Anti-collision bottle cap discharging device
The anti-collision bottle cap unloading device, composed of components such as a support frame, guide plate, servo motor, and electric push rod, solves the problems of poor continuity and collision damage in the existing technology, and realizes stable continuous processing and efficient unloading.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-27
- Publication Date
- 2026-03-27
AI Technical Summary
Existing plastic bottle cap production equipment suffers from poor continuity, low efficiency, and potential collision damage during continuous processing.
The anti-collision bottle cap unloading device is composed of components such as support frame, guide plate, servo motor, and electric push rod. The servo motor drives the lower mold base to rotate, and the electric push rod drives the unloading push block. Combined with the conveyor belt, it realizes continuous conveying and stable unloading, avoids accumulation and collision, and the detachable splicing block structure facilitates cleaning.
It achieves continuous and stable unloading of bottle caps, avoids collision damage, and improves production efficiency and ease of use of the equipment.
Smart Images

Figure CN224044463U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to bottle cap discharge technical field, concretely to a bottle cap discharge device of anticollision. BACKGROUND
[0002] The production of plastic bottle caps usually adopts compression molding process. The feeding, compression molding and cooling processes of the traditional plastic bottle cap compression molding production device are independent of each other. This mode has poor continuity, long production cycle and low processing efficiency.
[0003] The existing plastic bottle cap production device with convenient discharge CN201610723982.6 has low labor intensity, high automation degree, strong continuity, convenient discharge and greatly improved production efficiency. However, there are some deficiencies. The existing device has poor continuous processing effect and may cause collision damage, which has poor use effect. Therefore, a bottle cap discharge device with anti-collision function is needed to solve the above problems. UTILITY MODEL CONTENTS
[0004] The utility model aims at providing a bottle cap discharge device with anti-collision function to solve the problems of the plastic bottle cap production device with convenient discharge mentioned in the background technology, such as poor continuous processing effect, possible collision damage and poor use effect.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a bottle cap discharge device with anti-collision function, comprising a support frame, a guide plate is fixedly connected to the lower end of the support frame, a first electric push rod is vertically inserted and combined and installed at the center position of the upper end of the support frame, a reset shaft is installed on the upper end of the front side of the support frame, a closure cover plate is reversely installed on the other side of the reset shaft, a second locking knob is inserted and combined and installed on the front side edge of the closure cover plate, a servo motor is inserted and combined and installed at the middle position of the inner wall of the support frame on both sides, a lower mold base is installed at the output end of the servo motor, a mold groove is formed in the upper end of the lower mold base, a push block insertion slot is formed in the inner wall of the lower end of the mold groove, the push block insertion slot is distributed through the inner wall of the lower mold base, a splicing insertion block is protrudingly and fixedly connected to the lower end edge of the lower mold base, a lifting groove is sleeved and installed on the outer wall of the splicing insertion block, a splicing insertion slot is formed in the upper end of the lifting groove, the splicing insertion block and the splicing insertion slot are inserted and combined and installed, a first locking knob is inserted and combined and installed on the front side of the splicing insertion slot and the splicing insertion block, an upper mold base is installed at the output end of the first electric push rod, a mold core is protrudingly and fixedly connected to the lower end of the upper mold base, a feeding port is through-formed in the inner wall of the center position of the mold core, an injection port is communicated and installed at the upper end of the feeding port, an injection pipeline is inserted and combined and installed at the upper end of the injection port, the injection pipeline is inserted and combined and installed through the support frame at the upper end, a second electric push rod is inserted and combined and installed at the center position of the lower end of the lifting groove, a fixed plate is fixedly connected to the output end of the second electric push rod, a discharge push block is vertically fixedly connected to the other end of the fixed plate, the discharge push block is inserted and combined and installed with the push block insertion slot, and a conveying belt is installed on the inner wall of the guide plate.
[0006] Preferably, the support frame is vertically distributed with the guide plate, the conveying belt is movably connected with the guide plate, and the inner wall of the guide plate is provided with inclined structures on both sides of the upper end.
[0007] Preferably, the closing cover plate is made of transparent acrylic material, is reset and reversely connected with the support frame through a reset rotating shaft, is lockingly and coveringly installed with the support frame through a second locking knob, and is provided with a transparent silica gel structure on the inner side.
[0008] Preferably, the lower die seat is resetly and rotatably connected with the support frame through a servo motor, and the unloading push block is telescopically connected with the push block slot through a second electric push rod.
[0009] Preferably, the upper die seat and the die core are liftably and splicingly installed with the die groove through a first electric push rod, the die core and the die groove are matrixly distributed on the lower die seat and the upper die seat, and the injection molding pipeline is communicatively connected with the die groove through an injection molding port and a feeding port.
[0010] Preferably, the lifting groove and the unloading push block are positionally and insertingly installed with the support frame through a splicing block and a splicing slot, and the splicing block is lockingly and fixedly connected with the splicing slot through a first locking knob.
[0011] Compared with the prior art, the bottle cap unloading device with anti-collision function has the advantages that: the bracket can conveniently drive the unloading push block to stably unload through the second electric push rod, the lower die seat can be turned over through the servo motor, the material can be continuously conveyed through the conveying belt, the damage caused by stacking and collision can be avoided, the device can be quickly and continuously processed, the splicing block, the first locking knob, the splicing slot, the lifting groove and the unloading push block can be independently disassembled, cleaning is facilitated, and the device is convenient to use. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 It is a front view of the bottle cap unloading device with anti-collision function.
[0013] Figure 2 It is a schematic view of the internal structure of the bottle cap unloading device with anti-collision function.
[0014] Figure 3 It is a bottle cap unloading device with anti-collision function. Figure 2 It is an enlarged view of position A.
[0015] Figure 4 It is a bottle cap unloading device with anti-collision function. Figure 2 It is an enlarged view of position B.
[0016] Figure 5 It is a bottle cap unloading device with anti-collision function. Figure 2Enlarged view at C;
[0017] Figure 6 The utility model discloses a kind of anti-collision bottle cap unloading devices Figure 2 Enlarged view at D.
[0018] In the drawing: 1, support frame, 2, guide plate, 3, closed cover plate, 4, lower die seat, 5, first electric push rod, 6, upper die seat, 7, lifting groove, 8, second electric push rod, 9, conveying belt, 10, servo motor, 11, injection molding pipeline, 12, injection molding port, 13, mold groove, 14, unloading push block, 15, push block slot, 16, feed port, 17, reset pivot, 18, splicing plug-in block, 19, first locking knob, 20, splicing slot, 21, fixed plate, 22, second locking knob, 23, mold core. DETAILED DESCRIPTION
[0019] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0020] Please refer to Figures 1-6 The utility model provides a kind of technical scheme: a kind of anti-collision bottle cap unloading devices, including support frame 1, guide plate 2, closed cover plate 3, lower die seat 4, first electric push rod 5, upper die seat 6, lifting groove 7, second electric push rod 8, conveying belt 9, servo motor 10, injection molding pipeline 11, injection molding port 12, mold groove 13, unloading push block 14, push block slot 15, feed port 16, reset pivot 17, splicing plug-in block 18, first locking knob 19, splicing slot 20, fixed plate 21, second locking knob 22 and mold core 23, support frame 1 lower end is fixedly connected with guide plate 2, and support frame 1 upper end center position is vertically inserted and is combined with first electric push rod 5, support frame 1 and guide plate 2 are vertically distributed, conveying belt 9 and guide plate 2 are movably connected, and the inner wall of guide plate 2 upper end two sides is inclined structure, so that conveying belt 9 can be continuously conveyed, avoid accumulation and block and collision.
[0021] Support frame 1 front side upper end is installed with reset pivot 17, and reset pivot 17 other side is installed with closed cover plate 3, closed cover plate 3 is transparent acrylic material, and closed cover plate 3 is reset and is combined with support frame 1 by reset pivot 17, closed cover plate 3 is locked and is combined with support frame 1 by second locking knob 22, and the inside of closed cover plate 3 is transparent silica gel structure, so that closed cover plate 3 is conveniently opened and closed by turning over, carries out front and back check, avoids collision, and processing is stable.
[0022] The second locking knob 22 is inserted and installed on the front side edge of the closing cover plate 3, the servo motor 10 is inserted and installed on the middle position of the inner wall of the support frame 1, and the servo motor 10 is installed on the output end of the lower mold base 4, and the lower mold base 4 is connected in rotation with the support frame 1 through the servo motor 10, and the discharge push block 14 is connected in extension with the push block insertion slot 15 through the second electric push rod 8, so that the lower mold base 4 is conveniently flipped and adjusted, and the discharge push block 14 can be lifted and pushed to discharge the material stably, the mold groove 13 is formed on the upper end of the lower mold base 4, the push block insertion slot 15 is formed on the inner wall of the lower mold base 4, the push block insertion slot 15 is distributed through the inner wall of the lower mold base 4, the splicing insertion block 18 is fixedly connected on the lower end edge of the lower mold base 4, the lifting groove 7 is sleeved and installed on the outer wall of the splicing insertion block 18, the splicing insertion slot 20 is formed on the upper end of the lifting groove 7, the lifting groove 7 and the discharge push block 14 are positioned and inserted and installed with the support frame 1 through the splicing insertion block 18 and the splicing insertion slot 20, and the splicing insertion block 18 is fixedly connected with the splicing insertion slot 20 through the first locking knob 19, so that the lifting groove 7 and the discharge push block 14 are conveniently and independently disassembled, and are convenient to replace and clean.
[0023] The splicing insertion block 18 and the splicing insertion slot 20 are inserted and installed, the first locking knob 19 is inserted and installed on the front side of the splicing insertion slot 20 and the splicing insertion block 18, the upper mold base 6 is installed on the output end of the first electric push rod 5, the mold core 23 is fixedly connected on the lower end of the upper mold base 6, the upper mold base 6 and the mold core 23 are connected in lifting and splicing with the mold groove 13 through the first electric push rod 5, the mold core 23 and the mold groove 13 are distributed in matrix on the lower mold base 4 and the upper mold base 6, the injection pipe 11 is connected in communication with the mold groove 13 through the injection port 12 and the feeding port 16, so that the upper mold base 6 and the mold core 23 are conveniently opened and closed in lifting, and stable injection can be carried out, demolding is convenient, the feeding port 16 is formed through the inner wall of the mold core 23, the injection port 12 is connected in communication on the upper end of the feeding port 16, the injection pipe 11 is inserted and connected in communication on the upper end of the injection port 12, the second electric push rod 8 is inserted and connected in communication on the lower end center position of the lifting groove 7, the fixed plate 21 is fixedly connected on the output end of the second electric push rod 8, the discharge push block 14 is perpendicularly fixedly connected on the other end of the fixed plate 21, the discharge push block 14 is inserted and installed with the push block insertion slot 15, and the guide plate 2 is installed with the conveying belt 9.
[0024] Working principle: when using the bottle cap unloading device, first, the device is combined and installed, then the device is connected to the power supply, then the first electric push rod 5 is used to extrude the upper die seat 6 and the lower die seat 4 to close the mold, then the injection pipe 11, the injection port 12 and the feeding port 16 are used to inject and form in the mold groove 13, then the first electric push rod 5 is used to open the upper die seat 6 for demolding, then the servo motor 10 drives the lower die seat 4 to overturn downward, then the second electric push rod 8 drives the unloading push block 14 to extend, so as to eject and unload the bottle cap, and the inner wall of the sealing cover plate 3 is used for buffering to avoid collision, then the conveying belt 9 is used to guide the flow to one side to avoid accumulation and collision, when the unloading push block 14 needs to be replaced and cleaned, the sealing cover plate 3 can be overturned and opened, then the lifting groove 7 and the unloading push block 14 are quickly disassembled and replaced for use, which is the use process of the bottle cap unloading device.
[0025] Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions recorded in the foregoing embodiments or make equivalent replacement to part of the technical features, and any modification, equivalent replacement, improvement, etc. within the spirit and principle of the utility model should be included in the protection scope of the utility model.
Claims
1. A kind of anti-collision bottle cap unloading device, including support frame (1), the lower end of support frame (1) is fixedly connected with guide plate (2), and the first electric push rod (5) is vertically inserted and combined and installed in the upper end center position of support frame (1), it is characterized by: The support frame (1) is provided with a reset pivot (17) on the upper end of the front side, and the other side of the reset pivot (17) is provided with a closing cover plate (3) which is reversely installed, the closing cover plate (3) is provided with a second locking knob (22) on the front side edge, the support frame (1) is provided with a servo motor (10) on the inner wall of both sides of the middle position, and the servo motor (10) is provided with a lower mold base (4) on the output end, the lower mold base (4) is provided with a mold groove (13) on the upper end, and the inner wall of the mold groove (13) is provided with a push block slot (15) on the lower end, the push block slot (15) is distributed through the inner wall of the lower mold base (4), and the lower end edge of the lower mold base (4) is protrusively and fixedly connected with a splicing plug-in block (18), the splicing plug-in block (18) is provided with a lifting groove (7) on the outer wall, and the lifting groove (7) is provided with a splicing slot (20) on the upper end, the splicing plug-in block (18) and the splicing slot (20) are inserted and installed, and the splicing slot (20) and the splicing plug-in block (18) are provided with a first locking knob (19) on the front side, the first electric push rod (5) is provided with an upper mold base (6) on the output end, and the upper mold base (6) is protrusively and fixedly connected with a mold core (23) on the lower end, the mold core (23) is provided with a feeding port (16) on the inner wall of the center position, and the feeding port (16) is provided with an injection port (12) on the upper end, the injection port (12) is provided with an injection pipeline (11) on the upper end, and the injection pipeline (11) is inserted and communicated with the support frame (1) on the upper end, the lifting groove (7) is provided with a second electric push rod (8) on the lower end of the center position, and the second electric push rod (8) is fixedly connected with a fixed plate (21) on the output end, the fixed plate (21) is perpendicularly and fixedly connected with a discharging push block (14) on the other end, and the discharging push block (14) is inserted and installed with the push block slot (15), and the inner wall of the guide plate (2) is provided with a conveying belt (9).
2. The anti-collision bottle cap unloading device according to claim 1, characterized in that: The support frame (1) and the guide plate (2) are vertically distributed, the conveying belt (9) is movably connected with the guide plate (2), and the inner wall of the guide plate (2) is inclined on both sides of the upper end.
3. A collision-avoiding bottle cap unloading apparatus according to claim 2, characterized by: The closing cover plate (3) is made of transparent acrylic material, and the closing cover plate (3) is reversely connected with the support frame (1) through the reset pivot (17), the closing cover plate (3) is lockingly and installed with the support frame (1) through the second locking knob (22), and the inner side of the closing cover plate (3) is made of transparent silica gel structure.
4. The anti-collision bottle cap unloading device according to claim 3, characterized in that: The lower mold base (4) is reversely and rotatably connected with the support frame (1) through the servo motor (10), and the discharging push block (14) is telescopically connected with the push block slot (15) through the second electric push rod (8).
5. A collision-avoiding bottle cap unloading apparatus according to claim 4, characterized by: The upper mold base (6) and the mold core (23) are liftably and splicingly installed with the mold groove (13) through the first electric push rod (5), and the mold core (23) and the mold groove (13) are matrixly distributed on the lower mold base (4) and the upper mold base (6), and the injection pipeline (11) is communicatively connected with the mold groove (13) through the injection port (12) and the feeding port (16).
6. A collision-avoiding bottle cap unloading apparatus according to claim 5, characterized by: The lifting groove (7) and the unloading push block (14) are positioned and inserted into the supporting frame (1) through the splicing plug (18) and the splicing slot (20), and the splicing plug (18) is locked and fixedly connected with the splicing slot (20) through the first locking knob (19).
Citation Information
Patent Citations
Plastic bottle cap production apparatus being convenient to discharge material
CN106363852A