Silicon core cutting and cone grinding integrated device

By designing an integrated silicon core cutting and grinding device, automated processing of silicon cores was achieved, solving the problems of dust hazards and low efficiency, improving processing efficiency and preventing dust diffusion.

CN223811886UActive Publication Date: 2026-01-20四川禾牧机械制造有限公司
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Patent Information

Application Number
CN202422686922.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2026-01-20
Estimated Expiration
2034-11-05

AI Technical Summary

Technical Problem

Existing silicon core processing methods suffer from problems such as dust hazards, high labor intensity, slow processing speed, and low efficiency.

Method used

An integrated silicon core cutting and grinding device was designed, which adopts an automated cutting and grinding cone frame, transverse and longitudinal guide rods, sliding seat and drive components, and combines cutting and grinding components to realize automated processing of silicon cores. It is also equipped with a dustproof housing and nozzle system to control dust diffusion.

Benefits of technology

It has enabled automated production of silicon core sawing and tapping, reducing dust hazards, improving processing efficiency, and effectively preventing dust from spreading in the workshop.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a silicon core cutting and cone grinding integrated device which comprises a cutting component and a cone grinding component, the cutting component and the cone grinding component are fixedly arranged at the two ends of a cutting and cone grinding frame, a transverse guide rod is fixedly arranged in the middle of the cutting and cone grinding frame, and a transverse sliding seat is arranged on the transverse guide rod in a sliding mode. The transverse sliding driving part is arranged on the cutting cone grinding frame, the longitudinal guide rod is fixedly arranged on the longitudinal sliding seat, the longitudinal sliding seat is fixedly arranged at the upper end of the longitudinal guide rod, the longitudinal sliding driving part is fixedly arranged on the transverse sliding seat, and the two ends of the cutting cone grinding frame and the two ends of the longitudinal sliding seat are each provided with a spacing placement block. The interval placing blocks on the cutting and cone grinding frame are matched with the interval placing blocks on the longitudinal sliding seat, and positioning material grooves used for placing silicon cores are formed in the middles of the interval placing blocks. And the sawing and cone grinding of the silicon core completely adopt automatic production, so that the dust generated in the machining process does not harm workers, and meanwhile, the machining efficiency is effectively improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of silicon core processing, especially to the silicon core cutting and grinding cone integrated device. BACKGROUND

[0002] The silicon core has important use in industrial production, and the length needs to be guaranteed in the production process, and the both ends of the silicon core need to be processed into conical shape, the existing processing mode adopts manual measurement and sawing, and then adopts equipment to grind the cone after sawing. A large amount of dust is produced in the process of sawing and grinding, which is harmful to the respiratory tract of workers, at the same time, the processing mode of man-machine cooperation leads to slow processing speed, large labor intensity of workers, and low processing efficiency. UTILITY MODEL CONTENT

[0003] The utility model aims at overcoming the insufficient of prior art, provides silicon core cutting and grinding cone integrated device.

[0004] The utility model aims at overcoming the insufficient of prior art, provides silicon core cutting and grinding cone integrated device.

[0005] The utility model discloses a silicon core cutting and grinding cone integrated device, including cutting and grinding cone frame, horizontal guide rod, longitudinal guide rod, horizontal sliding seat, longitudinal sliding seat, horizontal sliding drive part, longitudinal sliding drive part, interval placing block, cutting part and grinding cone part, both ends of cutting and grinding cone frame are fixedly provided with cutting part and grinding cone part, the middle part on cutting and grinding cone frame is fixedly provided with horizontal guide rod, horizontal sliding seat is slidably arranged on horizontal guide rod, horizontal sliding drive part is arranged on cutting and grinding cone frame and is used for driving horizontal sliding seat to slide, longitudinal guide rod is fixedly arranged on longitudinal sliding seat, longitudinal sliding seat is fixedly arranged on the upper end of longitudinal guide rod, longitudinal sliding drive part is fixedly arranged on horizontal sliding seat and is used for driving longitudinal sliding seat to move up and down, both ends on cutting and grinding cone frame and both ends on longitudinal sliding seat are provided with at least three sets interval placing block, interval placing block on cutting and grinding cone frame cooperates with interval placing block on longitudinal sliding seat, the middle part on interval placing block is provided with the positioning trough for placing silicon core, horizontal sliding drive part, longitudinal sliding drive part, cutting part and grinding cone part all are electrically connected with control center.

[0006] Further, the cutting component comprises a cutting adjusting piece, a cutting driving piece, a cutting knife, a clamping fixed block, a clamping movable block and a clamping driving piece, the fixed part of the cutting adjusting piece is fixedly arranged on the cutting cone grinder frame, the cutting driving piece is fixedly arranged on the output part of the cutting adjusting piece, the cutting knife is fixedly arranged on the output part of the cutting driving piece, the clamping fixed block and the clamping driving piece are both fixedly arranged on the output part of the cutting adjusting piece, the clamping movable block is fixedly arranged on the output part of the clamping driving piece and cooperates with the clamping fixed block, and the cutting adjusting piece, the cutting driving piece and the clamping driving piece are electrically connected with the control center.

[0007] Further, the grinding cone component comprises a silicon core traction piece, a grinding cone support, a grinding cone fastener, a grinding cone rotary driving piece, a grinding cone knife, a cone knife driving piece, an adjusting disc and a grinding cone adjusting piece, the silicon core traction piece is fixedly arranged on the cutting cone grinder frame and used for moving the silicon core, the grinding cone support is fixedly arranged on the cutting cone grinder frame, the grinding cone fastener is rotatably arranged on the grinding cone support and used for fixing the silicon core, the grinding cone rotary driving piece is fixedly arranged on the grinding cone support and used for driving the grinding cone fastener to rotate, the fixed part of the grinding cone adjusting piece is fixedly arranged on the cutting cone grinder frame, the adjusting disc is fixedly arranged on the output part of the grinding cone adjusting piece, the fixed part of the cone knife driving piece is fixedly arranged on the adjusting disc, the grinding cone knife is fixedly arranged on the output part of the cone knife driving piece, and the silicon core traction piece, the grinding cone fastener, the grinding cone rotary driving piece, the cone knife driving piece and the grinding cone adjusting piece are electrically connected with the control center.

[0008] Further, dustproof housings are arranged on both ends of the cutting cone grinder frame, and the cutting component and the grinding cone component are arranged in the dustproof housings, and the dustproof housings are provided with avoiding grooves matched with the silicon core.

[0009] Further, the cutting cone grinder frame is provided with a waste groove on the lower side, and the cutting component and the grinding cone component are matched with the waste groove.

[0010] Further, the transverse sliding driving piece and the longitudinal sliding driving piece are both air cylinders, hydraulic cylinders or electric push rods.

[0011] Further, the cutting knife is a circular cutting saw blade.

[0012] Further, the two cutting components on the cutting cone grinder frame are symmetrically arranged.

[0013] The utility model discloses the beneficial effect is:

[0014] 1)In the present technology, the silicon core sawing and grinding cone are completely automated, the dust generated in the processing process will not harm the workers, and the processing efficiency is effectively improved.

[0015] 2)In the present technology, the two cutting components are symmetrically arranged, so that the two ends of the same silicon core can be sawed at the same time, which further improves the processing efficiency.

[0016] 3)In the present technology, the dustproof shell effectively plays a dustproof role, preventing the dust generated in the processing layer from filling the production workshop. BRIEF DESCRIPTION OF DRAWINGS

[0017] Fig. 1 is a perspective view of the connection structure of the device;

[0018] Fig. 2 is a perspective view of the connection structure of the cutting component and the grinding cone component on the cutting and grinding cone frame;

[0019] In the figure, 8 is a silicon core, 19 is a cutting and grinding cone frame, 20 is a transverse guide rod, 21 is a longitudinal guide rod, 22 is a transverse sliding seat, 23 is a longitudinal sliding seat, 24 is a transverse sliding drive, 25 is a longitudinal sliding drive, 26 is a spacing placement block, 27 is a cutting adjustment component, 28 is a cutting drive, 29 is a cutting knife, 30 is a clamping fixed block, 31 is a clamping movable block, 32 is a clamping drive, 33 is a silicon core traction component, 34 is a grinding cone support, 35 is a grinding cone fastener, 36 is a grinding cone rotating drive, 37 is a grinding cone knife, 38 is a cone knife drive, 39 is an adjustment disc, 40 is a grinding cone adjustment component, 41 is a dustproof shell, 42 is an avoidance groove, and 43 is a waste groove. DETAILED DESCRIPTION

[0020] The technical scheme of the present application will be described below in conjunction with the embodiments. Obviously, the described embodiments are only part of the embodiments of the present application, not all. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.

[0021] Reference Figs. 1-2 The present application provides a technical scheme:

[0022] The utility model provides a silicon core cutting and grinding cone integrated device, including cutting and grinding cone frame 19, horizontal guide rod 20, longitudinal guide rod 21, horizontal sliding seat 22, longitudinal sliding seat 23, horizontal sliding drive 24, longitudinal sliding drive 25, interval placement block 26, cutting part and grinding cone part, cutting and grinding cone frame 19 both ends are fixedly arranged with cutting part and grinding cone part, the middle part of cutting and grinding cone frame 19 is fixedly arranged with horizontal guide rod 20, horizontal sliding seat 22 is slidably arranged on horizontal guide rod 20, horizontal sliding drive 24 is arranged on cutting and grinding cone frame 19 and is used to drive horizontal sliding seat 22 to slide, longitudinal guide rod 21 is fixedly arranged on longitudinal sliding seat 23, longitudinal sliding seat 23 is fixedly arranged on the upper end of longitudinal guide rod 21, longitudinal sliding drive 25 is fixedly arranged on horizontal sliding seat 22 and is used to drive longitudinal sliding seat 23 to move up and down, cutting and grinding cone frame 19 both ends and longitudinal sliding seat 23 both ends are at least provided with three sets of interval placement block 26, and cutting and grinding cone frame 19 is arranged on interval placement block 26 with interval placement block 26 on longitudinal sliding seat 23, and the middle part of interval placement block 26 is provided with the positioning trough for placing silicon core 8, and cutting part and grinding cone part are electrically connected with control center. Horizontal sliding drive 24 and longitudinal sliding drive 25 are all air cylinder, hydraulic cylinder or electric push rod cutting knife 29 is circular cutting saw blade. The two cutting parts on cutting and grinding cone frame 19 are symmetrically arranged. Among them, the control center is prior art, and automatic production is realized under the action of the control center. Cutting and grinding cone frame 19 is used to install horizontal guide rod 20, interval placement block 26, horizontal sliding drive 24, cutting part and grinding cone part, and one side of cutting and grinding cone frame 19 is matched with storage fixed frame 1, and the other side is fixedly connected with conveying support 41. Cutting part is provided with two, and the two cutting parts cut off the two ends of the same silicon core 8 simultaneously. The grinding cone part is also provided with two groups, one group processes one end of the silicon core 8, and the other group processes the other end of the silicon core 8, and the two ends of the same silicon core 8 are not ground at the same time. Cutting and grinding cone frame 19 is provided with at least three sets of interval placement block 26, each set of interval placement block 26 includes two interval placement blocks 26, one set of interval placement block 26 is matched with cutting part, and the other two sets of interval placement blocks 26 are matched with two grinding cone parts, three sets of interval placement blocks 26 are arranged at equal intervals, and at least four sets of interval placement blocks 26 are arranged at equal intervals on longitudinal sliding seat 23, the first set of interval placement blocks 26 send the silicon core 8 to the cutting part by batch feeding device, the second set of interval placement blocks 26 send the cut silicon core 8 to the first grinding cone part, the third set of interval placement blocks 26 send the silicon core 8 after one end grinding to the second grinding cone part, and the fourth set of interval placement blocks 26 send the silicon core 8 after two ends grinding to the conveying device. When working, longitudinal sliding seat 23 simultaneously conveys four silicon cores 8.The transverse sliding drive 24 and the longitudinal sliding drive 25 are both cylinders, hydraulic cylinders or electric push rods in the prior art. The transverse sliding drive 24 is used to push the silicon core 8 to move forward by a fixed distance, which is the distance between the centers of the two spacing placement blocks 26. After the movement, the silicon core 8 is moved backward to the position before the movement. The longitudinal sliding drive 25 is used to push the silicon core 8 upward, so that the silicon core 8 is separated from the spacing placement blocks 26 on the cutting cone frame 19, and the silicon core 8 is separated from the batch feeding device. After moving by a fixed distance, the silicon core 8 is put down. The batch feeding device is used to feed the unprocessed silicon core 8 to the device. The conveying device is used to convey the processed silicon core 8 away.

[0023] In some embodiments, the cutting part includes a cutting adjustment member 27, a cutting drive 28, a cutting knife 29, a clamping fixed block 30, a clamping movable block 31 and a clamping drive 32. The fixed part of the cutting adjustment member 27 is fixedly arranged on the cutting cone frame 19. The cutting drive 28 is fixedly arranged on the output part of the cutting adjustment member 27. The cutting knife 29 is fixedly arranged on the output part of the cutting drive 28. The clamping fixed block 30 and the clamping drive 32 are both fixedly arranged on the output part of the cutting adjustment member 27. The clamping movable block 31 is fixedly arranged on the output part of the clamping drive 32 and cooperates with the clamping fixed block 30. The cutting adjustment member 27, the cutting drive 28 and the clamping drive 32 are all electrically connected with the control center. The cutting adjustment member 27 is in the prior art, which is used to control the two cutting drives 28 to move towards or away from each other, so that the silicon core 8 of different lengths can be cut. The cutting adjustment member 27 can also drive the cutting drive 28 to move up and down, so as to prevent the cutting knife 29 from interfering with the silicon core 8 entering / pushing out to the position between the clamping fixed block 30 and the clamping movable block 31. The cutting drive 28 is an electric motor in the prior art, which drives the cutting knife 29 in the prior art to rotate to cut the silicon core 8. The clamping drive 32 is an electric push rod in the prior art, which drives the clamping movable block 31 to move. The clamping fixed block 30 cooperates with the clamping movable block 31 to clamp or relax the silicon core 8.

[0024] In some embodiments, the grinding cone component includes a silicon core pulling piece 33, a grinding cone support 34, a grinding cone fastener 35, a grinding cone rotary drive 36, a grinding cone knife 37, a cone knife drive 38, an adjusting disc 39, and a grinding cone adjusting piece 40. The silicon core pulling piece 33 is fixedly arranged on the trimming grinding cone frame 19 and is used to move the silicon core 8. The grinding cone support 34 is fixedly arranged on the trimming grinding cone frame 19. The grinding cone fastener 35 is rotatably arranged on the grinding cone support 34 and is used to fix the silicon core 8. The grinding cone rotary drive 36 is fixedly arranged on the grinding cone support 34 and is used to drive the grinding cone fastener 35 to rotate. The fixed part of the grinding cone adjusting piece 40 is fixedly arranged on the trimming grinding cone frame 19. The adjusting disc 39 is fixedly arranged on the output part of the grinding cone adjusting piece 40. The fixed part of the cone knife drive 38 is fixedly arranged on the adjusting disc 39. The grinding cone knife 37 is fixedly arranged on the output part of the cone knife drive 38. The silicon core pulling piece 33, the grinding cone fastener 35, the grinding cone rotary drive 36, the cone knife drive 38, and the grinding cone adjusting piece 40 are all electrically connected with the control center. The silicon core pulling piece 33 is a prior art, which is used to retract after grabbing the silicon core 8 and insert the silicon core 8 into the grinding cone fastener 35. The grinding cone fastener 35 is a prior art, which is used to fix the silicon core 8 and place the silicon core 8 to move. After the silicon core 8 is fixed by the grinding cone fastener 35, the silicon core pulling piece 33 relaxes the silicon core 8. The grinding cone rotary drive 36 is a motor in the prior art, which drives the grinding cone fastener 35 to rotate through a belt. The cone knife drive 38 is a motor in the prior art, which drives the grinding cone knife 37 in the prior art to rotate. After the grinding cone knife 37 and the silicon core 8 are both rotated, they contact each other, thereby realizing the grinding cone work. The cone knife drive 38 is fixed on the adjusting disc 39, which can adjust the taper of the end of the silicon core 8 under the action of the adjusting disc 39. The grinding cone adjusting piece 40 is a prior art, which is fixed on the trimming grinding cone frame 19. The adjusting disc 39 is arranged on the grinding cone adjusting piece 40, which makes the grinding cone knife 37 and the silicon core 8 approach or separate from each other under the action of the grinding cone adjusting piece 40.

[0025] In some embodiments, dustproof housings 41 are arranged on both ends of the trimming grinding cone frame 19. The trimming component and the grinding cone component are arranged in the dustproof housings 41. The dustproof housings 41 are provided with avoiding grooves 42 matched with the silicon core 8. The dustproof housings 41 are arranged to prevent dust generated in the trimming and grinding cone processes from overflowing. Nozzles are arranged in the dustproof housings 41 to spray pure water to eliminate the generated dust, which also plays a role in cooling the trimming knife 29 and the grinding cone knife 37. The avoiding grooves 42 are arranged to facilitate the movement of the silicon core 8 and prevent the silicon core 8 from colliding with the dustproof housings 41.

[0026] In some embodiments, a waste groove 43 is arranged on the lower side of the trimming grinding cone frame 19. The trimming component and the grinding cone component are matched with the waste groove 43. The waste groove 43 is used to collect waste or dust generated in the trimming and grinding cone processes.

[0027] In the description of the utility model, it is understood that the terms "upper", "lower", "bottom", "one end", "top", "middle", "the other end", "coaxial", "one side", "inner", "front", "central", "both ends" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.

[0028] In the utility model, unless otherwise explicitly specified and limited, the terms "arrangement", "installation", "connection", "fixation", "hinge" and the like should be understood broadly, for example, can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be directly connected, or indirectly connected through an intermediate medium, can be the communication inside two elements or the interaction relationship of two elements, unless otherwise explicitly limited, the above-mentioned terms in the utility model can be understood according to the specific meaning in the utility model by the person skilled in the art according to the specific situation.

[0029] The above is only the preferred embodiment of the utility model, and it should be understood that the utility model is not limited to the form disclosed herein, and should not be regarded as excluding other embodiments, and can be used in various other combinations, modifications and environments, and can be modified within the scope of the concept described herein by the above teaching or related art or knowledge.The modification and change made by the person skilled in the art without departing from the spirit and scope of the utility model should be within the protection scope of the claims attached to the utility model.

Claims

1. A device for cutting and grinding a silicon core, characterized by: The utility model provides a cutting and grinding cone frame, including cutting and grinding cone frame (19), transverse guide rod (20), longitudinal guide rod (21), transverse sliding seat (22), longitudinal sliding seat (23), transverse sliding drive (24), longitudinal sliding drive (25), interval placement block (26), cutting part and grinding cone part, both ends of cutting and grinding cone frame (19) are fixedly provided with cutting part and grinding cone part, the middle part of cutting and grinding cone frame (19) is fixedly provided with transverse guide rod (20), transverse sliding seat (22) is slidably arranged on transverse guide rod (20), transverse sliding drive (24) is arranged on cutting and grinding cone frame (19) and is used for driving transverse sliding seat (22) to slide, longitudinal guide rod (21) is fixedly arranged on longitudinal sliding seat (23), longitudinal sliding seat (23) is fixedly arranged on the upper end of longitudinal guide rod (21), longitudinal sliding drive (25) is fixedly arranged on transverse sliding seat (22) and is used for driving longitudinal sliding seat (23) to move up and down, both ends of cutting and grinding cone frame (19) and both ends of longitudinal sliding seat (23) are provided with at least three sets of interval placement block (26), interval placement block (26) on cutting and grinding cone frame (19) cooperates with interval placement block (26) on longitudinal sliding seat (23), the middle part of interval placement block (26) is provided with the positioning trough for placing silicon core (8), and transverse sliding drive (24), longitudinal sliding drive (25), cutting part and grinding cone part are electrically connected with control center.

2. The silicon core dicing and truing cone integration apparatus of claim 1, wherein: The utility model provides a cutting and grinding cone frame, including cutting and grinding cone frame (19), transverse guide rod (20), longitudinal guide rod (21), transverse sliding seat (22), longitudinal sliding seat (23), transverse sliding drive (24), longitudinal sliding drive (25), interval placement block (26), cutting part and grinding cone part, both ends of cutting and grinding cone frame (19) are fixedly provided with cutting part and grinding cone part, the middle part of cutting and grinding cone frame (19) is fixedly provided with transverse guide rod (20), transverse sliding seat (22) is slidably arranged on transverse guide rod (20), transverse sliding drive (24) is arranged on cutting and grinding cone frame (19) and is used for driving transverse sliding seat (22) to slide, longitudinal guide rod (21) is fixedly arranged on longitudinal sliding seat (23), longitudinal sliding seat (23) is fixedly arranged on the upper end of longitudinal guide rod (21), longitudinal sliding drive (25) is fixedly arranged on transverse sliding seat (22) and is used for driving longitudinal sliding seat (23) to move up and down, both ends of cutting and grinding cone frame (19) and both ends of longitudinal sliding seat (23) are provided with at least three sets of interval placement block (26), interval placement block (26) on cutting and grinding cone frame (19) cooperates with interval placement block (26) on longitudinal sliding seat (23), the middle part of interval placement block (26) is provided with the positioning trough for placing silicon core (8), and transverse sliding drive (24), longitudinal sliding drive (25), cutting part and grinding cone part are electrically connected with control center. The utility model provides a cutting and grinding cone frame, including cutting and grinding cone frame (19), transverse guide rod (20), longitudinal guide rod (21), transverse sliding seat (22), longitudinal sliding seat (23), transverse sliding drive (24), longitudinal sliding drive (25), interval placement block (26), cutting part and grinding cone part, both ends of cutting and grinding cone frame (19) are fixedly provided with cutting part and grinding cone part, the middle part of cutting and grinding cone frame (19) is fixedly provided with transverse guide rod (20), transverse sliding seat (22) is slidably arranged on transverse guide rod (20), transverse sliding drive (24) is arranged on cutting and grinding cone frame (19) and is used for driving transverse sliding seat (22) to slide, longitudinal guide rod (21) is fixedly arranged on longitudinal sliding seat (23), longitudinal sliding seat (23) is fixedly arranged on the upper end of longitudinal guide rod (21), longitudinal sliding drive (25) is fixedly arranged on transverse sliding seat (22) and is used for driving longitudinal sliding seat (23) to move up and down, both ends of cutting and grinding cone frame (19) and both ends of longitudinal sliding seat (23) are provided with at least three sets of interval placement block (26), interval placement block (26) on cutting and grinding cone frame (19) cooperates with interval placement block (26) on longitudinal sliding seat (23), the middle part of interval placement block (26) is provided with the positioning trough for placing silicon core (8), and transverse sliding drive (24), longitudinal sliding drive (25), cutting part and grinding cone part are electrically connected with control center.

3. The silicon core dicing and truing cone integration apparatus according to claim 1 or 2, characterized by: The grinding cone component comprises a silicon core traction (33), a grinding cone support (34), a grinding cone fastener (35), a grinding cone rotary drive (36), a grinding cone cutter (37), a cone cutter drive (38), an adjusting disc (39) and a grinding cone adjusting member (40), the silicon core traction (33) is fixedly arranged on the cutting grinding cone frame (19) and used for moving the silicon core (8), the grinding cone support (34) is fixedly arranged on the cutting grinding cone frame (19), the grinding cone fastener (35) is rotatably arranged on the grinding cone support (34) and used for fixing the silicon core (8), the grinding cone rotary drive (36) is fixedly arranged on the grinding cone support (34) and used for driving the grinding cone fastener (35) to rotate, the fixed part of the grinding cone adjusting member (40) is fixedly arranged on the cutting grinding cone frame (19), the adjusting disc (39) is fixedly arranged on the output part of the grinding cone adjusting member (40), the fixed part of the cone cutter drive (38) is fixedly arranged on the adjusting disc (39), the grinding cone cutter (37) is fixedly arranged on the output part of the cone cutter drive (38), and the silicon core traction (33), the grinding cone fastener (35), the grinding cone rotary drive (36), the cone cutter drive (38) and the grinding cone adjusting member (40) are electrically connected with the control center.

4. The silicon core dicing and truing cone integration apparatus according to claim 1 or 2, characterized by: Dustproof housings (41) are arranged on both ends of the cutting grinding cone frame (19), the cutting component and the grinding cone component are arranged in the dustproof housings (41), and the dustproof housings (41) are provided with avoiding grooves (42) matched with the silicon core (8).

5. The apparatus of claim 1 or 2, wherein: A waste groove (43) is arranged on the lower side of the cutting grinding cone frame (19), and the cutting component and the grinding cone component are matched with the waste groove (43).

6. The silicon core dicing and truing cone integration apparatus of claim 1 or 2, wherein: The transverse sliding drive (24) and the longitudinal sliding drive (25) are air cylinders, hydraulic cylinders or electric push rods.

7. The silicon core dicing and truing cone integration apparatus of claim 2, wherein: The cutting cutter (29) is a circular cutting saw blade.

8. The silicon core dicing and truing cone integration apparatus of claim 1 or 2, wherein: The two cutting components on the cutting grinding cone frame (19) are symmetrically arranged.