Asymmetric inner sleeve feeder

By designing an asymmetric inner sleeve feeder and using a limiting mechanism to ensure the correct orientation of the skeleton when it is placed into the mold, the problem of distinguishing asymmetric inner sleeve skeletons was solved, which improved production efficiency and reduced the defect rate.

CN223589833UActive Publication Date: 2025-11-25ANHUI TUOSHENG AUTO PARTS CO LTD
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Patent Information

Application Number
CN202423284008.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-11-25
Estimated Expiration
2034-12-30

AI Technical Summary

Technical Problem

In the existing technology, it is difficult to distinguish the front and back of the asymmetric inner frame before vulcanization, which leads to the crushing of vulcanization molds and high defect rate, as well as low efficiency of manual placement.

Method used

An asymmetric inner sleeve feeder was designed, comprising a mold, an upper plate, a lower plate, a fixed sleeve, a discharge port, and a limiting mechanism. The limiting mechanism ensures that the skeleton is correctly oriented and placed into the mold cavity, avoiding reverse placement.

Benefits of technology

It improved the efficiency of skeleton placement, reduced the defect rate, avoided mold damage, and increased production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of feeders, in particular to an asymmetric inner sleeve feeder, which comprises a die, a plurality of inner sleeves and a plurality of inner sleeves, and is characterized in that the upper end of the die is provided with a plurality of die cavities; a plurality of fixing sleeves are fixedly connected to the upper end of the upper plate, frameworks are arranged in the fixing sleeves, a plurality of discharging ports corresponding to the fixing sleeves in a one-to-one mode are formed in the upper end of the lower plate, and the discharging ports correspond to the mold cavities in a one-to-one mode; and the limiting mechanism comprises four vertical rods fixedly connected to the lower end of the upper plate. According to the utility model, skeletons can be placed in the plurality of fixed sleeves in advance before charging without waiting for workers to place the skeletons in the plurality of mold cavities one by one, so that the placing efficiency of the skeletons is improved, the possibility of reversely placing the skeletons is avoided, and the problem that the skeletons are visually distinguished by workers in the prior art and the work efficiency is reduced is solved. However, the situation that the mode cannot distinguish frequently occurs, so that the vulcanization mold is crushed and defective products are produced.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of feeder, concretely relates to asymmetric inner sleeve feeder. BACKGROUND

[0002] The inner sleeve skeleton is an automobile part made of rubber and skeleton through vulcanization.

[0003] Because the inner sleeve skeleton is asymmetric structure, and then needs to distinguish the skeleton's positive and negative in the placement process before vulcanization, the current operation is all through the worker visual distinction, but this way often has the situation that distinguishes not, leads to vulcanization mold to be pressed and makes the defective product, and the current vulcanization mold has ten mold cavities, and the skeleton is put manually one by one by the worker, and the operation efficiency is not high. UTILITY MODEL CONTENT

[0004] The utility model discloses a asymmetric inner sleeve feeder to solve the shortcomings in the prior art.

[0005] In order to realize the above-mentioned purpose, the utility model adopts the following technical scheme:

[0006] Asymmetric inner sleeve feeder, including:

[0007] Mold, the upper end of the mold is provided with a plurality of mold cavities;

[0008] Upper plate and lower plate, the upper plate is fixedly connected with a plurality of fixed sleeves on the upper end, the fixed sleeve is equipped with a skeleton, the lower plate is provided with a plurality of discharge ports corresponding to a plurality of fixed sleeves on the upper end, and a plurality of discharge ports correspond to a plurality of mold cavities;

[0009] Limiting mechanism, the limiting mechanism includes four vertical rods fixedly connected on the lower end of the upper plate, the lower plate is provided with four through grooves corresponding to the four vertical rods on the upper end, the four vertical rods are respectively through the four through grooves, and the lower end of the four vertical rods is fixedly connected with a clamping column, and the upper end of the mold is provided with four clamping grooves corresponding to the four clamping columns.

[0010] Preferably, the side wall of the vertical rod in the through groove is fixedly connected with a spring, and the end, away from the vertical rod, of the spring is fixedly connected with the inner wall of the through groove.

[0011] Preferably, the side wall of the vertical rod is fixedly connected with a limiting ring, the lower surface of the limiting ring is attached to the upper surface of the lower plate, and the upper surface of the clamping column is attached to the lower surface of the lower plate.

[0012] Preferably, the number of the mold cavities is 10.

[0013] The utility model has the following beneficial effects:

[0014] The asymmetric inner sleeve feeder is provided with a plurality of fixed sleeves, and the framework can be placed in the fixed sleeves in advance before feeding, so that the framework is placed quickly, the possibility of placing the framework reversely is avoided, and the framework is placed by workers in the prior art, but the workers often cannot distinguish the framework, which leads to the vulcanization mold being damaged and the defective product being made. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 A structure schematic diagram of the asymmetric inner sleeve feeder is provided in the utility model.

[0016] Figure 2 A vertical section structure schematic diagram of the asymmetric inner sleeve feeder is provided in the utility model. Figure 1

[0017] Figure 3 A structure enlarged schematic diagram of A in the asymmetric inner sleeve feeder is provided in the utility model. Figure 2

[0018] Figure 4 A vertical section structure schematic diagram of the limiting mechanism in the asymmetric inner sleeve feeder is provided in the utility model. Figure 1

[0019] Figure 5 A structure enlarged schematic diagram of B in the asymmetric inner sleeve feeder is provided in the utility model. Figure 4

[0020] Figure 6 A structure schematic diagram of the mold in the asymmetric inner sleeve feeder is provided in the utility model. Figure 1

[0021] Figure 7 A bottom structure schematic diagram of the asymmetric inner sleeve feeder is provided in the utility model. Figure 1

[0022] In the figure, 1 is a mold, 2 is an upper plate, 3 is a lower plate, 4 is a mold cavity, 5 is a fixed sleeve, 6 is a discharge port, 7 is a framework, 8 is a vertical rod, 9 is a clamping column, 10 is a clamping groove, 11 is a through groove, 12 is a spring, and 13 is a limiting ring. DETAILED DESCRIPTION

[0023] 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.

[0024] Referring to Figures 1-7 , the asymmetric inner sleeve feeder comprises a mold 1, a plurality of mold cavities 4 are formed in the upper end of the mold 1, and the number of the mold cavities 4 is 10 (as shown in Figure 6 ).

[0025] ​​​​​​The upper plate 2 and the lower plate 3, the upper end of the upper plate 2 is fixedly connected with a plurality of fixed sleeves 5, the fixed sleeves 5 are provided with skeletons 7, the upper end of the lower plate 3 is provided with a plurality of discharge ports 6 corresponding to the plurality of fixed sleeves 5, the plurality of discharge ports 6 correspond to the plurality of mold cavities 4 (as shown in Figure 5 ).

[0026] The limiting mechanism includes four vertical rods 8 fixedly connected to the lower end of the upper plate 2, the upper end of the lower plate 3 is provided with four through grooves 11 corresponding to the four vertical rods 8, the side walls of the four vertical rods 8 respectively penetrate the four through grooves 11, the lower end of the four vertical rods 8 is fixedly connected with four clamping columns 9, the upper end of the mold 1 is provided with four clamping grooves 10 corresponding to the four clamping columns 9 (as shown in Figure 5 and Figure 6 ), the lower plate 3 can be connected to the upper end of the mold 1 through the four clamping columns 9 and the four clamping grooves 10, and the position of the lower plate 3 is fixed.

[0027] The side wall of the vertical rod 8 located in the through groove 11 is fixedly connected with a spring 12, and the end of the spring 12 away from the vertical rod 8 is fixedly connected with the inner wall of the through groove 11.

[0028] The side wall of the vertical rod 8 is fixedly connected with a limiting ring 13, the lower surface of the limiting ring 13 is attached to the upper surface of the lower plate 3, and the upper surface of the clamping column 9 is attached to the lower surface of the lower plate 3.

[0029] As shown in Figure 4 and Figure 5 , at this time the upper plate 2 is located at the initial position, the plurality of discharge ports 6 and the plurality of fixed sleeves 5 corresponding thereto are all misaligned, at this time the lower end of the skeleton 7 located in the plurality of fixed sleeves 5 will be blocked by the upper plate 2, after the lower plate 3 is connected to the upper end of the mold 1 through the four clamping columns 9 and the four clamping grooves 10, at this time the staff can pull the lower plate 3 to the left, which can drive the plurality of discharge ports 6 to move to the left synchronously, so that the plurality of discharge ports 6 and the plurality of fixed sleeves 5 corresponding thereto are all aligned, at this time the skeleton 7 located in the plurality of fixed sleeves 5 can fall into the mold cavity 4 corresponding thereto, then the lower plate 3 is released, under the action of the plurality of springs 12, the lower plate 3 can be driven to move to the right to the original position, then the plurality of clamping columns 9 are pulled out of the plurality of clamping grooves 10, and the upper plate 2 and the lower plate 3 can be taken out.

[0030] When the skeleton 7 in the plurality of fixed sleeves 5 is aligned, at this time the skeleton 7 can smoothly fall into the mold cavity 4, and when the skeleton 7 in the plurality of fixed sleeves 5 is misaligned, at this time the skeleton 7 cannot smoothly fall into the mold cavity 4, the skeleton 7 will be partially retained in the fixed sleeve 5, at this time the lower plate 3 cannot move to the right to the original position after the lower plate 3 is released, and then the staff can know that there is a phenomenon of misaligned skeleton 7, which is convenient for subsequent processing.

[0031] Therefore, the feeder is arranged, the framework 7 can be placed in the plurality of fixed sleeves 5 in advance before feeding, the framework 7 does not need to be placed in the plurality of mold cavities 4 by workers one by one, the placing efficiency of the framework 7 is improved, and the possibility of incorrect placement of the framework 7 is avoided.

[0032] When the framework 7 is placed, the framework 7 is first placed in the plurality of fixed sleeves 5 one by one, and the plurality of frameworks 7 are placed correctly, and at this time, the upper plate 2 is located at the initial position, the plurality of discharge ports 6 are all misaligned with the plurality of fixed sleeves 5 corresponding to the plurality of discharge ports 6, and then the lower end of the framework 7 in the plurality of fixed sleeves 5 is blocked by the upper plate 2, after the lower plate 3 is connected to the mold 1 through the four clamping columns 9 and the four clamping grooves 10, at this time, the worker can pull the lower plate 3 to the left, and the plurality of discharge ports 6 can be synchronously moved to the left, so that the plurality of discharge ports 6 are all aligned with the plurality of fixed sleeves 5 corresponding to the plurality of discharge ports 6.

[0033] At this time, the framework 7 in the plurality of fixed sleeves 5 can fall into the mold cavity 4 corresponding to the framework 7, then the lower plate 3 is loosened, the lower plate 3 can be driven to move to the right to the original position under the action of the plurality of springs 12, then the plurality of clamping columns 9 are pulled out of the plurality of clamping grooves 10, and the upper plate 2 and the lower plate 3 can be taken out, and then the framework and the vulcanized rubber outside the framework can be processed.

[0034] When the framework 7 in the plurality of fixed sleeves 5 is placed correctly, the framework 7 can smoothly fall into the mold cavity 4, when the framework 7 in the plurality of fixed sleeves 5 is placed incorrectly, the framework 7 cannot smoothly fall into the mold cavity 4, and the framework 7 is partially retained in the fixed sleeve 5, at this time, the lower plate 3 cannot be moved to the right to the original position after the lower plate 3 is loosened, and then the worker can know that the framework 7 is placed incorrectly, and subsequent processing is facilitated.

[0035] Therefore, the feeder is arranged, the framework 7 can be placed in the plurality of fixed sleeves 5 in advance before feeding, the framework 7 does not need to be placed in the plurality of mold cavities 4 by workers one by one, the placing efficiency of the framework 7 is improved, and the possibility of incorrect placement of the framework 7 is avoided.

[0036] The above is only a preferred specific embodiment of the present application, but the protection scope of the present application is not limited to this, any skilled person in the art can make equivalent replacement or change according to the technical scheme and the application concept of the present application within the technical range disclosed by the present application, which should be covered in the protection scope of the present application.

Claims

1. An asymmetric inner sleeve feeder, characterized in that, include: Mold (1), wherein the upper end of the mold (1) is provided with a plurality of mold cavities (4); The upper plate (2) and the lower plate (3) are provided. The upper plate (2) is fixedly connected to a plurality of fixed sleeves (5). The fixed sleeves (5) are provided with a skeleton (7). The lower plate (3) is provided with a plurality of discharge ports (6) corresponding to the plurality of fixed sleeves (5). The plurality of discharge ports (6) correspond to a plurality of mold cavities (4). The limiting mechanism includes four vertical rods (8) fixedly connected to the lower end of the upper plate (2), and four through slots (11) corresponding to the four vertical rods (8) are opened at the upper end of the lower plate (3). The side walls of the four vertical rods (8) pass through the four through slots (11), and the lower ends of the four vertical rods (8) are fixedly connected to the locking pins (9). The upper end of the mold (1) is provided with four locking slots (10) corresponding to the four locking pins (9).

2. The asymmetric inner sleeve feeder according to claim 1, characterized in that, A spring (12) is fixedly connected to the side wall of the vertical rod (8) located in the through groove (11), and the end of the spring (12) away from the vertical rod (8) is fixedly connected to the inner wall of the through groove (11).

3. The asymmetric inner sleeve feeder according to claim 2, characterized in that, The side wall of the vertical rod (8) is fixedly connected to a limiting ring (13), the lower surface of the limiting ring (13) is in contact with the upper surface of the lower plate (3), and the upper surface of the locking post (9) is in contact with the lower surface of the lower plate (3).

4. The asymmetric inner sleeve feeder according to claim 1, characterized in that, The number of mold cavities (4) is 10.