An electrically powered fire and joint sealing device and method
By employing electric motors and automatic feeding components in the hot-sewing device, the problem of easy wear in traditional mechanical structures has been solved, achieving efficient and low-wear automated production and reducing the burden on workers.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- SHANGHAI HERO GOLDEN PEN FACTORY CO LTD
- Filing Date
- 2023-10-09
- Publication Date
- 2026-04-17
AI Technical Summary
The existing fire-fighting and sewing equipment uses a traditional purely mechanical mechanism, which makes the parts prone to wear and tear, affecting normal use.
The mechanical structure is replaced by an electric motor, including components such as a rotating block, rotating plate, fixed box, and clamping plate. Combined with a hydrogen-oxygen generator and an automatic feeding assembly, it achieves automated operation and low wear.
It reduces wear and tear on parts, increases the service life and production efficiency of the equipment, and reduces the workload of staff.
Smart Images

Figure CN117206428B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of traditional light industrial production technology, and in particular to a pen tip electro-ignition and sewing device and method. Background Technology
[0002] The nib of a fountain pen is the soul of the pen. During the production and processing of fountain pen nibs, a hot-sewing device is used to perform a hot-sewing operation on the nib in order to narrow the slit in the nib.
[0003] Existing flame-sewing devices require manual loading and unloading of pen nibs when using a flame-sewing machine to sew pen nibs, which increases the workload of workers. Therefore, by setting up an automatic unloading structure to automatically unload pen nibs after flame-sewing, manual unloading is no longer required, thus reducing the workload of workers.
[0004] During long-term use of the sizing device, the various components of the sizing device are prone to wear. However, the existing sizing device is made of traditional pure mechanical mechanism, which makes the various components prone to severe wear during long-term use, which will affect the normal production of sizing pen nibs. Summary of the Invention
[0005] The purpose of this invention is to provide an electric ignition and sewing device and method for pen tips, which solves the technical problem that existing ignition and sewing devices are made of traditional pure mechanical mechanisms, which makes the various parts prone to severe wear during long-term use, thus affecting the normal use of the ignition and sewing device.
[0006] To achieve the above objectives, the present invention provides a pen tip electro-ignition and sewing device, including a worktable and an execution component; the execution component includes a rotating block, a rotating plate, a fixed box, a protective cover, a drive block, a clamping plate, a support column, and an operating head. The rotating block is used to rotate the rotating plate, and the rotating plate is located on the side of the rotating block away from the worktable. The fixed box is fixed to the outside of the rotating plate. The protective cover is movably connected to the fixed box and is located on the side of the fixed box away from the rotating plate. The drive block is used to drive the clamping plate to move. The clamping plate is located on the side of the drive block away from the fixed box and inside the fixed box. The support column is fixed to the upper surface of the worktable. The operating head is movably connected to the support column and is located on the side of the support column away from the worktable.
[0007] The execution component further includes a connecting box, a transmission hose, and a hydrogen-oxygen generator. The connecting box is connected to the operating head and is located on the side of the operating head away from the rotating plate. The transmission hose is connected to the connecting box and is located on the side of the connecting box away from the operating head. The hydrogen-oxygen generator is connected to the transmission hose and is fixed to the upper surface of the workbench.
[0008] The pen tip electro-ignition and sewing device also includes a feeding component, which is used to automatically feed the pen tip.
[0009] The feeding assembly includes a support box, a control motor, a lead screw, and a guide block. The support box is fixed to the upper surface of the worktable. The control motor is fixed inside the support box. The two ends of the lead screw are respectively connected to the output end of the control motor and the support box, and the lead screw is located between the control motor and the support box. The guide block is movably connected to the lead screw, sleeved on the outside of the lead screw, and passes through the support box.
[0010] The feeding assembly further includes a steering motor, a steering rod, and a connecting block. The steering motor is fixed to the side of the guide block away from the support box. The steering rod is connected to the output end of the steering motor and is located on the side of the steering motor away from the guide block. The connecting block is fixed to the end of the steering rod away from the steering motor.
[0011] The feeding assembly further includes an electric cylinder, a second telescopic rod, and a clamping ring. The electric cylinder is fixed to the side of the connecting block near the rotating plate. The second telescopic rod is connected to the output end of the electric cylinder and is located on the side of the electric cylinder near the connecting block. The clamping ring is fixed to the end of the second telescopic rod away from the electric cylinder.
[0012] The present invention also provides a method for electro-hydraulic welding of pen nibs, comprising the following steps:
[0013] Rotate the protective cover on top of the fixed box to open the internal space of the fixed box, and then put the pen tip into the fixed box;
[0014] The hydraulic cylinder is activated, and the power output from the output end of the hydraulic cylinder drives the first telescopic rod to extend and retract, thereby causing the clamping plate to move longitudinally within the fixed box, thus clamping and fixing the pen tip.
[0015] The rotating motor is started, and the power output from the output end of the rotating motor drives the rotating rod to rotate, thereby driving the rotating plate to rotate, and in turn driving the pen tip inside the fixed box to rotate.
[0016] When the pen tip is rotated to align with the operating head, a mixture of hydrogen and oxygen transmitted through the hydrogen-oxygen generator is ejected from the operating head to perform flame treatment on the pen tip, so as to narrow the slit of the pen tip.
[0017] After processing is complete, continue to rotate the pen tip. When the pen tip is rotated to align with the clamping ring, allow the clamping plate to release the pen tip from its fixed state.
[0018] Then the electric cylinder is activated, and the power output from the output end of the electric cylinder drives the second telescopic rod to extend and retract, thereby causing the clamping ring to move up and down on the outside of the connecting block, so as to clamp and fix the pen tip.
[0019] Start the control motor. The power output from the output end of the control motor drives the lead screw to rotate, thereby causing the guide block to move up and down, which in turn causes the pen tip, which is clamped and fixed between the clamping rings, to move up and down, allowing the pen tip to move down until it reaches the limit position.
[0020] Start the steering motor. The power output from the output end of the steering motor drives the steering rod to rotate, thereby causing the connecting block to rotate, which in turn causes the pen tip, which is clamped and fixed between the clamping rings, to rotate until the connecting block is in a horizontal state.
[0021] Move the clamping ring closer to the electric cylinder to release the pen tip from its fixed state. The pen tip will then fall into the storage box placed on the base for unified collection and processing, thus completing the pen tip sewing operation.
[0022] This invention discloses an electric flame-sealing device and method for pen tips. All operating equipment is powered on, and the device is then automatically aligned via photosensitive sensors. First, the internal space of the fixing box is opened. Then, the pen tip is manually placed into the fixing box, and the clamping plate moves longitudinally within the fixing box to clamp and fix the pen tip. Next, the pen tip is rotated 22.5 degrees to align with the operating head. At this point, a mixture of hydrogen and oxygen from the hydrogen-oxygen generator is transferred to the operating head and finally ejected from the operating head, achieving flame treatment of the pen tip. By using low-wear, high-performance electrical equipment instead of traditional mechanical structures, the device avoids the severe wear and tear on the components of traditional mechanical structures during prolonged use, which could affect the normal operation of the flame-sealing device. Attached Figure Description
[0023] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.
[0024] Figure 1This is a schematic diagram of the overall structure of the pen tip electric ignition and sewing device according to the first embodiment of the present invention.
[0025] Figure 2 This is a cross-sectional schematic diagram along the rotating rod according to the first embodiment of the present invention.
[0026] Figure 3 This is the first embodiment of the present invention. Figure 2 Enlarged view of point A.
[0027] Figure 4 This is a schematic diagram of the material feeding assembly of the pen tip electro-ignition and sewing device according to the second embodiment of the present invention.
[0028] Figure 5 This is a cross-sectional schematic diagram along the lead screw according to the second embodiment of the present invention.
[0029] Figure 6 This is a cross-sectional schematic diagram along the second telescopic rod according to the second embodiment of the present invention.
[0030] Figure 7 This is a flowchart of the pen tip electro-ignition and stitching method according to the third embodiment of the present invention.
[0031] In the diagram: 101-Workbench, 102-Rotating plate, 103-Fixed box, 104-Protective cover, 105-Clamping plate, 106-Support column, 107-Operating head, 108-Connecting box, 109-Transmission hose, 110-Hydrogen-oxygen generator, 111-Rotating motor, 112-Rotating rod, 113-Hydraulic cylinder, 114-First telescopic rod, 201-Supporting box, 202-Control motor, 203-Screw screw, 204-Guide block, 205-Steering motor, 206-Steering rod, 207-Connecting block, 208-Electric cylinder, 209-Second telescopic rod, 210-Clamping ring. Detailed Implementation
[0032] The embodiments of the present invention are described in detail below. Examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain the present invention, but should not be construed as limiting the present invention.
[0033] First embodiment:
[0034] Please see Figures 1 to 3 ,in Figure 1 This is a schematic diagram of the overall structure of the pen tip's electric ignition and sewing device. Figure 2 This is a schematic cross-sectional view along the rotating rod 112. Figure 3 yes Figure 2The enlarged view at point A shows that the present invention provides an electric ignition and sewing device for pen tips, including a worktable 101 and an execution component. The execution component includes a rotating block, a rotating plate 102, a fixed box 103, a protective cover 104, a drive block, a clamping plate 105, a support column 106, an operating head 107, a connecting box 108, a transmission hose 109, and a hydrogen-oxygen generator 110. The rotating block includes a rotating motor 111 and a rotating rod 112, and the drive block includes a hydraulic cylinder 113 and a first telescopic rod 114.
[0035] In this embodiment, the execution component is located above the worktable 101. It is used to replace the traditional mechanical structure with a low-wear, high-performance electrical device, thereby avoiding the situation where the various parts of the traditional mechanical structure are severely worn during long-term use, which would affect the normal production of the pen tip sewing operation.
[0036] The rotating block is used to rotate the rotating plate 102, which is located on the side of the rotating block away from the worktable surface 101. The fixed box 103 is fixed to the outside of the rotating plate 102. The protective cover 104 is movably connected to the fixed box 103 and is located on the side of the fixed box 103 away from the rotating plate 102. The driving block is used to drive the clamping plate 105 to move. The clamping plate 105 is located on the side of the driving block away from the fixed box 103 and is located inside the fixed box 103. The support column 106 is fixed to... On the upper surface of the workbench 101, the operating head 107 is movably connected to the support column 106 and located on the side of the support column 106 away from the workbench 101. The rotating plate 102 can rotate vertically above the base, thereby driving the fixed box 103 to rotate vertically above the base. There are 16 fixed boxes 103, which are evenly distributed on the outer side of the rotating plate 102, so that the included angle between two adjacent fixed boxes 103 is 22.5 degrees. The protective cover 104 is connected to the fixed box 103 by a pin. The protective cover 104 is vertically rotatable above the fixed box 103 along the center of the pin, allowing it to open or close the interior space of the fixed box 103. The protective cover 104 is made of a flexible material, allowing it to be bent so that it can still partially shield the space inside the fixed box 103 when clamping the pen tip. The clamping plate 105 can move longitudinally within the fixed box 103, allowing the pen tip to be clamped and fixed. Between the clamping plate 105 and the fixing box 103, the support column 106 has a slot, and one end of the slot of the support column 106 is provided with a through groove. The operating head 107 can enter the through groove of the support column 106 through the slot. The support column 106 also has a through hole, and the fixing bolt passes through the through hole of the support column 106. After the fixing bolt passes through the through hole of the support column 106, the fixing nut is tightened on the outside of the fixing bolt, so that the position of the operating head 107 in the through groove of the support column 106 is limited and fixed.
[0037] Secondly, the rotating motor 111 is fixed to the upper surface of the workbench 101; the two ends of the rotating rod 112 are respectively connected to the output end of the rotating motor 111 and the rotating plate 102. The rotating rod 112 is located between the rotating motor 111 and the rotating plate 102. The output end of the rotating motor 111 is connected to the rotating rod 112 and drives the rotating rod 112 to rotate vertically along the axis of the rotating rod 112, thereby driving the rotating plate 102 to rotate vertically along the axis of the rotating rod 112.
[0038] Meanwhile, the hydraulic cylinder 113 is fixed inside the fixed box 103; the two ends of the first telescopic rod 114 are respectively connected to the output end of the hydraulic cylinder 113 and the clamping plate 105. The first telescopic rod 114 is located between the hydraulic cylinder 113 and the clamping plate 105. The output end of the hydraulic cylinder 113 is connected to the first telescopic rod 114 and drives the first telescopic rod 114 to extend and retract, thereby driving the clamping plate 105 to move longitudinally within the fixed box 103. The hydraulic cylinder 113 and the rotating motor 111 are both electrically connected to the automatic control equipment, so the start and stop of the rotating motor 111 or the hydraulic cylinder 113 can be realized by operating the corresponding buttons on the automatic control equipment.
[0039] Additionally, the connecting box 108 is connected to the operating head 107 and is located on the side of the operating head 107 away from the rotating plate 102; the transmission hose 109 is connected to the connecting box 108 and is located on the side of the connecting box 108 away from the operating head 107; the hydrogen-oxygen generator 110 is connected to the transmission hose 109 and is fixed to the upper surface of the workbench 101. The hydrogen-oxygen generator 110, the transmission hose 109, the connecting box 108, and the operating head 107 are connected, so that the mixture of hydrogen and oxygen in the hydrogen-oxygen generator 110 can be transmitted to the operating head 107 through the transmission hose 109 and the connecting box 108, and finally sprayed out from the operating head 107 to achieve flame treatment of the pen tip.
[0040] When using the pen tip electro-hydraulic sewing device of this embodiment, all operating equipment is powered on, and then the machine is turned on. Automatic alignment is achieved through photosensitive sensing. Then, the protective cover 104 is rotated above the fixed box 103, allowing the protective cover 104 to open or close the internal space of the fixed box 103. Once the internal space of the fixed box 103 is open, the pen tip is manually placed into the fixed box 103. At this time, the start and stop of the rotating motor 111 or the hydraulic cylinder 113 can be controlled by operating the corresponding buttons on the automatic control device. First, the hydraulic cylinder 113 is activated, causing the power output from its output end to drive the first telescopic rod 114 to extend or retract. This causes the clamping plate 105 to move longitudinally within the fixed box 103, allowing pen tips of different sizes to be clamped and fixed between the clamping plate 105 and the fixed box 103. Then, the rotary motor 111 is activated, causing the power output from its output end to drive the rotating rod 112 to rotate vertically along its axis, thereby driving the rotating plate... 102 rotates vertically along the axis of the rotating rod 112, thereby causing the fixed box 103 to rotate vertically along the axis of the rotating rod 112. This vertical rotation of the fixed box 103 along the axis of the rotating rod 112 causes the pen tip, which is clamped and fixed inside the fixed box 103, to rotate vertically along the axis of the rotating rod 112, rotating the pen tip 22.5 degrees so that the pen tip is aligned with the operating head 107. At this point, pressing the relevant button on the hydrogen-oxygen generator 110 activates the hydrogen-oxygen generator 110. The mixture of hydrogen and oxygen in the 0 can be transmitted to the operating head 107 via the transmission hose 109 and the connecting box 108, and finally sprayed out from the operating head 107 to perform flame treatment on the pen tip, so as to narrow the gap between the pen tips. Repeat the above operation to achieve batch operation of pen tips. By using low-wear, high-performance electrical equipment to replace the traditional mechanical structure, the serious wear of the various parts of the traditional mechanical structure during long-term use is avoided, which would affect the normal use of the flame-sealing device.
[0041] Second embodiment:
[0042] Based on the first embodiment, please refer to Figures 4 to 6 , Figure 4 This is a schematic diagram of the material feeding assembly of the pen tip electro-ignition and sewing device according to the second embodiment. Figure 5 This is a schematic cross-sectional view along lead screw 203. Figure 6This is a cross-sectional view along the second telescopic rod 209. The present invention provides an electric ignition and sewing device for pen tips, which also includes a feeding assembly. The feeding assembly includes a support box 201, a control motor 202, a lead screw 203, a guide block 204, a steering motor 205, a steering rod 206, a connecting block 207, an electric cylinder 208, the second telescopic rod 209, and a clamping ring 210.
[0043] In this embodiment, the feeding component is located above the workbench 101 and is used to automatically feed the pen tip after the sizing operation is completed, thereby eliminating the need for manual feeding and reducing the workload of the staff.
[0044] The support box 201 is fixedly mounted on the upper surface of the workbench 101; the control motor 202 is fixedly mounted inside the support box 201; the two ends of the lead screw 203 are respectively connected to the output end of the control motor 202 and the support box 201, and the lead screw 203 is located between the control motor 202 and the support box 201; the guide block 204 is movably connected to the lead screw 203, sleeved on the outside of the lead screw 203, and penetrates the support box 201. The support box 201 has a hollow internal structure and a slot. The guide block 204 penetrates the support box 201. The slot 01 can move up and down within the slot of the support box 201. The output end of the control motor 202 is connected to the lead screw 203 and drives the lead screw 203 to rotate horizontally along the axis of the lead screw 203 within the support box 201. The guide block 204 is threadedly connected to the lead screw 203, so that the horizontal rotation of the lead screw 203 along the axis of the lead screw 203 within the support box 201 can drive the guide block 204 to move up and down outside the lead screw 203, thereby driving the connecting block 207 to move up and down outside the support box 201.
[0045] Secondly, the steering motor 205 is fixedly mounted on the side of the guide block 204 away from the support box 201; the steering rod 206 is connected to the output end of the steering motor 205 and is located on the side of the steering motor 205 away from the guide block 204; the connecting block 207 is fixedly mounted on the end of the steering rod 206 away from the steering motor 205, the output end of the steering motor 205 is connected to the steering rod 206, and drives the steering rod 206 to rotate vertically along the axis of the steering rod 206, thereby driving the connecting block 207 to rotate vertically along the axis of the steering rod 206.
[0046] Meanwhile, the electric cylinder 208 is fixedly mounted on the side of the connecting block 207 near the rotating plate 102; the second telescopic rod 209 is connected to the output end of the electric cylinder 208 and is located on the side of the electric cylinder 208 near the connecting block 207; the clamping ring 210 is fixedly mounted on the end of the second telescopic rod 209 away from the electric cylinder 208, the output end of the electric cylinder 208 is connected to the second telescopic rod 209 and drives the second telescopic rod 209 to extend and retract, thereby driving the clamping ring 210 to move up and down on the outside of the connecting block 207.
[0047] When using the pen tip electro-hydraulic welding device of this embodiment, after processing is completed, the pen tip continues to rotate. When the pen tip rotates to align with the clamping ring 210, the clamping plate 105 is moved towards the hydraulic cylinder 113, thereby releasing the fixed state of the pen tip clamped between the clamping plate 105 and the fixing box 103. Then, the electric cylinder 208 is activated, so that the power output from the output end of the electric cylinder 208 drives the second telescopic rod 209 to extend and retract, thereby causing the clamping ring 210 to move up and down on the outside of the connecting block 207, thus allowing the pen tip to... The pen tip can be clamped and fixed between the clamping rings 210 on both the upper and lower sides. At this time, the pen tip has been transferred from the fixing box 103 to the clamping rings 210. Then, the control motor 202 is started, so that the power output from the output end of the control motor 202 drives the lead screw 203 to rotate horizontally along the axis of the lead screw 203 in the support box 201. This drives the guide block 204 to move up and down on the outside of the lead screw 203, and then drives the connecting block 207 to move up and down on the outside of the support box 201. The up-and-down movement of the support box 201 on the outside causes the clamping rings 210 to move up and down above the base, thereby causing the pen tip, which is clamped and fixed between the clamping rings 210, to move up and down above the base. The pen tip moves down until it reaches its limit position, after which the steering motor 205 is activated. The power output from the steering motor 205 drives the steering rod 206 to rotate vertically along its axis, thereby causing the connecting block 207 to rotate vertically along the axis of the steering rod 206, and thus driving the pen tip to move up and down. The pen tip, clamped and fixed between the clamping rings 210, rotates vertically along the axis of the steering rod 206. When the connecting block 207 rotates to the horizontal position, the clamping rings 210 move towards the electric cylinder 208, thereby releasing the fixed state of the pen tip clamped and fixed between the clamping rings 210. At this time, the pen tip will fall into the storage box placed on the base for unified collection and processing, realizing the automatic unloading operation of the pen tip. By automatically unloading the pen tip after the welding and sewing operation is completed, manual unloading is not required, thereby reducing the workload of the staff.
[0048] Third embodiment:
[0049] Based on the second embodiment, please refer to Figure 7 , Figure 7 This is a flowchart illustrating the electro-hydraulic welding and sewing method for a pen tip according to the third embodiment. The present invention also provides a method for electro-hydraulic welding and sewing a pen tip, comprising the following steps:
[0050] S101. Rotate the protective cover 104 above the fixed box 103 to open the internal space of the fixed box 103, and then put the pen tip into the fixed box 103.
[0051] S102. Start the hydraulic cylinder 113. The power output from the output end of the hydraulic cylinder 113 drives the first telescopic rod 114 to extend and retract, thereby driving the clamping plate 105 to move longitudinally within the fixed box 103, so as to clamp and fix the pen tip.
[0052] S103. Start the rotating motor 111. The power output from the output end of the rotating motor 111 drives the rotating rod 112 to rotate, thereby driving the rotating plate 102 to rotate, and in turn driving the pen tip inside the fixed box 103 to rotate.
[0053] S104. When the pen tip is rotated to align with the operating head 107, a mixture of hydrogen and oxygen transmitted through the hydrogen-oxygen generator 110 is sprayed out from the operating head 107 to perform flame treatment on the pen tip, so as to narrow the slit of the pen tip.
[0054] S105. After processing is completed, continue to rotate the pen tip. When the pen tip is rotated to be aligned with the clamping ring 210, let the clamping plate 105 release the fixed state of the pen tip.
[0055] S106. Then, the electric cylinder 208 is activated. The power output from the output end of the electric cylinder 208 drives the second telescopic rod 209 to extend and retract, thereby causing the clamping ring 210 to move up and down on the outside of the connecting block 207, so as to clamp and fix the pen tip.
[0056] S107. Start the control motor 202. The power output from the output end of the control motor 202 drives the lead screw 203 to rotate, thereby driving the guide block 204 to move up and down, and in turn driving the pen tip clamped and fixed between the clamping rings 210 to move up and down, so that the pen tip moves down until it reaches the limit position.
[0057] S108. Start the steering motor 205. The power output from the output end of the steering motor 205 drives the steering rod 206 to rotate, thereby driving the connecting block 207 to rotate, and then driving the pen tip clamped and fixed between the clamping rings 210 to rotate until the connecting block 207 is in a horizontal state.
[0058] S109. Move the clamping ring 210 toward the electric cylinder 208 to release the fixed state of the pen tip. At this time, the pen tip will fall into the storage box placed on the base for unified collection and processing, thus completing the sizing operation of the pen tip.
[0059] When using the pen tip electro-hydraulic welding method of this embodiment, all operating devices are powered on, and then the machine is turned on. Automatic alignment is achieved through photosensitive sensing. Then, the protective cover 104 is rotated above the fixed box 103, allowing the protective cover 104 to open or close the internal space of the fixed box 103. Once the internal space of the fixed box 103 is open, the pen tip is manually placed into the fixed box 103. At this time, the start and stop of the rotating motor 111 or the hydraulic cylinder 113 can be controlled by operating the corresponding buttons on the automatic control device. First, the hydraulic cylinder 113 is started, causing the power output from the output end of the hydraulic cylinder 113 to drive the first telescopic rod 114 to extend or retract, thereby causing the clamping plate 105 to move within the fixed box 103. The pen tip moves longitudinally within the clamping plate 105 and the fixing box 103, allowing pen tips of different sizes to be clamped and fixed between them. Then, the rotating motor 111 is activated, causing the output power to drive the rotating rod 112 to rotate vertically along its axis. This, in turn, causes the rotating plate 102 to rotate vertically along the axis of the rotating rod 112, which in turn causes the fixing box 103 to rotate vertically along the axis of the rotating rod 112. The vertical rotation of the fixing box 103 along the axis of the rotating rod 112 causes the pen tip clamped within the fixing box 103 to rotate vertically along the axis of the rotating rod 112, resulting in a 22-degree rotation of the pen tip.The pen tip is rotated 5 degrees to align with the operating head 107. At this point, the relevant button on the hydrogen-oxygen generator 110 is pressed, allowing the hydrogen and oxygen mixture within the generator 110 to be transmitted via the transmission hose 109 and the connecting box 108 to the operating head 107, and finally ejected from the operating head 107. This flame treatment of the pen tip narrows the gap between the pen tips. After treatment, the pen tip is rotated further. When the pen tip aligns with the clamping ring 210, the clamping plate 105 is moved towards the hydraulic cylinder 113, thereby aligning the clamping plate 105 with the fixing box 108. The pen tip, which was clamped and fixed between the three points, is released. Then, the electric cylinder 208 is activated, causing its output power to drive the second telescopic rod 209 to extend or retract. This causes the clamping ring 210 to move up and down outside the connecting block 207, allowing the pen tip to be clamped and fixed between the clamping rings 210 on both sides. At this point, the pen tip has been transferred from the fixing box 103 to between the clamping rings 210. Then, the control motor 202 is activated, causing its output power to drive the lead screw 203. The lead screw 203 moves along the lead screw within the support box 201. The axis of screw 203 rotates horizontally, thereby causing the guide block 204 to move up and down outside the screw 203, which in turn causes the connecting block 207 to move up and down outside the support box 201. The up and down movement of the connecting block 207 outside the support box 201 causes the clamping ring 210 to move up and down above the base, which in turn causes the pen tip, clamped between the clamping rings 210, to move up and down above the base, until the pen tip reaches its limit position. Then, the steering motor 205 is activated, causing the power output from the steering motor 205 to drive... The steering rod 206 rotates vertically along its axis, thereby causing the connecting block 207 to rotate vertically along the same axis. This, in turn, causes the pen tip, which is clamped and fixed between the clamping rings 210, to rotate vertically along the same axis. When the connecting block 207 rotates to a horizontal position, the clamping rings 210 move towards the electric cylinder 208, thus releasing the pen tip from its clamping position. The pen tip then falls into a storage box placed on the base for collection and processing, completing the pen tip sewing operation.
[0060] The above-disclosed embodiments are merely one or more preferred embodiments of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes for implementing the above embodiments and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.
Claims
1. A pen tip electro-hydraulic welding and sewing device, comprising a worktable, characterized in that, It also includes execution components; The execution component includes a rotating block, a rotating plate, a fixed box, a protective cover, a drive block, a clamping plate, a support column, and an operating head. The rotating block is used to rotate the rotating plate, and the rotating plate is located on the side of the rotating block away from the worktable surface. The fixed box is fixed to the outside of the rotating plate. The protective cover is movably connected to the fixed box and is located on the side of the fixed box away from the rotating plate. The drive block is used to drive the clamping plate to move, and the clamping plate is located on the inside of the fixed box. The support column is fixed to the upper surface of the worktable surface. The operating head is movably connected to the support column and is located on the side of the support column away from the worktable surface. The execution assembly also includes a connecting box, a transmission hose, and a hydrogen-oxygen generator. The connecting box is connected to the operating head and is located on the side of the operating head away from the rotating plate. The transmission hose is connected to the connecting box and is located on the side of the connecting box away from the operating head. The hydrogen-oxygen generator is connected to the transmission hose and is fixed to the upper surface of the workbench. The rotating block includes a rotating motor and a rotating rod. The rotating motor is fixed to the upper surface of the worktable. The two ends of the rotating rod are respectively connected to the output end of the rotating motor and the rotating plate. The driving block includes a hydraulic cylinder and a first telescopic rod. The hydraulic cylinder is fixed to the inside of the fixed box. The two ends of the first telescopic rod are respectively connected to the output end of the hydraulic cylinder and the clamping plate. The pen tip electro-ignition and sewing device also includes a feeding component, which is used for automatically feeding the pen tip; The feeding assembly includes a support box, a control motor, a lead screw, and a guide block. The support box is fixed to the upper surface of the worktable. The control motor is fixed to the inside of the support box. The two ends of the lead screw are respectively connected to the output end of the control motor and the support box. The guide block is movably connected to the lead screw, sleeved on the outside of the lead screw, and passes through the support box. The feeding assembly also includes a steering motor, a steering rod, and a connecting block. The steering motor is fixed to the side of the guide block away from the support box. The steering rod is connected to the output end of the steering motor and is located on the side of the steering motor away from the guide block. The connecting block is fixed to the end of the steering rod away from the steering motor. The feeding assembly also includes an electric cylinder, a second telescopic rod, and a clamping ring. The electric cylinder is fixedly mounted on the side of the connecting block near the rotating plate. The second telescopic rod is connected to the output end of the electric cylinder. The clamping ring is fixedly mounted on the end of the second telescopic rod away from the electric cylinder. The pen tip can be clamped and fixed between the clamping rings on the upper and lower sides.
2. A method of electrically igniting and sealing a tip using the electrically igniting and sealing tip device of claim 1, wherein Includes the following steps: Rotate the protective cover on top of the fixed box to open the internal space of the fixed box, and then put the pen tip into the fixed box; The hydraulic cylinder is activated, and the power output from the output end of the hydraulic cylinder drives the first telescopic rod to extend and retract, thereby causing the clamping plate to move longitudinally within the fixed box, thus clamping and fixing the pen tip. The rotating motor is started, and the power output from the output end of the rotating motor drives the rotating rod to rotate, thereby driving the rotating plate to rotate, and in turn driving the pen tip inside the fixed box to rotate. When the pen tip is rotated to align with the operating head, a mixture of hydrogen and oxygen transmitted through the hydrogen-oxygen generator is ejected from the operating head to perform flame treatment on the pen tip, so as to narrow the slit of the pen tip. After processing is complete, continue to rotate the pen tip. When the pen tip is rotated to align with the clamping ring, allow the clamping plate to release the pen tip from its fixed state. Then the electric cylinder is activated, and the power output from the output end of the electric cylinder drives the second telescopic rod to extend and retract, thereby causing the clamping ring to move up and down on the outside of the connecting block, so as to clamp and fix the pen tip. Start the control motor, and the power output from the output end of the control motor drives the lead screw to rotate, thereby causing the guide block to move up and down, which in turn causes the pen tip, which is clamped and fixed between the clamping rings, to move down until it reaches the limit position. Start the steering motor. The power output from the output end of the steering motor drives the steering rod to rotate, thereby causing the connecting block to rotate, which in turn causes the pen tip, which is clamped and fixed between the clamping rings, to rotate until the connecting block is in a horizontal state. Move the clamping ring closer to the electric cylinder to release the pen tip from its fixed state. The pen tip will then fall into the storage box placed on the base for unified collection and processing, thus completing the pen tip sewing operation.
Citation Information
Patent Citations
Multi-station part conveying equipment
CN106637364A