An electromagnetic wire production oven
By using an infrared sensor strip and probe in conjunction with an electronic control system, the winding rack in the oven used for producing electromagnetic wire is precisely placed and rotated stably, solving the problem of inaccurate placement of the winding rack in traditional ovens and improving safety and drying efficiency.
Patent Information
- Application Number
- CN202511414830.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-09-30
AI Technical Summary
In traditional ovens used for producing electromagnetic wire, the winding racks are not placed precisely, which may cause them to shift or fail to rotate properly during drying, posing a safety risk.
The system employs an infrared sensor strip and probe in conjunction with an electronic control system. By sensing the position of the motorized forklift and automatically compensating for adjustments, it ensures the precise placement of the winding frame and achieves stable rotation of the winding frame through a linkage gear system.
It improves the placement accuracy and stability of the winding rack, avoids the risk of displacement during drying, ensures processing safety, and improves drying efficiency.
Smart Images

Figure CN120913953B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of ovens, and particularly relates to an oven for electromagnetic wire production. BACKGROUND
[0002] The electromagnetic wire, also known as winding wire, is an insulated wire used for manufacturing coils or windings in electrical products. The electromagnetic wire is composed of a conductor and an insulation layer, and is mainly divided into enameled wire, wrapped wire, enameled wrapped wire and inorganic insulated wire. The electromagnetic wire production oven is a drying device specially used in the production process of electromagnetic wire. It generates heat source through power supply heating of the electric heating pipe, so that the heated object absorbs heat energy, thereby achieving the effect of rapid drying, shortening the production cycle, saving energy and improving product quality.
[0003] However, the traditional device has the following problems when in use:
[0004] The traditional electromagnetic wire winding frame is large in size, and can only be placed horizontally by lifting two end discs during the transportation process of the motorized forklift, and cannot be placed vertically. However, due to the movement control of the forklift, it is difficult to place the winding frame horizontally and vertically on the base, and the inaccuracy of the forklift placement may cause the winding frame not to be located between the same limiting cylinders, thereby causing the winding frame to not rotate normally during drying in the oven, and even the risk of rolling off the base, so the processing safety cannot be guaranteed. Therefore, we need an electromagnetic wire production oven that can improve the accuracy and stability of the winding frame placement, thereby guaranteeing the processing safety. SUMMARY
[0005] In view of the deficiencies of the prior art, the application aims to provide an electromagnetic wire production oven which has the advantages of improving the accuracy and stability of the winding frame placement, thereby guaranteeing the processing safety.
[0006] To achieve the above-mentioned purpose, the application provides the following technical scheme: an electromagnetic wire production oven, comprising an oven, a guide rail groove is formed in the inner cavity bottom of the oven, an electric control guide rail extending outward is fixedly connected to the inner wall of the guide rail groove, a support frame with the same height as the bottom of the oven is fixedly installed on the bottom outer wall of the electric control guide rail, a motorized forklift is arranged on one side outer wall of the electric control guide rail, a forklift rack is installed at the front end of the motorized forklift, an electromagnetic wire winding frame is movably placed on the top outer wall of the forklift rack, a limiting stop rod is fixedly connected between the two forklift racks, the limiting stop rod is movably attached to one side outer wall of the electromagnetic wire winding frame, a limiting base is arranged below the electromagnetic wire winding frame, two grooves are formed in the top outer wall of the limiting base, an infrared induction belt is fixedly installed on the inner wall of the groove, two infrared probes are fixedly installed on the bottom outer wall of each forklift rack, and the infrared probes are signal connected with the infrared induction belt.
[0007] Preferably, the top of the support frame is slidingly connected with a supporting base, the top of the supporting base is fixedly connected with two secondary guide rails on the two side outer walls, the top outer wall of the supporting base is provided with a supporting base, the two side outer walls of the supporting base are fixedly connected with electric control sliding blocks, the inside of the electric control sliding block is slidingly connected with the outer wall of the secondary guide rail, the shaft center position of the supporting base is fixedly installed with a bidirectional operation motor, the shaft rod of the bidirectional operation motor is fixedly connected with the bottom outer wall center position of the limiting base, and the top outer wall of the electric control sliding block is movably attached to the bottom outer wall of the limiting base.
[0008] Preferably, the side outer wall of the oven is fixedly installed with a central control operation table, and the infrared induction belt is in signal communication with the central control operation table.
[0009] Preferably, the top outer wall of the limiting base is provided with two touch switches, the top outer wall of the touch switch is fixedly installed with a protective cover, a plurality of limiting rollers are rotatably connected to the inner wall of the touch switch, the inner wall of the limiting roller on the two sides is fixedly connected with the same connecting rod, and the top outer wall of the limiting roller is movably attached to the bottom outer wall of the electromagnetic wire winding frame.
[0010] Preferably, the top outer wall of the limiting base is provided with a mounting groove, and the outer wall of one of the limiting rollers on one side is fixedly connected with a connecting gear in the inner cavity position of the mounting groove.
[0011] Preferably, the side outer wall of the connecting gear is fixedly connected with an extension gear, the two side outer walls of the oven are fixedly installed with linkage motors, one side outer wall of the linkage motor is fixedly connected with a plurality of shafts, a plurality of shafts of the multi-shaft device are fixedly connected with linkage gears, and the outer wall of the linkage gear is movably engaged with the outer wall of the extension gear.
[0012] Preferably, the side outer wall of the limiting base is fixedly installed with a spring hinge, the side outer wall of the spring hinge is fixedly installed with a mounting baffle, the mounting baffle is hingedly connected with the limiting base through the spring hinge, and the side outer wall of the mounting baffle facing the limiting base is fixedly installed with a lamp strip.
[0013] Preferably, the side outer wall of the mounting baffle is fixedly connected with a pressing block, the bottom outer wall of the pressing block is movably attached to the top outer wall of the limiting base, the top outer wall of the limiting base is fixedly installed with a touch switch, the top outer wall of the touch switch is movably attached to the bottom outer wall of the pressing block, the touch switch is in communication connection with the central control operation table, and the mounting baffle is fixedly installed with a connecting wire in electrical communication with the lamp strip.
[0014] Preferably, the two side outer walls of the mounting baffle are fixedly provided with L-shaped supports at the top, one side outer wall of the L-shaped support is rotatably connected with a connecting shaft, the outer wall of the connecting shaft is fixedly connected with a roller, and the top outer wall of the roller is movably attached to the bottom outer wall of the forklift rack.
[0015] Preferably, the two side outer walls of the mounting baffle are fixedly provided with L-shaped supports at the top, one side outer wall of the L-shaped support is rotatably connected with a connecting shaft, the outer wall of the connecting shaft is fixedly connected with a roller, and the top outer wall of the roller is movably attached to the bottom outer wall of the forklift rack.
[0016] Compared with the prior art, the present application has the following advantages:
[0017] In the present application, when drying processing is needed, the box door is opened to move the supporting base outside the oven, then the staff drives the motorized forklift to the side of the oven, and the electromagnet wire reel is suspended on the limiting base by slowly moving the forklift. The distance between the two infrared sensing strips in the present application is the same as the distance between the two infrared probes on the forklift rack. The approximate position of the motorized forklift can be determined by the signal sensing trigger of the infrared sensing strip and the infrared probe. If the infrared sensing strip can trigger the response of the four infrared probes at the same time, it means that the motorized forklift is parked horizontally and vertically, and the placement deviation of the electromagnet wire reel is within the threshold range, so it can be normally lowered. If the infrared sensing strip does not trigger the signal sensing of the infrared probe at the same time, it means that the motorized forklift is not parked correctly. At this time, if the electromagnet wire reel is placed, it will not be located between the same limiting cylinders, which will cause the electromagnet wire reel to not rotate normally during drying in the oven, or even have the risk of deviating and rolling down the limiting base, so the processing safety is difficult to guarantee. Therefore, in the case of slight deviation of the motorized forklift, the present application can start the bidirectional operation motor on the central control console to drive the limiting base to rotate slowly and slightly, and simultaneously drive the infrared sensing strip to deflect, and at the same time, the electric control sliding block can be started to move on the secondary guide rail to fine-tune the position forward and backward, until the infrared sensing strip triggers the sensing of the four infrared probes at the same time, indicating that it can be normally lowered. The present application realizes automatic compensation of positioning through this device, thereby reducing the movement control of the forklift, improving the placement efficiency, and improving the placement accuracy and stability of the motorized forklift. The risk of not rotating normally during drying in the oven, or even deviating and rolling down the limiting base, is avoided, and the processing safety is guaranteed. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The present application is a schematic diagram of the overall structure.
[0019] Figure 2 The present application is a schematic diagram of the overall structure.
[0020] Figure 3 The present application is a schematic diagram of the overall structure.
[0021] Figure 4 The front view structure diagram of the supporting base in the application.
[0022] Figure 5 The structure of the supporting base in the application. Figure 4 The structure of the supporting base in the application.
[0023] Figure 6 The left lower direction overall structure diagram of the supporting base in the application.
[0024] Figure 7 The structure of the supporting base in the application. Figure 6 The structure of the supporting base in the application.
[0025] Figure 8 The right upper direction overall structure diagram of the limiting base in the application.
[0026] Figure 9 The structure of the limiting base in the application. Figure 8 The structure of the limiting base in the application.
[0027] Figure 10 The right upper direction structure diagram of the limiting base after part of the section in the application.
[0028] Figure 11 The structure of the limiting base in the application. Figure 10 The structure of the limiting base in the application.
[0029] Figure 12 The section structure diagram of the installation baffle in the application.
[0030] Figure 13 The bottom view structure diagram of the motorized fork truck in the application.
[0031] Figure 14 The structure diagram of the bidirectional operation motor in the application.
[0032] Figure 15 The internal structure diagram of the oven in the application.
[0033] Figure 16 The structure of the oven in the application. Figure 15 The structure of the oven in the application.
[0034] In the figure: 1, oven; 2, guide rail groove; 3, electric control guide rail; 4, support frame; 5, bearing base; 6, groove; 7, secondary guide rail; 8, electric control slider; 9, support base; 10, bidirectional operation motor; 11, limiting base; 12, infrared induction belt; 13, infrared probe; 14, forklift rack; 15, limiting stop lever; 16, electromagnetic wire winding frame; 17, central control console; 18, spring hinge; 19, mounting baffle; 20, lamp strip; 21, high-strength protective glass; 22, L-shaped support; 23, connecting shaft; 24, roller; 25, clamping block; 26, protective hem; 27, pressing block; 28, touch switch; 29, limiting roller; 30, connecting rod; 31, protective cover; 32, mounting groove; 33, connecting gear; 34, toothed belt; 35, extension gear; 36, linkage motor; 37, linkage gear; 38, motorized forklift; 39, multi-shaft device; 40, connecting wire. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical scheme of the present application clear, complete description, and the advantages are more clear and obvious, the following will be further described in detail with the embodiments of the present application combined with the drawings. It should be understood that the specific embodiments described here are part of the embodiments of the present application, not all the embodiments, only to explain the embodiments of the present application, and not for the purpose of limiting the embodiments of the present application, all other embodiments obtained by the person skilled in the art without doing creative work, belong to the scope of protection of the present application.
[0036] Example one, please refer to Figures 1 to 16The application provides a technical scheme: an oven for electromagnetic wire production, which comprises an oven 1, a guide rail groove 2 is formed in the bottom of the inner cavity of the oven 1, an electric control guide rail 3 extending to the outside is fixedly connected to the inner wall of the guide rail groove 2, a support frame 4 with the same height as the bottom of the oven 1 is fixedly installed on the bottom outer wall of the electric control guide rail 3, a motorized forklift 38 is arranged on one side outer wall of the electric control guide rail 3, a forklift pallet 14 is installed at the front end of the motorized forklift 38, an electromagnetic wire winding frame 16 is movably placed on the top outer wall of the forklift pallet 14, a limiting baffle 15 is fixedly connected between the two forklift pallets 14, the limiting baffle 15 is movably attached to one side outer wall of the electromagnetic wire winding frame 16, so that the electromagnetic wire winding frame 16 is positioned on the forklift pallet 14, a limiting base 11 is arranged below the electromagnetic wire winding frame 16, two grooves 6 are formed in the top outer wall of the limiting base 11, an infrared sensing belt 12 is fixedly installed on the inner wall of the groove 6, two infrared probes 13 are fixedly installed on the bottom outer wall of the two forklift pallets 14, the infrared probe 13 is signal connected with the infrared sensing belt 12, a central control operation table 17 is fixedly installed on one side outer wall of the oven 1, the infrared sensing belt 12 is signal connected with the central control operation table 17, a supporting base 5 is slidingly connected to the top of the support frame 4, two secondary guide rails 7 are fixedly connected to the top two side outer walls of the supporting base 5, a supporting base 9 is arranged on the top outer wall of the supporting base 5, an electric control sliding block 8 is fixedly connected to the two side outer walls of the supporting base 9, the inside of the electric control sliding block 8 is slidingly connected with the outer wall of the secondary guide rail 7, a bidirectional operation motor 10 is fixedly installed at the axial position of the supporting base 9, the shaft rod of the bidirectional operation motor 10 is fixedly connected with the bottom outer wall center position of the limiting base 11, and the top outer wall of the electric control sliding block 8 is movably attached to the bottom outer wall of the limiting base 11.
[0037] When drying processing is needed in the application, the box door is opened to control the support base 5 to move out of the oven 1 through the electric control guide rail 3, then the staff drives the motorized forklift 38 to the side of the oven 1, and the electromagnetic wire winding frame 16 is suspended on the limiting base 11 with the slow movement of driving. In the application, the interval of the two infrared induction bands 12 is the same as the interval of the two infrared probes 13 on the forklift shelf 14. The approximate position of the motorized forklift 38 can be judged through the signal emission of the infrared probe 13 and the signal induction trigger of the infrared induction band 12 and the infrared probe 13. If the infrared induction band 12 can trigger the reaction of the four infrared probes 13 at the same time, it means that the motorized forklift 38 is parked horizontally and vertically, and the placement offset of the electromagnetic wire winding frame 16 is within the threshold range, so it can be normally lowered. If the infrared induction band 12 cannot trigger the signal induction of the infrared probe 13 at the same time, it means that the motorized forklift 38 is not parked correctly. At this time, if the electromagnetic wire winding frame 16 is placed, the electromagnetic wire winding frame 16 will not be located between the same limiting cylinder 29, which will cause the electromagnetic wire winding frame 16 to not rotate normally during drying in the oven, and even there is a risk of offset rolling down the limiting base 11, so the processing safety is difficult to guarantee. Therefore, in the case that the motorized forklift 38 exists slight offset, the application can start the bidirectional operation motor 10 through the central control operating table 17, so as to drive the limiting base 11 to make slow and slight rotation, and simultaneously drive the infrared induction band 12 to deflect, and at the same time, the electric control sliding block 8 can be started to move on the secondary guide rail 7 to fine-tune the front and back positions, until the infrared induction band 12 triggers the induction of the four infrared probes 13 at the same time, which means that it can be normally lowered. The application realizes automatic compensation of positioning through the device, so as to reduce the movement control of the forklift, improve the placement efficiency, and improve the placement accuracy and stability of the motorized forklift 38, avoid the risk of not rotating normally during drying in the oven 1, and even offset rolling down the limiting base 11, and guarantee the processing safety.
[0038] In example two, two touch switches 28 are arranged on the top outer wall of the limiting base 11, a protective cover 31 is fixedly installed on the top outer wall of the touch switch 28, a plurality of limiting cylinders 29 are rotationally connected to the inner wall of the touch switch 28, the same connecting rod 30 is fixedly connected to the inner walls of the limiting cylinders 29 on both sides, the top outer wall of the limiting cylinder 29 is movably attached to the bottom outer wall of the electromagnetic wire winding frame 16, one side outer wall of one side limiting cylinder 29 is fixedly connected to the inner cavity position of the mounting groove 32 on the top outer wall of the limiting base 11, a connecting gear 33 is fixedly connected to one side outer wall of the connecting gear 33, the same toothed belt 34 is rotationally connected to the outer walls of a plurality of connecting gears 33, an extension gear 35 is fixedly connected to one side outer wall of the connecting gear 33, a linkage motor 36 is fixedly installed on the outer walls of the oven 1, a multi-shaft device 39 is fixedly connected to one side outer wall of the linkage motor 36, a linkage gear 37 is fixedly connected to the shafts of the multi-shaft device 39, and the outer wall of the linkage gear 37 is movably engaged with the outer wall of the extension gear 35.
[0039] In the present application, when the electromagnetic wire winding frame 16 is placed on the limiting base 11, the bottom outer wall of the electromagnetic wire winding frame 16 will be supported between the limiting rollers 29. At this time, the supporting base 5 is moved into the oven 1, and the extension gear 35 will be engaged with the connecting gear 37. After closing the oven door, the size of the oven will press and engage the two gears without loosening. When the oven 1 is working, the linkage motor 36 is started to drive the connecting gear 37 and the extension gear 35 to rotate, and then the limiting rollers 29 on the limiting base 11 are driven to rotate through the toothed belt 34 and the connecting gear 33. Further, the upper electromagnetic wire winding frame 16 is driven to rotate, and the rotation of the electromagnetic wire winding frame 16 makes the drying effect more uniform, thereby improving the drying efficiency.
[0040] In example three, on the basis of example one, the limiting base 11 is fixedly installed with a spring hinge 18 on one side of the outer wall, and the spring hinge 18 is fixedly installed with a mounting baffle 19 on one side of the outer wall. The mounting baffle 19 is hingedly connected to the limiting base 11 through the spring hinge 18, and the mounting baffle 19 is fixedly installed with a lamp strip 20 on the side of the outer wall facing the limiting base 11. The mounting baffle 19 is fixedly connected with a pressing block 27 on one side of the outer wall, and the bottom outer wall of the pressing block 27 is movably attached to the top outer wall of the limiting base 11. The top outer wall of the limiting base 11 is fixedly installed with a touch switch 28, and the top outer wall of the touch switch 28 is movably attached to the bottom outer wall of the pressing block 27. The touch switch 28 is in communication with the lamp strip 20 through a central control operation table 17. The mounting baffle 19 is fixedly installed with a connecting wire 40 in electrical connection with the lamp strip 20. The mounting baffle 19 is fixedly installed with an L-shaped bracket 22 on both sides of the outer wall at the top position, and the L-shaped bracket 22 is rotatably connected with a connecting shaft 23 on one side of the outer wall. The connecting shaft 23 is fixedly connected with a roller 24, and the top outer wall of the roller 24 is movably attached to the bottom outer wall of the forklift rack 14. The mounting baffle 19 is fixedly installed with a clamping block 25 on one side of the outer wall at both ends, and the inner wall of the clamping block 25 is movably inserted with a protective edge 26. The inner wall of the protective edge 26 is inlaid with a high-strength protective glass 21, and one side of the outer wall of the high-strength protective glass 21 is movably attached to one side of the outer wall of the forklift rack 14.
[0041] The spring stress of the spring hinge 18 can make the device on one side of the mounting baffle 19 vertically stand on one side of the limiting base 11, when the motorized forklift 38 advances, the front end of the forklift rack 14 can abut against the outer wall of one side of the high-strength protective glass 21, at this time, the mounting baffle 19 is stressed to deviate around the spring hinge 18 as the axis, the pressing block 27 fixedly connected with the mounting baffle 19 deviates and tilts up synchronously, so that the touch switch 28 loses the pressing and is triggered, at this time, the lamp strip 20 is electrified and brightens, so as to remind the driver of the motorized forklift 38 on the opposite side that the motorized forklift 38 has reached the standard advancing position, slightly moves up the forklift rack 14 to hover and waits for automatic calibration, which is convenient for the driver to judge, the spring hinge 18 can offset the extrusion stress of the forklift rack 14 and reset, when the calibration is completed and the forklift rack 14 is lowered, the bottom outer wall of the forklift rack 14 can extrude the mounting baffle 19, in the application, the roller 24 is installed on the top outer wall of the mounting baffle 19, and the roller 24 and the spring hinge 18 are not on the same vertical axis, so the roller 24 can preferentially deviate outward to drive the mounting baffle 19 to overturn, so as to avoid damage of the mounting baffle 19, and the high-strength protective glass 21 placed in front of the lamp strip 20 can effectively avoid scratching of the device, so as to protect the service life and facilitate replacement.
[0042] The working principle and use process of the present application: in the present application, when drying processing is needed, open the box door and control the supporting base 5 to move outside the oven 1 through the electric control guide rail 3, then the worker drives the motorized forklift 38 to the side of the oven 1, and slowly moves the electromagnetic wire winding frame 16 to hover on the limiting base 11, the interval of the two infrared induction bands 12 in the present application is the same as the interval of the two infrared probes 13 on the forklift shelf 14, the approximate position of the motorized forklift 38 can be judged through the signal induction trigger of the infrared induction band 12 and the infrared probe 13, if the infrared induction band 12 can trigger the reaction of the four infrared probes 13 at the same time, it means that the motorized forklift 38 is parked horizontally and vertically, the electromagnetic wire winding frame 16 is placed within the threshold range, and it can be normally lowered, if the infrared induction band 12 does not trigger the signal induction of the infrared probe 13 at the same time, it means that the motorized forklift 38 is not parked correctly, at this time, if the electromagnetic wire winding frame 16 is placed, the electromagnetic wire winding frame 16 will not be located between the same limiting cylinder 29, which will cause the motorized forklift 38 to not rotate normally during drying in the oven, even there is a risk of offset rolling down the limiting base 11, and the processing safety is difficult to guarantee, therefore, in the case that the motorized forklift 38 exists slight offset, the present application can drive the limiting base 11 to make slow and slight rotation through the start of the bidirectional operation motor 10 in the central control operating platform 17, synchronously drive the infrared induction band 12 to deflect, and at the same time, the electric control sliding block 8 can be started to move on the secondary guide rail 7 to fine-tune the front and back positions, until the infrared induction band 12 triggers the induction of the four infrared probes 13 at the same time, which means that it can be normally lowered, the present application realizes automatic compensation of positioning through this device, thereby reducing the movement control of the forklift, improving the placement efficiency, and improving the placement accuracy and stability of the motorized forklift 38, avoiding the risk of not rotating normally during drying in the oven, even there is a risk of offset rolling down the limiting base 11, and guaranteeing the processing safety.
[0043] When the electromagnetic wire winding frame 16 is placed on the limiting base 11, the bottom outer wall of the electromagnetic wire winding frame 16 is supported between the limiting rollers 29, at this time, the supporting base 5 is moved into the oven 1, the extension gear 35 is engaged with the connecting gear 37, after the oven door is closed, the size of the oven is just right to press and engage the two gears, which will not be loose, when the oven 1 is drying, the linkage motor 36 is started to drive the connecting gear 37 and the extension gear 35 to rotate, and then the rotation of the limiting rollers 29 on the limiting base 11 is driven through the toothed belt 34 and the movable engagement of the connecting gear 33, further, the electromagnetic wire winding frame 16 above is driven to rotate, through the rotation of the electromagnetic wire winding frame 16, the drying effect is more uniform, so as to improve the drying efficiency, in the present application, the spring stress of the spring hinge 18 makes the device on one side of the mounting baffle 19 vertically stand on one side of the limiting base 11, when the motorized forklift 38 advances, the front end of the forklift pallet 14 will reach one side of the outer wall of the high-strength protective glass 21, at this time, the mounting baffle 19 is offset with the spring hinge 18 as the axis, the pressing block 27 fixedly connected with the mounting baffle 19 is offset upward at the same time, so that the touch switch 28 loses pressing and triggers, at this time, the lamp strip 20 is electrified and brightened, so as to remind the driver of the motorized forklift 38 on the opposite side that the motorized forklift 38 has reached the standard advancing position, slightly moves the forklift pallet 14 upward and hovers to wait for automatic calibration, which is convenient for the driver to judge, through the setting of the spring hinge 18, the extrusion stress of the forklift pallet 14 can be offset and reset, when the calibration is completed and the forklift pallet 14 is lowered, the bottom outer wall of the forklift pallet 14 may extrude the mounting baffle 19, in the present application, the roller 24 is installed on the top outer wall of the mounting baffle 19, and the roller 24 and the spring hinge 18 are not on the same vertical axis, so the mounting baffle 19 is driven to flip outward, so as to avoid damage to the mounting baffle 19, and the high-strength protective glass 21 placed in front of the lamp strip 20 can effectively avoid scratching the device, which protects the service life and facilitates replacement.
[0044] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, the scope of the present application being defined by the appended claims and their equivalents.
Claims
1. An electromagnetic wire production oven comprising an oven (1), characterized by: The inner cavity of the oven (1) is provided with a guide rail groove (2), the inner wall of the guide rail groove (2) is fixedly connected with an outwardly extending electric control rail (3), the bottom outer wall of the electric control rail (3) is fixedly installed with a support frame (4) which is flush with the bottom of the oven (1), the outer wall of one side of the electric control rail (3) is provided with a motorized forklift (38), the front end of the motorized forklift (38) is installed with a forklift rack (14), the top outer wall of the forklift rack (14) is movably placed with an electromagnetic wire winding frame (16), two forklift racks (14) are fixedly connected with a limiting stop bar (15), the outer wall of one side of the limiting stop bar (15) is movably attached to the outer wall of one side of the electromagnetic wire winding frame (16), the electromagnetic wire winding frame (16) is positioned on the forklift rack (14), the limiting base (11) is arranged below the electromagnetic wire winding frame (16), the top outer wall of the limiting base (11) is provided with two grooves (6), the inner wall of the groove (6) is fixedly installed with an infrared induction strip (12), the bottom outer wall of the two forklift racks (14) is fixedly installed with two infrared probes (13), the infrared probe (13) is signal connected with the infrared induction strip (12), the top of the support frame (4) is slidably connected with a supporting base (5), the top of the supporting base (5) is fixedly connected with a secondary guide rail (7) on both sides of the outer wall, the top outer wall of the supporting base (5) is provided with a supporting base (9), the outer wall of both sides of the supporting base (9) is fixedly connected with an electric control sliding block (8), the inside of the electric control sliding block (8) is slidably connected with the outer wall of the secondary guide rail (7), the shaft center position of the supporting base (9) is fixedly installed with a bidirectional operation motor (10), the shaft of the bidirectional operation motor (10) is fixedly connected with the bottom outer wall center position of the limiting base (11), the top outer wall of the electric control sliding block (8) is movably attached to the bottom outer wall of the limiting base (11).
2. The electromagnetic wire production oven according to claim 1, characterized in that: The side outer wall of the oven (1) is fixedly installed with a central control operation table (17), the infrared induction strip (12) is signal connected with the central control operation table (17).
3. The electromagnetic wire production oven according to claim 1, characterized in that: The top outer wall of the limiting base (11) is provided with two touch switches (28), the top outer wall of the touch switch (28) is fixedly installed with a protective cover (31), the inner wall of the touch switch (28) is rotatably connected with a plurality of limiting rollers (29), the inner wall of both sides of the limiting roller (29) is fixedly connected with the same connecting rod (30), the top outer wall of the limiting roller (29) is movably attached to the bottom outer wall of the electromagnetic wire winding frame (16).
4. The electromagnetic wire production oven according to claim 3, characterized in that: The top outer wall of the limiting base (11) is provided with a mounting groove (32), the outer wall of one side of the limiting roller (29) is fixedly connected with a connecting gear (33) in the inner cavity position of the mounting groove (32), the outer wall of a plurality of connecting gears (33) is rotatably connected with the same gear belt (34).
5. The electromagnetic wire production oven according to claim 4, characterized in that: One side outer wall of the connecting gear (33) is fixedly connected with an extension gear (35), both side outer walls of the oven (1) are fixedly installed with linkage motors (36), one side outer wall of the linkage motor (36) is fixedly connected with a multi-shaft device (39), a plurality of shafts of the multi-shaft device (39) are fixedly connected with linkage gears (37), and the outer wall of the linkage gear (37) is movably engaged with the outer wall of the extension gear (35).
6. The electromagnetic wire production oven according to claim 1, characterized in that: One side outer wall of the limiting base (11) is fixedly installed with a spring hinge (18), one side outer wall of the spring hinge (18) is fixedly installed with a mounting baffle (19), the mounting baffle (19) is hingedly connected with the limiting base (11) through the spring hinge (18), and one side outer wall of the mounting baffle (19) facing the limiting base (11) is fixedly installed with a lamp strip (20).
7. The electromagnetic wire production oven according to claim 6, characterized in that: One side outer wall of the mounting baffle (19) is fixedly connected with a pressing block (27), the bottom outer wall of the pressing block (27) is movably attached to the top outer wall of the limiting base (11), the top outer wall of the limiting base (11) is fixedly installed with a touch switch (28), the top outer wall of the touch switch (28) is movably attached to the bottom outer wall of the pressing block (27), the touch switch (28) is in communication connection with a central control operation table (17) of the lamp strip (20), and the mounting baffle (19) is fixedly installed with a connecting wire (40) in electrical connection with the lamp strip (20).
8. The electromagnetic wire production oven according to claim 6, characterized in that: Both side outer walls of the mounting baffle (19) are fixedly installed with L-shaped supports (22) at the top positions, one side outer wall of the L-shaped support (22) is rotatably connected with a connecting shaft rod (23), the outer wall of the connecting shaft rod (23) is fixedly connected with a roller (24), and the top outer wall of the roller (24) is movably attached to the bottom outer wall of the forklift rack (14).
9. The electromagnetic wire production oven of claim 6, wherein: One side outer wall of the mounting baffle (19) is fixedly installed with clamping blocks (25) at both ends, the inner wall of the clamping block (25) is movably inserted with a protective edge (26), the inner wall of the protective edge (26) is inlaid with a high-strength protective glass (21), and one side outer wall of the high-strength protective glass (21) is movably attached to one side outer wall of the forklift rack (14).
Citation Information
Patent Citations
A production process of enameled wire and a production device thereof
CN109243716A
Automatic production line for small components
CN117415939A