CN218590448U - Quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials - Google Patents

Quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials Download PDF

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CN218590448U
CN218590448U CN202223251691.1U CN202223251691U CN218590448U CN 218590448 U CN218590448 U CN 218590448U CN 202223251691 U CN202223251691 U CN 202223251691U CN 218590448 U CN218590448 U CN 218590448U
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raw materials
soft magnetic
magnetic ferrite
box
weighing
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CN202223251691.1U
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范仲康
梁凯
渐蒙蒙
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Shandong Zhengtian Electronic Technology Co ltd
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Shandong Zhengtian Electronic Technology Co ltd
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Abstract

The utility model provides a nickel zinc soft magnetic ferrite raw materials ration proportioning device can be to the ration of carrying on of the raw materials of difference ratio through being provided with a plurality of weighing device and batch bin on the carousel, through pushing away in the leading-in mixing vessel of raw materials after the setting up of case device is convenient for the ratio completion. The quantitative proportioning device for the nickel-zinc soft magnetic ferrite raw materials comprises: the device comprises a rotary table, a weighing device, a batching box, a box pushing device and a driving member; the turntable is connected with a driving component, and the driving component is arranged to drive the turntable to rotate; the rotary table is provided with a plurality of weighing devices, the weighing devices are provided with a batching box, the batching boxes are used for containing different raw materials, the batching box is rotatably connected with the weighing devices, and the weighing devices are set to prompt when preset weight is met; still be provided with on the weighing device and push away the case device, push away the case device and set to and can drive the batching box and empty in order to pour the raw materials in the batching box to mixing container.

Description

Quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials
Technical Field
The utility model relates to a weighing device technical field specifically is a nickel-zinc soft magnetic ferrite raw materials ration proportioning device.
Background
The soft magnetic Ni-Zn ferrite is one kind of widely used high frequency soft magnetic material with porosity and high resistivity and performance superior to that of Mn-Zn ferrite, and is prepared through mixing several kinds of powdered material, dispersant, adhesive, etc. in certain proportion, stoving in a drying oven, grinding, mixing, sieving, dry pressing to form and sintering.
Because preparation nickel zinc soft magnetic ferrite needs multiple powder raw materials, dispersant and binder etc. consequently need carry out quantitative ratio to multiple powder raw materials before the preparation and weigh, weigh powder raw materials one by one through the manual work, later put into mixing vessel and mix, the operation is comparatively loaded down with trivial details, when the powder raw materials after will weighing is put into mixing vessel in the manual work, if weight is heavier, be unfavorable for manual operation, it is comparatively hard, consequently need further improvement and perfect.
In summary, when preparing the nickel-zinc soft magnetic ferrite, the operation is complicated, which is not beneficial to manual operation and is laborious when proportioning a plurality of powder raw materials.
Accordingly, there is a need in the art for a new device for proportioning raw materials of soft magnetic nickel-zinc ferrite to solve the above problems.
SUMMERY OF THE UTILITY MODEL
For solving prior art's is not enough, the utility model provides a nickel zinc soft magnetic ferrite raw materials ration proportioning device can be to carrying out the ration to the raw materials of difference through being provided with a plurality of weighing device and batching box on the carousel, through pushing away in the leading-in mixing vessel of raw materials after the setting up of case device is convenient for the ratio completion.
The utility model discloses a realize above-mentioned purpose, realize through following technical scheme:
a quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials comprises: the device comprises a rotary table, a weighing device, a batching box, a box pushing device and a driving member; the rotary table is connected with the driving component, and the driving component is arranged to drive the rotary table to rotate; the rotary table is provided with a plurality of weighing devices, the weighing devices are provided with the batching boxes, the batching boxes are used for containing different raw materials, the batching boxes are rotatably connected with the weighing devices, and the weighing devices are arranged to prompt when preset weight is met; still be provided with on the weighing device push away the case device, it sets to drive to push away the case device can the drive the batching box is emptyd in order to with raw materials in the batching box is poured to the blending container in.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, the batching box is including continuous box and lid, the box with the lid links to each other with rotatable mode, the lid sets to can control the switching state of box.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, be provided with the discharge gate on the box, the discharge gate sets to the lid is closed raw materials under the condition of box by the discharge gate gets into in the mixing container.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, the both sides of discharge gate are provided with first inclined plane structure and second inclined plane structure respectively.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, still be provided with a plurality of support frames on the carousel, it is a plurality of the support frame is with a plurality of weighing device is the one-to-one setting.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, it includes support column, pneumatic cylinder and telescopic link to push away the case device, the support column with the weighing device links to each other, the pneumatic cylinder with the support column links to each other, the telescopic link with the pneumatic cylinder links to each other, the pneumatic cylinder sets to can drive the removal of support column.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, a plurality of the weighing device is in be circumference setting and evenly distributed on the carousel.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, weighing device's quantity is six.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, the drive component is driving motor.
The utility model discloses as foretell nickel zinc soft magnetic ferrite raw materials ration proportioning device, it is further, the carousel includes connecting portion, driving motor with connecting portion link to each other in order to drive the rotation of carousel.
Contrast prior art, the beneficial effects of the utility model are that:
can be to carrying out quantitative ratio to the raw materials of difference through being provided with a plurality of weighing device and batching box on the carousel, make things convenient for a raw materials to pour into mixing container with another kind of raw materials when weighing the weight in, through pushing away in the leading-in mixing container of raw materials after the setting of case device is convenient for the ratio is accomplished, and then uses manpower sparingly, the simplified operation step makes things convenient for manual operation.
Drawings
FIG. 1 is a first view structure diagram of the overall structure of the present invention;
FIG. 2 is a second view structural diagram of the whole structure of the present invention;
FIG. 3 is a first view structure diagram of the whole structure of the present invention;
FIG. 4 is an enlarged view of a portion of FIG. 3;
reference numerals shown in the drawings:
1. a turntable; 11. a connecting portion; 2. a weighing device; 3. a batching box; 31. a box body; 311. a discharge port; 312. a first bevel structure; 313. a second bevel structure; 32. a cover body; 4. a box pushing device; 41. a support pillar; 42. a hydraulic cylinder; 43. a telescopic rod; 5. a drive member; 6. a rotating shaft; 7. a support frame.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments. It should be understood that these examples are only for illustrating the present invention and are not intended to limit the scope of the present invention. Further, it should be understood that various changes or modifications of the present invention can be made by those skilled in the art after reading the teaching of the present invention, and these equivalents also fall within the scope of the present invention.
As shown in fig. 1-4, the utility model provides a quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials, which comprises: the device comprises a rotary table 1, a weighing device 2, a batching box 3, a box pushing device 4 and a driving member 5; the turntable 1 is connected with a driving member 5, and the driving member 5 is arranged to drive the turntable 1 to rotate; the rotary table 1 is provided with a plurality of weighing devices 2, the weighing devices 2 are provided with batching boxes 3, the batching boxes 3 are used for containing different raw materials, the batching boxes 3 are connected with the weighing devices 2 in a rotatable mode, and the weighing devices 2 are set to prompt when preset weight is met; the weighing device 2 is further provided with a box pushing device 4, and the box pushing device 4 is arranged to drive the batching box 3 to dump raw materials in the batching box 3 into a mixing container (not shown in the figure).
Specifically, weighing device 2 is the weighing instrument among the prior art, and the difference lies in the utility model discloses a sensor (not shown in the figure), controller (not shown in the figure) and suggestion component (not shown in the figure) are provided with in weighing device 2, and weighing device 2 is provided with the preset weight value, and when adding the raw materials to batching box 3, if weight reaches the preset weight value, the sensor transmits the signal to the controller, and the controller control suggestion component indicates to remind operating personnel not to add the raw materials to batching box 3 again; wherein the operator can change the value of the preset weight value by means of the controller and each weighing device 2 is set in this way to a different preset weight value.
It should be noted that the utility model does not limit the prompting component, and the prompting component can be a voice prompting device, namely, after the standard is satisfied, voice prompt is performed under the control of the controller; a light prompter can be used, namely, the light is lightened to prompt under the control of the controller after the standard is met; the technical personnel in the field can set according to the actual situation.
It should be noted that, in order to make the ratio of different raw materials more accurate and correct, each weighing device 2 is provided with a first preset value and a second preset value, wherein the first preset value is smaller than the second preset value, and the second preset value is the ratio weight required by the raw materials, in the process of adding the raw materials into the batching box 3 by an operator, if the first preset value is reached, the prompting component is controlled to perform a first prompt, at this moment, the operator slows down the speed and the amplitude of adding the raw materials until the second preset value is reached, the prompting component performs a second prompt, the first prompt and the second prompt may be different in sound, or different in light color, and the skilled in the art can set the prompt by himself or herself according to actual conditions.
Further, in the present preferred embodiment, the batching tank 3 comprises a tank body 31 and a lid body 32 coupled, the tank body 31 and the lid body 32 being rotatably coupled, the lid body 32 being arranged to control the open and closed state of the tank body 31. The lid 32 is provided with a closing lock (not shown), and when the lid 32 closes the case 31, the lid 32 and the case 31 cannot rotate relative to each other if the closing lock is in a closed state, and the lid 32 and the case 31 can rotate relative to each other if the closing lock is in an open state. Based on above-mentioned structure setting, accomplish the back at raw materials ratio, with lid 32 and box 31 closure, and make the closure lock be in the closed condition, later do benefit to again and push away case device 4 and push away batching box 3 and fall, prevent batching box 3 at the in-process of empting, powder raw materials flies to everywhere indiscriminate.
Further, a discharge port 311 is provided on the box 31, and the discharge port 311 is configured to allow the raw material to enter the mixing container through the discharge port 311 when the box 31 is closed by the cover 32. Particularly, use the direction shown in fig. 1 as the reference direction, discharge gate 311 sets up in the top of box 31, will the utility model discloses whole device is placed in appropriate position and high appropriate department, does benefit to and pushes away case device 4 and pushes down batching box 3 for discharge gate 311 aims at mixing vessel's import. The powder raw material enters the mixing container through the discharge port 311, and the powder is further prevented from flying everywhere.
A first inclined surface structure 312 and a second inclined surface structure 313 are respectively arranged on two sides of the discharge hole 311. So that the powder raw material can be completely discharged without being left in the batching box 3.
Further, still be provided with a plurality of support frames 7 on the carousel 1, a plurality of support frames 7 and a plurality of weighing device 2 are the one-to-one setting, refer to fig. 1 and 2, as shown in fig. 1 and 2, be provided with two member on the weighing device 2, be provided with the rotation hole on the member, the axis of rotation 6 of batching box 3 and the rotation hole of member link to each other with rotatable mode, in order to realize the rotation of batching box 3, the back shaft that is located on the support frame 7 highly is less than axis of rotation 6 (as shown in fig. 2), based on this, batching box 3 is when empting, make batching box 3 be provided with the one side downward sloping of discharge gate 311, further make powder raw materials can discharge completely, can not leave over in batching box 3.
The box pushing device 4 comprises a supporting column 41, a hydraulic cylinder 42 and a telescopic rod 43, the supporting column 41 is connected with the weighing device 2, the hydraulic cylinder 42 is connected with the supporting column 41, the telescopic rod 43 is connected with the hydraulic cylinder 42, the hydraulic cylinder 42 is arranged to be capable of driving the supporting column 41 to move, a control device (not shown in the figure) is arranged on the box pushing device 4, the hydraulic cylinder 42 is controlled by the control device to drive the telescopic rod 43 to move, the telescopic rod 43 can be pushed down with the batching box 3 when moving, and the telescopic rod 43 is not in contact with the batching box 3 in the initial state.
Six weighing device 2 are circumference setting and evenly distributed on carousel 1. ZnO, niO, fe2O3, bi2O3, mnCO3 and Al2O3 are respectively weighed in the six weighing devices 2 and the batching box 3, which is only a preferable setting mode, and the skilled in the art can set the number of the weighing devices 2 and the batching box 3 according to the actual situation as long as the number of the weighing devices 2 and the batching box 3 is the same.
Further, the driving member 5 is a driving motor. The turntable 1 comprises a connecting part 11, and a driving motor is connected with the connecting part 11 to drive the turntable 1 to rotate.
The utility model discloses the theory of operation:
the weight value of each weighing device 2 is preset by a controller on each weighing device 2, the weighing devices are arranged according to the proportion of raw materials, in an initial state, namely when no raw material exists in a batching box 3, because the batching box 3, a box pushing device 4 and the like are arranged on each weighing device 2, the number of rows of the weighing devices 2 is reset, then an operator adds one raw material in multiple raw materials into one batching box 3, after the preset weight value of the raw material is reached, a prompting component of each weighing device 2 can prompt, a box body 31 is closed by a cover body 32, a controller (not shown in the figure) for controlling a driving component 5 gives an instruction, a rotary disc 1 rotates until the rotary disc rotates to a position corresponding to a mixing container, then a controller for controlling the box pushing device 4 is controlled, a hydraulic cylinder 42 drives a hydraulic cylinder 43 to move, then the batching box 3 is pushed down, a discharge port 311 of the batching box 3 aligns with an inlet of the mixing container (before the use, the position of the whole device is adjusted and fixed, so that the discharge port 311 aligns with the inlet of the mixing container to the quasi-mixing container, because the height of a support shaft on the support shaft 7 is lower than that the inclined plane of the second inclined plane 313 and the batching box 3 and the inclined plane can be completely aligned with the other batching box, and the weighing structure can prevent the batching box from entering the mixing container, and the other mixing container from entering the batching box 3, and the mixing container. After the raw materials in the batching box 3 are put, the batching box 3 is restored to the original position manually.
To sum up, the utility model discloses make things convenient for a raw materials to pour another kind of raw materials into mixing container when weighing weight, save time, and in the leading-in mixing container of raw materials after the ratio of being convenient for is accomplished, and then use manpower sparingly, the simplified operation step makes things convenient for manual operation.
The technical features disclosed above are not limited to the combinations with other features disclosed, and other combinations between the technical features can be performed by those skilled in the art according to the purpose of the invention to achieve the aim of the invention.

Claims (10)

1. The utility model provides a nickel zinc soft magnetic ferrite raw materials ration proportioning device which characterized in that includes: the device comprises a rotary table, a weighing device, a batching box, a box pushing device and a driving member;
the rotary table is connected with the driving component, and the driving component is arranged to drive the rotary table to rotate;
the rotary table is provided with a plurality of weighing devices, the weighing devices are provided with the batching boxes, the batching boxes are used for containing different raw materials, the batching boxes are rotatably connected with the weighing devices, and the weighing devices are arranged to prompt when preset weight is met;
still be provided with on the weighing device push away the case device, it sets to drive to push away the case device can the drive the batching box is emptyd in order to with raw materials in the batching box is poured to the blending container in.
2. A quantitative proportioning device for a nickel zinc soft magnetic ferrite raw material according to claim 1, wherein the proportioning box comprises a box body and a lid body which are connected, the box body and the lid body being rotatably connected, the lid body being provided so as to control the open and closed state of the box body.
3. A quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials according to claim 2, characterized in that the box body is provided with a discharge port, and the discharge port is arranged to allow the raw materials to enter the mixing container through the discharge port under the condition that the box body is closed by the cover body.
4. A quantitative proportioning device for a nickel-zinc soft magnetic ferrite raw material according to claim 3, characterized in that both sides of the discharge port are respectively provided with a first slope structure and a second slope structure.
5. A quantitative proportioning device for a nickel zinc soft magnetic ferrite raw material according to any one of claims 1 to 4, characterized in that a plurality of supporting frames are further provided on the rotary table, and a plurality of the supporting frames and a plurality of the weighing devices are provided in one-to-one correspondence.
6. A quantitative proportioning device for a nickel zinc soft magnetic ferrite raw material according to any one of claims 1 to 4, characterized in that the box pushing device comprises a support column, a hydraulic cylinder and a telescopic rod, the support column is connected with the weighing device, the hydraulic cylinder is connected with the support column, the telescopic rod is connected with the hydraulic cylinder, and the hydraulic cylinder is arranged to drive the support column to move.
7. A quantitative proportioning device for a nickel zinc soft magnetic ferrite raw material according to any of claims 1 to 4 characterized in that a plurality of weighing devices are circumferentially arranged and evenly distributed on the rotating disc.
8. A quantitative proportioning device for a nickel zinc soft magnetic ferrite raw material according to claim 7 wherein the number of weighing devices is six.
9. A quantitative proportioning device for a nickel zinc soft magnetic ferrite raw material according to any of claims 1 to 4 characterized in that the driving means is a driving motor.
10. A quantitative proportioning device for a nickel zinc soft magnetic ferrite raw material according to claim 9, wherein the rotary table includes a connection portion, and the driving motor is connected to the connection portion to drive the rotary table to rotate.
CN202223251691.1U 2022-12-06 2022-12-06 Quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials Active CN218590448U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202223251691.1U CN218590448U (en) 2022-12-06 2022-12-06 Quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202223251691.1U CN218590448U (en) 2022-12-06 2022-12-06 Quantitative proportioning device for nickel-zinc soft magnetic ferrite raw materials

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Publication Number Publication Date
CN218590448U true CN218590448U (en) 2023-03-10

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