A band saw blade tooth guard sleeve socketing device

Through the automated band saw blade gear guard sleeve socket device, the automatic cutting and accurate socket of the gear guard sleeve is achieved by using components such as visual inspection and electric cutting tools, solving the problem of high manual operation complexity and improving the socket efficiency and quality.

CN120115754BActive Publication Date: 2025-07-11江苏美特森切削工具有限公司
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Patent Information

Application Number
CN202510609147.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2025-07-11
Estimated Expiration
2045-05-13

AI Technical Summary

Technical Problem

In the prior art, band saw blades lack protection during production, transportation and sales, resulting in the saw teeth being easily bumped and worn, affecting quality and cutting efficiency. The socketing process of the mouthguard cover requires manual operation, which increases process complexity and quality inconsistency.

Method used

A band saw blade teeth guard sleeve socket socket is designed, which uses visual detection machine, electric cutting knife, drive roller and unidirectional gear to realize automatic cutting and precise socket socket, and is automatically transported to the designated position without manual operation through the positioning component and feeding component.

Benefits of technology

It improves the socket efficiency and quality of the mouthguard sleeve, reduces the complexity of manual operation, ensures the precise alignment and positioning of the mouthguard sleeve on the band saw blade, and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of saw blade processing, and particularly to a socketing device for a band saw blade tooth guard sleeve, which comprises a workbench and a guiding platform fixedly connected to the workbench. A support column is fixedly connected to the workbench, an electric lifting frame is installed on the support column, an electric movable frame is installed on the electric lifting frame, and an auxiliary component is arranged between the electric movable frame and the workbench for assisting in socketing the tooth guard sleeve on the band saw blade. An electric cutting knife is fixedly connected to the electric movable frame. In the present invention, the end of the tooth guard sleeve is detected by taking a photo with a vision detector, and the electric cutting knife is controlled to cut off the tooth guard sleeve. The cut-off tooth guard sleeve is then socketed on the band saw blade, thus completing the final socketing. Subsequently, through the cooperation of a one-way gear and a rack, the driving roller is reversed to drive the remaining tooth guard sleeves to move leftward to the use position. In this way, the tooth guard sleeve can be automatically cut off and socketed on the band saw blade, and the remaining tooth guard sleeves can be conveyed to the use position without manual operation, thereby improving the socketing efficiency and quality.
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Description

Technical Field

[0001] The present invention relates to the technical field of saw blade processing, and particularly relates to a socketing device for a band saw blade tooth protection sleeve. Background Art

[0002] During the production, transportation, and sales of band saw blades, the saw teeth are often directly exposed without necessary protection measures. In this case, collisions are likely to occur between the band saw blades, resulting in tooth filing and tooth damage, seriously affecting the quality and cutting efficiency of the band saw blades. Therefore, after the band saw blades are produced, plastic glue sleeves or hard plastic sleeves need to be used to wrap the outside of the saw teeth to avoid tooth filing and wear between the saw teeth.

[0003] The Chinese patent with the publication number CN210649319U discloses a socketing device for a band saw blade tooth protection sleeve. A first roller, a second roller, a sheath guiding plate, and a third roller are respectively arranged from the right side to the left side of the connecting plate. A V-shaped groove is arranged on the side of the first roller, and a V-shaped convex edge is arranged on the side of the second roller. The sides of the first roller and the second roller are matched, and two groups of the first roller and the second roller are arranged obliquely. The upper opening of the sheath guiding plate is V-shaped convex, and the sheath guiding plate corresponds to the position between the first roller and the second roller. A third roller is arranged obliquely below the sheath guiding plate, and a V-shaped groove is arranged on the side of the third roller. Although the above patent can socket the tooth protection sleeve on the saw teeth of the band saw blade, each time an operator needs to manually operate the conveying tool to control the band saw blade to callback a certain distance to reserve the socketing area of the tooth protection sleeve, and then manually control the cutting tool to cut off the tooth protection sleeve to complete the final socketing of the band saw blade. Moreover, the cut tooth protection sleeve needs to be manually adjusted in position to ensure its subsequent precise alignment with the band saw blade. Manual operation increases the complexity of the process, reduces the socketing efficiency, and due to the existence of human factors, may lead to inconsistent adjustments, affecting the socketing quality of the final tooth protection sleeve.

[0004] The present invention aims to solve the problems existing in the above patent. Therefore, a socketing device for a band saw blade tooth protection sleeve is proposed, which can automatically cut off the tooth protection sleeve and socket it on the tooth surface of the band saw blade, and convey the remaining tooth protection sleeve to a designated position, without manual operation, improving the socketing efficiency and quality. Summary of the Invention

[0005] In order to overcome the disadvantages that manual operation is required to make the band saw blade callback a certain distance and then control the cutting tool to cut off the tooth protection sleeve to complete the final socketing of the band saw blade, and the cut tooth protection sleeve needs to be manually adjusted in position, manual operation increases the complexity of the process, reduces the socketing efficiency, and affects the socketing quality of the final tooth protection sleeve, the present invention provides a socketing device for a band saw blade tooth protection sleeve, which can automatically cut off the tooth protection sleeve and socket it on the tooth surface of the band saw blade, and convey the remaining tooth protection sleeve to a designated position, without manual operation, improving the socketing efficiency and quality.

[0006] The present invention is achieved through the following technical solutions:

[0007] A band saw blade tooth sleeve sleeve connection device, comprising a workbench and a guide table fixedly connected to the workbench, a support column fixedly connected to the workbench, an electric lifting frame installed on the support column, an electric movable frame installed on the electric lifting frame, an auxiliary component is arranged between the electric movable frame and the workbench for assisting the band saw blade to sleeve the tooth sleeve, an electric cutter is fixedly connected to the electric movable frame, and also includes a driving roller rotatably connected to the electric movable frame, the driving rollers are connected by a synchronous belt assembly, one end of one of the driving rollers is fixedly sleeved with a worm gear, and the inner side of the electric movable frame is connected to the worm gear. A worm is connected to the worm gear which is meshed with the worm wheel, a one-way gear is installed on the worm gear, a rack corresponding to the one-way gear is fixedly connected to the electric lifting frame, and a visual inspection machine is installed on the workbench. The visual inspection machine is used to control the operation of the electric cutter to cut the mouthguard so that the mouthguard can be accurately mounted on the band saw blade. Then the rack drives the one-way gear to rotate, and the one-way gear drives the driving roller to reverse through the worm and the worm wheel, so that the driving roller drives the remaining mouthguard to move to the left for feeding. Positioning components are provided on the support column and the electric movable frame for positioning and supporting the mouthguard during transportation.

[0008] Further explanation, the auxiliary component includes a guide roller rotatably connected to the electric movable frame, the guide roller corresponds to the drive roller, and is used to guide the mouthguard. A pressing roller is rotatably connected to the electric movable frame to press the mouthguard against the tooth surface of the band saw blade. A conveyor is installed on the workbench to drive the band saw blade to move the mouthguard.

[0009] Further explanation, the positioning assembly includes a positioning plate that is slidably connected to the electric movable frame, the positioning plate is inclined and is used to position and support the mouthguard, the driving roller rotatably penetrates the positioning plate, a reset spring is connected between the positioning plate and the electric movable frame, an n-type plate is fixedly connected to the electric movable frame, the inner side of the n-type plate is slidably connected to the positioning plate, and is used to guide the positioning plate, a wire tube is fixedly connected to the inner side of the electric movable frame, a pull wire is connected to the positioning plate, the tail end of the pull wire passes through the wire tube and is fixedly connected to an iron block, the end of the iron block is in contact with the end of the wire tube, a locking assembly is arranged between the support column and the electric lifting frame, the locking assembly is in contact with the iron block, and is used to absorb and lock the iron block.

[0010] Further explanation, the locking assembly includes an electromagnet installed on the electric lifting frame, the electromagnet contacts the iron block and is used to absorb the iron block, an adjustable L-shaped plate is installed on the support column, and a button located below the electric lifting frame is installed on the adjustable L-shaped plate, and the button is electrically connected to the electromagnet through a control module.

[0011] Further description, the socketing device for the saw blade tooth guard sleeve further includes a feeding component. The feeding component includes a fixed frame fixedly connected to the electric movable frame. An electric rotating cylinder is installed on the fixed frame. Symmetrically fixed on the outer side surface of the electric rotating cylinder are guiding rings for guiding the tooth guard sleeve. Symmetrically installed on the electric rotating cylinder are electric conveying wheels for driving the tooth guard sleeve to move onto the driving roller. An optoelectronic sensor is installed on the positioning plate. Both the electric conveying wheels and the electric rotating cylinder are electrically connected to the optoelectronic sensor through a control module. A pressing component is arranged on the electric rotating cylinder for pressing and guiding the tooth guard sleeve. A pushing component is arranged on the electric rotating cylinder for driving the positioning plate to move.

[0012] Further description, the pressing component includes L-shaped rods symmetrically and slidably connected to the electric rotating cylinder. The ends of the L-shaped rods are rotatably sleeved with guiding wheels for pressing and guiding the tooth guard sleeve. A connecting spring is connected between the mutually approaching ends of the L-shaped rods and the inner side of the electric rotating cylinder.

[0013] Further description, the pushing component includes an electric push rod installed inside the electric rotating cylinder. The telescopic end of the electric push rod is fixedly connected to a push block located on the right side of the positioning plate for driving the positioning plate to move.

[0014] Further description, the socketing device for the saw blade tooth guard sleeve further includes a connecting rod fixedly connected to the fixed part and the moving part of the conveyor. Symmetrically fixed on the connecting rod are guiding plates for guiding the movement of the saw blade.

[0015] The beneficial effects of the present invention are as follows:

[0016] 1. By starting the conveyor to drive the saw blade to rotate forward continuously and be socketed with the tooth guard sleeve, and then through the visual inspection machine taking pictures to detect the end of the tooth guard sleeve, controlling the electric cutter to cut off the tooth guard sleeve. The cut-off tooth guard sleeve is then socketed on the saw blade, thus completing the final socketing. Subsequently, through the cooperation of the one-way gear and the rack, the driving roller rotates in reverse to drive the remaining tooth guard sleeves to move leftward to the use position. In this way, the tooth guard sleeve can be automatically cut off and socketed on the saw blade, and the remaining tooth guard sleeves can be conveyed to the use position without manual operation, thereby improving the socketing efficiency and quality.

[0017] 2. Under the action of the positioning plate, whenever the tooth guard sleeve moves forward and downward, the positioning plate can move leftward and downward into the inner side of the tooth guard sleeve. The positioning plate positions and supports the tooth guard sleeve. The tooth guard sleeve after positioning and support is socketed on the saw blade by the pressing roller to prevent the tooth guard sleeve from shifting in position and affecting the subsequent socketing on the saw blade, thereby ensuring the accurate socketing of the tooth guard sleeve.

[0018] 3. Under the action of the electric rotating cylinder and the electric conveying wheel, whenever the upper tooth guard sleeve is used up, the electric rotating cylinder can rotate to make the lower tooth guard sleeve rotate to the upper position, and then the electric conveying wheel drives the tooth guard sleeve to move to the left for feeding, so that the tooth guard sleeve can be used subsequently. Without stopping the machine, the feeding and sleeving of the tooth guard sleeve can be completed on the band saw blade, thereby further improving the sleeving efficiency of the tooth guard sleeve. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Figure 1 It is a three-dimensional structural schematic diagram of the present invention.

[0020] Figure 2 It is a three-dimensional structural schematic diagram of the driving roller and the vision inspection machine of the present invention.

[0021] Figure 3 It is a sectional structural schematic diagram of the electric lifting frame and the electric movable frame of the present invention.

[0022] Figure 4 It is a three-dimensional structural schematic diagram of the positioning component of the present invention.

[0023] Figure 5 It is a three-dimensional structural schematic diagram of the return spring and the wire conduit of the present invention.

[0024] Figure 6 It is a three-dimensional structural schematic diagram of the positioning plate and the n-shaped plate of the present invention.

[0025] Figure 7 It is a three-dimensional structural schematic diagram of the feeding component of the present invention.

[0026] Figure 8 It is a three-dimensional structural schematic diagram of the L-shaped rod and the connecting spring of the present invention.

[0027] Figure 9 It is a three-dimensional structural schematic diagram of the electric push rod and the push block of the present invention.

[0028] Figure 10 It is a three-dimensional structural schematic diagram of the connecting rod and the guide plate of the present invention.

[0029] The numbers in the figure are: 1-working table, 2-guide table, 4-support column, 5-electric lifting frame, 6-electric movable frame, 7-electric cutter, 8-guide roller, 9-pressing roller, 91-conveyor, 10-driving roller, 101-visual inspection machine, 102-worm gear, 103-worm, 104-one-way gear, 105-rack, 11-positioning plate, 1101-reset spring, 111-n-type plate, 112-guide Wire tube, 1121-pull wire, 113-iron block, 114-electromagnet, 115-adjustable L-shaped plate, 116-button, 12-fixed frame, 121-electric rotating cylinder, 122-guide ring, 123-electric conveying wheel, 124-L-shaped rod, 1241-connecting spring, 125-guide wheel, 126-photoelectric sensor, 127-electric push rod, 128-push block, 13-connecting rod, 14-guide plate. DETAILED DESCRIPTION

[0030] Embodiment: A band saw blade tooth guard sleeve connection device, please refer to Figures 1 - 6 As shown, it includes a workbench 1 and a guide platform 2 fixedly connected to the side of the workbench 1, the guide platform 2 can guide the band saw blade, a support column 4 is fixedly connected to the left side of the top of the workbench 1, an electric lifting frame 5 is installed on the support column 4, and an electric movable frame 6 is installed on the electric lifting frame 5. An auxiliary component is arranged between the electric movable frame 6 and the workbench 1. When the auxiliary component is in operation, the auxiliary component can assist the band saw blade in sleeve connection with the tooth guard, an electric cutter 7 is fixedly connected to the left side of the front side of the electric movable frame 6, and when the electric cutter 7 is in operation, the electric cutter 7 can cut off the tooth guard, and also includes a driving roller 10, a visual inspection machine 101, a worm gear 102, a worm 103, a one-way gear 104, a rack 105 and a positioning component, two driving rollers 10 are rotatably connected on the right side of the electric movable frame 6, the two driving rollers 10 are inclined, and the two driving rollers 10 are connected by a synchronous belt assembly. The rear end of the left driving roller 10 is fixed with a sleeve A worm gear 102 is installed, and a worm 103 is connected to the lower front side of the electric movable frame 6 for transverse rotation. The worm 103 is meshed with the worm gear 102, and a one-way gear 104 is installed on the left end of the worm 103. A rack 105 is fixedly connected to the right side of the electric lifting frame 5, and the rack 105 corresponds to the one-way gear 104. A visual inspection machine 101 is installed on the left side of the top of the workbench 1, and the visual inspection machine 101 is located on the right side of the support column 4. The visual inspection machine 101 is used to control the operation of the electric cutter 7 to cut off the tooth guard so that the tooth guard can be accurately mounted on the band saw blade. Then the rack 105 drives the one-way gear 104 to rotate, and the one-way gear 104 drives the drive roller 10 to reverse through the worm 103 and the worm gear 102, so that the drive roller 10 drives the remaining tooth guard to move to the left for feeding. Positioning components are provided on the support column 4 and the electric movable frame 6. When the positioning component is in operation, the positioning component can realize positioning support for the tooth guard being conveyed.

[0031] Please refer to Figure 2 As shown, the auxiliary component includes a guiding roller 8, a pressing roller 9 and a conveyor 91. Two guiding rollers 8 are rotatably connected to the right side of the front surface of the electric movable frame 6. The two guiding rollers 8 correspond to the two driving rollers 10 respectively. When the tooth guard sleeve moves, the guiding roller 8 can guide the tooth guard sleeve. A pressing roller 9 is rotatably connected to the left side of the front surface of the electric movable frame 6. When the band saw blade moves, the pressing roller 9 can press the tooth guard sleeve tightly against the tooth surface of the band saw blade. A conveyor 91 is installed on the right side of the top of the workbench 1. When the conveyor 91 operates, the conveyor 91 can drive the band saw blade to move and be sleeved with the tooth guard sleeve.

[0032] Please refer to Figures 4 - 6 As shown, the positioning component includes a positioning plate 11, a return spring 1101, an n-shaped plate 111, a wire conduit 112, a pull wire 1121, an iron block 113 and a locking component. The positioning plate 11 is slidably inserted through the right side of the electric movable frame 6. The positioning plate 11 is inclined. When the positioning plate 11 moves left and downward, the positioning plate 11 can position and support the tooth guard sleeve. The driving roller 10 rotatably penetrates the positioning plate 11. A return spring 1101 is connected between the right rear part of the positioning plate 11 and the inner side of the electric movable frame 6. An n-shaped plate 111 is fixedly connected to the lower part of the front surface of the electric movable frame 6. The inner side of the n-shaped plate 111 is slidably connected to the positioning plate 11. When the positioning plate 11 moves, the n-shaped plate 111 can guide the positioning plate 11. A wire conduit 112 is fixedly connected to the lower left side of the inner front surface of the electric movable frame 6. A pull wire 1121 is connected to the right side of the positioning plate 11. The tail end of the pull wire 1121 passes through the wire conduit 112 and is fixedly connected to an iron block 113. The bottom end of the iron block 113 contacts the end of the wire conduit 112. A locking component is arranged between the support column 4 and the electric lifting frame 5. The locking component contacts the iron block 113, and the locking component can suck and lock the iron block 113; The locking component includes an electromagnet 114, an adjustable L-shaped plate 115 and a button 116. An electromagnet 114 is installed on the top of the electric lifting frame 5. The electromagnet 114 contacts the iron block 113, and the electromagnet 114 can suck the iron block 113. An adjustable L-shaped plate 115 is installed on the lower right side of the right side surface of the support column 4. A button 116 is installed on the outer top right side of the adjustable L-shaped plate 115. The button 116 is located below the electric lifting frame 5. The button 116 is electrically connected to the electromagnet 114 through a control module.

[0033] Initially, the electromagnet 114 holds and fixes the iron block 113 by magnetic force. First, place the band saw blade between the guide table 2 and the conveyor 91, start the conveyor 91 to move and contact the band saw blade. Twist the adjustable L-shaped plate 115 according to the height of the band saw blade to drive the button 116 to move up and down. When the button 116 moves up and down to a suitable position, stop twisting the adjustable L-shaped plate 115. Then move the tooth guard sleeve between the driving roller 10 and the guide roller 8, and make the tooth guard sleeve located below the electric cutter 7 and the pressing roller 9. Then start the electric movable frame 6 to move forward and downward. The electric movable frame 6 drives the tooth guard sleeve to move forward and downward through the driving roller 10 and the guide roller 8. At the same time, the electric movable frame 6 moving forward and downward drives the wire conduit 112 to move forward and downward. Since the electromagnet 114 holds and fixes the iron block 113, the pull wire 1121 is in a static state. The wire conduit 112 moving forward and downward squeezes the pull wire 1121, causing the pull wire 1121 to drive the positioning plate 11 to move left and downward. The return spring 1101 is compressed. The positioning plate 11 moves left and downward through the n-shaped plate 111 and is located inside the tooth guard sleeve. The left end of the positioning plate 11 is on the right side of the pressing roller 9. The positioning plate 11 positions and supports the tooth guard sleeve to prevent the position of the tooth guard sleeve from shifting and affecting the subsequent sleeving on the band saw blade, thus ensuring the precise sleeving of the tooth guard sleeve. At the same time, the electric movable frame 6 also drives the worm 103 to move forward and downward. The worm 103 drives the one-way gear 104 to move forward and downward. The one-way gear 104 moving forward and downward meshes with the rack 105. The rack 105 drives the one-way gear 104 to rotate idly. The one-way gear 104 rotating idly does not drive the worm 103 to rotate. When the electric movable frame 6 moves forward and downward to the maximum stroke, turn off the electric movable frame 6. The tooth guard sleeve and the one-way gear 104 stop moving forward and downward. At this time, the tooth guard sleeve is directly above the band saw blade, and the one-way gear 104 disengages from the rack 105. Subsequently, start the electric lifting frame 5 to move downward and drive the electric movable frame 6 to move downward. The electric movable frame 6 moving downward drives the tooth guard sleeve to move downward through the guide roller 8 and the driving roller 10. The electric movable frame 6 also drives the pressing roller 9 and the positioning plate 11 to move downward synchronously. The positioning plate 11 moves downward and sleeves on the band saw blade, and the pressing roller 9 moves downward to press the tooth guard sleeve against the tooth surface of the band saw blade for sleeving. At the same time, when the electric lifting frame 5 moves downward and contacts the button 116, the button 116 controls the electromagnet 114 to turn off through the control module. The electromagnet 114 turning off stops holding the iron block 113. Due to the action of the return spring 1101, the positioning plate 11 moves right and upward to reset. The positioning plate 11 resets and disengages from the band saw blade. Subsequently, the operator can start the conveyor 91 to drive the band saw blade to rotate forward. The band saw blade rotating forward drives the tooth guard sleeve to move left. The pressing roller 9 continuously presses the left-moving tooth guard sleeve onto the band saw blade for sleeving. At the same time, start the vision inspection machine 101 to take pictures and inspect the tooth surface condition of the band saw blade. As the band saw blade is continuously rotated forward and sleeved with the tooth guard sleeve, when the end of the tooth guard sleeve driven by the band saw blade rotates forward to the front side of the vision inspection machine 101,The visual inspection machine 101 takes a photo and detects the end of the tooth guard sleeve. The visual inspection machine 101 controls the electric cutter 7 to start through the control module. The electric cutter 7 moves downward to cut off the tooth guard sleeve. Subsequently, the cut tooth guard sleeve continues to move leftward and is sleeved on the band saw blade. At this time, the two ends of the tooth guard sleeve on the band saw blade come into contact with each other to complete the final sleeving. The conveyor 91 is turned off, and the electric lifting frame 5 is started to move upward, driving the electric movable frame 6 to move upward and reset. The upward movement of the electric movable frame 6 drives the remaining tooth guard sleeves to move upward and reset through the driving roller 10 and the guiding roller 8. Then, the electric movable frame 6 is started to move backward and upward to reset. The electric movable frame 6 drives the one-way gear 104 to move backward and upward through the worm 103. The one-way gear 104 meshes with the rack 105. The rack 105 drives the one-way gear 104 to rotate forward. The forward rotation of the one-way gear 104 drives the worm 103 to rotate forward. The forward rotation of the worm 103 drives the worm gear 102 to rotate reversely. The reverse rotation of the worm gear 102 drives the left driving roller 10 to rotate reversely. The reverse rotation of the left driving roller 10 drives the right driving roller 10 to rotate reversely through the synchronous belt assembly. The reverse rotation of the left and right driving rollers 10 drives the remaining tooth guard sleeves to move leftward and downward through the guiding roller 8, so that the tooth guard sleeve moves to the lower part of the pressing roller 9 and is in the use position. The one-way gear 104 continues to move backward and upward to reset and disengages from the rack 105. The one-way gear 104 stops rotating forward, and the driving roller 10 stops driving the tooth guard sleeve to move leftward and downward. At the same time, the electric movable frame 6 drives the iron block 113 to move backward and upward to reset and contact the electromagnet 114 through the wire conduit 112. The electromagnet 114 continues to attract the iron block 113. In this way, the tooth guard sleeve can be automatically cut and sleeved on the band saw blade, and the remaining tooth guard sleeves can be conveyed to the use position without manual operation, thereby improving the sleeving efficiency and quality. Subsequently, the operator starts the conveyor 91 to loosen the band saw blade, and then removes the band saw blade sleeved with the tooth guard sleeve from the guiding table 2 and the conveyor 91. Place the next band saw blade between the guiding table 2 and the conveyor 91, and the tooth guard sleeve can be sleeved on the band saw blade again according to the above operation.

[0034] Please refer to Figures 7 - 9As shown in the figure, the saw blade tooth guard sleeve socketing device further includes a feeding component installed on the electric movable frame 6. The feeding component includes a fixed frame 12, an electric rotating cylinder 121, a guide ring 122, an electric conveying wheel 123, a pressing component, a photoelectric sensor 126, and a pushing component. A fixed frame 12 is fixedly connected to the right side surface of the electric movable frame 6. An electric rotating cylinder 121 is installed on the front side of the fixed frame 12. Guide rings 122 are symmetrically and fixedly connected to the upper and lower sides on the right side of the outer side surface of the electric rotating cylinder 121. The guide rings 122 can guide the tooth guard sleeve. Electric conveying wheels 123 are symmetrically installed on the upper and lower sides on the left side of the electric rotating cylinder 121. When the electric conveying wheels 123 rotate in reverse, the electric conveying wheels 123 can drive the tooth guard sleeve to move leftward onto the driving roller 10. A photoelectric sensor 126 is installed on the upper right side of the front side surface of the positioning plate 11. Both the electric conveying wheels 123 and the electric rotating cylinder 121 are electrically connected to the photoelectric sensor 126 through a control module. A pressing component is arranged on the left side of the electric rotating cylinder 121. When the pressing component operates, the pressing component can press and guide the tooth guard sleeve. A pushing component is arranged on the electric rotating cylinder 121. When the pushing component operates, the pushing component can drive the positioning plate 11 to move leftward, so that the positioning plate 11 can position and support the tooth guard sleeve during feeding; the pressing component includes an L-shaped rod 124, a connecting spring 1241, and a guide wheel 125. L-shaped rods 124 are symmetrically and slidably connected to the upper and lower sides on the left side of the electric rotating cylinder 121. Guide wheels 125 are rotatably sleeved on the ends of the upper and lower L-shaped rods 124 that are away from each other. The guide wheels 125 can press and guide the tooth guard sleeve. Connecting springs 1241 are connected between the ends of the upper and lower L-shaped rods 124 that are close to each other and the inner side of the electric rotating cylinder 121; the pushing component includes an electric push rod 127 and a push block 128. An electric push rod 127 is installed inside the electric rotating cylinder 121. The telescopic end of the electric push rod 127 is fixedly connected to the push block 128. The push block 128 is located on the right side of the positioning plate 11. When the push block 128 moves leftward and contacts the positioning plate 11, the push block 128 can drive the positioning plate 11 to move leftward.

[0035] When the dental guard needs to be placed, first pass the two dental guards through the upper and lower guide rings 122 respectively, and make the dental guards be between the electric conveying wheel 123 and the guide wheel 125. Then push the upper dental guard to move leftward to be between the driving roller 10 and the guide roller 8 for subsequent use. When the dental guard on the driving roller 10 moves leftward and sleeves on the band saw blade, start the photoelectric sensor 126. The photoelectric sensor 126 detects the dental guard on the driving roller 10. Whenever the dental guard on the driving roller 10 is used up, the photoelectric sensor 126 does not detect the dental guard on the driving roller 10. The photoelectric sensor 126 first controls the electric rotating cylinder 121 to rotate 180 degrees through the control module. The electric rotating cylinder 121 drives the electric conveying wheel 123 and the guide ring 122 to rotate 180 degrees. The lower guide ring 122 rotates 180 degrees to drive the lower dental guard to rotate 180 degrees to be in the upper position for use. Then the photoelectric sensor 126 controls the electric conveying wheel 123 to reverse through the control module. The reverse rotation of the electric conveying wheel 123 drives the dental guard to move leftward to be between the driving roller 10 and the guide roller 8 through the guide wheel 125 for subsequent use. Due to the action of the connecting spring 1241, the guide wheel 125 presses and guides the dental guard more firmly to prevent the dental guard from separating from the electric conveying wheel 123 and affecting the feeding. At the same time, start the electric push rod 127. The telescopic rod of the electric push rod 127 extends to drive the push block 128 to move left and downward. The push block 128 moves left and downward to contact the positioning plate 11. The push block 128 drives the positioning plate 11 to move left and downward. The return spring 1101 is compressed. The positioning plate 11 moves left and downward to continue to position and support the dental guard. When the dental guard moves left and downward to the use position, turn off the electric conveying wheel 123, and the dental guard stops moving left and downward. Start the electric push rod 127 to drive the push block 128 to move right and upward to reset. The push block 128 resets and disengages from the positioning plate 11. Due to the action of the return spring 1101, the positioning plate 11 moves right and upward to reset. Then the operator can pass the next dental guard through the lower guide ring 122 and make the dental guard pass through the lower electric conveying wheel 123 and the lower guide wheel 125. In this way, the feeding and sleeving of the dental guard on the band saw blade can be completed without stopping the machine, thereby further improving the sleeving efficiency of the dental guard.

[0036] Please refer to Figure 10 As shown, the band saw blade dental guard sleeving device further includes a connecting rod 13 and a guide plate 14. Connecting rods 13 are fixedly connected to both the fixed part and the moving part of the conveyor 91. Guide plates 14 are fixedly connected to the front and rear connecting rods 13 symmetrically left and right. When the guide plate 14 moves and contacts the band saw blade, the guide plate 14 can guide the movement of the band saw blade.

[0037] When the band saw blade is placed between the guiding table 2 and the conveyor 91, the band saw blade is between the front and rear guiding plates 14. When the conveyor 91 moves into contact with the band saw blade, the moving part of the conveyor 91 drives the rear guiding plate 14 to move forward through the rear connecting rod 13. The rear guiding plate 14 moves forward to contact the band saw blade. The rear guiding plate 14 and the front guiding plate 14 cooperate to correct the deviation and position the band saw blade, so that the position of the band saw blade under the tooth guard sleeve is in a straight state. When the tooth guard sleeve is sleeved on the band saw blade, start the conveyor 91 to move back to disengage from the band saw blade. The conveyor 91 drives the rear guiding plate 14 to move backward and reset through the rear connecting rod 13, and the rear guiding plate 14 resets to disengage from the band saw blade. In this way, it can prevent the position of the band saw blade under the tooth guard sleeve from being skewed, which affects the accurate sleeving of the tooth guard sleeve, thus ensuring that the tooth guard sleeve is normally sleeved on the band saw blade.

Claims

1. A socket device for a saw blade tooth protection sleeve, comprising a workbench (1) and a guiding platform (2) fixedly connected to the workbench (1). A support column (4) is fixedly connected to the workbench (1), and an electric lifting frame (5) is installed on the support column (4). An electric movable frame (6) is installed on the electric lifting frame (5). An auxiliary component is arranged between the electric movable frame (6) and the workbench (1) for assisting in sleeving the saw blade with the tooth protection sleeve. An electric cutter (7) is fixedly connected to the electric movable frame (6), and it is characterized in that, The electric movable frame (6) also includes a driving roller (10) rotatably connected to the electric movable frame (6), the driving rollers (10) are connected to each other through a synchronous belt assembly, a worm wheel (102) is fixedly sleeved on the end of one of the driving rollers (10), a worm (103) meshing with the worm wheel (102) is rotatably connected inside the electric movable frame (6), a one-way gear (104) is installed on the worm (103), a rack (105) corresponding to the one-way gear (104) is fixedly connected to the electric lifting frame (5), and a visual inspection machine (102) is installed on the workbench (1). 01), the visual inspection machine (101) is used to control the operation of the electric cutter (7) to cut the mouthguard so that the mouthguard is accurately placed on the band saw blade, and then the rack (105) drives the one-way gear (104) to rotate, and the one-way gear (104) drives the driving roller (10) to reverse through the worm (103) and the worm wheel (102), so that the driving roller (10) drives the remaining mouthguard to move to the left for feeding, and a positioning component is provided on the support column (4) and the electric movable frame (6) for positioning and supporting the mouthguard during transportation; The auxiliary component comprises a guide roller (8) rotatably connected to the electric movable frame (6), the guide roller (8) corresponds to the driving roller (10) and is used to guide the mouthguard, a pressing roller (9) rotatably connected to the electric movable frame (6) to press the mouthguard against the tooth surface of the band saw blade, and a conveyor (91) is installed on the workbench (1) to drive the band saw blade to move the mouthguard to be sleeved; The positioning assembly comprises a positioning plate (11) slidably connected to the electric movable frame (6), the positioning plate (11) being inclined and used for positioning and supporting the mouthguard, the driving roller (10) rotatably passing through the positioning plate (11), a return spring (1101) being connected between the positioning plate (11) and the electric movable frame (6), an n-type plate (111) being fixedly connected to the electric movable frame (6), the inner side of the n-type plate (111) being slidably connected to the positioning plate (11), and being used for positioning the positioning plate (11) for guiding, a wire tube (112) is fixedly connected to the inner side of the electric movable frame (6), a pull wire (1121) is connected to the positioning plate (11), the tail end of the pull wire (1121) passes through the wire tube (112) and is fixedly connected to an iron block (113), the end of the iron block (113) is in contact with the end of the wire tube (112), a locking component is provided between the support column (4) and the electric lifting frame (5), the locking component is in contact with the iron block (113), and is used to suck and lock the iron block (113); The locking assembly comprises an electromagnet (114) mounted on the electric lifting frame (5), the electromagnet (114) being in contact with the iron block (113) and being used to attract the iron block (113), an adjustable L-shaped plate (115) being mounted on the support column (4), a button (116) located below the electric lifting frame (5) being mounted on the adjustable L-shaped plate (115), and the button (116) being electrically connected to the electromagnet (114) via a control module.

2. The socketing device for the tooth protection sleeve of a band saw blade according to claim 1, characterized in that, The socketing device for the saw blade tooth protection sleeve further includes a feeding component. The feeding component includes a fixing frame (12) fixedly connected to the electric movable frame (6). An electric rotating cylinder (121) is installed on the fixing frame (12). Guide rings (122) are symmetrically and fixedly connected to the outer side surface of the electric rotating cylinder (121) to guide the tooth protection sleeve. Electric conveying wheels (123) are symmetrically installed on the electric rotating cylinder (121) and are used to drive the tooth protection sleeve to move onto the driving roller (10). A photoelectric inductor (126) is installed on the positioning plate (11). Both the electric conveying wheels (123) and the electric rotating cylinder (121) are electrically connected to the photoelectric inductor (126) through a control module. A pressing component is arranged on the electric rotating cylinder (121) and is used to press and guide the tooth protection sleeve. A pushing component is arranged on the electric rotating cylinder (121) and is used to drive the positioning plate (11) to move.

3. The socketing device for the saw blade tooth protection sleeve according to claim 2, characterized in that, The pressing component includes L-shaped rods (124) symmetrically and slidably connected to the electric rotating cylinder (121). Guide wheels (125) are rotatably sleeved on the ends of the L-shaped rods (124) to press and guide the tooth protection sleeve. A connecting spring (1241) is connected between the mutually approaching ends of the L-shaped rods (124) and the inner side of the electric rotating cylinder (121).

4. The socketing device for the saw blade tooth guard sleeve according to claim 3, characterized in that, The pushing component includes an electric push rod (127) installed inside the electric rotating cylinder (121). A push block (128) located on the right side of the positioning plate (11) is fixedly connected to the telescopic end of the electric push rod (127) and is used to drive the positioning plate (11) to move.

5. The socketing device for the tooth guard sleeve of a band saw blade according to claim 4, characterized in that, The socketing device for the saw blade tooth protection sleeve further includes a connecting rod (13) fixedly connected to the fixed part and the moving part of the conveyor (91). Guide plates (14) are symmetrically and fixedly connected to the connecting rod (13) and are used to guide the movement of the saw blade.

Citation Information

Patent Citations

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    CN210649319U

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