A diamond abrasive production apparatus

CN119036323BActive Publication Date: 2026-09-22HEBEI SIRIEN NEW MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202411209110.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2026-09-22
Estimated Expiration
2044-08-29

AI Technical Summary

Technical Problem

现有的金刚石磨料在进行生产的过程中需要在其内部添加粘合剂和添加剂,方便金刚石磨料后续的成型,但是现有的金刚石磨料生产设备在将磨料与粘合剂和添加剂进行混合时存在混合不均匀的情况,导致后续成型后在正常磨削下易引起脱落,同时现有的金刚石磨料生产设备在添加粘合剂和添加剂前需要人工调配磨料与粘合剂和添加剂的配备,这样的较为繁琐,影响生产效率,同时在生产时金刚石磨料使用的金刚石粉末原料中的金刚石颗粒规格不一,影响生产出的金刚石磨料的制冷,为此,我们提出一种金刚石磨料生产设备

Benefits of technology

[0014]与现有技术相比,本发明的有益效果是:本金刚石磨料生产设备,具有以下好处:

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Abstract

The application discloses a kind of diamond abrasive production equipment, it is related to diamond abrasive production technical field, including bottom plate and screening assembly;Bottom plate: upside is fixed with support frame, the upper end of the front side of support frame is fixed with conical blanking frame, the middle part of the front side of support frame is fixed with storage barrel, the inside fixed with blanking pipe of the blanking mouth of storage barrel lower end, the upside of bottom plate is fixed with base, the upside of base is installed with belt conveyor, the inside of storage barrel is installed with storage assembly and measuring assembly, measuring assembly is below storage assembly, the upper end of storage barrel is installed with first stirring assembly, the lower end of first stirring assembly is in the inside of storage assembly, diamond powder can be screened, and abrasive can be fully mixed with binder and additive, and suitable weight of binder and additive can be automatically added according to the weight of abrasive, improve production efficiency.
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Description

Technical Field

[0001] This invention relates to the field of diamond abrasive production technology, specifically to a diamond abrasive production equipment. Background Technology

[0002] Abrasives are sharp, hard materials used to grind the surfaces of softer materials. Abrasives are broadly classified into natural and synthetic abrasives. They are also categorized by hardness into superhard and ordinary abrasives. The range of abrasives is vast, from soft household detergents and gemstone abrasives to the hardest material, diamond. Abrasives are essential materials in the manufacture of every precision product. Many natural abrasives have been replaced by synthetic abrasives. Except for diamond, the properties of natural abrasives are generally unstable. Industrial diamond abrasives range from grayish-white to black and, after being crushed, can be made into grinding wheels, abrasive belts, polishing wheels, and grinding powder. Existing diamond abrasive production processes require the addition of binders and additives to facilitate subsequent molding. However, existing diamond abrasive production equipment often suffers from uneven mixing of the abrasive, binders, and additives, leading to easy shedding during normal grinding after molding. Furthermore, existing equipment requires manual mixing of the abrasive, binders, and additives before addition, which is cumbersome and affects production efficiency. Additionally, the inconsistent diamond particle sizes in the diamond powder raw materials used during production affect the cooling of the produced diamond abrasive. Therefore, we propose a new diamond abrasive production equipment. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to overcome the existing defects and provide a diamond abrasive production equipment that can sieve diamond powder, fully mix abrasive with binder and additives, and automatically add an appropriate weight of binder and additives according to the weight of abrasive, thereby improving production efficiency and effectively solving the problems in the background art.

[0004] To achieve the above objectives, the present invention provides the following technical solution: a diamond abrasive production equipment, comprising a base plate and a screening assembly; Base plate: A support frame is fixed on the upper side, a conical feeding frame is fixed on the upper front end of the support frame, a storage tank is fixed in the middle of the front side of the support frame, a feeding pipe is fixed inside the feeding port at the lower end of the storage tank, a base is fixed on the upper side of the base plate, a belt conveyor is installed on the upper side of the base, a storage component and a measuring component are installed inside the storage tank, the measuring component is located below the storage component, a first stirring component is installed at the upper end of the storage tank, the lower end of the first stirring component is located inside the storage component, and a collecting component is installed on the lower side of the conical feeding frame; Screening assembly: includes a fixed frame, a screening screen, a connecting rod, a first connecting strip, a fixed frame, a first motor, a connecting disc, and a spring. Two corresponding fixed frames are fixed to the left end of the upper side of the conical feeding frame, and a first connecting strip is rotatably connected between the two fixed frames. Two corresponding connecting rods are fixed to the right end of the first connecting strip. Two corresponding sliding grooves are opened on the front and rear sides of the fixed frame. The connecting rod is slidably connected inside the sliding groove. A connecting disc is fixed to the end face of the connecting rod, and a spring is fixed to the end face of the connecting disc. The end of the spring away from the connecting disc is fixed inside the sliding groove. A screening screen is fixed inside the fixed frame. A blocking component is installed on the right side of the fixed frame, and an extrusion component is installed on the upper side of the first connecting strip. The screening assembly is used to screen the diamond powder required for producing diamond abrasives. Wherein: the input terminals of the first motor and the belt conveyor are both electrically connected to the output terminal of an external PLC controller.

[0005] Furthermore, the blocking assembly includes a connecting frame, a first electric telescopic rod, a U-shaped plate, and a blocking strip. Two corresponding connecting frames are fixed to the upper right end of the fixed frame. The lower side of the connecting frame is equipped with the first electric telescopic rod. A U-shaped plate is fixed to the telescopic arm of the two first electric telescopic rods. A blocking strip is fixed to the upper side of the U-shaped plate. A sliding groove is provided at the upper right end of the fixed frame. The blocking strip is slidably connected inside the sliding groove. The input end of the first electric telescopic rod is electrically connected to the output end of an external PLC controller. By setting the blocking assembly, the diamond powder on the sieve screen is prevented from falling off.

[0006] Furthermore, the extrusion assembly includes a mounting strip, a second motor, and a cam. The mounting strip is fixed to the upper side of the first connecting strip, and the second motor is mounted on the upper side of the mounting strip. A cam is fixed on the output shaft of the second motor. The cam is connected to the first connecting strip and the fixed frame. The input end of the second motor is electrically connected to the output end of an external PLC controller. The fixed frame is extruded by setting the extrusion assembly.

[0007] Furthermore, the storage assembly includes a second electric telescopic rod, a support plate, a first connecting ring, a conical barrel, a discharge pipe, and a first solenoid valve. Two corresponding second electric telescopic rods are installed at the lower end of the storage barrel. Support plates are fixed to the telescopic arms of the second electric telescopic rods. First connecting rings are placed at the upper ends of the two support plates and are slidably connected to the inside of the storage barrel. A conical barrel is fixed inside the first connecting ring. A discharge pipe is fixed inside the discharge port at the lower end of the conical barrel. The lower end of the discharge pipe is located inside the discharge pipe. A first solenoid valve is installed on the circumferential surface of the discharge pipe. The input ends of the first solenoid valve and the second electric telescopic rod are both electrically connected to the output end of an external PLC controller. The storage assembly stores the raw materials for producing diamond abrasives.

[0008] Furthermore, the first stirring assembly includes a fixing bar, a third motor, a rotating shaft, stirring plates, a feeding pipe, and a second solenoid valve. The upper end of the storage tank is fixed with a fixing bar, and the third motor is installed on the upper side of the fixing bar. A rotating shaft is fixed on the output shaft of the third motor, and the lower end of the rotating shaft is located inside the storage tank. Two corresponding stirring plates are fixed on the circumferential surface of the rotating shaft. Two corresponding feeding holes are opened on the upper side of the fixing bar, and a feeding pipe is fixed inside the feeding holes. A second solenoid valve is installed on the circumferential surface of the feeding pipe. The input terminals of the second solenoid valve and the third motor are both electrically connected to the output terminal of an external PLC controller. The first stirring assembly is used to perform preliminary stirring of the raw materials for producing diamond abrasive.

[0009] Furthermore, a second stirring assembly is also included. The second stirring assembly comprises a stirring rod, gears, a gear ring, and stirring strips. An opening is provided on the side of the stirring plate, and a stirring rod is rotatably connected inside the opening. A gear is fixed on the end face of the stirring rod. A gear ring is fixed inside the conical barrel. The gear ring is located below two gears, and both gears mesh with the gear ring. Stirring strips are evenly distributed on the circumference of the stirring rod. By setting up the second stirring assembly, the raw materials for producing diamond abrasives are further stirred.

[0010] Furthermore, the measuring component includes a support ring, a second connecting ring, and a weighing sensor. The support ring is fixed below the surface of the conical barrel, and the weighing sensors are evenly distributed inside the lower end of the storage barrel. The second connecting ring is fixed above all the weighing sensors, and the second connecting ring corresponds to the support ring. The weighing sensor is bidirectionally electrically connected to an external PLC controller. The weight of the raw materials for producing diamond abrasive is detected by setting the measuring component.

[0011] Furthermore, the collection assembly includes a mounting base, a third electric telescopic rod, a storage box, an inclined guide block, a second connecting strip, and a sealing frame. The mounting base is fixed to the right side of the conical feeding frame, and the third electric telescopic rod is mounted on the lower side of the mounting base. The storage box is fixed to the telescopic arm of the third electric telescopic rod, and the inclined guide block is fixed inside the storage box. The second connecting strip is fixed to the upper left end of the storage box. A strip-shaped opening is provided at the lower right end of the conical feeding frame, and a sealing frame is provided inside the strip-shaped opening. The sealing frame is fixed to the upper side of the second connecting strip. The input end of the third electric telescopic rod is electrically connected to the output end of an external PLC controller. The collection assembly is used to collect the sieved diamond powder.

[0012] Furthermore, a material retrieval hole is provided on the right side of the storage box, and a baffle is hinged inside the material retrieval hole. A handle is fixed on the right side of the baffle, and the user can open the material retrieval hole on the right side of the storage box by pulling the baffle with the handle.

[0013] Furthermore, the storage tank has evenly distributed mounting slots inside, and electric heating tubes are installed inside the mounting slots. The conical tank has a connecting slot inside, and a temperature sensor is installed inside the connecting slot. The input end of the electric heating tube is electrically connected to the output end of an external PLC controller. The temperature sensor is bidirectionally electrically connected to the external PLC controller, and the conical tank is heated by the electric heating tubes.

[0014] Compared with the prior art, the beneficial effects of the present invention are as follows: This diamond abrasive production equipment has the following advantages: 1. By setting up a screening component, high-quality diamond powder can be placed on top of the screening screen during use. Then, the fixed frame is controlled to move back and forth. In this way, the high-quality diamond powder located on top of the screening screen can be screened, further increasing the amount of diamond powder produced and making its specifications uniform, thereby improving the quality of the final diamond abrasive. 2. By setting up a conical barrel to store the sieved diamond powder, after storage, the barrel is controlled to move downwards so that the support ring at the lower end contacts the second connecting ring. All weighing sensors can then measure the weight. After measurement, based on the measured weight, two second solenoid valves are opened to automatically add the adhesive and additives into the conical barrel at appropriate weights. In this way, the addition of adhesive and additives can be completed without manual configuration, which greatly improves production efficiency. 3. By setting the first stirring component in conjunction with the second stirring component, the material inside the conical barrel can be effectively stirred evenly, so that it can be fully mixed; 4. By setting up a collection component, after the diamond powder is sieved, the unqualified diamond powder that is sieved above the sieve can be injected into the storage box for storage, which is convenient for subsequent use. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the front structure of the present invention; Figure 2 This is a schematic diagram of the screening component structure of the present invention; Figure 3 This is a schematic diagram of the extrusion assembly structure of the present invention; Figure 4 This is a schematic diagram of the storage component structure of the present invention; Figure 5 This is a schematic diagram of the structure of the first stirring component of the present invention.

[0016] In the diagram: 1. Base plate; 2. Screening assembly; 21. Fixing frame; 22. Screening mesh; 23. Connecting rod; 24. First connecting strip; 25. Fixing frame; 26. First motor; 27. Connecting disc; 28. Spring; 3. Blocking assembly; 31. Connecting frame; 32. First electric telescopic rod; 33. U-shaped plate, 34 blocking strip, 4 extrusion assembly, 41 mounting strip, 42 second motor, 43 cam, 5 storage assembly, 51 second electric telescopic rod, 52 support plate, 53 first connecting ring, 54 conical barrel, 55 discharge pipe, 56 first solenoid valve, 6 first stirring assembly, 61 fixing strip, 62 third motor, 63 rotating shaft, 64 stirring plate, 65 injection pipe, 66 second solenoid valve, 7 second stirring assembly, 71 stirring rod, 72 gear, 73 gear ring, 74 stirring strip, 8 measuring assembly, 81 support ring, 82 second connecting ring, 83 weighing sensor, 9 collecting assembly, 91 mounting base, 92 third electric telescopic rod, 93 storage box, 94 inclined guide block, 95 second connecting strip, 96 sealing frame, 10 support frame, 11 conical discharge frame, 12 storage barrel, 13 discharge pipe, 14 base, 15 belt conveyor, 16 baffle, 17 handle, 18 electric heating tube, 19 temperature sensor. Detailed Implementation

[0017] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0018] Please see Figure 1-5 This embodiment provides a technical solution: a diamond abrasive production equipment, characterized in that it includes a base plate 1 and a screening component 2; Base plate 1: A support frame 10 is fixed to the upper side. A conical feeding frame 11 is fixed to the upper front end of the support frame 10. A storage tank 12 is fixed to the middle of the front side of the support frame 10. A feeding pipe 13 is fixed inside the feeding port at the lower end of the storage tank 12. A base 14 is fixed to the upper side of the base plate 1. A belt conveyor 15 is installed on the upper side of the base 14. A storage component 5 and a measuring component 8 are installed inside the storage tank 12. The measuring component 8 is located below the storage component 5. A first stirring component 6 is installed at the upper end of the storage tank 12. The lower end of the first stirring component 6 is located inside the storage component 5. A collecting component 9 is installed on the lower side of the conical feeding frame 11. The storage component 5 includes a second electric telescopic rod 51, a support plate 52, a connecting ring 53, a conical barrel 54, and a discharge pipe 55. Along with the first solenoid valve 56, two corresponding second electric telescopic rods 51 are installed at the lower end of the storage tank 12. Support plates 52 are fixed to the telescopic arms of the second electric telescopic rods 51. Connecting rings 53 are placed at the upper ends of the two support plates 52 and are slidably connected to the inside of the storage tank 12. A conical barrel 54 is fixed inside the connecting rings 53. A discharge pipe 55 is fixed inside the discharge port at the lower end of the conical barrel 54. The lower end of the discharge pipe 55 is located inside the discharge pipe 13. The first solenoid valve 56 is installed on the circumferential surface of the discharge pipe 55. The input ends of the first solenoid valve 56 and the second electric telescopic rods 51 are both electrically connected to the output end of an external PLC controller. The first stirring assembly 6 includes a fixing bar 61, a third motor 62, a rotating shaft 63, and a stirring plate. 64. A feeding pipe 65 and a second solenoid valve 66 are included. A fixing strip 61 is fixed to the upper end of the storage tank 12. A third motor 62 is installed on the upper side of the fixing strip 61. A rotating shaft 63 is fixed on the output shaft of the third motor 62. The lower end of the rotating shaft 63 is located inside the storage tank 12. Two corresponding stirring plates 64 are fixed on the circumferential surface of the rotating shaft 63. Two corresponding feeding holes are opened on the upper side of the fixing strip 61. A feeding pipe 65 is fixed inside the feeding holes. A second solenoid valve 66 is installed on the circumferential surface of the feeding pipe 65. The input ends of the second solenoid valve 66 and the third motor 62 are electrically connected to the output end of an external PLC controller. The system also includes a second stirring assembly 7, which includes a stirring rod 71, a gear 72, a gear ring 73, and stirring strips 74. An opening is provided on the side of plate 64, and a stirring rod 71 is rotatably connected inside the opening. A gear 72 is fixed on the end face of the stirring rod 71. A gear ring 73 is fixed inside the conical barrel 54, located below the two gears 72, both of which mesh with the gear ring 73. Evenly distributed stirring strips 74 are fixed on the circumference of the stirring rod 71. The measuring assembly 8 includes a support ring 81, a connecting ring 82, and a weighing sensor 83. A support ring 81 is fixed below the surface of the conical barrel 54. Evenly distributed weighing sensors 83 are installed at the lower end inside the storage tank 12. A connecting ring 82 is fixed above all the weighing sensors 83, and the connecting ring 82 corresponds to the support ring 81. The weighing sensors 83 are bidirectionally electrically connected to an external PLC controller.The collecting component 9 includes a mounting base 91, a third electric telescopic rod 92, a storage box 93, an inclined guide block 94, a second connecting strip 95, and a sealing frame 96. The mounting base 91 is fixed to the right side of the conical feeding frame 11. The third electric telescopic rod 92 is mounted on the lower side of the mounting base 91. The storage box 93 is fixed to the telescopic arm of the third electric telescopic rod 92. The inclined guide block 94 is fixed inside the storage box 93. The second connecting strip 95 is fixed to the upper left end of the storage box 93. A strip-shaped opening is provided at the lower right end of the conical feeding frame 11, and a sealing frame 96 is provided inside the strip-shaped opening. The sealing frame 96 is fixed to the upper side of the second connecting strip 95. The input end of the third electric telescopic rod 92 is electrically connected to the output end of an external PLC controller. The collected diamond powder is collected by the collection component 9, the weight of the raw materials for producing diamond abrasives is detected by the measuring component 8, the raw materials for producing diamond abrasives are further stirred by the second stirring component 7, the raw materials for producing diamond abrasives are initially stirred by the first stirring component 6, and the raw materials for producing diamond abrasives are stored by the storage component 5. Screening assembly 2 includes a fixed frame 21, a screening screen 22, connecting rods 23, a first connecting bar 24, a fixed bracket 25, a first motor 26, a connecting disc 27, and a spring 28. Two corresponding fixed brackets 25 are fixed to the upper left end of the conical feeding frame 11. The first connecting bar 24 is rotatably connected between the two fixed brackets 25. Two corresponding connecting rods 23 are fixed to the right end of the first connecting bar 24. Two corresponding sliding grooves are opened on the front and rear sides of the fixed frame 21, and the connecting rods 23 are slidably connected inside the sliding grooves. A connecting plate 27 is fixed to the end face of the connecting rod 23, and a spring 28 is fixed to the end face of the connecting plate 27. The end of the spring 28 away from the connecting plate 27 is fixed inside the chute. A screening screen 22 is fixed inside the fixed frame 21. A blocking assembly 3 is installed on the right side of the fixed frame 21. An extrusion assembly 4 is installed on the upper side of the first connecting bar 24. The blocking assembly 3 includes a connecting frame 31, a first electric telescopic rod 32, a U-shaped plate 33, and a blocking bar 34. Two corresponding connecting frames 31 are fixed to the upper right end of the fixed frame 21. A first electric telescopic rod 32 is installed on the lower side of the connecting frame 31. A U-shaped plate 33 is fixed on the telescopic arm of the two first electric telescopic rods 32. A blocking strip 34 is fixed on the upper side of the U-shaped plate 33. A sliding groove is opened at the upper right end of the fixing frame 21. The blocking strip 34 is slidably connected inside the sliding groove. The input end of the first electric telescopic rod 32 is electrically connected to the output end of an external PLC controller. By setting the blocking component 3, the pressing component 4 includes a mounting strip 41, a second motor 42, and a cam 43. The upper part of the first connecting strip 24... A mounting strip 41 is fixed on the side, and a second motor 42 is mounted on the upper side of the mounting strip 41. A cam 43 is fixed on the output shaft of the second motor 42. The cam 43 is connected to the first connecting strip 24 and the fixed frame 21. The input end of the second motor 42 is electrically connected to the output end of an external PLC controller. The fixed frame 21 is squeezed by the extrusion component 4. The diamond powder of the screening screen 22 is prevented from falling by the blocking component 3. The diamond powder required for the production of diamond abrasive is screened by the screening component 2. The input terminals of the first motor 26 and the belt conveyor 15 are both electrically connected to the output terminal of an external PLC controller.

[0019] The storage box 93 has a material retrieval hole on its right side. A baffle 16 is hinged inside the material retrieval hole. A handle 17 is fixed on the right side of the baffle 16. The user can pull the baffle 16 with the handle 17 to open the material retrieval hole on the right side of the storage box 93.

[0020] The storage tank 12 has evenly distributed mounting slots inside, and electric heating tubes 18 are installed inside the mounting slots. The conical tank 54 has a connecting slot inside, and a temperature sensor 19 is installed inside the connecting slot. The input end of the electric heating tube 18 is electrically connected to the output end of an external PLC controller. The temperature sensor 19 is bidirectionally electrically connected to the external PLC controller. The conical tank 54 is heated by setting the electric heating tube 18.

[0021] The working principle of the diamond abrasive production equipment provided by this invention is as follows: First, two injection pipes 65 are respectively connected to external storage containers containing adhesive and additives. After storage, the raw material ratio required for diamond abrasive production is input into the external PLC controller. Then, high-quality diamond powder is placed above the sieve screen 22. Next, the second motor 42 is started to rotate the cam 43. During the rotation of the cam 43, when its protruding part contacts the fixed frame 21, it squeezes the fixed frame 21 to the right. When the protruding part of the cam 43 moves away from the fixed frame 21, the fixed frame 21 will return to its original position under the action of the other two springs 25. Continuous rotation of the cam 43 will cause the fixed frame 21 to reciprocate left and right. In this way, high-quality diamond powder located above the screening screen 22 can be screened. The screened powder will fall downward through the conical feeding frame 11 into the conical barrel 54. After all the diamond powder is completely injected into the conical barrel 54, the two second electric telescopic rods 51 are controlled to retract. The retraction of the two second electric telescopic rods causes the conical barrel 54 to move downward. During this process, when the support ring 81 fixed at its lower end contacts the connecting ring 82, all the weighing sensors 83 can measure it. After the measurement, according to the measured weight, the external PLC controller will open the two second solenoid valves 66 respectively to automatically add the adhesive and additives into the conical barrel 54 according to the ratio stored in the external PLC controller. Inside cone 4, after the addition is complete, the external PLC controller will automatically close the two second solenoid valves 66. This completes the addition of adhesive and additives without manual configuration, greatly improving production efficiency. After the adhesive and additives are injected into cone 54, the third motor 62 is started. The starting of the third motor 62 causes the rotating shaft 63 to rotate, which in turn drives the two stirring plates 64 to rotate, initially mixing the diamond powder with the adhesive and additives. Simultaneously, the rotation of the two stirring plates 64 also drives the two gears 72 to move. During the movement of the gears 72, the gear rings 73 drive the two stirring rods 71 ​​to rotate. Rotating the agitator 74 further mixes the diamond powder, binder, and additives, ensuring thorough mixing. During mixing, the temperature sensor 19 continuously monitors the temperature inside the conical barrel 54. When the temperature is too low, the external PLC controller automatically activates all the heating elements 18 to heat the conical barrel 54, ensuring more uniform mixing of the materials inside. After mixing, the first solenoid valve 56 opens, allowing the mixed material to be injected through the feed pipe 13 onto the belt conveyor 15. The material is then conveyed through the belt conveyor 15 into the external molding device. A suitable molding process is selected based on the product shape and intended use to shape the material. After molding, heating and curing completes the production process.After the diamond powder is sieved, the third electric telescopic rod 92 is activated to retract, causing the sealing frame 96 to move upward and open the slot on the lower side of the conical feeding frame 11. Then, the first motor 26 is activated to rotate the fixed frame 21 and tilt it. After tilting, the two first electric telescopic rods 32 are activated to move the blocking strip 34 downward. In this case, the unqualified diamond powder sieved above the screening screen 22 will enter the right end of the conical feeding frame 11 along the screening screen 22, and then enter the storage box 93 through the slot for storage, facilitating subsequent use.

[0022] It is worth noting that the external PLC controller disclosed in the above embodiments is specifically a Siemens S7-200; the first motor 26, the second motor 42, and the third motor 62 can be 1LE0003 three-phase asynchronous motors; the first electric telescopic rod 32, the second electric telescopic rod 51, and the third electric telescopic rod 92 can be TGC-A high-thrust electric telescopic rods; the first solenoid valve 56 and the second solenoid valve 66 can be VP3185-205DA1-X81 solenoid valves; and the heating element 18 can be 19. The 205-K heating element, the load cell 83 can be a JLBU-1 load cell, the temperature sensor 19 can be an LSCI-TZ03 laser focusing infrared temperature sensor, and the belt conveyor 15 can be freely configured according to the actual application scenario. The external PLC controller controls the operation of the first motor 26, the second motor 42, the third motor 62, the first electric telescopic rod 32, the second electric telescopic rod 51, the third electric telescopic rod 92, the first solenoid valve 56, the second solenoid valve 66, and the heating element 18 using methods commonly used in existing technologies.

[0023] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural or procedural transformations made based on the content of the present invention specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of the present invention.

Claims

1. A diamond abrasive production equipment, characterized in that: Includes a base plate (1) and a screening assembly (2); Base plate (1): A support frame (10) is fixed on the upper side. A conical feeding frame (11) is fixed on the upper front end of the support frame (10). A storage tank (12) is fixed in the middle of the front side of the support frame (10). A feeding pipe (13) is fixed inside the feeding port at the lower end of the storage tank (12). A base (14) is fixed on the upper side of the base plate (1). A belt conveyor (15) is installed on the upper side of the base (14). A storage component (5) and a measuring component (8) are installed inside the storage tank (12). The measuring component (8) is located below the storage component (5). A first stirring component (6) is installed at the upper end of the storage tank (12). The lower end of the first stirring component (6) is located inside the storage component (5). A collecting component (9) is installed on the lower side of the conical feeding frame (11). The collecting assembly (9) includes a mounting base (91), a third electric telescopic rod (92), a storage tank (93), an inclined guide block (94), a second connecting strip (95), and a sealing frame (96). The mounting base (91) is fixed to the right side of the conical feeding frame (11). The third electric telescopic rod (92) is mounted on the lower side of the mounting base (91). The storage tank (93) is fixed on the telescopic arm of the third electric telescopic rod (92). An inclined guide block (94) is fixed inside the storage tank (95). 3) A second connecting strip (95) is fixed on the upper left side. A strip-shaped opening is provided on the lower right side of the tapered feeding frame (11). A sealing frame (96) is provided inside the strip-shaped opening. The sealing frame (96) is fixed on the upper side of the second connecting strip (95). The input end of the third electric telescopic rod (92) is electrically connected to the output end of the external PLC controller. A material picking hole is provided on the right side of the storage box (93). A baffle (16) is hinged inside the material picking hole. A handle (17) is fixed on the right side of the baffle (16). Screening assembly (2): includes a fixed frame (21), a screening screen (22), a connecting rod (23), a first connecting strip (24), a fixed frame (25), a first motor (26), a connecting plate (27), and a spring (28). Two corresponding fixed frames (25) are fixed to the left end of the upper side of the conical feeding frame (11). A first connecting strip (24) is rotatably connected between the two fixed frames (25). Two corresponding connecting rods (23) are fixed to the right end of the first connecting strip (24). The front and rear ends of the fixed frame (21) are connected by... Two corresponding sliding grooves are opened on the side. The connecting rod (23) is slidably connected inside the sliding groove. A connecting plate (27) is fixed on the end face of the connecting rod (23). A spring (28) is fixed on the end face of the connecting plate (27). The end of the spring (28) away from the connecting plate (27) is fixed inside the sliding groove. A screening screen (22) is fixed inside the fixed frame (21). A blocking component (3) is installed on the right side of the fixed frame (21). An extrusion component (4) is installed on the upper side of the first connecting strip (24). Wherein: the input terminals of the first motor (26) and the belt conveyor (15) are both electrically connected to the output terminal of an external PLC controller.

2. The diamond abrasive production equipment according to claim 1, characterized in that: The blocking assembly (3) includes a connecting frame (31), a first electric telescopic rod (32), a U-shaped plate (33), and a blocking strip (34). Two corresponding connecting frames (31) are fixed on the upper right side of the fixed frame (21). The first electric telescopic rod (32) is installed on the lower side of the connecting frame (31). The U-shaped plate (33) is fixed on the telescopic arm of the two first electric telescopic rods (32). The blocking strip (34) is fixed on the upper side of the U-shaped plate (33). A sliding groove is opened on the upper right side of the fixed frame (21). The blocking strip (34) is slidably connected inside the sliding groove. The input end of the first electric telescopic rod (32) is electrically connected to the output end of an external PLC controller.

3. The diamond abrasive production equipment according to claim 1, characterized in that: The extrusion assembly (4) includes a mounting strip (41), a second motor (42), and a cam (43). The mounting strip (41) is fixed on the upper side of the first connecting strip (24). The second motor (42) is mounted on the upper side of the mounting strip (41). The cam (43) is fixed on the output shaft of the second motor (42). The cam (43) is between the first connecting strip (24) and the fixed frame (21). The input end of the second motor (42) is electrically connected to the output end of an external PLC controller.

4. The diamond abrasive production equipment according to claim 1, characterized in that: The storage assembly (5) includes a second electric telescopic rod (51), a support plate (52), a first connecting ring (53), a conical barrel (54), a discharge pipe (55), and a first solenoid valve (56). Two corresponding second electric telescopic rods (51) are installed at the lower end of the storage barrel (12). A support plate (52) is fixed on the telescopic arm of the second electric telescopic rod (51). A first connecting ring (53) is placed at the upper end of the two support plates (52). The first connecting ring (53) is slidably connected to the inside of the storage barrel (12). A conical barrel (54) is fixed inside the first connecting ring (53). A discharge pipe (55) is fixed inside the discharge port at the lower end of the conical barrel (54). The lower end of the discharge pipe (55) is located inside the discharge pipe (13). A first solenoid valve (56) is installed on the circumferential surface of the discharge pipe (55). The input ends of the first solenoid valve (56) and the second electric telescopic rod (51) are both electrically connected to the output end of an external PLC controller.

5. The diamond abrasive production equipment according to claim 4, characterized in that: The first stirring assembly (6) includes a fixing bar (61), a third motor (62), a rotating shaft (63), a stirring plate (64), a feeding pipe (65), and a second solenoid valve (66). The upper end of the storage tank (12) is fixed with a fixing bar (61). The third motor (62) is installed on the upper side of the fixing bar (61). The rotating shaft (63) is fixed on the output shaft of the third motor (62). The lower end of the rotating shaft (63) is located inside the storage tank (12). Two corresponding stirring plates (64) are fixed on the circumferential surface of the rotating shaft (63). Two corresponding feeding holes are opened on the upper side of the fixing bar (61). The feeding pipe (65) is fixed inside the feeding hole. The second solenoid valve (66) is installed on the circumferential surface of the feeding pipe (65). The input ends of the second solenoid valve (66) and the third motor (62) are electrically connected to the output end of an external PLC controller.

6. The diamond abrasive production equipment according to claim 5, characterized in that: It also includes a second stirring assembly (7), which includes a stirring rod (71), a gear (72), a gear ring (73) and stirring strips (74). The stirring plate (64) has an opening on its side, and the stirring rod (71) is rotatably connected inside the opening. The gear (72) is fixed on the end face of the stirring rod (71). The gear ring (73) is fixed inside the conical barrel (54). The gear ring (73) is located below the two gears (72), and both gears (72) mesh with the gear ring (73). Stirring strips (74) are evenly distributed on the circumferential surface of the stirring rod (71).

7. The diamond abrasive production equipment according to claim 4, characterized in that: The measuring component (8) includes a support ring (81), a second connecting ring (82), and a weighing sensor (83). The support ring (81) is fixed below the surface of the conical barrel (54). The weighing sensors (83) are evenly distributed inside the storage barrel (12). The second connecting ring (82) is fixed above all the weighing sensors (83). The second connecting ring (82) corresponds to the support ring (81). The weighing sensor (83) is bidirectionally electrically connected to an external PLC controller.

8. The diamond abrasive production equipment according to claim 4, characterized in that: The storage tank (12) has evenly distributed mounting slots inside, and an electric heating tube (18) is installed inside the mounting slot. The conical tank (54) has a connecting slot inside, and a temperature sensor (19) is installed inside the connecting slot. The input end of the electric heating tube (18) is electrically connected to the output end of an external PLC controller, and the temperature sensor (19) is bidirectionally electrically connected to the external PLC controller.

Citation Information

Patent Citations

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