Forming die for processing winder
By designing an automated removal device, the problem of long equipment downtime caused by manual removal of I-beams after production was solved, achieving efficient and automatic removal of I-beams and improving production efficiency.
Patent Information
- Application Number
- CN202423144100.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-19
AI Technical Summary
In existing technology, after the H-beam is produced, it is necessary to manually enter the processing chamber of the forming mold to remove the H-beam, which results in long equipment downtime and low efficiency.
A forming mold for winding machine processing was designed, including a take-out device that automatically takes out the I-beam wheel using components such as an electric push rod and a motor. The device includes the cooperation of a groove rod, a sliding plate, a clamping plate, and a screw to achieve automatic take-out of the I-beam wheel.
The automated removal device improves the convenience of the I-beam removal process, reduces equipment downtime, and increases production efficiency.
Smart Images

Figure CN223657471U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of forming die, especially relates to forming die for winding device processing. BACKGROUND
[0002] The I-beam is the main component structure of the winding device, and the manufacturing process of the I-beam mainly includes turning metal parts, wooden parts and injection molding parts, wherein the metal parts are more common, in order to reduce the quality and reduce the cost, the plastic material is gradually developed, when producing the plastic I-beam, the injection mold is usually used, the heated and melted plastic is injected into the mold cavity by the injection molding machine under high pressure, and the shaped product is obtained after cooling and solidification.
[0003] When the I-beam winding device is produced by using the injection mold, the I-beam located in the mold cavity needs to be taken out manually after the production of the I-beam is completed, and the device is stopped for a long time during this period, which leads to the problem of low efficiency when using the forming device. UTILITY MODEL CONTENTS
[0004] The utility model discloses a forming die for winding device processing, which solves the problem of long downtime of the device during the period when the I-beam located in the mold cavity needs to be taken out manually after the production of the I-beam is completed.
[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a forming die for winding device processing, including machine body, the top of machine body is provided with heating bin, the top of heating bin is provided with hopper, one side of the top of machine body is provided with forming bin, the inside of forming bin is provided with die head and injection head, one side of machine body is provided with control box, the inside of forming bin is provided with taking-out device, the taking-out device includes slot rod, one side of the top of forming bin is provided with first electric push rod, the output rod of first electric push rod is fixedly connected with the bottom of slot rod, the top of slot rod is provided with second electric push rod, the output rod of second electric push rod is fixedly connected with sliding plate, the outer surface of sliding plate is slid on the inner wall of slot rod, one side of sliding plate is provided with motor, the output end of motor is fixedly connected with screw rod, both ends of screw rod are rotatably connected with both ends of sliding plate, the outer surface of screw rod is threadedly connected with sliding rod, the bottom of sliding rod is fixedly connected with L-shaped plate, one side of L-shaped plate is provided with third electric push rod, the output rod of third electric push rod is fixedly connected with clamping plate, the top of clamping plate slides on one side of L-shaped plate.
[0006] The effect achieved by the above-mentioned component is that: when the shaped die is used to produce the spool, the raw material is added into the heating bin through the hopper at the top end of the heating bin, the raw material is heated by the heating bin, the heated raw material enters the injection head, the hydraulic rod in the forming bin is operated to control the injection head to move towards the mold head and be attached to one side of the outer surface of the mold head, the two mold heads are closed by operating the hydraulic rod, the raw material is added into the two mold heads by the injection head, the raw material is cooled and formed in the mold head, after the forming is completed, the two mold heads are moved away from each other by operating the hydraulic rod, and the injection head is moved away from one side of the mold head, then the first electric push rod in the forming bin is operated to retract the groove rod to make one end of the L-shaped plate located on one side of the formed spool surface, the second electric push rod is operated to control the sliding plate to move away from the mold head to take out the spool from the mold head, the motor is operated to drive the screw to rotate to control the sliding rod to slide on the outer surface of the screw and one side of the sliding plate, and the spool is taken to the bin door of the forming bin by the L-shaped plate and the clamp, so that the spool is taken out, and the convenience when the shaped die is used is improved.
[0007] Preferably, one side of the L-shaped plate is fixedly connected with a convex strip made of rubber.
[0008] The effect achieved by the above-mentioned component is that: the stability when the outer surface of the spool is clamped between the clamp and one end of the L-shaped plate can be improved by the rubber convex strip, so that the spool is not easy to slide off from the L-shaped plate and the clamp.
[0009] Preferably, the top end of the sliding rod is fixedly connected with two L-shaped blocks, and one side of the L-shaped block slides on one side of the sliding plate.
[0010] The effect achieved by the above-mentioned component is that: when the motor is operated to drive the screw to control the sliding rod to move, the two L-shaped blocks at the top end of the sliding rod will slide on the outer surface of the sliding plate, the angle between the sliding rod and the sliding plate can be further limited by the L-shaped block, and the angle deviation of the sliding rod during movement is avoided as much as possible.
[0011] Preferably, the output rod of the first electric push rod is fixedly connected with a support rod, and one end of the support rod away from the output rod of the first electric push rod is fixedly connected with the bottom end of the groove rod.
[0012] The effect achieved by the above-mentioned component is that: the bottom end of the groove rod can be supported by the support rod, and the structural stability of the connection between the output rod of the first electric push rod and the bottom end of the groove rod is improved.
[0013] Preferably, the outer surface of the control box is provided with a protection device, the protection device comprises a baffle, one side of the baffle is fixedly connected with two sliding blocks, one side of the control box is provided with two sliding grooves, and the outer surfaces of the two sliding blocks slide on the inner walls of the two sliding grooves respectively.
[0014] The above-mentioned component achieves the effect that when the forming mold is not used, the baffle can be pushed to control the baffle to slide on the inner walls of the sliding grooves through the two sliding blocks to adjust the horizontal position of the baffle, so that the baffle is located at the side of the control knob on the outer surface of the control box to cover the control knob, and the accidental operation of the machine body caused by the accidental touch of the control knob by the staff when the machine body is not running is avoided as much as possible, and resource waste is avoided.
[0015] Preferably, one side of the baffle is fixedly connected with a plurality of rectangular strips, and the rectangular strips are linearly distributed on one side of the baffle.
[0016] The above-mentioned component achieves the effect that pushing the baffle by pressing the rectangular strips on the outer surface of the baffle can more conveniently push the baffle to move and is not easy to slip.
[0017] Preferably, the two sides of the baffle are fixedly connected with protruding blocks, and one side of the control box is fixedly connected with two stop blocks.
[0018] The above-mentioned component achieves the effect that when the baffle is pushed to move away from the control box to a position where the sliding blocks are about to be separated from the interiors of the sliding grooves, the protruding blocks on the two sides of the baffle will be in contact with one side of the stop blocks on the outer surface of the control box to block the movement of the baffle, and the separation of the sliding blocks from the interiors of the sliding grooves is avoided as much as possible.
[0019] Preferably, one side of the control box is fixedly connected with a positioning block, the positioning block is a magnetic block with magnetism, and the baffle is made of metal iron.
[0020] The above-mentioned component achieves the effect that when the baffle completely covers the control knob on one side of the control box, the outer surface of the baffle is in contact with one side of the magnetic positioning block and is magnetically attracted, and the position of the baffle is further fixed.
[0021] Compared with the prior art, the advantages and positive effects of the utility model lie in that:
[0022] In the utility model, the taking-out device is arranged, the first electric push rod is operated to control the L-shaped plate to move to one side of the I-shaped wheel surface, the third electric push rod is operated to control the clamping plate to move to clamp the I-shaped wheel between the L-shaped plate and the clamping plate, then the second electric push rod is operated to control the sliding plate to move to take out the I-shaped wheel from the die head interior, the motor is operated to control the L-shaped plate and the clamping plate to take the I-shaped wheel to the warehouse door of the forming bin, and the I-shaped wheel is conveniently taken out, and the convenience in use of the forming mold is improved. BRIEF DESCRIPTION OF DRAWINGS
[0023] Figure 1A schematic diagram of a three-dimensional structure of the utility model is shown in the figure;
[0024] Figure 2 A schematic diagram of a three-dimensional structure of the utility model is shown in the figure;
[0025] Figure 3 A schematic diagram of a three-dimensional structure of the utility model is shown in the figure Figure 2 A schematic diagram of a three-dimensional structure of the utility model is shown in the figure
[0026] Figure 4 A schematic diagram of a three-dimensional structure of the utility model is shown in the figure
[0027] Figure 5 A schematic diagram of a three-dimensional structure of the utility model is shown in the figure.
[0028] Legend: 1, body; 2, take out device; 3, protection device; 4, heating bin; 5, injection head; 6, forming bin; 7, die head; 8, control box; 21, first electric push rod; 22, groove rod; 23, second electric push rod; 24, sliding plate; 25, motor; 26, screw rod; 27, sliding rod; 28, L-shaped plate; 29, third electric push rod; 210, clamping plate; 211, convex strip; 212, L-shaped block; 213, support rod; 31, sliding groove; 32, sliding block; 33, baffle; 34, rectangular strip; 35, convex block; 36, stop block; 37, positioning block. DETAILED DESCRIPTION
[0029] Example 1, as Figures 1-4The illustrated coiled wire forming die for processing includes a machine body 1, a heating bin 4 is arranged at the top end of the machine body 1, a hopper is arranged at the top end of the heating bin 4, a forming bin 6 is arranged at one side of the top end of the machine body 1, a die head 7 and an injection head 5 are arranged in the forming bin 6, a control box 8 is arranged at one side of the machine body 1, a taking-out device 2 is arranged in the forming bin 6, the taking-out device 2 includes a slot rod 22, a first electric push rod 21 is arranged at one side of the top end of the forming bin 6, the output rod of the first electric push rod 21 is fixedly connected with the bottom end of the slot rod 22, a second electric push rod 23 is arranged at the top end of the slot rod 22, the output rod of the second electric push rod 23 is fixedly connected with a sliding plate 24, the outer surface of the sliding plate 24 slides on the inner wall of the slot rod 22, a motor 25 is arranged at one side of the sliding plate 24, the output end of the motor 25 is fixedly connected with a screw rod 26, the two ends of the screw rod 26 are rotatably connected with the two ends of the sliding plate 24, the outer surface of the screw rod 26 is threadedly connected with a sliding rod 27, the bottom end of the sliding rod 27 is fixedly connected with an L-shaped plate 28, a third electric push rod 29 is arranged at one side of the L-shaped plate 28, the output rod of the third electric push rod 29 is fixedly connected with a clamping plate 210, the top end of the clamping plate 210 slides at one side of the L-shaped plate 28, by arranging the clamping plate 210, when the coiled wire forming die is used to produce an I-beam, the raw material is added into the heating bin 4 through the hopper at the top end of the heating bin 4, the raw material is heated through the heating bin 4, the heated raw material enters the inside of the injection head 5, the hydraulic rod in the forming bin 6 is operated to control the injection head 5 to move to the direction of the die head 7 and be attached to one side of the outer surface of the die head 7, and the two die heads 7 are controlled to move close to each other to be closed through the operation of the hydraulic rod, the raw material is added into the two die heads 7 through the injection head 5, the raw material is cooled and formed in the die head 7, after the forming is completed, the two die heads 7 are controlled to move away from each other through the operation of the hydraulic rod, and the injection head 5 is controlled to move away from one side of the die head 7, then the first electric push rod 21 in the forming bin 6 is operated to retract to drive the slot rod 22 to descend so that one end of the L-shaped plate 28 is located at one side of the surface of the formed I-beam, the clamping plate 210 is controlled to move to the direction of the L-shaped plate 28 through the operation of the third electric push rod 29 to clamp one side of the outer surface of the I-beam between the one end of the L-shaped plate 28 and the clamping plate 210, then the sliding plate 24 is controlled to move to the direction away from the die head 7 through the extension of the second electric push rod 23 to take out the I-beam from the inside of the die head 7, the sliding rod 27 is controlled to slide at one side of the sliding plate 24 and the outer surface of the screw rod 26 through the rotation of the screw rod 26 driven by the motor 25, the I-beam is taken to the bin door of the forming bin 6 through the L-shaped plate 28 and the clamping plate 210, which is convenient for taking out the I-beam and improves the convenience when the coiled wire forming die is used.
[0030] Reference Figures 2-4As shown, in the embodiment: one side of the L-shaped plate 28 is fixedly connected with a convex strip 211, the convex strip 211 is made of rubber material, and the stability when clamping the outer surface of the spool between the clamping plate 210 and one end of the L-shaped plate 28 can be improved through the rubber convex strip 211, so that the spool is not easy to slide off between the L-shaped plate 28 and the clamping plate 210, and the top end of the sliding rod 27 is fixedly connected with two L-shaped blocks 212, one side of the L-shaped block 212 slides on one side of the sliding plate 24, and when the sliding rod 27 moves under the control of the screw rod 26 driven by the motor 25, the two L-shaped blocks 212 on the top end of the sliding rod 27 will slide on the outer surface of the sliding plate 24, and the angle between the sliding rod 27 and the sliding plate 24 can be further limited through the L-shaped block 212, so as to avoid the angle deviation of the sliding rod 27 as much as possible.
[0031] Referring to Figures 2-4 As shown, in the embodiment: the output rod of the first electric push rod 21 is fixedly connected with a support rod 213, one end of the support rod 213 away from the output rod of the first electric push rod 21 is fixedly connected with the bottom end of the slot rod 22, and the bottom end of the slot rod 22 can be supported through the setting of the support rod 213, so as to improve the structural stability of the connection between the output rod of the first electric push rod 21 and the bottom end of the slot rod 22.
[0032] Referring to Figures 1-3 As shown, in the embodiment: the outer surface of the control box 8 is provided with a protection device 3, the protection device 3 includes a baffle 33, one side of the baffle 33 is fixedly connected with two sliding blocks 32, one side of the control box 8 is provided with two sliding grooves 31, and the outer surfaces of the two sliding blocks 32 respectively slide on the inner walls of the two sliding grooves 31. When a forming mold is not used, the horizontal position of the baffle 33 can be adjusted by pushing the baffle 33 to make the baffle 33 slide on the inner walls of the two sliding grooves 31 through the two sliding blocks 32, so that the baffle 33 covers the control knob on one side of the outer surface of the control box 8, so as to avoid the accidental operation of the machine body 1 caused by the accidental touch of the control knob by the staff when the machine body 1 is not running, and to avoid the waste of resources as much as possible.
[0033] Referring to Figures 2-3As shown, in the embodiment: the baffle 33 is fixedly connected with a plurality of rectangular strips 34 on one side, the rectangular strips 34 are linearly distributed on one side of the baffle 33, and the rectangular strips 34 on the outer surface of the baffle 33 can be pushed to control the movement of the baffle 33 and are not easy to slip; the baffle 33 is fixedly connected with protrusions 35 on both sides; the control box 8 is fixedly connected with two stop blocks 36 on one side; when the baffle 33 is pushed to move away from the control box 8 and the sliding block 32 is about to be separated from the inside of the sliding groove 31, the protrusions 35 on both sides of the baffle 33 will be in contact with one side of the stop block 36 on the outer surface of the control box 8, so as to block the movement of the baffle 33 and avoid the separation of the sliding block 32 from the inside of the sliding groove 31 as much as possible; the control box 8 is fixedly connected with a positioning block 37 on one side; the positioning block 37 is a magnetic block with magnetism; the baffle 33 is made of metal iron; when the baffle 33 completely covers the control knob on one side of the control box 8, the outer surface of the baffle 33 will be in contact with one side of the magnetic positioning block 37 and be magnetically attracted, so as to further fix the position of the baffle 33.
[0034] Working principle: when producing the spool by using the forming die, the raw material is added into the heating bin 4 through the hopper at the top end of the heating bin 4, the raw material is heated by the heating bin 4, the heated raw material enters the inside of the injection head 5, the hydraulic rod in the forming bin 6 operates to control the injection head 5 to move to the direction of the mold head 7 and be attached to one side of the outer surface of the mold head 7, the hydraulic rod operates to control the two mold heads 7 to be close to each other to be closed, the raw material is added into the inside of the two mold heads 7 by the injection head 5, the raw material is cooled and formed in the inside of the mold head 7, after the forming is completed, the hydraulic rod operates to control the two mold heads 7 to be away from each other, and controls the injection head 5 to be away from one side of the mold head 7, then the first electric push rod 21 in the inside of the forming bin 6 operates to retract to drive the groove rod 22 to descend, so that one end of the L-shaped plate 28 is located on one side of the surface of the formed spool, the second electric push rod 23 operates to control the clamping plate 210 to move to the direction of the L-shaped plate 28, so that one side of the outer surface of the spool is clamped between one end of the L-shaped plate 28 and the clamping plate 210, then the second electric push rod 23 operates to extend to control the sliding plate 24 to move to the direction away from the mold head 7, so that the spool is taken out from the inside of the mold head 7, the motor 25 drives the screw rod 26 to rotate to control the sliding rod 27 to slide on one side of the outer surface of the screw rod 26 and the sliding plate 24, the spool is taken to the bin door of the forming bin 6 by the L-shaped plate 28 and the clamping plate 210, so as to be convenient for taking out the spool, when the forming die is not used, the baffle 33 is pushed to control the baffle 33 to slide on the inner wall of the sliding groove 31 by the two sliding blocks 32, so as to adjust the horizontal position of the baffle 33, the baffle 33 is located on one side of the control knob on the outer surface of the control box 8 to cover the control knob, so as to avoid that the staff accidentally touches the control knob to cause the machine body 1 to be accidentally operated when the machine body 1 is not operated.
[0035] The above merely describes preferred embodiments of the present application, and is not intended to limit the present application in other forms. Any skilled person in the art can modify or change the above disclosed technical content to equivalent embodiments applied to other fields, but any simple modification, equivalent change and alteration of the above embodiments without departing from the technical content of the present application, according to the technical essence of the present application, still belong to the protection scope of the present application. In the description of the present application, it should be noted that unless otherwise explicitly specified and limited, the terms "mounting", "connection" and "connection" should be understood in a broad sense. For example, it can be fixedly connected, or it can be detachably connected, or it can be integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be connected inside two elements. For ordinary skilled persons in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.
Claims
1. A molding die for winding machine processing, comprising a machine body (1), characterized in that: The top of the machine body (1) is provided with a heating bin (4), the top of the heating bin (4) is provided with a hopper, one side of the top of the machine body (1) is provided with a forming bin (6), the inside of the forming bin (6) is provided with a die head (7) and an injection head (5), one side of the machine body (1) is provided with a control box (8), the inside of the forming bin (6) is provided with a taking-out device (2), the taking-out device (2) comprises a groove rod (22), one side of the top of the forming bin (6) is provided with a first electric push rod (21), the output rod of the first electric push rod (21) is fixedly connected with the bottom end of the groove rod (22), the top of the groove rod (22) is provided with a second electric push rod (23), the output rod of the second electric push rod (23) is fixedly connected with a sliding plate (24), the outer surface of the sliding plate (24) slides on the inner wall of the groove rod (22), one side of the sliding plate (24) is provided with a motor (25), the output end of the motor (25) is fixedly connected with a screw rod (26), the both ends of the screw rod (26) are rotatably connected with the both ends of the sliding plate (24), the outer surface of the screw rod (26) is threadedly connected with a sliding rod (27), the bottom end of the sliding rod (27) is fixedly connected with an L-shaped plate (28), one side of the L-shaped plate (28) is provided with a third electric push rod (29), the output rod of the third electric push rod (29) is fixedly connected with a clamping plate (210), the top of the clamping plate (210) slides on one side of the L-shaped plate (28).
2. The molding die for wire-wound device manufacturing according to claim 1, characterized by: The L-shaped plate (28) is fixedly connected with a convex strip (211) on one side, and the convex strip (211) is made of rubber material.
3. The molding die for wire-wound device manufacturing according to claim 2, characterized by: The top of the sliding rod (27) is fixedly connected with two L-shaped blocks (212), and one side of the L-shaped block (212) slides on one side of the sliding plate (24).
4. The molding die for wire-wound device manufacturing according to claim 3, characterized by: The output rod of the first electric push rod (21) is fixedly connected with a supporting rod (213), and one end of the supporting rod (213) away from the output rod of the first electric push rod (21) is fixedly connected with the bottom end of the groove rod (22).
5. The molding die for wire-wound device manufacturing according to claim 4, characterized by: The outer surface of the control box (8) is provided with a protection device (3), the protection device (3) comprises a baffle (33), one side of the baffle (33) is fixedly connected with two sliding blocks (32), one side of the control box (8) is provided with two sliding grooves (31), and the outer surfaces of the two sliding blocks (32) respectively slide on the inner walls of the two sliding grooves (31).
6. The molding die for wire-wound device manufacturing according to claim 5, characterized by: One side of the baffle (33) is fixedly connected with a plurality of rectangular strips (34), and the rectangular strips (34) are linearly distributed on one side of the baffle (33).
7. The molding die for wire winding machine according to claim 6, wherein: The baffle (33) is fixedly connected with convex blocks (35) on the two sides, and the control box (8) is fixedly connected with two stop blocks (36) on one side.
8. The molding die for wire-wound device manufacturing according to claim 6, characterized by: One side of the control box (8) is fixedly connected with a positioning block (37), the positioning block (37) is a magnetic block with certain magnetism, and the baffle (33) is made of metal iron.