the rack is engaged with the transmission gear, so that the transmission rod is driven to reciprocatingly rotate on the inner wall of the rectangular rod by the rack cooperating with the transmission gear.
[0011] Preferably, the outer wall of the sliding block is hingedly connected with a connecting rod, and the end, away from the sliding block, of the connecting rod is hingedly connected with the outer wall of the convex plate, so that the sliding block is pushed and pulled to reciprocatingly slide on the outer wall of the L-shaped rod by the connecting rod.
[0012] Preferably, the outer wall of the transmission rod is fixedly installed with a driving bevel gear.
[0013] Preferably, the outer wall of the rotating shaft is fixedly installed with a driven bevel gear, and the driven bevel gear is engaged with the driving bevel gear.
[0014] Compared with the prior art, the utility model provides a material cylinder which can realize multiple motion superposition mixing, and has the following beneficial effects:
[0015] 1、The material cylinder which can realize multiple motion superposition mixing, through the rotation of the material cylinder body, the cooperation of the fixed ring, the cam groove, the convex plate, the L-shaped rod and the guide shaft can drive the rectangular rod to reciprocatingly slide on the inner wall of the driving shaft, the driving shaft reciprocatingly slides, and the cooperation of the rotating shaft can drive the stirring blade to reciprocatingly move in the material cylinder body, the reciprocating movement of the stirring blade can stir the material in the material cylinder body, the rotation of the stirring blade can accelerate the mixing speed of the material, the material can be quickly and uniformly mixed together, and the mixing efficiency of the material is improved.
[0016] 2、The material cylinder which can realize multiple motion superposition mixing, through the reciprocating slide of the L-shaped rod, the cooperation of the connecting rod, the sliding block, the rack and the transmission gear can drive the transmission rod to reciprocatingly rotate on the inner wall of the rectangular rod, the reciprocating rotation of the transmission rod cooperates with the driving bevel gear, the driven bevel gear and the rotating shaft to drive the stirring blade to synchronously reciprocatingly rotate, the reciprocating rotation of the stirring blade can scatter the powdery material in the material cylinder body, the powdery material is prevented from caking in the material cylinder body, and the mixing effect of the material is further improved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is the whole structure schematic diagram of front surface of the utility model;
[0018] Figure 2 It is the whole structure schematic diagram of back surface of the utility model;
[0019] Figure 3 It is the whole structure schematic diagram of driving shaft and material uniform mechanism of the utility model;
[0020] Figure 4 It is the partial section structure schematic diagram of driving shaft of the utility model;
[0021] Figure 5 It is the whole structure schematic diagram of the utility model Figure 2 A place amplification structure schematic diagram.
[0022] In the drawing: 1, material cylinder body; 2, bearing seat No. 1; 3, bearing seat No. 2; 4, feed pipe; 5, discharge hopper; 6, chain wheel; 7, chain; 8, driving shaft; 9, coupling; 10, material uniform mechanism; 101, rectangular rod; 102, fixed ring; 103, convex plate; 104, rotating shaft; 105, stirring blade; 106, cam groove; 107, L rod; 108, guide shaft; 11, turnover mechanism; 111, transmission rod; 112, transmission gear; 113, sliding block; 114, rack; 115, connecting rod; 116, driving bevel gear; 117, driven bevel gear. Specific implementation
[0023] As Figures 1-5The utility model provides a kind of technical scheme shown in the utility model provides a kind of material cylinder capable of realizing multiple motion superposition mixing, including material cylinder body 1, one end of material cylinder body 1 is rotatably connected with No. bearing seat 2, the other end of material cylinder body 1 is rotatably connected with No. bearing seat 2, the outer wall of material cylinder body 1 is fixedly installed with feed pipe 4, the outer wall of material cylinder body 1 is fixedly installed with lower hopper 5, the outer wall of feed pipe 4 and lower hopper 5 is all bolted with cover plate, the outer wall of the material cylinder body 1 is fixedly installed with chain wheel 6, the outer wall of chain wheel 6 is engaged with chain 7, chain 7 is engaged with the tooth disc of external motor output shaft, drive tooth disc rotation by external motor, drive chain wheel 6 rotation by the transmission of tooth disc rotation cooperation chain 7, chain wheel 6 rotates simultaneously can drive material cylinder body 1 rotate in the outer wall of No. bearing seat 2 and No. bearing seat 3, the inner wall of No. bearing seat 2 and No. bearing seat 3 is rotatably connected with driving shaft 8, the outer wall of driving shaft 8 is fixedly installed with coupling 9, coupling 9 is connected with the output shaft of external motor, drive coupling 9 rotation by motor, coupling 9 rotates simultaneously can drive driving shaft 8 rotate in the inner wall of No. bearing seat 2 and No. bearing seat 3, material cylinder body 1 is provided with uniform material mechanism 10, by setting uniform material mechanism 10 can be mixed together evenly and quickly in the material of material cylinder body 1 inside, uniform material mechanism 10 is provided with turnover mechanism 11, by setting turnover mechanism 11 can make stirring blade 105 repeatedly turn over, by the overturning of stirring blade 105 can scatter powder-like material in the interior of material cylinder body 1, avoid powder-like material in the interior of material cylinder body 1 agglomerate.
[0024] The uniform material mechanism 10 comprises a rectangular rod 101, a fixed ring 102, a convex plate 103, a rotating shaft 104, a stirring blade 105, a cam groove 106, an L rod 107 and a guide shaft 108. The rectangular rod 101 is slidably connected to the inner wall of the driving shaft 8. The inner wall of the rectangular rod 101 is rotatably connected to the rotating shaft 104. The side wall of the rotating shaft 104 is fixedly installed with the stirring blade 105. The rectangular rod 101 reciprocatingly slides on the inner wall of the driving shaft 8, and cooperates with the rotating shaft 104 to drive the stirring blade 105 to reciprocatingly move in the inside of the material cylinder body 1. The reciprocating movement of the stirring blade 105 can stir the material in the inside of the material cylinder body 1. The rotation of the stirring blade 105 can accelerate the mixing speed of the material. The fixed ring 102 is fixedly installed on the outer wall of the material cylinder body 1. The fixed ring 102 is provided with the cam groove 106. The convex plate 103 is fixedly installed on the top of the second bearing seat 3. The inner wall of the convex plate 103 is slidably connected to the L rod 107. One end of the L rod 107 is rotatably connected to the outer wall of the rectangular rod 101. The L rod 107 reciprocatingly slides on the inner wall of the convex plate 103, and drives the rectangular rod 101 to reciprocatingly slide on the inner wall of the driving shaft 8. The other end of the L rod 107 is fixedly installed with the guide shaft 108. The outer wall of the guide shaft 108 is attached to the inner wall of the cam groove 106. The fixed ring 102 rotates, and the cam groove 106 presses the guide shaft 108, so that the guide shaft 108 drives the L rod 107 to reciprocatingly slide on the inner wall of the convex plate 103.
[0025] The turnover mechanism 11 comprises a transmission rod 111, a transmission gear 112, a sliding block 113, a rack 114, a connecting rod 115, a driving bevel gear 116 and a driven bevel gear 117. One end of the transmission rod 111 is rotatably connected to the inner wall of the rectangular rod 101. The other end of the transmission rod 111 is fixedly installed with the transmission gear 112 penetrating through the rectangular rod 101. The transmission rod 111 is rotatably connected to the penetrating position of the rectangular rod 101. The outer wall of the L rod 107 is slidably connected to the sliding block 113. The outer wall of the sliding block 113 is fixedly installed with the rack 114. The rack 114 is engaged with the transmission gear 112. The sliding block 113 reciprocatingly slides up and down, and cooperates with the rack 114 and the transmission gear 112 to drive the transmission rod 111 to reciprocatingly rotate on the inner wall of the rectangular rod 101. The outer wall of the sliding block 113 is hingedly connected to the connecting rod 115. One end of the connecting rod 115 away from the sliding block 113 is hingedly connected to the outer wall of the convex plate 103. The L rod 107 reciprocatingly slides on the inner wall of the convex plate 103, and drives the sliding block 113 to synchronously reciprocate. The connecting rod 115 reciprocatingly pushes and pulls the sliding block 113 in the reciprocating movement of the sliding block 113, so that the sliding block 113 reciprocatingly slides up and down on the outer wall of the L rod 107. The outer wall of the transmission rod 111 is fixedly installed with the driving bevel gear 116. The outer wall of the rotating shaft 104 is fixedly installed with the driven bevel gear 117. The driven bevel gear 117 is engaged with the driving bevel gear 116. The transmission rod 111 reciprocatingly rotates, and cooperates with the driven bevel gear 117 and the driving bevel gear 116 to drive the rotating shaft 104 to synchronously rotate.
[0026] Working principle: the coupling 9 is connected with the output shaft of the external motor, the motor drives the coupling 9 to rotate, the coupling 9 drives the driving shaft 8 to rotate in the inner wall of the first bearing seat 2 and the second bearing seat 3, the driving shaft 8 drives the rectangular rod 101 to rotate synchronously, the rectangular rod 101 drives the rotating shaft 104 to rotate synchronously, at this time the rotating shaft 104 drives the stirring blade 105 to do circular motion around the driving shaft 8, at this time the stirring blade 105 can mix the material in the barrel body 1, then the chain 7 is engaged with the toothed disc of the external motor output shaft, the external motor drives the toothed disc to rotate, the chain 7 drives the sprocket 6 to rotate through the transmission of the toothed disc rotation, the sprocket 6 drives the barrel body 1 to rotate in the outer wall of the first bearing seat 2 and the second bearing seat 3, so that the barrel body 1 and the driving shaft 8 can rotate at different or same speed, so as to adapt to different materials, and the barrel body 1 and the driving shaft 8 can rotate in the same direction or opposite direction, so that the barrel body 1 is more flexible, and the barrel body 1 drives the fixed ring 102 to rotate synchronously at the same time, the cam groove 106 extrudes the guide shaft 108 when the fixed ring 102 rotates, so that the guide shaft 108 pushes the L-shaped rod 107, so that the L-shaped rod 107 reciprocates in the inner wall of the convex plate 103, the L-shaped rod 107 reciprocates at the same time, which drives the rectangular rod 101 reciprocating in the inner wall of the driving shaft 8, the rectangular rod 101 reciprocates at the same time, which drives the rotating shaft 104 to reciprocate synchronously, at this time the rotating shaft 104 drives the stirring blade 105 to reciprocate in the barrel body 1, through the reciprocating movement of the stirring blade 105, the material in the barrel body 1 can be turned back, and the rotation of the stirring blade 105 can accelerate the mixing speed of the material, so that the material can be quickly and uniformly mixed together, which is beneficial to improve the mixing efficiency of the material.
[0027] The L-shaped rod 107 reciprocatingly slides on the inner wall of the convex plate 103, and simultaneously drives the slider 113 to reciprocate synchronously, the connecting rod 115 reciprocatingly pushes and pulls the slider 113 in the process, so that the slider 113 reciprocates up and down on the outer wall of the L-shaped rod 107, the slider 113 reciprocating up and down simultaneously drives the rack 114 to reciprocate up and down synchronously, the rack 114 reciprocating up and down simultaneously drives the transmission gear 112 meshed therewith to reciprocate, at this time, the transmission gear 112 drives the transmission rod 111 to reciprocate on the inner wall of the rectangular rod 101, the transmission rod 111 reciprocating simultaneously drives the driving bevel gear 116 to reciprocate synchronously, the driving bevel gear 116 reciprocating simultaneously drives the driven bevel gear 117 meshed therewith to reciprocate synchronously, at this time, the driven bevel gear 117 drives the rotating shaft 104 to reciprocate on the inner wall of the rectangular rod 101, the rotating shaft 104 reciprocating simultaneously drives the stirring blade 105 to reciprocate synchronously, through the reciprocating rotation of the stirring blade 105, the powder material in the internal of the barrel body 1 can be scattered, so that the powder material is prevented from caking in the internal of the barrel body 1, and the mixing effect of the material can be further improved.
[0028] The above is a detailed description of the utility model, but some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, the modifications or improvements without departing from the spirit of the utility model are within the protection scope of the utility model.
Claims
1. A material cylinder capable of achieving multi-motion superposition and mixing, comprising a material cylinder body (1), characterized in that: One end of the barrel body (1) is rotatably connected to a first bearing seat (2), and the other end of the barrel body (1) is rotatably connected to a second bearing seat (3). A feed pipe (4) is fixedly installed on the outer wall of the barrel body (1). A hopper (5) is fixedly installed on the outer wall of the barrel body (1). A sprocket (6) is fixedly installed on the outer wall of the barrel body (1). A chain (7) meshes with the outer wall of the sprocket (6). A drive shaft (8) is rotatably connected to the inner walls of the first bearing seat (2) and the second bearing seat (3). A coupling (9) is fixedly installed on the outer wall of the drive shaft (8). A material leveling mechanism (10) is provided on the barrel body (1). A flipping mechanism (11) is provided on the material leveling mechanism (10). The material leveling mechanism (10) includes: A rectangular rod (101) is slidably connected to the inner wall of the drive shaft (8). A rotating shaft (104) is rotatably connected to the inner wall of the rectangular rod (101). A stirring blade (105) is fixedly installed on the side wall of the rotating shaft (104). A fixing ring (102) is fixedly installed on the outer wall of the barrel body (1), and a cam groove (106) is provided on the fixing ring (102). A convex plate (103) is fixedly installed on the top of the second bearing seat (3). An L rod (107) is slidably connected to the inner wall of the convex plate (103). One end of the L rod (107) is rotatably connected to the outer wall of the rectangular rod (101). The other end of the L rod (107) is fixedly installed with a guide shaft (108). The outer wall of the guide shaft (108) is attached to the inner wall of the cam groove (106).
2. The material cylinder capable of realizing multi-motion superposition and mixing according to claim 1, characterized in that: The flipping mechanism (11) includes a transmission rod (111), one end of which is rotatably connected to the inner wall of the rectangular rod (101), and the other end of which is fixedly mounted with a transmission gear (112) through the rectangular rod (101).
3. The feed cylinder capable of achieving multi-motion superposition and mixing according to claim 1, characterized in that: The outer wall of the L rod (107) is slidably connected to a slider (113), and a rack (114) is fixedly installed on the outer wall of the slider (113). The rack (114) meshes with the transmission gear (112).
4. A material cylinder capable of achieving multi-motion superposition and mixing according to claim 3, characterized in that: The outer wall of the slider (113) is hinged to a connecting rod (115), and the end of the connecting rod (115) away from the slider (113) is hinged to the outer wall of the convex plate (103).
5. A material cylinder capable of realizing multi-motion superposition and mixing according to claim 2, characterized in that: A drive bevel gear (116) is fixedly installed on the outer wall of the transmission rod (111).
6. A material cylinder capable of realizing multi-motion superposition and mixing according to claim 1, characterized in that: A driven bevel gear (117) is fixedly installed on the outer wall of the rotating shaft (104), and the driven bevel gear (117) meshes with the driving bevel gear (116).