CN218256031U - Multi-component weighing mixer - Google Patents
Multi-component weighing mixer Download PDFInfo
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- CN218256031U CN218256031U CN202221424069.3U CN202221424069U CN218256031U CN 218256031 U CN218256031 U CN 218256031U CN 202221424069 U CN202221424069 U CN 202221424069U CN 218256031 U CN218256031 U CN 218256031U
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Abstract
The utility model provides a multi-component weighing and mixing machine, which comprises a frame, wherein the frame is used for supporting; the storage hopper is detachably arranged on the bracket; the mixing hopper is arranged above the storage hopper and is detachably arranged on the bracket, a stirring head is arranged in the mixing hopper, an L-shaped stirring arm is arranged on the stirring head, and the vertical arm section of the stirring arm is L-shaped so as to realize multiple mixing by single stirring; the weighing device is detachably arranged above the mixing hopper; the PLC is detachably arranged on the rack; a plurality of feeder hopper, feeder hopper demountable installation is in weighing device top.
Description
Technical Field
The utility model relates to a multicomponent blendor of weighing.
Background
Weighing blendors are widely used in the plastics industry, but because weighing blendors' volume is great, and the shape is irregular, and single transportation occupation space is big, and loading and unloading are difficult, have led to the cost of transportation height.
The structure that present blendor's compounding fill of weighing adopted the level to set up the compounding roller or the vertical compounding roller that sets up has leaded to the compounding effect poor, and compounding efficiency is slow, wastes time and consumes energy again.
SUMMERY OF THE UTILITY MODEL
In order to solve the problem, the utility model provides a blendor of weighing multicomponent aims at solving the blendor cost of transportation height of weighing, the poor problem of compounding effect.
The utility model provides a multicomponent blendor of weighing, include
A frame to support;
the storage hopper is detachably arranged on the bracket;
the mixing hopper is arranged above the storage hopper and is detachably arranged on the bracket, a stirring head is arranged in the mixing hopper, an L-shaped stirring arm is arranged on the stirring head, the section of the vertical arm of the stirring arm is L-shaped so as to realize multiple times of mixing by single stirring, a valve is arranged on a discharge port of the mixing hopper, the valve is connected with an air cylinder so as to realize automatic opening and closing, a connecting plate is arranged between the valve and the air cylinder, and the valve is parallel to the plane of the discharge port;
the weighing device is detachably arranged above the mixing hopper;
the PLC is detachably arranged on the rack;
a plurality of feeder hopper, feeder hopper demountable installation is in weighing device top.
The storage hopper, the PLC, the mixing hopper and the weighing device can be detachably connected to form a modular weighing mixer, each module is detached before transportation and then transported, and the modules are installed into a whole after arriving at a destination, so that the assembly and disassembly are easy, the assembly and disassembly difficulty during transportation is reduced, the utilization rate of transportation space is improved, and the transportation cost is greatly reduced; in addition, the stirring arm with the L-shaped stirring head can integrally stir the raw materials with different heights, the cross section of the stirring arm also forms the L shape, the raw materials with different heights on the stirring arm can be mixed while stirring, the effect of mixing for multiple times through multiple times of single stirring is formed, the raw material stirring and mixing efficiency is greatly improved, and the raw materials are mixed more uniformly.
In one or more embodiments, the stirring arm is provided with a cross arm, and the cross arm is provided with an inclined surface or an arc surface, so that raw materials are concentrated along the guide direction of the cross arm to improve the mixing speed and the stirring effect.
In one or more embodiments, the cross section of the mixing hopper forms a V shape, the stirring head is arranged on the inclined surface of the mixing hopper so that the raw materials move to the stirring head under the action of gravity, and the inclined stirring head moves to the stirring head under the action of gravity when stirring relative to the horizontally arranged stirring head, so that the raw materials at the top can be stirred, the energy consumption of the stirring head is reduced, and the stirring effect is improved; the stirring head of relative vertical setting, the dwell time of raw materials in the stirring region is longer, can be stirred more evenly, and this compounding fill cross-section forms the V type, has leaded to the bottom not stirred the square compounding fill in space and will be littleer much, has reduced the stirring dead angle, improves stirring effect and efficiency.
In one or more embodiments, the mixing hopper is provided with an obliquely arranged stirring motor, and the stirring motor drives the stirring head to rotate.
In one or more embodiments, the discharge end of the feed hopper corresponds to the feed end of the weighing device, the discharge end of the weighing device corresponds to the feed end of the mixing hopper, and the discharge end of the mixing hopper corresponds to the feed end of the storage hopper.
In one or more embodiments, a feeding bin is arranged on the weighing device, the feeding bin is provided with a plurality of feeding holes, and the feeding hopper is arranged on the feeding holes.
In one or more embodiments, the cross section of the feeding bin is in an inverted V shape, the feeding ports are arranged on two side surfaces of the feeding bin, and the feeding hopper is screwed with the feeding ports.
In one or more embodiments, a driving motor is disposed below the feeding hopper, and the driving motor is connected with a screw rod to convey the raw material of the feeding hopper to a weighing device.
In one or more embodiments, a discharge valve is arranged at a discharge end of the weighing device, the discharge valve comprises a driving air rod, a valve and a rack, a rotating gear is arranged on the valve, the rotating gear is meshed with the rack, and the driving air rod drives the rack to move so as to drive the rotating gear and the valve to rotate to open or close the valve.
In one or more embodiments, a plurality of universal wheels are disposed below the storage hopper to facilitate transfer.
The utility model has the advantages that: the storage hopper, the PLC, the mixing hopper and the weighing device can be detachably connected to form a modular weighing mixer, each module is detached before transportation and then transported, and the modules are installed into a whole after arriving at a destination, so that the assembly and disassembly are easy, the assembly and disassembly difficulty during transportation is reduced, the utilization rate of transportation space is improved, and the transportation cost is greatly reduced; in addition, the stirring arm with the L-shaped stirring head can integrally stir the raw materials with different heights, the cross section of the stirring arm also forms the L shape, the raw materials with different heights on the stirring arm can be mixed while stirring, the effect of mixing for multiple times through multiple times of single stirring is formed, the raw material stirring and mixing efficiency is greatly improved, and the raw materials are mixed more uniformly.
Drawings
FIG. 1 is a schematic view of a multi-component weighing compounder.
Fig. 2 is a schematic cross-sectional view of a multi-component weighing compounder.
Fig. 3 is an enlarged schematic view of a portion of a multi-component weighing compounder.
Fig. 4 is a schematic disassembly diagram of a multi-component weighing compounder.
Fig. 5 is a schematic cross-sectional view of a mixing hopper of a multi-component weighing mixer.
Fig. 6 is a schematic diagram of a mixing head structure of a multi-component weighing mixer.
Detailed Description
The scheme of the present application is further described below with reference to the accompanying fig. 1-6:
referring to the attached drawing, a multi-component weighing mixer comprises
The device comprises a frame 1, a base and a base, wherein the frame 1 is used for supporting;
the storage hopper 2 is detachably arranged on the bracket 1;
the mixing hopper 3 is arranged above the storage hopper 2 and is detachably arranged on the bracket 1, a stirring head 31 is arranged in the mixing hopper 3, an L-shaped stirring arm 311 is arranged on the stirring head 31, the cross section of a vertical arm 313 of the stirring arm 311 is L-shaped to realize single-time stirring and multiple-time mixing, a valve 33 is arranged on a discharge port of the mixing hopper 3, the valve 33 is connected with an air cylinder 34 to realize automatic opening and closing, a connecting plate 35 is arranged between the valve 33 and the air cylinder 34, and the valve 33 is parallel to the plane where the discharge port is located;
the weighing device 4 is detachably arranged above the mixing hopper 3;
the PLC5 is detachably arranged on the rack 1;
a plurality of feeder hopper 6, feeder hopper 6 demountable installation is in weighing device 4 top.
Preferably, the storage hopper 2 is movably arranged below the rack 11 of the rack 1, a foot stand with a universal wheel 21 is arranged on the storage hopper 2 so as to be convenient to move, a positioning foot 22 is further arranged on the foot stand so as to fix the position of the storage hopper 2, the rack 11 is respectively screwed with the PLC5 electric appliance cabinet and the mixing hopper 3, and the weighing device 4 is arranged above the mixing hopper 3 and is screwed with the upper part 12 of the bracket 1; the weighting device is directly applied to the prior art, and is not described in detail herein.
The stirring arm 311 is provided with a cross arm 312, and the cross arm 312 is provided with an inclined surface or an arc surface.
Further, the mixing hopper 3 is formed with a V-shaped cross section, and the stirring head 31 is disposed on the inclined surface of the mixing hopper 3 so that the raw material moves toward the stirring head 31 under the action of gravity.
Further, the mixing hopper 3 is provided with an obliquely arranged stirring motor 32, and the stirring motor 32 drives the stirring head 31 to rotate.
Further, the discharge end of feeder hopper 6 corresponds with the feed end of weighing device 4, the discharge end of weighing device 4 corresponds with the feed end of mixing hopper 3, the discharge end of mixing hopper 3 corresponds with the feed end of storage hopper 2.
Further, a feeding bin 41 is arranged on the weighing device 4, the feeding bin 41 is provided with a plurality of feeding holes 42, and the feeding hopper 6 is arranged on the feeding holes 42.
Further, the cross-section of the feeding bin 41 is in an inverted V shape, the feeding ports 42 are arranged on two side surfaces of the feeding bin 41, and the feeding hopper 1 is screwed with the feeding ports 42.
Further, a driving motor 61 is provided below the hopper 6, and the driving motor 61 is connected to a screw rod 62 to feed the raw material of the hopper 6 to the weighing device 4.
Further, weighing device 4, mixing hopper 3 and storage hopper 2 set gradually from top to bottom.
Further, the discharge end of the weighing device 4 is provided with a discharge valve 41, the discharge valve 41 comprises a driving air rod 42, a valve 43 and a rack 45, the valve 43 is provided with a rotating gear 44, the rotating gear 44 is meshed with the rack 45, and the driving air rod 42 drives the rack 45 to move so as to drive the rotating gear 44 and the valve 43 to rotate to open or close the valve 43.
Further, a plurality of universal wheels 21 are arranged below the storage hopper 2 to facilitate the transfer.
Further, a mixing motor 31 and a stirring head 32 are arranged on the mixing hopper 3, and the stirring head 32 is installed on the mixing motor 31 and stirs the raw materials in the mixing hopper 3 to realize mixing.
The above preferred embodiments should be considered as examples of the embodiments of the present application, and technical deductions, substitutions, improvements and the like similar to, similar to or based on the embodiments of the present application should be considered as the protection scope of the present patent.
Claims (10)
1. A multi-component weighing and mixing machine is characterized by comprising
A frame to support;
the storage hopper is detachably arranged on the bracket;
the mixing hopper is arranged above the storage hopper and is detachably arranged on the bracket, a stirring head is arranged in the mixing hopper, an L-shaped stirring arm is arranged on the stirring head, the section of the vertical arm of the stirring arm is L-shaped so as to realize multiple times of mixing by single stirring, a valve is arranged on a discharge port of the mixing hopper, the valve is connected with an air cylinder so as to realize automatic opening and closing, a connecting plate is arranged between the valve and the air cylinder, and the valve is parallel to the plane of the discharge port;
the weighing device is detachably arranged above the mixing hopper;
the PLC is detachably arranged on the rack;
a plurality of feeder hopper, feeder hopper demountable installation is in weighing device top.
2. The multi-component weighing mixer according to claim 1, characterized in that said stirring arm is provided with a cross arm provided with an inclined or arc-shaped face.
3. A multi-component weighing and mixing machine according to claim 1 wherein the mixing hopper is formed in a V-shape in cross-section and the mixing head is disposed on an inclined surface of the mixing hopper so that the raw material moves towards the mixing head under the influence of gravity.
4. A multi-component weighing and mixing machine according to claim 3 wherein the mixing hopper is provided with an obliquely arranged stirring motor which drives the stirring head to rotate.
5. The multi-component weighing and mixing machine of claim 1 wherein the discharge end of the feed hopper corresponds to the feed end of the weighing device, the discharge end of the weighing device corresponds to the feed end of the mixing hopper, and the discharge end of the mixing hopper corresponds to the feed end of the storage hopper.
6. A multi-component weighing and mixing machine according to claim 1 wherein a feed bin is provided on said weighing means, said feed bin being provided with a plurality of feed openings, said feed hopper being mounted on said feed openings.
7. A multi-component weighing and mixing machine as claimed in claim 6 wherein the cross-section of the feed bin is of inverted V shape, the feed inlets are provided on both sides of the feed bin, and the feed hopper is screwed to the feed inlets.
8. A multi-component weighing and mixing machine according to claim 1 wherein a drive motor is provided below the feed hopper, said drive motor being connected to a screw for feeding the material from the feed hopper to the weighing means.
9. The multi-component weighing mixer according to claim 1, wherein the discharge end of the weighing device is provided with a discharge valve, the discharge valve comprises a driving air rod, a valve and a rack, the valve is provided with a rotating gear, the rotating gear is meshed with the rack, and the driving air rod drives the rack to move so as to drive the rotating gear and the valve to rotate to open or close the valve.
10. A multi-component weighing and mixing machine according to claim 1 wherein a plurality of universal wheels are provided beneath the storage hopper to facilitate transfer.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202221424069.3U CN218256031U (en) | 2022-06-08 | 2022-06-08 | Multi-component weighing mixer |
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CN202221424069.3U CN218256031U (en) | 2022-06-08 | 2022-06-08 | Multi-component weighing mixer |
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CN218256031U true CN218256031U (en) | 2023-01-10 |
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CN202221424069.3U Active CN218256031U (en) | 2022-06-08 | 2022-06-08 | Multi-component weighing mixer |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115008623A (en) * | 2022-06-08 | 2022-09-06 | 广东联塑机器制造有限公司 | Multi-component weighing mixer |
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2022
- 2022-06-08 CN CN202221424069.3U patent/CN218256031U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN115008623A (en) * | 2022-06-08 | 2022-09-06 | 广东联塑机器制造有限公司 | Multi-component weighing mixer |
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