Conveying device for resin blank processing

Through the synergy between the twisting dragon and the vibration group, the problems of blockage and agglomeration of the hopper under the resin blasting are solved, and efficient resin blasting is achieved, improving the flexibility and adaptability of the device.

CN223117625UActive Publication Date: 2025-07-18JIANGXI HAOQING JEWELRY CO LTD
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Patent Information

Application Number
CN202422485766.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-15
Publication Date
2025-07-18
Estimated Expiration
2034-10-15

AI Technical Summary

Technical Problem

During the process of laying resin germ, the loading hopper is easily blocked or agglomerated due to different flow and finished product size, affecting the conveying efficiency.

Method used

A conveyor device that works synergistically with the twisted dragon and the vibration group is used to transport resin blast material, and the vibration group is used to disperse the resin blast material to prevent agglomeration; the fixed buckle and electric push rod design can adjust the conveying height to adapt to different working conditions.

Benefits of technology

It significantly improves the delivery efficiency of resin umbrella, reduces the probability of blockage, and improves the flexibility and adaptability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of resin blank processing, in particular to a conveying device for resin blank processing, which comprises a support frame, a conveying cabin, a telescopic pipe, a blanking hopper, a first motor and the like, a conveying cabin with a bent front part is arranged at the top of the supporting frame, a telescopic pipe is communicated with the middle of the rear side of the top of the conveying cabin, a discharging hopper is arranged at the top of the telescopic pipe, a first motor is arranged in the middle of the rear part of the conveying cabin, and an output shaft of the first motor extends into the conveying cabin; an output shaft of the first motor is provided with an auger, and the auger is located in the conveying cabin. Through the synergistic effect of the auger and the vibration set, the conveying efficiency of resin blanks is remarkably improved, the resin blanks are effectively dispersed through the vibration set, and the blocking probability caused by caking is reduced; and through the design of a fixing buckle and an electric push rod, the device has good flexibility, and the conveying height can be adjusted according to actual working conditions.
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Description

Technical Field

[0001] The utility model relates to the field of resin blank processing, in particular to a conveying device for resin blank processing. Background Art

[0002] "Resin blank" refers to the preliminary forming material used to manufacture various products, usually made of synthetic resin. Such materials are widely used in the fields of plastic products, composite materials, mold manufacturing, etc.

[0003] Resin blank processing and conveying refers to the process of transporting the resin material (i.e., resin blank) in an incompletely formed or semi-finished state during the production of resin products.

[0004] In the currently common conveying process of resin blanks, initially, a guiding bag needs to be sleeved outside the discharge pipe of the preparation machine and supported and fixed with a support rod, and then its lower end is aligned with the hopper of the conveying equipment. However, during the blanking process of resin blanks, due to different flow rates and different finished product sizes of resin blanks, a relatively fast blanking speed is likely to cause blockage or caking of resin blanks in the hopper, affecting the blanking speed and subsequent conveying process.

[0005] Therefore, it is necessary to design a conveying device for resin blank processing to solve the above technical problems. Summary of the Utility Model

[0006] In order to overcome the above-mentioned disadvantages of the prior art, the utility model provides a conveying device for resin blank processing.

[0007] The technical solution of the utility model is as follows: A conveying device for resin blank processing includes a support frame, a conveying chamber, a telescopic pipe, a hopper, a first motor, an auger, a bearing seat, and a vibration group. The top of the support frame is provided with a conveying chamber with a curved front part, and a telescopic pipe is communicated with the middle of the rear side of the top of the conveying chamber. A hopper is arranged at the top of the telescopic pipe. The middle of the rear part of the conveying chamber is provided with a first motor, and the output shaft of the first motor extends into the interior of the conveying chamber. An auger is arranged on the output shaft of the first motor, and the auger is located inside the conveying chamber. A bearing seat is arranged at the rear side of the top of the conveying chamber, and a vibration group for vibrating and dispersing resin blanks is arranged on the bearing seat.

[0008] As a preferred technical solution of the utility model, the middle part of the hopper is conical.

[0009] As a preferred technical solution of the present utility model, the vibration group includes a second motor, an eccentric wheel, a connecting shaft, a fitting frame and a second guide rod. A second motor is arranged on one side of the top of the bearing seat. An eccentric wheel is arranged on the output shaft of the second motor. A connecting shaft is arranged at the upper left end of the eccentric wheel. A fitting frame is arranged on the upper part of the blanking hopper. A limiting ring is arranged on the left side of the fitting frame. The connecting shaft is slidably matched with the limiting ring. Second guide rods are arranged on the other two sides of the top of the bearing seat. The two sides inside the fitting frame are slidably connected with the two second guide rods on both sides.

[0010] As a preferred technical solution of the present utility model, it further includes electric push rods, fixed buckles and first guide rods. Electric push rods are arranged on both sides of the bearing seat. Fixed buckles are arranged on the telescopic rods of the electric push rods. First guide rods are arranged at each corner of the top of the bearing seat. The fixed buckles are all slidably connected with the first guide rods on the same side.

[0011] As a preferred technical solution of the present utility model, when the motor drives the eccentric wheel to rotate, it drives the connecting shaft to rotate synchronously. When the eccentric wheel rotates, the rotational motion generated by itself causes the connecting shaft to slide on the limiting ring on the left side of the fitting frame, and the rotational force is transmitted to the fitting frame, thereby driving the blanking hopper to perform a linear motion to form a vibration process.

[0012] As a preferred technical solution of the present utility model, it further includes wear-resistant sleeves. Wear-resistant sleeves are clamped on the upper parts of the two fixed buckles.

[0013] The beneficial effects of the present utility model are as follows: Through the synergistic effect of the auger and the vibration group, the conveying efficiency of the resin blanks is significantly improved. The vibration group effectively disperses the resin blanks and reduces the probability of blockage caused by caking. The design of the fixed buckles and the electric push rods enables the device to have good flexibility and can adjust the conveying height according to the actual working conditions. Description of the Drawings

[0014] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.

[0015] Figure 2 It is a structural schematic diagram of components such as the support frame, conveying chamber and blanking hopper of the present utility model.

[0016] Figure 3 It is a structural schematic diagram of components such as the electric push rods, fixed buckles and first guide rods of the present utility model.

[0017] Figure 4 It is a structural schematic diagram of components such as the bearing seat, second motor and blanking hopper of the present utility model.

[0018] Figure 5This is a schematic structural diagram of components such as the blanking hopper, fitting frame, and connecting shaft of the present utility model.

[0019] Names and serial numbers of components in the figure: 1 - support frame, 2 - conveying chamber, 201 - telescopic pipe, 3 - blanking hopper, 4 - first motor, 5 - auger, 6 - bearing seat, 7 - electric push rod, 8 - fixing buckle, 9 - first guide rod, 10 - second motor, 11 - eccentric wheel, 12 - connecting shaft, 13 - fitting frame, 14 - second guide rod, 15 - wear-resistant sleeve. Specific embodiments

[0020] The preferred technical solutions of the present utility model will be described in detail below with reference to the accompanying drawings.

[0021] Embodiment: A conveying device for resin blank processing, as Figures 1-5 shown, includes a support frame 1, a conveying chamber 2, a telescopic pipe 201, a blanking hopper 3, a first motor 4, an auger 5, a bearing seat 6, and a vibration group. The support frame 1 provides the basic support for the entire conveying device, ensuring that all components can be stably installed thereon. A conveying chamber 2 with a curved front part is arranged at the top of the support frame 1. The curved front part facilitates the smooth passage of materials and reduces the possibility of blockage. And a telescopic pipe 201 is communicated with the middle rear side of the top of the conveying chamber 2, which can assist the vibration group to adjust its own length and cooperate with the vibration effect of the blank. A blanking hopper 3 is arranged at the top of the telescopic pipe 201 as the material inlet. The middle part of the blanking hopper 3 is conical, which helps the material to smoothly enter the conveying chamber 2. A first motor 4 is arranged at the middle rear part of the rear of the conveying chamber 2, which is used to drive the auger 5 to realize the conveying of resin blanks. The output shaft of the first motor 4 extends into the inside of the conveying chamber 2, and an auger 5 is arranged on the output shaft of the first motor 4. The auger 5 is located inside the conveying chamber 2. A bearing seat 6 is arranged at the middle rear side of the top of the conveying chamber 2. A vibration group for vibrating and dispersing resin blanks is arranged on the bearing seat 6. The vibration group disperses the resin blanks by vibration to prevent caking.

[0022] As Figures 1-5 shown, the vibration group includes a second motor 10, an eccentric wheel 11, a connecting shaft 12, a fitting frame 13, and a second guide rod 14. A second motor 10 is arranged on one side of the top of the bearing seat 6. An eccentric wheel 11 is arranged on the output shaft of the second motor 10. A connecting shaft 12 is arranged at the upper left end of the eccentric wheel 11. A fitting frame 13 is arranged at the upper part of the blanking hopper 3. A limiting ring is arranged on the left side of the fitting frame 13. The connecting shaft 12 is in sliding fit with the limiting ring. Second guide rods 14 are arranged on the other two sides of the top of the bearing seat 6. The two sides inside the fitting frame 13 are in sliding connection with the two second guide rods 14 on both sides. When the motor drives the eccentric wheel 11 to rotate, it drives the connecting shaft 12 to rotate synchronously. And when the eccentric wheel 11 rotates, the rotational motion generated by itself makes the connecting shaft 12 slide on the limiting ring on the left side of the fitting frame 13, and the rotational force is transmitted to the fitting frame 13, then drives the blanking hopper 3 to realize linear motion, forming a vibration process.

[0023] As Figures 1-5 shown, it further includes an electric push rod 7, a fixing buckle 8, and a first guide rod 9. Electric push rods 7 are arranged on both sides of the bearing seat 6 and are used to adjust the position of the fixing buckle 8, thereby changing the distance between the elastic beam bag for guiding the external resin blank and the feeding hopper 3, ensuring that the material can smoothly enter the conveying chamber 2. Fixing buckles 8 are arranged on the telescopic rods of the electric push rods 7 and are used to fix the elastic beam bag to ensure its stability during use. First guide rods 9 are arranged at each corner of the top of the bearing seat 6 to ensure the smooth movement of the fixing buckle 8 during adjustment and avoid instability caused by position changes. The fixing buckles 8 are all slidably connected to the first guide rods 9 on the same side.

[0024] As Figures 1-5 shown, it further includes wear-resistant sleeves 15. Wear-resistant sleeves 15 are clamped on the upper parts of the fixing buckles 8 on both sides. The wear-resistant sleeves 15 can reduce the wear of the elastic beam bag and improve its durability.

[0025] When conveying operations need to be carried out, first, remove the wear-resistant sleeves 15, put the upper two corners of the elastic beam bag of the external guiding resin blank on the fixing buckles 8 to hook and fix it, and then re-clamp the wear-resistant sleeves 15 on the fixing buckles 8 to fix the elastic beam bag and reduce wear and improve the durability of the external beam bag. At this time, the resin blank can be poured into the feeding hopper 3. Since the flow rate of the resin blank varies according to the quantity of the blank, the distance between the beam bag and the feeding hopper 3 can be appropriately adjusted. At this time, the position of the fixing buckle 8 is adjusted by the electric push rod 7, thereby changing the height of the beam bag. The fixing buckle 8 is slidably connected to the first guide rod 9 on the top of the bearing seat 6, ensuring the smoothness of the adjustment process. After the resin blank falls into the feeding hopper 3, since the middle part of the feeding hopper 3 is designed as a cone, the resin blank can smoothly enter the conveying chamber 2. Start the first motor 4, and the output shaft of the first motor 4 drives the auger 5 to rotate. The auger 5 pushes the resin blank from the rear end to the front end through its spiral blades. At the same time, start the second motor 10 in the vibration group, and the output shaft of the second motor 10 drives the eccentric wheel 11 to rotate. The eccentric wheel 11 converts the rotational motion into a linear motion through the linkage with the connecting shaft 12. The connecting shaft 12 slides on the limiting ring on the left side of the matching frame 13, and the generated rotational force is transmitted to the matching frame 13, thereby driving the feeding hopper 3 to perform a linear motion to form a vibration effect, effectively dispersing the resin blank entering the conveying chamber 2 to prevent caking. Then, as the auger 5 rotates continuously, the resin blank is conveyed to the other end of the conveying chamber 2 and discharged through the outlet.

[0026] The technical principles of the embodiments of the present utility model have been described above in conjunction with specific embodiments. These descriptions are only for explaining the principles of the embodiments of the present utility model and cannot be construed in any way as a limitation on the protection scope of the embodiments of the present utility model. Based on the explanations herein, those skilled in the art can readily conceive of other specific embodiments of the embodiments of the present utility model without creative efforts, and these embodiments will fall within the protection scope of the embodiments of the present utility model.

Claims

1. A conveying device for resin blank processing, characterized in that: It includes a support frame (1), a conveying cabin (2), a telescopic pipe (201), a blanking hopper (3), a first motor (4), a screw conveyor (5), a bearing seat (6) and a vibration group. At the top of the support frame (1), there is a conveying cabin (2) with a curved front part, and at the center of the rear side of the top of the conveying cabin (2), a telescopic pipe (201) is connected. At the top of the telescopic pipe (201), there is a blanking hopper (3). At the center of the rear part of the conveying cabin (2), there is a first motor (4), and the output shaft of the first motor (4) extends into the interior of the conveying cabin (2). On the output shaft of the first motor (4), there is a screw conveyor (5), and the screw conveyor (5) is located inside the conveying cabin (2). At the rear side of the top of the conveying cabin (2), there is a bearing seat (6), and on the bearing seat (6), there is a vibration group for vibrating and dispersing resin blanks.

2. The conveying device for processing resin blanks according to claim 1, characterized in that: The middle part of the blanking hopper (3) is conical.

3. The conveying device for processing resin blanks according to claim 2, characterized in that: The vibration group includes a second motor (10), an eccentric wheel (11), a connecting shaft (12), a fitting frame (13) and a second guide rod (14). On one side of the top of the bearing seat (6), there is a second motor (10). On the output shaft of the second motor (10), there is an eccentric wheel (11). At the upper left end of the eccentric wheel (11), there is a connecting shaft (12). At the upper part of the blanking hopper (3), there is a fitting frame (13). A limiting ring is arranged on the left side of the fitting frame (13), and the connecting shaft (12) is slidably matched with the limiting ring. On the other two sides of the top of the bearing seat (6), there are second guide rods (14), and the two sides inside the fitting frame (13) are slidably connected with the two second guide rods (14).

4. The conveying device for resin blank processing according to claim 3, wherein: It also includes an electric push rod (7), a fixed buckle (8), and a first guide rod (9). Electric push rods (7) are arranged on both sides of the bearing seat (6). Fixed buckles (8) are arranged on the telescopic rods of the electric push rods (7). First guide rods (9) are arranged at each corner of the top of the bearing seat (6), and the fixed buckles (8) are slidably connected with the first guide rods (9) on the same side.

5. The conveying device for processing resin blanks according to claim 4, wherein: When the motor drives the eccentric wheel (11) to rotate, it drives the connecting shaft (12) to rotate synchronously. When the eccentric wheel (11) rotates, the rotational motion generated by itself causes the connecting shaft (12) to slide on the limiting ring on the left side of the fitting frame (13), and the rotational force is transmitted to the fitting frame (13), thereby driving the blanking hopper (3) to achieve linear motion and form a vibration process.

6. The conveying device for resin blank processing according to claim 5, characterized in that: It also includes wear-resistant sleeves (15), and wear-resistant sleeves (15) are clamped on the upper parts of the two fixed buckles (8).