Reversible glass fiber inspection apparatus

By designing a belt conveyor and a motor-driven flip rod and brush assembly, the problem that existing defect inspection equipment cannot automatically flip the fiberglass board is solved. Automatic flipping and cleaning are achieved, reducing manual labor intensity and improving detection efficiency and accuracy.

CN118545477BActive Publication Date: 2025-10-17JIUJIANG HONGLIDA COMPOSITE MATERIAL MFG CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202410607234.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-16
Publication Date
2025-10-17
Estimated Expiration
2044-05-16

AI Technical Summary

Technical Problem

Existing defect inspection equipment cannot automatically flip the fiberglass board, resulting in high manual labor intensity and low inspection efficiency.

Method used

A reversible flaw detection device including a belt conveyor, a flaw detector body and auxiliary components was designed. The motor drives the flip rod and brush assembly to realize automatic flipping and cleaning of the glass fiber board, reducing manual operation.

Benefits of technology

The automatic turning over and cleaning of the glass fiber board is realized, which reduces the labor intensity and improves the detection efficiency and the accuracy of defect detection.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118545477B_ABST
    Figure CN118545477B_ABST
Patent Text Reader

Abstract

The application discloses a kind of glass fiber processing with overturning flaw detection equipment, it is related to glass fiber processing technical field, its technical scheme is: including: rack, rack top is set to open, rack top is fixedly connected with two bottom plates, bottom plate is used to load flaw detection equipment parts;Outer frame, it is set to two, two outer frames are fixedly connected at the top of two bottom plates, two outer frames are all provided with two through grooves inside;The beneficial effects of the application are that the left side of the belt conveyor transports the glass fiber plate into the left side of the two turnover rods, then the control motor can be rotated to make the shaft one and the shaft three rotate, and then the roller and the turnover rod can be driven to rotate, so that the two turnover rods on the left and right sides can be exchanged, and the glass fiber plate can be turned over, so that the device has the function of turning over, and manual turning over is not needed during flaw detection, which can greatly reduce the labor intensity of workers.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of glass fiber processing, in particular to a reversible flaw detection equipment for glass fiber processing. BACKGROUND

[0002] Glass fiber board is also called glass fiber plate, which is generally used as a soft package base layer and is wrapped with cloth, leather and other materials on the outside to make an attractive wall or ceiling decoration. It is widely used and has the characteristics of sound absorption, sound insulation, heat insulation, environmental protection and flame retardation. The glass fiber board is composed of glass fiber material and high-heat-resistant composite material and does not contain harmful stone wool components. During the processing of the glass fiber board, a flaw detection equipment is needed to detect the surface of the glass fiber board to determine whether there are cracks, pits and other defects.

[0003] The existing flaw detection equipment does not have the function of turning over the glass fiber plate during use, so manual turning is required during detection, which not only increases the labor intensity of workers but also reduces the efficiency of flaw detection. Therefore, improvement is needed.

[0004] Therefore, it is necessary to invent a reversible flaw detection equipment for glass fiber processing. SUMMARY

[0005] Therefore, the present application provides a reversible flaw detection equipment for glass fiber processing to solve the problems in the background art.

[0006] In order to achieve the above-mentioned purpose, the present application provides the following technical scheme: a reversible flaw detection equipment for glass fiber processing, comprising:

[0007] A rack is provided, the top of which is open, and two bottom plates are fixedly connected to the top of the rack, which are used to load flaw detection equipment parts;

[0008] Two outer frames are provided, and each outer frame is fixedly connected to the top of a bottom plate, and two through grooves are formed in each outer frame;

[0009] Two belt conveyors are provided, and each belt conveyor is installed in an outer frame, and the two belt conveyors are used to convey and move the glass fiber plate;

[0010] Two flaw detectors are provided, and each flaw detector is located on the top of a belt conveyor, and two connection plates are fixedly connected to the bottom of each flaw detector and are fixedly connected to the outer frame;

[0011] An auxiliary assembly is installed on the top of the bottom plate and is used for cleaning and turning over the glass fiber plate.

[0012] Preferably, the auxiliary component includes two U-shaped frames, and the two U-shaped frames are respectively fixedly connected to the outside of the two outer frames, and the two U-shaped frames are fixedly connected to the inside of the two outer frames, and the two connecting rods are each provided with a moving block on the outside, and the moving block is slidably connected to the connecting rod, and the bottom of the two moving blocks are fixedly connected to bristles, and the top of the two U-shaped frames is provided with a through groove, and the top of the two moving blocks is fixedly connected to a moving plate, and the two moving plates pass through the two through grooves respectively, and the moving plate is slidably connected to the through groove.

[0013] Preferably, the front sides of the two U-shaped frames are fixedly connected to support blocks, the interiors of the two support blocks are embedded with rotating shaft 1, the tops of the two rotating shaft 1s are fixedly connected to turntables, the tops of the two turntables are fixedly connected to connecting rod 1, the tops of the two movable plates are fixedly connected to connecting rod 2, the outsides of the two connecting rods 1 are sleeved with pull rods, the rear ends of the two pull rods are respectively sleeved on the outsides of the two connecting rods 2, and the pull rods are connected to connecting rod 1 and connecting rod 2 through bearings.

[0014] Preferably, the tops of the two base plates are fixedly connected to support plates, and the two support plates are respectively located on the front sides of the two outer frames, one side of one of the support plates is fixedly connected to a motor, and the output shaft of the motor is fixedly connected to a second rotating shaft, and the second rotating shaft passes through the two support plates, and the external fixed sleeve of the second rotating shaft is provided with two bevel gears 1, and one side of the two bevel gears 1 is provided with a bevel gear 2 meshingly connected thereto, and the two bevel gears 2 are respectively connected to the bottom ends of the two rotating shafts 1 and connected thereto through a one-way bearing.

[0015] Preferably, the front sides of the two outer frames and the rear sides of the two outer frames are fixedly connected to a fixing plate, a rotating shaft three is embedded in the two fixing plates, a roller is sleeved on the outside of the rotating shaft three, the roller is connected to the rotating shaft three through a one-way bearing, two flip rods are fixedly connected on both sides of the roller, the four flip rods are respectively located at the top of the four through grooves, the front end of the rotating shaft three is fixedly connected to a bevel gear three, the front side of the bevel gear three is provided with a bevel gear four meshingly connected thereto, and the bevel gear four is fixedly sleeved on the outside of the rotating shaft two.

[0016] Preferably, the top of the rear side of the frame is fixedly connected to a shell, the rear end of the rotating shaft three extends to the inside of the shell, the outside of the rotating shaft three is provided with fan blades, the fan blades are connected to the rotating shaft three through a one-way bearing, the fan blades are located inside the shell, one side of the two U-shaped frames are fixedly connected to the shell, and the bottom of the two shells are provided with a plurality of through holes evenly distributed in a straight line.

[0017] Preferably, the rear sides of the two shells are fixedly embedded with pipes 1, the rear ends of the two pipes 1 are fixedly embedded in the front side of the shell, and the rear side of the shell is fixedly embedded with a hose.

[0018] Preferably, the rotating shaft one is connected with the support block through a bearing, and the rotating shaft two is connected with the two support plates through a bearing.

[0019] Preferably, the rotating shaft three is connected with the two fixed plates through a bearing.

[0020] The beneficial effects of the present application are:

[0021] 1、The left belt conveyor of the present application can convey the glass fiber plate into the two turnover levers on the left side, and then the rotation of the rotating shaft one and the rotating shaft three can be controlled by the forward rotation of the motor, so as to drive the rollers and the turnover levers to rotate, so that the two turnover levers on the left and right sides can be exchanged, and the glass fiber plate can be turned over, so that the present device has the function of turning over, and manual turning over is not needed during the defect inspection, which can greatly reduce the labor intensity of manual work.

[0022] 2、The two rotating shafts two can be rotated by the reverse rotation of the motor, so as to rotate the two rotating discs, and then the two moving blocks can be continuously moved forward and backward under the action of the two pull rods, so as to continuously move the two bristles forward and backward, so as to clean the impurities generated on the glass fiber plate during processing, so as to ensure the accuracy of the defect inspection, and the reverse rotation of the motor can also rotate the fan blades, so as to suck away the cleaned impurities, so as to avoid the impurities floating in the air and adhering to the glass fiber plate again. BRIEF DESCRIPTION OF DRAWINGS

[0023] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only exemplary, and for those skilled in the art, other drawings can be derived from the provided drawings without creative labor.

[0024] The structures, proportions, sizes, etc. shown in the present specification are only used to cooperate with the content disclosed in the specification, so that those skilled in the art can understand and read, and are not used to limit the limiting conditions of the implementation of the present application, so they do not have technical significance. Any modification of structure, change of proportion relationship or adjustment of size, without affecting the effects and purposes that can be achieved by the present application, should still fall within the scope of the technical content disclosed by the present application.

[0025] Figure 1 The overall structure schematic diagram provided by the present application is shown in the following figure:

[0026] Figure 2 The enlarged view of A in the present application is shown in the following figure: Figure 1 ​

[0027] Figure 3 The front view provided by the present application provides a front view;

[0028] Figure 4 The front view provided by the present application provides Figure 3 The enlarged view at B in the front view provided by the present application;

[0029] Figure 5 The side view provided by the present application provides a side view;

[0030] Figure 6 The motor, shaft two, shaft two, turntable, pull rod, moving block, brush, fan leaf, and turnover rod provided by the present application provide a perspective view of the components;

[0031] Figure 7 The rear view provided by the present application provides a rear view;

[0032] In the figure: 1 frame, 2 bottom plate, 3 outer frame, 4 belt conveyor, 5 flaw detector body, 6 adapter plate, 7 U-shaped frame, 8 connecting rod, 9 moving block, 10 brush, 11 moving plate, 12 support block, 13 shaft one, 14 turntable, 15 connecting rod one, 16 connecting rod two, 17 pull rod, 18 support plate, 19 motor, 20 shaft two, 21 bevel gear one, 22 bevel gear two, 23 fixed plate, 24 shaft three, 25 roller, 26 turnover rod, 27 bevel gear three, 28 bevel gear four, 29 outer shell, 30 fan leaf, 31 shell, 32 through hole, 33 pipeline one, 34 hose, 35 through slot, 36 through slot. DETAILED DESCRIPTION

[0033] The preferred embodiments of the present application are described below in conjunction with the accompanying drawings, and it should be understood that the preferred embodiments described herein are only used to illustrate and explain the present application, and are not used to limit the present application.

[0034] Referring to the accompanying drawings Figure 1 - the accompanying drawings Figure 7 The present application provides a turnover flaw detection equipment for glass fiber processing, which comprises:

[0035] The frame 1 is open at the top, and two bottom plates 2 are fixedly connected to the top of the frame 1, and the bottom plates 2 are used to load flaw detection equipment parts;

[0036] The outer frame 3 is provided with two outer frames 3, which are respectively fixedly connected to the top of the two bottom plates 2, and two through slots 35 are formed in the inner part of each outer frame 3;

[0037] The belt conveyor 4 is provided with two belt conveyors 4, which are respectively installed in the inner part of the two outer frames 3, and the two belt conveyors 4 are used to convey glass fiber plates;

[0038] The flaw detector bodies 5 are arranged at the top of the two belt conveyors 4, and the bottom of each of the flaw detector bodies 5 is fixedly connected with two link plates 6 which are fixedly connected with the outer frames 3;

[0039] The auxiliary assembly is arranged at the top of the bottom plate 2, and is used for cleaning and overturning the glass fiber plate;

[0040] The auxiliary assembly comprises two U-shaped frames 7 which are fixedly connected with the outer frames 3, and the inner part of each of the U-shaped frames 7 is fixedly connected with a connecting rod 8, the outer part of each of the connecting rods 8 is sleeved with a moving block 9 which is slidably connected with the connecting rod 8, the bottom of each of the moving blocks 9 is fixedly connected with a brush 10, the top of each of the U-shaped frames 7 is provided with a through slot 36, the top of each of the moving blocks 9 is fixedly connected with a moving plate 11 which penetrates through the through slot 36 and is slidably connected with the through slot 36, the front side of each of the U-shaped frames 7 is fixedly connected with a supporting block 12, the inner part of each of the supporting blocks 12 is embedded with a rotating shaft 13, the top end of each of the rotating shafts 13 is fixedly connected with a rotating disc 14, the top of each of the rotating discs 14 is fixedly connected with a connecting rod 15, the top of each of the moving plates 11 is fixedly connected with a connecting rod 16, the outer part of each of the connecting rods 15 is sleeved with a pull rod 17, the rear end of each of the pull rods 17 is sleeved with the outer part of each of the connecting rods 16, the pull rod 17 is connected with the connecting rod 15 and the connecting rod 16 through a bearing, the top of each of the bottom plates 2 is fixedly connected with a supporting plate 18 which is arranged at the front side of each of the outer frames 3, one of the supporting plates 18 is fixedly connected with a motor 19 on one side, the output shaft of the motor 19 is fixedly connected with a rotating shaft 20 which penetrates through the supporting plates 18, the outer part of the rotating shaft 20 is fixedly sleeved with two bevel gears 21, each of the bevel gears 21 is provided with a bevel gear 22 which is meshingly connected with the bevel gear 21, and each of the bevel gears 22 is connected with the bottom end of each of the rotating shafts 13 through a one-way bearing;

[0041] In this embodiment, the left belt conveyor 4 conveys the glass fiber plate into the left two overturning rods 26, and then the motor 19 is controlled to rotate in the positive direction to rotate the rotating shaft 13 and the rotating shaft 24, so as to drive the roller 25 and the overturning rod 26 to rotate, so as to exchange the positions of the two overturning rods 26 on the left and right sides, and thus the glass fiber plate can be overturned and turned over;

[0042] Wherein, in order to realize the purpose of cleaning impurities, the device uses the following technical solutions to realize: two outer frame 3 front side and two outer frame 3 rear side are fixedly connected with fixed plate 23, two fixed plate 23 inside embedded with shaft three 24, shaft three 24 outside set with roll shaft 25, roll shaft 25 and shaft three 24 through one way bearing connection, roll shaft 25 both sides are fixedly connected with two turnover rod 26, four turnover rod 26 are located at four through slot 35 top, shaft three 24 front end fixedly connected with bevel gear three 27, bevel gear three 27 front side is equipped with the bevel gear four 28 meshing connection, bevel gear four 28 fixedly set in the outside of shaft two 20, rack 1 rear side top fixedly connected with shell 29, shaft three 24 rear end extends to the inside of shell 29, shaft three 24 outside set with fan blade 30, fan blade 30 and shaft three 24 through one way bearing connection, fan blade 30 is located in the inside of shell 29, two U-shaped frame 7 one side are fixedly connected with shell 31, two shell 31 bottom are equipped with multiple straight line shape evenly distributed through hole 32, two shell 31 rear side are fixedly embedded with pipeline one 33, two pipeline one 33 rear end are fixedly embedded in the front side of shell 29, shell 29 rear side fixedly embedded with hose 34, motor 19 reverse rotation can make two shaft two 20 rotation, in turn make two rotating disc 14 rotation, then under the action of two pull rod 17 can make two moving block 9 constantly move forward and backward, in turn can make two brush 10 constantly move forward and backward, this can clean the impurities generated on the glass fiber plate processing, and motor 19 reverse rotation can also make fan blade 30 rotation, this can clean the impurities suction, in turn avoid impurities in the air floating again adhered to the glass fiber plate on;

[0043] Wherein, in order to realize the purpose of reducing wear and tear, the device uses the following technical solutions to realize: shaft one 13 and support block 12 are connected through bearing, shaft two 20 and two support plate 18 are connected through bearing, shaft three 24 and two fixed plate 23 are connected through bearing, which can reduce wear and tear.

[0044] The use process of the present application is as follows: when the present application is used, the glass fiber plate is placed on the left belt conveyor 4, and then the left belt conveyor 4 is controlled to work to convey the glass fiber plate to the right, so that it passes through the left flaw detector body 5, so that the glass fiber plate can be inspected for defects on one side. When the left belt conveyor 4 is conveying, the glass fiber plate can be moved into the left two turnover rods 26, and then the motor 19 is controlled to rotate forward to rotate the shaft one 13, which drives the two bevel gears one 21 and the bevel gear four 28 to rotate, the two bevel gears one 21 rotate to drive the two bevel gears two 22 to rotate, the bevel gear four 28 rotates to drive the bevel gear three 27 to rotate, the bevel gear three 27 rotates to drive the shaft three 24 to rotate, since the bevel gear two 22 and the shaft two 20 are connected by a one-way bearing, and the fan blade 30 and the shaft three 24 are also connected by a one-way bearing, so when the motor 19 rotates forward, the shaft two 20 and the fan blade 30 do not rotate, and the shaft three 24 rotates to rotate the roller 25, which rotates the turnover rod 26, so that the two turnover rods 26 on the left and right sides are exchanged, so that the glass fiber plate rotates clockwise, and the glass fiber plate can be turned over, so that the device has the function of turning over, and manual turning over is not needed during inspection, which can greatly reduce the labor intensity of manual work. After turning over, the right belt conveyor 4 is controlled to work to convey the glass fiber plate to the right, and then pass through the right flaw detector body 5, so that the other side can be inspected for defects.

[0045] When the glass fiber plate does not move into the turnover rod 26 from the bottom of the flaw detector body 5, the motor 19 is controlled to reverse, since the roller 25 and the shaft three 24 are also connected by a one-way bearing, so when the motor 19 reverses, the roller 25 does not rotate, and the two shafts two 20 and the fan blade 30 rotate, the two shafts one 13 rotate to drive the two rotating discs 14 to rotate, since the pull rod 17 and the connecting rod one 15 and the connecting rod two 16 are connected by bearings and can move, so that the two rotating discs 14 rotate under the action of the two pull rods 17 to constantly pull the moving plate 11 and the moving block 9 to move back and forth, and the two brush hairs 10 constantly move back and forth, so that the impurities generated during the processing of the glass fiber plate can be cleaned during the movement of the glass fiber plate, so as to ensure the accuracy of the inspection, and the rotation of the fan blade 30 generates sufficient suction, and then under the action of the through hole 32, the shell 29, the pipeline one 33, the shell 29 and the hose 34, the cleaned impurities can be sucked away, thereby avoiding the impurities floating in the air and adhering to the glass fiber plate again. When used, the hose 34 can be inserted into water, so that the impurities can be immersed in water.

[0046] The above merely is the preferred embodiment of the present application, any skilled person in the art can modify the present application by using the above-mentioned technical solutions or modify it into equivalent technical solutions. Therefore, any simple modification or equivalent replacement according to the technical solutions of the present application is within the scope of the present application.

Claims

1. A reversible defect detection device for glass fiber processing, characterized in that: include: A frame (1), wherein the top of the frame (1) is configured to be open, and two bottom plates (2) are fixedly connected to the top of the frame (1), and the bottom plates (2) are used to load parts of the defect inspection equipment; The outer frames (3) are provided in two numbers, the two outer frames (3) are respectively fixedly connected to the tops of the two bottom plates (2), and two through grooves (35) are provided inside the two outer frames (3); The belt conveyor (4) is provided in two pieces, and the two belt conveyors (4) are respectively installed inside the two outer frames (3), and the two belt conveyors (4) are used to transport the glass fiber board; The flaw detector body (5) is provided in two pieces, the two flaw detector bodies (5) are respectively located on the top of the two belt conveyors (4), the bottoms of the two flaw detector bodies (5) are fixedly connected to two connecting plates (6), and the two connecting plates (6) are fixedly connected to the outer frame (3); An auxiliary component mounted on top of the base plate (2) and used for cleaning and turning the fiberglass board; The auxiliary component comprises two U-shaped frames (7), the two U-shaped frames (7) are respectively fixedly connected to the outside of the two outer frames (3), the inside of the two U-shaped frames (7) are fixedly connected to the connecting rod (8), the outside of the two connecting rods (8) are sleeved with a moving block (9), the moving block (9) is slidably connected to the connecting rod (8), the bottom of the two moving blocks (9) are fixedly connected to the bristles (10), the top of the two U-shaped frames (7) are provided with a through groove (36), and the two moving blocks (9) are fixedly connected to the outside of the two outer frames (3). The top of each block (9) is fixedly connected to a movable plate (11), and the two movable plates (11) respectively penetrate two through slots (36). The movable plates (11) are slidably connected to the through slots (36). The front sides of the two U-shaped frames (7) are fixedly connected to support blocks (12). A rotating shaft (13) is embedded in the interior of the two support blocks (12). The tops of the two rotating shafts (13) are fixedly connected to a turntable (14), and the tops of the two turntables (14) are fixedly connected to a connecting rod (15). The tops of the two movable plates (11) are fixedly connected to the second connecting rod (16), the outsides of the two connecting rods (15) are sleeved with a pull rod (17), the rear ends of the two pull rods (17) are sleeved on the outsides of the two connecting rods (16), the pull rods (17) are connected to the first connecting rod (15) and the second connecting rod (16) through bearings, the tops of the two bottom plates (2) are fixedly connected to the support plates (18), the two support plates (18) are respectively located on the front sides of the two outer frames (3), one of which is One side of the support plate (18) is fixedly connected to a motor (19), and the output shaft of the motor (19) is fixedly connected to a second rotating shaft (20). The second rotating shaft (20) passes through the two support plates (18). The outer fixed sleeve of the second rotating shaft (20) is provided with two bevel gears (21). One side of the two bevel gears (21) is provided with a second bevel gear (22) meshing with the two bevel gears (21). The two bevel gears (22) are respectively connected to the bottom ends of the two rotating shafts (13) and are connected to the two rotating shafts (13) through a one-way bearing.

2. The reversible defect detection device for glass fiber processing according to claim 1, characterized in that: The front sides of the two outer frames (3) and the rear sides of the two outer frames (3) are fixedly connected with a fixing plate (23), the interior of the two fixing plates (23) is embedded with a rotating shaft three (24), the outer sleeve of the rotating shaft three (24) is provided with a roller (25), the roller (25) is connected to the rotating shaft three (24) through a one-way bearing, and two flip rods (26) are fixedly connected to both sides of the roller (25), and the four flip rods (26) are respectively located at the top of the four through-grooves (35), and the front end of the rotating shaft three (24) is fixedly connected with a bevel gear three (27), and the front side of the bevel gear three (27) is provided with a bevel gear four (28) meshing with it, and the bevel gear four (28) is fixedly sleeved on the outside of the rotating shaft two (20).

3. The reversible defect inspection device for glass fiber processing according to claim 2, characterized in that: The top of the rear side of the frame (1) is fixedly connected to a housing (29), the rear end of the rotating shaft (24) extends into the interior of the housing (29), the exterior of the rotating shaft (24) is provided with a fan blade (30), the fan blade (30) is connected to the rotating shaft (24) via a one-way bearing, the fan blade (30) is located inside the housing (29), one side of each of the two U-shaped frames (7) is fixedly connected to a housing (31), and the bottom of each of the two housings (31) is provided with a plurality of through holes (32) evenly distributed in a straight line.

4. The reversible defect inspection device for glass fiber processing according to claim 3, characterized in that: The rear sides of the two shells (31) are fixedly embedded with a pipe (33), the rear ends of the two pipes (33) are fixedly embedded in the front side of the shell (29), and the rear side of the shell (29) is fixedly embedded with a hose (34).

5. The reversible defect inspection device for glass fiber processing according to claim 2, characterized in that: The first rotating shaft (13) is connected to the support block (12) via a bearing, and the second rotating shaft (20) is connected to the two support plates (18) via a bearing.

6. The reversible defect inspection device for glass fiber processing according to claim 2, characterized in that: The rotating shaft 3 (24) is connected to the two fixed plates (23) via bearings.

Citation Information

Patent Citations

  • Copper plate production surface defect detection equipment with turn-over function

    CN117630321A

  • Online turnover mechanism for PCB

    CN209506950U