Cutting device for integrated circuit component production

The automated conveying, cutting, and separation functions of the cutting device for integrated circuit component production solve the problems of plate positioning and finished product differentiation in existing equipment, thereby improving the production efficiency of metal bases and simplifying the process.

CN119910240BActive Publication Date: 2026-04-10TAIZHOU HUATUO ELECTRONIC TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
TAIZHOU HUATUO ELECTRONIC TECH CO LTD
Filing Date
2025-04-03
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing cutting equipment for producing metal bases for integrated circuits is unable to achieve automated positioning of the sheet metal and effective differentiation between the finished product and the edge material, resulting in a cumbersome production process.

Method used

The cutting device for integrated circuit component production includes a conveying component, a cutting and separating component, a screening component, and a separating component. It uses a servo motor and hydraulic components to realize the automated conveying, cutting, and separating of the sheet metal. Cutting is performed by a rotating shaft driven by a servo motor and a cutting saw blade. Debris removal and finished product separation are achieved by a screening plate and a separating plate.

Benefits of technology

It enables automated conveying and cutting of sheet metal, improves cutting efficiency, simplifies the process of distinguishing finished products from scrap materials, and increases the production efficiency of integrated circuit metal bases.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application relates to the cutting technology field of integrated circuit accessory production, and more specifically discloses a cutting device for integrated circuit accessory production, which comprises a conveying assembly, a cutting and separating assembly is fixedly connected to one side of the conveying assembly, the conveying assembly comprises a first supporting leg, first positioning plates are fixedly connected to the two sides of the top of the first supporting leg, a first servo motor is fixedly connected to one side of the first positioning plate on one side of the top of the first supporting leg; the plate material moves to one side under the conveying of a first roller shaft assembly and a second roller shaft assembly on the inner side of a second positioning plate until the plate material is clamped into a positioning groove, the plate material is cut and conveyed, the conveying of the plate material can be completed through the conveying assembly, the time required for an operator to position the plate material on a pushing mechanism is effectively saved, the automation of the plate material cutting is realized, the cutting efficiency of the integrated circuit metal base is ensured, and the rapid production of the integrated circuit metal base is facilitated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of integrated circuit accessory production cutting, and more particularly to a cutting device for integrated circuit accessory production. BACKGROUND

[0002] Integrated circuits are key components in modern electronic technology. They use specific processes to interconnect transistors, resistors, capacitors, inductors, and other components and wiring together on a small semiconductor wafer or dielectric substrate, and are packaged in a tube to form a microstructure with specific circuit functions. The following is a detailed introduction to integrated circuits.

[0003] During integrated circuit production, the main accessory is the base of the integrated circuit. The base of the integrated circuit is often made of metal, which has good thermal conductivity. For integrated circuits that need to dissipate heat, the metal base can effectively conduct the heat generated by the chip, maintaining the stable operation of the chip. The metal base usually has high mechanical strength and can withstand certain external forces and impacts, protecting the integrated circuit from damage. The metal base can also provide some electromagnetic shielding effect, reducing the impact of external electromagnetic interference on the integrated circuit. Therefore, the metal base is the main accessory of the existing integrated circuit.

[0004] During the production of the integrated circuit base, the metal plate is cut into a specified shape by a metal cutting machine.

[0005] The existing cutting device for integrated circuit metal base production has some deficiencies in use, as follows:

[0006] During use of the existing cutting device, the distance between the metal plate and the cutting knife is adjusted by a pushing mechanism that moves the metal plate at a constant speed towards the cutting knife to achieve cutting. However, to ensure the positioning of the metal plate during cutting, the existing pushing device requires an operator to position the plate on the pushing mechanism, making it difficult to achieve automation of the metal plate cutting process. This makes it inconvenient to ensure full automation of integrated circuit metal base production, and after cutting is complete, the finished plate and the corner material cannot be effectively distinguished. Therefore, a step is needed to distinguish them, making the overall cutting process cumbersome. SUMMARY

[0007] To overcome the above-mentioned deficiencies of the prior art, the present application provides a cutting device for integrated circuit accessory production to solve the problems in the background art.

[0008] The application provides the following technical scheme: a cutting device for integrated circuit accessory production, comprising a conveying assembly, a cutting and separating assembly is fixedly connected to one side of the conveying assembly, the conveying assembly comprises a first supporting leg, first positioning plates are fixedly connected to both sides of the top of the first supporting leg, a first servo motor is fixedly connected to one side of the first positioning plate on one side of the top of the first supporting leg, first roller shaft assemblies are installed on the inner sides of the two first positioning plates, two second positioning plates are fixedly connected to the side close to the back of the first positioning plate on one side of the top of the first supporting leg, first roller shaft assemblies are installed on the inner sides of the two first positioning plates and the second positioning plates, second roller shaft assemblies are installed on the inner sides of the two first positioning plates and the second positioning plates, the cutting and separating assembly comprises a cutting assembly, a screening assembly is fixedly connected to one side of the cutting assembly, and a separating assembly is fixedly connected to one side of the screening assembly.

[0009] Further, a first fixed plate is fixedly connected to the other side of the first positioning plate on the other side of the top of the first supporting leg, a first hydraulic assembly is fixedly connected to the top of the first fixed plate, a first pushing plate is fixedly connected to one side of the first hydraulic assembly, a positioning baffle is fixedly connected to the back of the first positioning plate, and a first servo motor is fixedly connected to one side of the first positioning plate on one side of the top of the first supporting leg.

[0010] Further, the first roller shaft assembly comprises a first roller shaft body, a first transmission wheel is fixedly connected to the other side of the first roller shaft body, the second roller shaft assembly comprises a second roller shaft body, a bevel gear is fixedly connected to one side of the second roller shaft body, a second transmission wheel is fixedly connected to the other side of the second roller shaft body, a first transmission belt is sleeved on the outer side of the first transmission wheel, and a second transmission belt is sleeved on the outer side of the second transmission wheel.

[0011] Further, the cutting assembly comprises a U-shaped positioning frame, L-shaped fixed plates are fixedly connected to the front and back of the top of the U-shaped positioning frame, a second servo motor is fixedly connected to the front of the L-shaped fixed plate on the top of the U-shaped positioning frame, a third servo motor is fixedly connected to the front of the L-shaped fixed plate on the top of the U-shaped positioning frame, the output shaft of the second servo motor is in transmission connection with a second rotating shaft, the output shaft of the third servo motor is in transmission connection with a first rotating shaft, a plate conveying plate is fixedly connected to the outer side of the first rotating shaft, a plate positioning groove is formed in the outer side of the plate conveying plate, and a cutting saw blade is fixedly connected to the outer side of the second rotating shaft.

[0012] Further, the screening assembly comprises a second fixed plate, the bottom of the second fixed plate is fixedly connected with a positioning strip, the front surface of the second fixed plate is fixedly connected with a first fixed block, the front surface of the first fixed block is fixedly connected with a fourth servo motor, the output shaft of the fourth servo motor is in transmission connection with a rotating circular plate, the bottom of the rotating circular plate is movably connected with a transmission rod, the back surface of the bottom of the transmission rod is movably connected with a transmission positioning shaft, and the back surface of the transmission positioning shaft is fixedly connected with a screening plate.

[0013] Further, the separating assembly comprises a separating box body, the bottom of the separating box body is fixedly connected with a second supporting leg, one side in the separating box body is fixedly connected with a second supporting plate, the other side in the separating box body is fixedly connected with a first supporting plate, the side away from the separating box body of the first supporting plate is fixedly connected with a separating plate, the back surface of the separating box body is fixedly connected with a third fixed plate, the top of the third fixed plate is fixedly connected with a second hydraulic assembly, the front surface of the second hydraulic assembly is fixedly connected with a second pushing plate, and the front and back surfaces of the bottom of the separating box body are fixedly connected with second positioning blocks.

[0014] Further, the back surface of the top of the first positioning plate is provided with a square notch, the width of the square notch of the top of the first positioning plate is same as the width of the first pushing plate, the teeth on the outer side of the bevel gear of the second roller shaft assembly in the first positioning plate mesh with the teeth on the outer side of the bevel gear of the second roller shaft assembly in the second positioning plate, the top of the first roller shaft assembly, the top of the second roller shaft assembly and the bottom of the notch in the top of the first positioning plate are on the same plane, and the output shaft of the first servo motor is in transmission connection with the first roller shaft assembly on the front surface of the first positioning plate.

[0015] Further, the bottom of the inner side of the plate positioning groove is on the same plane with the top of the first roller shaft assembly and the top of the second roller shaft assembly when the plate positioning groove is in the horizontal position, the distance between the outer side of the cutting saw blade and the inner side of the first rotating shaft is five millimeters, the included angle between the line connecting the center of the first rotating shaft and the center of the second rotating shaft and the plane is larger than the included angle between the bottom of the cutting saw blade and the plane by ten degrees, the bottom of the second fixed plate is provided with a square notch, the square notch in the bottom of the second fixed plate and the front and back surfaces of the screening plate are matched with each other, and the diameter of the rotating circular plate is same as the distance between the front surface of the screening plate and the second fixed plate.

[0016] Further, the bottom of the inside of the separation box is attached to one side of the screening plate, the separation plate is in the same plane as the cutting saw blade on the outer side of the back of the second rotating shaft, the thickness of the separation plate is the same as the thickness of the second rotating shaft, the conveying roller shaft at the bottom of the separation assembly is in the same plane as the bottom of the inside of the separation box, the conveying roller shaft at the top of the separation assembly is in transmission connection with the fifth servo motor, and is in the same plane as the top of the second supporting plate and the first supporting plate.

[0017] Technical effects and advantages of the present application:

[0018] 1. The present application places the board into the top of the conveying assembly after pre-treating the board into a square board of a specified size, then drives the first roller shaft assembly to rotate through the work of the first servo motor, drives all the first roller shaft assemblies in the inside of the first positioning plate to rotate through the transmission of the first transmission belt, and at the same time drives the second roller shaft assemblies in the inside of the first positioning plate to rotate, then drives the second roller shaft assemblies in the inside of the second positioning plate to rotate, and then drives the first roller shaft assemblies and the second roller shaft assemblies in the inside of the second positioning plate to rotate synchronously through the transmission of the second transmission belt, then the board moves to the back under the transmission of the first roller shaft assemblies and the second roller shaft assemblies in the inside of the first positioning plate, until the top of the board contacts the front of the positioning baffle, then the first hydraulic assembly works to push the first pushing plate, and then pushes the board to the top of the first roller shaft assemblies and the second roller shaft assemblies in the inside of the second positioning plate, so as to realize the ninety-degree turning of the board during the conveying of the board, realize that the board can be conveyed according to the specified route, and facilitate the conveying of the board according to the actual processing requirement.

[0019] 2. The present application moves the board to one side until the board is clamped into the positioning groove under the conveying of the first roller shaft assemblies and the second roller shaft assemblies in the inside of the second positioning plate, at this time the first rotating shaft is driven to rotate by the work of the third servo motor, then the board conveying plate is driven to rotate, and the board is driven to rotate outside the board conveying plate, then approaches the cutting saw blade, and at the same time the second rotating shaft is driven to rotate by the work of the second servo motor, and the cutting saw blade is driven to rotate, so as to cut the board close to the cutting saw blade, realize the conveying and cutting of the board, and the conveying of the board can be completed through the conveying assembly, effectively saves the time required for the operator to position the board to the pushing mechanism, realizes the automation of the cutting of the board, ensures the efficiency of the cutting of the integrated circuit metal base, and facilitates the rapid production of the integrated circuit metal base.

[0020] 3. The cut finished metal plate is completely cut off after the cutting saw blade, and the inside of the cutting saw blade is the designated plate width. Due to the rotation of the plate conveying plate, the plate will slide down along the plate positioning groove under the action of gravity during the rotation of the plate positioning groove to the top of the screening plate. At the same time, the fourth servo motor works to drive the rotating disc to rotate, and then drives the transmission rod to rotate, and then drives the transmission positioning shaft and the screening plate to move forward and backward on the inside of the second fixed plate under the positioning of the square groove at the bottom of the second fixed plate and the positioning strip. The screening plate will move forward and backward on the inside of the second fixed plate to achieve the purpose of shaking the plate on the top of the screening plate, so that the cutting debris is effectively removed.

[0021] 4. The plate cut by the cutting saw blade is the plate with unqualified width, which will be separated by the separating plate, so that the qualified plate and the unqualified plate are separated. The fifth servo motor works to drive the conveying roller shaft to rotate, and then drives the third transmission wheel to rotate and synchronously rotates the two conveying roller shafts under the transmission of the third transmission belt. The top conveying roller shaft will convey the unqualified plate to one side to be collected, and the qualified plate will be conveyed to the bottom inside the separating box by the conveying roller shaft, and then the second hydraulic assembly works to push the second pushing plate to move to the front surface to push the qualified plate out to be collected. The finished plate and the corner material are effectively distinguished, the step of distinguishing them is saved, and the production is ensured to be fast. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a schematic diagram of the overall structure of the present application.

[0023] Figure 2 It is a schematic diagram of the conveying assembly structure of the present application.

[0024] Figure 3 It is a schematic diagram of the first roller shaft assembly structure of the present application.

[0025] Figure 4 It is a schematic diagram of the second roller shaft assembly structure of the present application.

[0026] Figure 5 It is a schematic diagram of the cutting and separating assembly structure of the present application.

[0027] Figure 6 It is a schematic diagram of the cutting assembly structure of the present application.

[0028] Figure 7 It is a schematic diagram of the cutting assembly planar structure of the present application.

[0029] Figure 8 It is a schematic diagram of the screening assembly structure of the present application.

[0030] Figure 9 It is a schematic diagram of the separating assembly structure of the present application.

[0031] Figure 10 Figure 1 is a schematic diagram of the back structure of the separation assembly of the present application.

[0032] The reference signs are: 1, conveying assembly; 101, first supporting leg; 102, first positioning plate; 103, first servo motor; 104, second positioning plate; 105, first roller shaft assembly; 1051, first roller shaft body; 1052, first transmission wheel; 106, second roller shaft assembly; 1061, second roller shaft body; 1062, bevel gear; 1063, second transmission wheel; 107, first fixed plate; 108, first hydraulic assembly; 109, first pushing plate; 1010, positioning baffle; 1011, first transmission belt; 1012, second transmission belt; 2, cutting and separating assembly; 201, cutting assembly; 2011, U-shaped positioning frame; 2012, L-shaped fixed plate; 2013, second servo motor; 2014, third servo motor; 2015, plate conveying plate; 2016, cutting saw blade; 2017, plate positioning groove; 2018, first rotating shaft; 2019, second rotating shaft; 202, screening assembly; 2021, second fixed plate; 2022, first fixed block; 2023, fourth servo motor; 2024, rotating circular plate; 2025, transmission rod; 2026, screening plate; 2027, positioning strip; 2028, transmission positioning shaft; 203, separating assembly; 2031, separating box body; 2032, second supporting leg; 2033, first supporting plate; 2034, separating plate; 2035, third fixed plate; 2036, second hydraulic assembly; 2037, second pushing plate; 2038, third transmission belt; 2039, conveying roller shaft; 20310, fifth servo motor; 20311, second positioning block; 20312, second supporting plate; 20313, third transmission wheel. DETAILED DESCRIPTION

[0033] The technical solutions in the present application will be described clearly and completely below in combination with the drawings in the present application. In addition, the forms of each structure described in the following embodiments are only examples, and the cutting device for integrated circuit accessory production involved in the present application is not limited to each structure described in the following embodiments. All other embodiments obtained by those of ordinary skill in the art without making creative efforts fall within the scope of protection of the present application.

[0034] REFERENCE Figures 1 to 10The application provides a cutting device for integrated circuit accessory production, which comprises a conveying assembly 1, one side of the conveying assembly 1 is fixedly connected with a cutting and separating assembly 2, the conveying assembly 1 comprises a first supporting leg 101, both sides of the top of the first supporting leg 101 are fixedly connected with first positioning plates 102, one side of the top of the first supporting leg 101 is fixedly connected with a first positioning plate 102, one side of the first positioning plate 102 is fixedly connected with a first servo motor 103, the inner sides of the two first positioning plates 102 are provided with first roller shaft assemblies 105, the inner sides of the two first positioning plates 102 and the second positioning plates 104 are provided with the first roller shaft assemblies 105, the inner sides of the two first positioning plates 102 and the second positioning plates 104 are provided with second roller shaft assemblies 106, the cutting and separating assembly 2 comprises a cutting assembly 201, one side of the cutting assembly 201 is fixedly connected with a screening assembly 202, one side of the screening assembly 202 is fixedly connected with a separating assembly 203.

[0035] In a preferred embodiment, the other side of the other first positioning plate 102 on the top of the first supporting leg 101 is fixedly connected with a first fixed plate 107, the top of the first fixed plate 107 is fixedly connected with a first hydraulic assembly 108, one side of the first hydraulic assembly 108 is fixedly connected with a first pushing plate 109, the back of the first positioning plate 102 is fixedly connected with a positioning baffle 1010, one side of the first positioning plate 102 on the top of the first supporting leg 101 is fixedly connected with the first servo motor 103.

[0036] In a preferred implementation, the first roller assembly 105 comprises a first roller body 1051, the other side of the first roller body 1051 is fixedly connected with a first transmission wheel 1052, the second roller assembly 106 comprises a second roller body 1061, one side of the second roller body 1061 is fixedly connected with a bevel gear 1062, the other side of the second roller body 1061 is fixedly connected with a second transmission wheel 1063, the outer side of the first transmission wheel 1052 is sleeved with a first transmission belt 1011, the outer side of the second transmission wheel 1063 is sleeved with a second transmission belt 1012; by pre-treating the plate into a square plate of a specified size, then placing it on the top of the conveying assembly 1, then driving the first roller assembly 105 to rotate through the work of the first servo motor 103 and driving all the first roller assemblies 105 inside the first positioning plate 102 to rotate through the transmission of the first transmission belt 1011, and at the same time driving the second roller assembly 106 inside the first positioning plate 102 to rotate, then driving the second roller assembly 106 inside the second positioning plate 104 to rotate, then driving the first roller assembly 105 and the second roller assembly 106 inside the second positioning plate 104 to rotate synchronously through the transmission of the second transmission belt 1012, then when the plate moves to the back under the transmission of the first roller assembly 105 and the second roller assembly 106 inside the first positioning plate 102, after the top plate contacts the front of the positioning baffle 1010, the first hydraulic assembly 108 works to push the first push plate 109, then the plate is displaced to the top of the first roller assembly 105 and the second roller assembly 106 inside the second positioning plate 104, achieving the ninety-degree turning of the plate during the conveying process, achieving that the plate can be conveyed according to the specified route, and facilitating the conveying of the plate according to the actual processing needs.

[0037] In a preferred implementation, the cutting assembly 201 comprises a U-shaped positioning frame 2011, and the front and back surfaces of the top of the U-shaped positioning frame 2011 are fixedly connected with L-shaped fixing plates 2012, the front surface of the L-shaped fixing plate 2012 at the top of the U-shaped positioning frame 2011 is fixedly connected with a second servo motor 2013, the front surface of the L-shaped fixing plate 2012 at the top of the U-shaped positioning frame 2011 is fixedly connected with a third servo motor 2014, the output shaft of the second servo motor 2013 is in transmission connection with a second rotating shaft 2019, the output shaft of the third servo motor 2014 is in transmission connection with a first rotating shaft 2018, the outer side of the first rotating shaft 2018 is fixedly connected with a plate conveying plate 2015, the outer side of the plate conveying plate 2015 is provided with a plate positioning groove 2017, and the outer side of the second rotating shaft 2019 is fixedly connected with a cutting saw blade 2016; under the conveying of the first roller shaft assembly 105 and the second roller shaft assembly 106 on the inner side of the second positioning plate 104, the plate moves to one side until it is clamped into the plate positioning groove 2017, at this time, the third servo motor 2014 works to drive the first rotating shaft 2018 to rotate, which in turn drives the plate conveying plate 2015 to rotate and drives the plate to rotate on the outer side of the plate conveying plate 2015, and then the plate is close to the cutting saw blade 2016, and at the same time, the second servo motor 2013 works to drive the second rotating shaft 2019 to rotate and drive the cutting saw blade 2016 to rotate, so as to cut the plate close to the cutting saw blade 2016, realize the conveying and cutting of the plate, and the conveying of the plate can be completed by the conveying assembly 1, effectively saving the time needed for the operator to position the plate on the pushing mechanism, realizing the automation of the plate cutting, ensuring the efficiency of the cutting of the integrated circuit metal base, and facilitating the rapid production of the integrated circuit metal base.

[0038] In a preferred implementation, the screening assembly 202 includes a second fixed plate 2021, the bottom of the second fixed plate 2021 is fixedly connected with a positioning strip 2027, the front of the second fixed plate 2021 is fixedly connected with a first fixed block 2022, the front of the first fixed block 2022 is fixedly connected with a fourth servo motor 2023, the output shaft of the fourth servo motor 2023 is in transmission connection with a rotating circular plate 2024, the bottom of the rotating circular plate 2024 is movably connected with a transmission rod 2025, the back of the bottom of the transmission rod 2025 is movably connected with a transmission positioning shaft 2028, the back of the transmission positioning shaft 2028 is fixedly connected with a screening plate 2026; the metal plate after cutting is completely cut off by the cutting saw blade 2016, the plate inside the cutting saw blade 2016 is the specified plate width, due to the rotation of the plate conveying plate 2015, the plate will slide down to the top of the screening plate 2026 along the plate positioning groove 2017 under the action of gravity in the process of the rotation of the plate positioning groove 2017, and at the same time, the fourth servo motor 2023 works to drive the rotating circular plate 2024 to rotate, then drives the rotating circular plate 2024 to rotate, drives the transmission rod 2025 to rotate, and then drives the transmission positioning shaft 2028 and the screening plate 2026 to move back and forth inside the second fixed plate 2021 under the positioning of the second fixed plate 2021 bottom square groove and the positioning strip 2027, the screening plate 2026 will move back and forth inside the second fixed plate 2021, to achieve the purpose of shaking the plate on the top of the screening plate 2026, so that the cutting debris is effectively removed.

[0039] In a preferred implementation form, the separating assembly 203 comprises a separating box 2031, the bottom of the separating box 2031 is fixedly connected with a second supporting leg 2032, one side in the interior of the separating box 2031 is fixedly connected with a second supporting plate 20312, the other side in the interior of the separating box 2031 is fixedly connected with a first supporting plate 2033, the side away from the separating box 2031 of the first supporting plate 2033 is fixedly connected with a separating plate 2034, the back of the separating box 2031 is fixedly connected with a third fixed plate 2035, the top of the third fixed plate 2035 is fixedly connected with a second hydraulic assembly 2036, the front of the second hydraulic assembly 2036 is fixedly connected with a second pushing plate 2037, the front and back of the bottom of the separating box 2031 are fixedly connected with a second positioning block 20311, the inner sides of the two second positioning blocks 20311 and the inner side of the separating box 2031 are movably connected with a conveying roller shaft 2039, the back of the two conveying roller shafts 2039 is fixedly connected with a third transmission wheel 20313, the outer sides of the two third transmission wheels 20313 are sleeved with a third transmission belt 2038, the front of the separating box 2031 is fixedly connected with a fifth servo motor 20310; the plate material cut by the cutting saw blade 2016 is the plate material with unqualified width, which is separated by the separating plate 2034, so that the qualified plate material and the unqualified plate material are separated, and the fifth servo motor 20310 is driven to rotate the conveying roller shaft 2039, then the third transmission wheel 20313 is rotated, and the two conveying roller shafts 2039 are synchronously rotated under the transmission of the third transmission belt 2038, the top conveying roller shaft 2039 conveys the unqualified plate material to one side to be collected, and the qualified plate material is conveyed to the bottom of the interior of the separating box 2031 by the conveying roller shaft 2039, and then the second hydraulic assembly 2036 is driven to move the second pushing plate 2037 to the front to push the qualified plate material out to be collected, so that the finished plate material and the corner material are effectively distinguished, the step of distinguishing them is saved, and rapid production is ensured.

[0040] In a preferred implementation form, the back of the top of the first positioning plate 102 is provided with a square notch, the width of the square notch of the top of the first positioning plate 102 is the same as the width of the first pushing plate 109, the teeth on the outer side of the bevel gear 1062 of the second roller shaft assembly 106 on the inner side of the second positioning plate 104 and the teeth on the outer side of the bevel gear 1062 of the second roller shaft assembly 106 on the inner side of the first positioning plate 102 are intermeshed, the top of the first roller shaft assembly 105, the top of the second roller shaft assembly 106, and the bottom of the notch of the top of the first positioning plate 102 are on the same plane, and the output shaft of the first servo motor 103 is in transmission connection with the first roller shaft assembly 105 on the front of the inner side of the first positioning plate 102.

[0041] In a preferred embodiment, the bottom of the inner side of the plate positioning groove 2017 is in the same plane as the top of the first roller shaft assembly 105 and the second roller shaft assembly 106 when in a horizontal position, the distance between the outer side of the cutting saw blade 2016 and the inner side of the first rotating shaft 2018 is five millimeters, the angle between the line connecting the center of the first rotating shaft 2018 and the center of the second rotating shaft 2019 and the plane is ten degrees larger than the angle between the bottom of the cutting saw blade 2016 and the plane, a square notch is formed in the bottom of the second fixed plate 2021, the square notch in the bottom of the second fixed plate 2021 cooperates with the front and back of the screening plate 2026, and the diameter of the rotating circular plate 2024 is the same as the distance between the front of the screening plate 2026 and the second fixed plate 2021.

[0042] In a preferred embodiment, the bottom of the inner side of the separation box 2031 is attached to one side of the screening plate 2026, the separation plate 2034 is in the same plane as the cutting saw blade 2016 on the front and back of the outer side of the second rotating shaft 2019, the thickness of the separation plate 2034 is the same as the thickness of the second rotating shaft 2019, the separation assembly 203 is located on the bottom of the conveying roller shaft 2039, which is in the same plane as the bottom of the inner side of the separation box 2031, the conveying roller shaft 2039 on the top of the separation assembly 203 is in transmission connection with the fifth servo motor 20310, and is in the same plane as the top of the second supporting plate 20312 and the first supporting plate 2033.

[0043] The working principle of the present application is as follows: when cutting metal plates, the plates are first pretreated into square plates of a specified size, then placed on the top of the conveying assembly 1, then the first servo motor 103 is operated to drive the first roller shaft assembly 105 to rotate and drive all the first roller shaft assemblies 105 inside the first positioning plate 102 to rotate through the transmission of the first transmission belt 1011, and at the same time drive the second roller shaft assembly 106 inside the first positioning plate 102 to rotate, then drive the second roller shaft assembly 106 inside the second positioning plate 104 to rotate, then drive the first roller shaft assembly 105 and the second roller shaft assembly 106 inside the second positioning plate 104 to rotate synchronously through the transmission of the second transmission belt 1012, then the plate moves towards the back under the drive of the first roller shaft assembly 105 and the second roller shaft assembly 106 inside the first positioning plate 102, and after the top of the plate contacts the front of the positioning baffle 1010, the first hydraulic assembly 108 is operated to push the first pushing plate 109, and then the plate is displaced to the top of the first roller shaft assembly 105 and the second roller shaft assembly 106 inside the second positioning plate 104, achieving a ninety-degree turning of the plate during conveying, and realizing that the plate can be conveyed according to a specified route, which is convenient for conveying the plate according to actual processing needs.

[0044] When the plate moves to one side under the conveying of the first roller shaft assembly 105 and the second roller shaft assembly 106 inside the second positioning plate 104 until it is clamped into the plate positioning groove 2017, the third servo motor 2014 works to drive the first rotating shaft 2018 to rotate, which in turn drives the plate conveying plate 2015 to rotate and drives the plate to rotate outside the plate conveying plate 2015, and then approaches the cutting saw blade 2016, and at the same time, the second servo motor 2013 works to drive the second rotating shaft 2019 to rotate and drive the cutting saw blade 2016 to rotate, cutting the plate close to the cutting saw blade 2016, realizing the cutting and conveying of the plate, and the conveying of the plate can be completed by the conveying assembly 1, effectively saving the time needed for the operator to position the plate on the pushing mechanism, realizing the automation of plate cutting, ensuring the efficiency of cutting the integrated circuit metal base, and facilitating the rapid production of the integrated circuit metal base.

[0045] After the completed cutting of the metal plate, the plate inside the cutting saw blade 2016 is the specified plate width. Since the rotation of the plate conveying plate 2015 will cause the plate to slide down the plate positioning groove 2017 to the top of the screening plate 2026 during the rotation of the plate positioning groove 2017 under the action of gravity, and at the same time, the fourth servo motor 2023 works to drive the rotating circular plate 2024 to rotate, which in turn drives the rotating circular plate 2024 to rotate, drives the transmission rod 2025 to rotate, and then drives the transmission positioning shaft 2028 and the screening plate 2026 to move back and forth inside the second fixed plate 2021 under the positioning of the square groove at the bottom of the second fixed plate 2021 and the positioning strip 2027, the screening plate 2026 will move back and forth inside the second fixed plate 2021, achieving the purpose of shaking the plate on the top of the screening plate 2026, so that the cutting debris is effectively removed.

[0046] The plate cut by the cutting saw blade 2016 on the front and back surfaces is the plate with unqualified width, which will be separated by the separation plate 2034, so that the qualified plate and the unqualified plate are separated, and the fifth servo motor 20310 works to drive the conveying roller shaft 2039 to rotate, which in turn drives the third transmission wheel 20313 to rotate and makes the two conveying roller shafts 2039 rotate synchronously under the transmission of the third transmission belt 2038. The top conveying roller shaft 2039 will convey the unqualified plate to one side to be collected, and the qualified plate will be conveyed by the conveying roller shaft 2039 to the bottom inside the separation box 2031, and then the second hydraulic assembly 2036 works to push the second pushing plate 2037 to move to the front, pushing the qualified plate out to be collected, completing the effective differentiation of the finished plate and the corner material, saving the step of differentiating them, and ensuring rapid production.

[0047] Finally should be explained a few points are: first, in the description of the present application, it should be pointed out that, unless otherwise specified and limited, the term "installation", "connected", "connection" should be broad, can be mechanical or electrical connection, but also can be two elements inside the communication, can be directly connected, "up", "down", "left", "right" and so on, only for indicating the relative position relationship, when the absolute position of the described object changes, the relative position relationship may change;

[0048] Second: the present application discloses the drawings in the embodiment, only involves the structure related to the present application, other structures can refer to the usual design, in the case of no conflict, the same embodiment and different embodiments of the present application can be combined with each other;

[0049] Finally: the above only for the preferred embodiment of the present application, and not for limiting the present application, any modification, equivalent replacement, improvement, etc. within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A cutting apparatus for integrated circuit package production, characterized by: The utility model provides cutting and separating assembly (2) is connected to one side of conveying assembly (1), and conveying assembly (1) includes first support leg (101), and both sides of the top of first support leg (101) are fixedly connected with first positioning plate (102), and one side of first positioning plate (102) on the top of first support leg (101) is fixedly connected with first servo motor (103), and the inner side of two first positioning plates (102) is installed with first roller shaft subassembly (105), and the back of one side of first positioning plate (102) on the top of first support leg (101) is fixedly connected with two second positioning plates (104), and the inner side of two first positioning plates (102) and second positioning plate (104) is installed with first roller shaft subassembly (105), and the inner side of two first positioning plates (102) and second positioning plate (104) is installed with second roller shaft subassembly (106), and cutting and separating assembly (2) includes cutting assembly (201), and one side of cutting assembly (201) is fixedly connected with screening assembly (202), and one side of screening assembly (202) is fixedly connected with separating assembly (203); The utility model provides cutting and separating assembly (2) is connected to one side of conveying assembly (1), and conveying assembly (1) includes first support leg (101), and both sides of the top of first support leg (101) are fixedly connected with first positioning plate (102), and one side of first positioning plate (102) on the top of first support leg (101) is fixedly connected with first servo motor (103), and the inner side of two first positioning plates (102) is installed with first roller shaft subassembly (105), and the back of one side of first positioning plate (102) on the top of first support leg (101) is fixedly connected with two second positioning plates (104), and the inner side of two first positioning plates (102) and second positioning plate (104) is installed with first roller shaft subassembly (105), and the inner side of two first positioning plates (102) and second positioning plate (104) is installed with second roller shaft subassembly (106), and cutting and separating assembly (2) includes cutting assembly (201), and one side of cutting assembly (201) is fixedly connected with screening assembly (202), and one side of screening assembly (202) is fixedly connected with separating assembly (203); The utility model provides cutting and separating assembly (2) is connected to one side of conveying assembly (1), and conveying assembly (1) includes first support leg (101), and both sides of the top of first support leg (101) are fixedly connected with first positioning plate (102), and one side of first positioning plate (102) on the top of first support leg (101) is fixedly connected with first servo motor (103), and the inner side of two first positioning plates (102) is installed with first roller shaft subassembly (105), and the back of one side of first positioning plate (102) on the top of first support leg (101) is fixedly connected with two second positioning plates (104), and the inner side of two first positioning plates (102) and second positioning plate (104) is installed with first roller shaft subassembly (105), and the inner side of two first positioning plates (102) and second positioning plate (104) is installed with second roller shaft subassembly (106), and cutting and separating assembly (2) includes cutting assembly (201), and one side of cutting assembly (201) is fixedly connected with screening assembly (202), and one side of screening assembly (202) is fixedly connected with separating assembly (203) The separation assembly (203) comprises a separation box (2031), the bottom of the separation box (2031) is fixedly connected with a second supporting leg (2032), one side in the separation box (2031) is fixedly connected with a second supporting plate (20312), the other side in the separation box (2031) is fixedly connected with a first supporting plate (2033), the side, away from the separation box (2031), of the first supporting plate (2033) is fixedly connected with a separation plate (2034), the back of the separation box (2031) is fixedly connected with a third fixed plate (2035), the top of the third fixed plate (2035) is fixedly connected with a second hydraulic assembly (2036), the front of the second hydraulic assembly (2036) is fixedly connected with a second pushing plate (2037), the front and back of the bottom of the separation box (2031) are fixedly connected with a second positioning block (20311), the inner sides of the two second positioning blocks (20311) and the inner side of the separation box (2031) are movably connected with conveying roller shafts (2039), the back of the two conveying roller shafts (2039) is fixedly connected with third transmission wheels (20313), the outer sides of the two third transmission wheels (20313) are sleeved with third transmission belts (2038), and the front of the separation box (2031) is fixedly connected with a fifth servo motor (20310).

2. The cutting apparatus for integrated circuit package production according to claim 1, characterized by: The other side of the first positioning plate (102) on the other side of the top of the first supporting leg (101) is fixedly connected with a first fixed plate (107), the top of the first fixed plate (107) is fixedly connected with a first hydraulic assembly (108), one side of the first hydraulic assembly (108) is fixedly connected with a first pushing plate (109), the back of the first positioning plate (102) is fixedly connected with a positioning baffle (1010), and one side of the first positioning plate (102) on one side of the top of the first supporting leg (101) is fixedly connected with a first servo motor (103).

3. The cutting apparatus for integrated circuit package production according to claim 2, characterized by: The first roller shaft assembly (105) comprises a first roller shaft body (1051), the other side of the first roller shaft body (1051) is fixedly connected with a first transmission wheel (1052), the second roller shaft assembly (106) comprises a second roller shaft body (1061), one side of the second roller shaft body (1061) is fixedly connected with a bevel gear (1062), the other side of the second roller shaft body (1061) is fixedly connected with a second transmission wheel (1063), the outer side of the first transmission wheel (1052) is sleeved with a first transmission belt (1011), and the outer side of the second transmission wheel (1063) is sleeved with a second transmission belt (1012).

4. The cutting apparatus for integrated circuit package production according to claim 1, wherein: The cutting assembly (201) includes a U-shaped positioning frame (2011), the front and back of the top of the U-shaped positioning frame (2011) are fixedly connected with L-shaped fixed plates (2012), the front of the L-shaped fixed plate (2012) on the top of the U-shaped positioning frame (2011) is fixedly connected with a second servo motor (2013), the front of the L-shaped fixed plate (2012) on the top of the U-shaped positioning frame (2011) is fixedly connected with a third servo motor (2014), the output shaft of the second servo motor (2013) is in transmission connection with a second rotating shaft (2019), the output shaft of the third servo motor (2014) is in transmission connection with a first rotating shaft (2018), the outer side of the first rotating shaft (2018) is fixedly connected with a plate conveying plate (2015), the outer side of the plate conveying plate (2015) is provided with a plate positioning groove (2017), and the outer side of the second rotating shaft (2019) is fixedly connected with a cutting saw blade (2016).

5. The cutting apparatus for integrated circuit package production according to claim 3, wherein: The back of the top of the first positioning plate (102) is provided with a square notch, the width of the square notch on the top of the first positioning plate (102) is the same as the width of the first push plate (109), the teeth on the outer side of the bevel gear (1062) of the second roller shaft assembly (106) on the inner side of the second positioning plate (104) are in intermeshing connection with the teeth on the outer side of the bevel gear (1062) of the second roller shaft assembly (106) on the inner side of the first positioning plate (102), the top of the first roller shaft assembly (105), the top of the second roller shaft assembly (106) and the bottom of the notch on the top of the first positioning plate (102) are on the same plane, and the output shaft of the first servo motor (103) is in transmission connection with the first roller shaft assembly (105) on the inner side of the front of the first positioning plate (102).

6. The cutting apparatus for integrated circuit package production according to claim 4, wherein: The bottom of the inner side of the plate positioning groove (2017) is on the same plane with the top of the first roller shaft assembly (105) and the top of the second roller shaft assembly (106) when the plate positioning groove (2017) is in a horizontal position, the distance between the outer side of the cutting saw blade (2016) and the inner side of the first rotating shaft (2018) is five millimeters, the included angle between the line connecting the center of the first rotating shaft (2018) and the center of the second rotating shaft (2019) and the plane is greater than the included angle between the bottom of the cutting saw blade (2016) and the plane by ten degrees, the bottom of the second fixed plate (2021) is provided with a square notch, the square notch on the bottom of the second fixed plate (2021) is matched with the front and back of the screening plate (2026), and the diameter of the rotating circular plate (2024) is the same as the distance between the front of the screening plate (2026) and the second fixed plate (2021).

7. The cutting apparatus for integrated circuit package production according to claim 4, wherein: The bottom of the separation box (2031) is attached to one side of the screening plate (2026), the separation plate (2034) is in the same plane with the cutting saw blade (2016) on the outer side of the second rotating shaft (2019), the thickness of the separation plate (2034) is the same as the thickness of the second rotating shaft (2019), the conveying roller shaft (2039) at the bottom of the separation assembly (203) is in the same plane with the bottom of the separation box (2031), the conveying roller shaft (2039) at the top of the separation assembly (203) is drivingly connected with the fifth servo motor (20310) and is in the same plane with the top of the second bearing plate (20312) and the first bearing plate (2033).

Citation Information

Patent Citations

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