Medium saturation magnetization power type high dielectric constant garnet material preparation equipment

By introducing a measuring cylinder, a weight sensor, and an automatic telescopic component into the garnet material preparation equipment, the problem of inaccurate raw material ratios was solved, and the stability of material properties and the convenience of equipment operation were achieved.

CN223734616UActive Publication Date: 2025-12-30NANJING BIAO ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202423106867.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-17
Publication Date
2025-12-30
Estimated Expiration
2034-12-17

AI Technical Summary

Technical Problem

Existing garnet material preparation equipment suffers from insufficient precision in raw material proportioning, leading to a decline in material performance and instability in properties such as dielectric constant, intermediate saturation magnetization, and ferromagnetic resonance linewidth.

Method used

By employing a measuring cylinder and weight sensor in conjunction with a connecting pipe and an automatic telescopic component, precise measurement and control of raw materials are achieved, ensuring the accuracy of raw material proportions during ball milling. The convenience and stability of material feeding are improved by setting scales and control valves.

Benefits of technology

The stability of properties such as dielectric constant, intermediate saturation magnetization and ferromagnetic resonance linewidth of garnet materials has been achieved, which improves the convenience of material feeding control and the stability of the ball milling process.

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Abstract

The utility model discloses medium saturation magnetization power type high dielectric constant garnet material preparation equipment, which belongs to the field of microwave ferrite material preparation and comprises a body mechanism, a material guide mechanism is mounted at the outer end of the body mechanism, and an adjusting mechanism is mounted at the bottom end of the body mechanism. The material guiding mechanism comprises stockers, the stockers are located at the outer end of the body mechanism, the outer ends of the multiple stockers are all provided with conveying pieces, and the other ends, away from the stockers, of the conveying pieces are connected with measuring cylinders; preparation raw materials can be accurately measured by arranging a plurality of measuring cylinders, material guide scales can be conveniently and directly observed during blanking through external scales, and then the blanking amount can be accurately sensed by matching with a weight sensor at the lower end, so that when the equipment performs ball milling work, accurate matching can be realized, and the working efficiency is improved. And the dielectric constant, the medium saturation magnetization intensity, the ferromagnetic resonance line width and the certain spin wave line width effect performance of the final material are stable.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the microwave ferrite material preparation field especially relates to middle saturation magnetization power type high dielectric constant garnet material preparation equipment. BACKGROUND

[0002] The traditional garnet gyromagnetic material is limited in miniaturization development due to low dielectric constant, resulting in reduced material practicability, therefore, adding high polarization ions in yttrium iron garnet can improve the dielectric constant of the material, and the performance of the garnet material can be enhanced, and the preparation equipment is used in the garnet material preparation work to prepare raw materials.

[0003] The existing garnet material preparation equipment has certain disadvantages in use, first, the raw material ratio accuracy in the preparation steps of the garnet material preparation equipment has certain requirements, and the raw material cannot be prepared by accurately adding and mixing, which affects the final material dielectric constant, middle saturation magnetization, ferromagnetic resonance line width and certain spin wave line width, resulting in reduced final material performance, therefore, we provide middle saturation magnetization power type high dielectric constant garnet material preparation equipment. UTILITY MODEL CONTENTS

[0004] In order to overcome the defects of the prior art, the purpose of the utility model is to provide middle saturation magnetization power type high dielectric constant garnet material preparation equipment, a plurality of measuring cylinders can accurately measure the preparation raw materials transmitted in the plurality of storage containers, the scale outside the measuring cylinder can directly observe the guide scale during discharging, and the weight sensor at the lower end can accurately sense the discharging amount, so that the equipment can realize accurate mixing during ball milling, and the final material dielectric constant, middle saturation magnetization, ferromagnetic resonance line width and certain spin wave line width effect performance are stable.

[0005] The above technical purpose of the utility model is realized by the following technical scheme:

[0006] The middle saturation magnetization power type high dielectric constant garnet material preparation equipment comprises a body mechanism, a guide mechanism is installed at the outer end of the body mechanism, and an adjusting mechanism is installed at the bottom end of the body mechanism.

[0007] The guide mechanism comprises a storage container, the storage container is located at the outer end of the body mechanism, a transmission member is installed at the outer end of each of the plurality of storage containers, the other end of the transmission member away from the storage container is connected with a measuring cylinder, a weight sensor is installed at the bottom end of the measuring cylinder, and a scale is arranged at the outer end of the measuring cylinder.

[0008] By installing the measuring cylinder, the final material dielectric constant, middle saturation magnetization, ferromagnetic resonance line width and certain spin wave line width effect performance are stable.

[0009] Further, the right end of the measuring cylinder is connected with a connecting pipe, and the outer end of the connecting pipe is provided with a control valve.

[0010] By installing the connecting pipe, the convenience of the equipment in discharging control is further improved.

[0011] Further, the lower side of the control valve is provided with a connecting plate, and the connecting plate is located at the outer end of the body mechanism.

[0012] By installing the connecting plate, the connecting plate can form a support structure at the outer end of the weight sensor, so that the connection between the weight sensor and the measuring cylinder and the body mechanism is stable.

[0013] Further, the body mechanism comprises a ball mill device body, the outer end of the ball mill device body is provided with a gear ring, the front end of the ball mill device body is movably connected with a connecting cover, and the lower side of the ball mill device body is provided with a support seat.

[0014] By installing the support seat, the support seat can form a support structure at the outer end of the driving part, so that the driving part runs stably.

[0015] Further, the outer end of the support seat is provided with a driving part, the transmission end of the driving part is provided with a transmission wheel, the rear end of the ball mill device body is rotatably connected with a rotating frame, the bottom end of the rotating frame is provided with a limiting seat, and the upper end of the limiting seat is provided with a feeding frame.

[0016] By installing the rotating frame, the rotating frame can form a support structure at the outer end of the rotating ball mill device body, so that the ball mill device body runs more stably.

[0017] Further, the front end of the limiting seat is movably connected with a guide frame, the inner end of the guide frame is provided with a connecting shaft, and the rear end of the guide frame is provided with a receiving seat.

[0018] By installing the guide frame, the garnet material preparation equipment can be conveniently adjusted in position.

[0019] Further, the upper end of the receiving seat is provided with a plurality of hinge seats, the inner end of the hinge seat is hingedly connected with an automatic telescopic part, and the other end of the automatic telescopic part away from the hinge seat is hingedly connected with an adjusting seat.

[0020] By installing the automatic telescopic part, the next process of the garnet material preparation can be facilitated.

[0021] Further, the adjusting seat is located at the bottom end of the limiting seat.

[0022] By installing the adjusting seat, the adjusting seat can form a connecting structure at the other end of the automatic telescopic part, so that the automatic telescopic part and the limiting seat are connected conveniently.

[0023] In summary, the utility model has the following beneficial effects:

[0024] 1、 Through setting up the measuring cylinder, multiple measuring cylinders can accurately measure the preparation raw materials transmitted in multiple storage devices, the scale outside the measuring cylinder can directly observe the guide scale during discharging, and secondly, the weight sensor at the lower end can accurately sense the discharging amount, so that the device can realize accurate proportioning during ball milling, and the final material dielectric constant, saturation magnetization, ferromagnetic resonance line width and certain spin wave line width effect performance are stable;

[0025] 2、 Through setting up the connecting pipe, multiple connecting pipes cooperate with the measuring cylinder to transmit raw materials, multiple measuring cylinders and connecting pipes are independently designed, so that the raw materials can be conveniently controlled and guided during ball milling, and the convenience of discharging control of the equipment is further improved;

[0026] 3、 Through setting up the automatic telescopic part, multiple automatic telescopic parts can drive the limiting seat connected to the upper end, and the limiting seat is connected to the guide frame to adjust the position, at this time, the angle of the limiting seat moves, so that the ball mill device body is inclined, which facilitates the ball mill device body to discharge, improves the convenience of the ball mill device body to prepare garnet materials, and facilitates the next process of garnet material preparation. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is the overall structure schematic diagram in the embodiment;

[0028] Figure 2 is the structure schematic diagram of the guide mechanism in the embodiment;

[0029] Figure 3 is the structure schematic diagram of the automatic telescopic part in the embodiment Figure 1 is the structure schematic diagram of the enlarged A in the embodiment;

[0030] Figure 4 is the structure schematic diagram of the enlarged B in the embodiment Figure 1 is the structure schematic diagram of the enlarged B in the embodiment;

[0031] Figure 5 is the structure schematic diagram of the rear view plane of the feeding frame in the embodiment.

[0032] In the figure, 1, body mechanism; 101, ball milling device body; 102, gear ring; 103, connecting cover; 104, support seat; 105, driving piece; 106, transmission wheel; 107, rotating frame; 108, limiting seat; 109, feeding frame; 2, material guiding mechanism; 201, material storage device; 202, transmission piece; 203, measuring cylinder; 204, weight sensor; 205, scale; 206, connecting pipe; 207, control valve; 208, connecting plate; 3, adjusting mechanism; 301, guide frame; 302, connecting shaft; 303, receiving seat; 304, hinge seat; 305, automatic telescopic piece; 306, adjusting seat. DETAILED DESCRIPTION

[0033] The utility model will be further explained in detail below with reference to the drawings.

[0034] Wherein, same parts are indicated by same reference numerals. It should be noted that the words "front", "back", "left", "right", "up" and "down" used in the following description refer to the directions in the drawings, and the words "bottom surface" and "top surface", "inner" and "outer" refer to the directions towards or away from the geometric center of a particular component.

[0035] Referring to Figures 1-5 As shown in the figure, the utility model is a better embodiment of the preparation equipment of the power type high dielectric constant garnet material with medium saturation magnetization, which comprises a body mechanism 1, a material guiding mechanism 2 is installed at the outer end of the body mechanism 1, and an adjusting mechanism 3 is installed at the bottom end of the body mechanism 1.

[0036] The material guiding mechanism 2 comprises a material storage device 201, the material storage device 201 is located at the outer end of the body mechanism 1, a plurality of material storage devices 201 are provided with transmission pieces 202 at the outer ends, the other ends of the transmission pieces 202 away from the material storage devices 201 are connected with measuring cylinders 203, the bottom ends of the measuring cylinders 203 are provided with weight sensors 204, and the outer ends of the measuring cylinders 203 are provided with scales 205.

[0037] Referring to Figures 1-2 As shown in the figure, further, the right end of the measuring cylinder 203 is connected with a connecting pipe 206, and the outer end of the connecting pipe 206 is provided with a control valve 207.

[0038] Referring to Figure 2 As shown in the figure, further, the control valve 207 is provided below with a connecting plate 208, and the connecting plate 208 is located at the outer end of the body mechanism 1.

[0039] By installing multiple measuring cylinders 203, the preparation raw materials transmitted inside multiple storage containers 201 can be accurately measured. The scale 205 arranged outside the measuring cylinder 203 can facilitate direct observation of the guiding and accurate degree during discharging. In addition, the weight sensor 204 at the lower end can accurately sense the discharging amount, so that the device can realize accurate proportioning during ball milling, and multiple connecting pipes 206 cooperating with the measuring cylinder 203 can transmit raw materials. Multiple measuring cylinders 203 and connecting pipes 206 are independently designed, so that the raw materials can be conveniently controlled and guided during ball milling, further improving the convenience of discharging control of the device.

[0040] Referring to Figure 1 Further, the body mechanism 1 includes a ball milling device body 101, a gear ring 102 is sleeved at the outer end of the ball milling device body 101, a connecting cover 103 is movably connected to the front end of the ball milling device body 101, and a supporting seat 104 is installed below the ball milling device body 101.

[0041] Referring to Figure 3 Further, the supporting seat 104 is installed at the outer end of the supporting seat 104, a driving part 105 is installed at the transmission end of the driving part 105, a transmission wheel 106 is installed at the rear end of the ball milling device body 101, a rotating frame 107 is rotatably connected to the ball milling device body 101, a limiting seat 108 is installed at the bottom end of the rotating frame 107, and a feeding frame 109 is installed at the upper end of the limiting seat 108.

[0042] By installing the supporting seat 104, a supporting structure can be formed at the outer end of the driving part 105, and the rotating frame 107 can form a supporting structure at the outer end of the rotating ball milling device body 101, so that the ball milling device body 101 runs more stably.

[0043] Referring to Figure 1 and Figure 4 Further, the limiting seat 108 is movably connected to the front end of the limiting seat 108, a guide frame 301 is installed at the bottom end of the guide frame 301, a connecting shaft 302 is installed at the inner end of the guide frame 301, and a receiving seat 303 is installed at the rear end of the guide frame 301.

[0044] Referring to Figure 4 Further, the receiving seat 303 is installed at the upper end of the receiving seat 303, multiple hinge seats 304 are installed at the inner end of the hinge seat 304, automatic telescopic parts 305 are hingedly connected to the hinge seat 304, and adjusting seats 306 are hingedly connected to the other end of the automatic telescopic part 305.

[0045] Referring to Figure 1 and Figure 4 Further, the adjusting seat 306 is located at the bottom end of the limiting seat 108.

[0046] The limiting seat 108 can be connected by installing the guide frame 301 matched with the connecting shaft 302, so that the limiting seat 108 can form an adjustable connection state, and the garnet material preparation equipment can be conveniently adjusted in position. When discharging, the automatic telescopic members 305 are started, and the automatic telescopic members 305 drive the limiting seat 108 connected at the upper end, and the limiting seat 108 is adjusted in position under the connection of the guide frame 301. At this time, the angle of the limiting seat 108 moves, and the ball mill device body 101 is inclined at an angle, so that the ball mill device body 101 conveniently discharges, and the convenience of the ball mill device body 101 in preparing garnet materials is improved.

[0047] Specific implementation process: when the equipment is prepared, according to the chemical formula: BiaCabDycY3-a-b-cFe5-d-e-f-g-h-δZrdVeSnfIngSbhO12, wherein 1.0≤a≤1.7, 1≤b≤2, 0≤c≤0.2, 0≤d≤0.7, 0≤e≤0.7, 0≤f≤0.3, 0≤g≤0.2, 0≤h≤0.1, and δ is the iron deficiency, it is concluded that the iron magnetic resonance line width and the saturation magnetization intensity of the material are adjusted by doping Zr4+, Sn4+, V5+, Sb5+, In3+, Ca2+ and other ions; the dielectric constant of the material is adjusted by doping Bi3+; and the spin wave line width of the material is adjusted by doping Dy3+. At this time, the required raw materials are respectively placed in the storage device 201, and the plurality of measuring cylinders 203 can accurately measure the preparation raw materials transmitted in the plurality of storage devices 201. The scale 205 arranged outside the measuring cylinder 203 can conveniently observe the guide accuracy during discharging. In addition, the weight sensor 204 at the lower end can accurately sense the discharging amount, and the plurality of connecting pipes 206 cooperate with the measuring cylinder 203 to transmit the raw materials. The plurality of measuring cylinders 203 and the connecting pipes 206 are independently designed, so that the raw materials can be conveniently controlled during the ball milling process. When the equipment is ball milled, accurate proportioning can be realized, and the dielectric constant, the medium saturation magnetization intensity, the iron magnetic resonance line width and the certain spin wave line width effect performance of the final material are stable.

[0048] Finally, when the garnet material preparation equipment needs to be discharged, the automatic telescopic members 305 are started, and the automatic telescopic members 305 drive the limiting seat 108 connected at the upper end. The limiting seat 108 is adjusted in position under the connection of the guide frame 301. At this time, the angle of the limiting seat 108 moves, and the ball mill device body 101 is inclined at an angle, so that the ball mill device body 101 conveniently discharges, and the ball mill completed raw materials are filtered and dried in the next process.

[0049] The basic principle and main features of the present application and the advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principles of the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. A device for preparing power-type high dielectric constant garnet materials with medium saturation magnetization, characterized in that: Including the body mechanism (1), the outer end of the body mechanism (1) is provided with a material guiding mechanism (2), and the bottom end of the body mechanism (1) is provided with an adjusting mechanism (3); The material guiding mechanism (2) comprises a material storage device (201), the material storage device (201) is located at the outer end of the body mechanism (1), a plurality of material storage devices (201) are provided with a transmission part (202) at the outer end, the other end of the transmission part (202) away from the material storage device (201) is connected with a measuring cylinder (203), the bottom end of the measuring cylinder (203) is provided with a weight sensor (204), and the outer end of the measuring cylinder (203) is provided with a scale (205).

2. The apparatus for preparing a power-type high dielectric constant garnet material with a medium saturation magnetization according to claim 1, wherein: The right end of the measuring cylinder (203) is connected with a connecting pipe (206), and the outer end of the connecting pipe (206) is provided with a control valve (207).

3. The apparatus for preparing a power-type high dielectric constant garnet material with a medium saturation magnetization according to claim 2, wherein: the first and second electrodes are formed of a material selected from the group consisting of platinum, palladium, rhodium, iridium, ruthenium, gold, silver, copper, aluminum, and alloys thereof. The lower side of the control valve (207) is provided with a connecting plate (208), and the connecting plate (208) is located at the outer end of the body mechanism (1).

4. The apparatus for preparing a power-type high dielectric constant garnet material with a medium saturation magnetization according to claim 1, wherein: the first and second sintering furnaces are connected to each other through a tunnel furnace; and the tunnel furnace is connected to the first and second sintering furnaces through a first and a second connecting pipe, respectively. The body mechanism (1) comprises a ball mill device body (101), the outer end of the ball mill device body (101) is provided with a gear ring (102), the front end of the ball mill device body (101) is movably connected with a connecting cover (103), and the lower side of the ball mill device body (101) is provided with a supporting seat (104).

5. The apparatus according to claim 4, wherein the apparatus is characterized by: The outer end of the supporting seat (104) is provided with a driving part (105), the transmission end of the driving part (105) is provided with a transmission wheel (106), the rear end of the ball mill device body (101) is rotatably connected with a rotating frame (107), the bottom end of the rotating frame (107) is provided with a limiting seat (108), and the upper end of the limiting seat (108) is provided with a feeding frame (109).

6. The apparatus for preparing a power-type high dielectric constant garnet material of medium saturation magnetization according to claim 5, wherein: The front end of the limiting seat (108) is movably connected with a guide frame (301), the inner end of the guide frame (301) is provided with a connecting shaft (302), and the rear end of the guide frame (301) is provided with a receiving seat (303).

7. The apparatus according to claim 6, wherein the apparatus is characterized by: The upper end of the receiving seat (303) is provided with a plurality of hinge seats (304), the inner end of the hinge seat (304) is hingedly connected with an automatic telescopic part (305), and the other end of the automatic telescopic part (305) away from the hinge seat (304) is hingedly connected with an adjusting seat (306).

8. The apparatus according to claim 7, wherein the apparatus is characterized by: The adjusting seat (306) is located at the bottom end of the limiting seat (108).