Tubular terminal vibration feeder

By designing a tubular terminal vibratory feeder, and utilizing the cooperation of the vibratory feeding device and the pushing part, combined with cylinders and fiber optic sensors, the problem of high material jamming rate in the existing technology has been solved, and automated feeding and efficient material supply have been achieved.

CN223878955UActive Publication Date: 2026-02-06WUXI XIAI MACHINERY CO LTD
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Patent Information

Application Number
CN202520108678.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2026-02-06
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Existing vibratory feeding systems suffer from high jamming rates due to the lightness of the workpieces, failing to meet feeding requirements and increasing maintenance and production costs.

Method used

A vibratory feeder for tubular terminals was designed, including a bottom chamber, a vibratory feeding device, and a pushing section. The vibratory feeder selects and pushes tubular terminals, and the automatic feeding is achieved by using a cylinder and bolts. The terminal length is detected by a fiber optic sensor to ensure accurate pushing.

Benefits of technology

It has achieved automated feeding, reduced jamming rate, improved production efficiency and feeding speed, and reduced maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a tubular terminal vibration feeder which comprises a bottom bin and an electric control cabinet, a wire passing hole is formed in one side, far away from the electric control cabinet, of the bottom bin, a wire groove is formed between the wire passing hole and the electric control cabinet, a working table top is arranged at the top of the bottom bin, a plurality of vibration feeding devices are arranged at the top of the working table top, and each vibration feeding device comprises a bottom plate. A vibration disc is arranged at the top of the bottom plate and comprises a screening guardrail, a material passing channel is formed in the tangent position of the screening guardrail, a vertical adjusting block is arranged on one side of the pushing part, a horizontal adjusting block is connected to one side of the vertical adjusting block, the vertical adjusting block can move up and down relative to the horizontal adjusting block, and the bottom of the horizontal adjusting block is connected with the top of the bottom plate. Power is supplied to electrical components in the feeder through the electric control cabinet, a cable can be placed in a cable groove in the bottom bin, a main power source can be connected to a cable passing hole, the feeding speed can be increased through a plurality of vibration feeding devices on the top of the working table, and the relative position of a pushing part can be adjusted through a vertical adjusting block.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of precision machinery equipment especially to the technical field of automatic sequencing automatic cutting material blowing feeding vibration feeding system, specifically to a tubular terminal vibration feeder. BACKGROUND

[0002] The vibration feeder is a kind of equipment that can orderly arrange and neatly convey disordered spare part products to next process, and the existing vibration feeding system is cut by cutting mechanism, and the workpiece is taken out by corresponding size Teflon tube below, due to the reason that the workpiece is lighter, swing is larger, the original cutting mechanism has higher material blocking rate, and cannot meet the feeding demand, greatly increases the maintenance and production cost, so that professional technical personnel need to solve the deficiency of equipment. SUMMARY

[0003] In view of the above-mentioned shortcomings of the prior art, the utility model aims at providing a tubular terminal vibration feeder to solve the difficulties of the prior art.

[0004] To achieve the above-mentioned purpose and other related purposes, the utility model provides a tubular terminal vibration feeder, which comprises a bottom bin, the bottom bin is provided with an electric control cabinet on one side, the bottom bin is provided with a wire hole away from the electric control cabinet, a wire slot is arranged between the wire hole and the electric control cabinet, the top of the bottom bin is provided with a workbench, and the top of the workbench is placed with a plurality of vibration feeding devices; the vibration feeding device comprises a bottom plate matched with the top of the workbench, a vibration disc is arranged on the top of the bottom plate, the vibration disc comprises a screening guardrail, the screening guardrail can pass the tubular terminal, the screening guardrail is provided with a material passing channel at the cutting line, the tubular terminal can pass through the material passing channel and be transferred to the pushing part, the pushing part is provided with a downward protruding vertical adjusting block on one side, the vertical adjusting block is connected with a horizontal adjusting block on one side, a long hole is arranged on the vertical adjusting block, the vertical adjusting block can move up and down relative to the horizontal adjusting block, and the bottom of the horizontal adjusting block is connected with the top of the bottom plate.

[0005] According to the preferred scheme, the pushing part comprises a limiting block, the limiting block is fixedly connected with the vertical adjusting block, a material taking sliding block is slidably arranged on the top of the limiting block, the material taking sliding block can move along the length direction of the limiting block, the side of the material taking sliding block, which faces the material passing channel, is provided with a corresponding accommodating port, and the accommodating port can accommodate the tubular terminal.

[0006] According to the preferred scheme, a gas cylinder is installed on one side of the length direction of the limiting block, the gas cylinder comprises an output rod, the output rod moves together with the material taking sliding block, the bottom of the limiting block is provided with a material falling port, and when the output rod pulls the accommodating port away from the side of the material passing channel, the accommodating port can be coaxially arranged with the material falling port.

[0007] According to the preferred embodiment, a moving groove is arranged in the width direction of the material taking sliding block, a moving material taking shaft sliding block is arranged in the moving groove, a through supporting hole is arranged at the top of the material taking shaft sliding block, and the supporting hole can block the falling of the tubular terminal.

[0008] According to the preferred embodiment, a sliding block cover plate is arranged above the material taking shaft sliding block, a limiting groove is arranged on the side of the sliding block cover plate corresponding to the material taking shaft sliding block, a bolt is arranged at the top of the material taking shaft sliding block, the bolt can move in the limiting groove, when the output rod is retracted, the material taking shaft sliding block can move to the side away from the containing opening in the width direction of the limiting block, and when the output rod is retracted, the material taking shaft sliding block can move to the side close to the material falling opening in the length direction of the limiting block.

[0009] According to the preferred embodiment, a material taking fixing block is arranged at the side of the top of the limiting block close to the vibrating disc, a feeding opening is arranged at the position corresponding to the containing opening of the material taking fixing block, a feeding blowing fixing block is fixed to the top of the material taking fixing block, and a gas pipe interface is arranged at the position corresponding to the material falling opening of the top of the feeding blowing fixing block.

[0010] According to the preferred embodiment, a support fixing block is arranged in the length direction of the limiting block, the support fixing block comprises a fiber support mounting hole arranged in the length direction of the limiting block, the fiber support mounting hole can be mounted with a fiber support, a fiber port corresponding to the fiber is arranged on the side wall of the material taking sliding block, and the fiber port can pass through the containing opening.

[0011] The utility model discloses a bottom bin, vibrating feeder, push part, vibrating feeder can select and feed tubular terminal to push part, push part can send tubular terminal to next process, through bin bottom can be accomodated, reached the following beneficial effects:

[0012] (1) can realize mechanical automation loading process;

[0013] (2) according to the different of tubular terminal, whether to push material to next process is automatically selected, and production speed is accelerated;

[0014] The following will be described in more detail with the preferred embodiment of the utility model combined with the drawings, so that the features and advantages of the utility model can be easily understood. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is shown as the three-dimensional structure schematic diagram of the utility model;

[0016] Figure 2 It is shown as the vertical adjusting block structure schematic diagram of the utility model;

[0017] Figure 3 It is shown as the containing opening structure schematic diagram of the utility model;

[0018] Figure 4 A limiting groove structure of the utility model is shown in the schematic diagram;

[0019] Figure 5 A material taking shaft sliding block structure of the utility model is shown in the schematic diagram;

[0020] Label explanation

[0021] 11, electric control cabinet; 12, bottom bin; 121, wire hole; 122, wire slot;

[0022] 2, workbench surface;

[0023] 3, vibrating feeding device; 31, bottom plate; 32, vibrating disc; 321, screening guardrail; 322, material passing channel;

[0024] 41, horizontal adjusting block; 42, vertical adjusting block;

[0025] 5, pushing part; 51, limiting block; 511, material falling port; 52, material taking fixing block; 521, feeding port; 53, sliding block cover plate; 531, limiting groove; 54, feeding blowing fixing block; 541, gas pipe interface; 55, air cylinder; 551, output rod; 56, support fixing block; 561, optical fiber support mounting hole; 57, material taking sliding block; 571, optical fiber port; 572, containing port; 573, moving groove; 58, material taking shaft sliding block; 581, supporting hole; 582, bolt. DETAILED DESCRIPTION

[0026] In order to make the purpose, technical scheme and advantages of the utility model more clear, the technical scheme of the utility model embodiment will be described clearly and completely in the following with the drawings of the utility model embodiment. The same reference signs in the drawings represent the same parts. It should be noted that the described embodiment is a part of the embodiment of the utility model, not all the embodiments. Based on the described embodiment of the utility model, all other embodiments obtained by the person skilled in the art without creative labor belong to the protection scope of the utility model.

[0027] Compared with the embodiment shown in the drawings, the feasible implementation scheme within the protection scope of the utility model can have fewer components, have other components not shown in the drawings, have different components, have differently arranged components or differently connected components, etc. In addition, two or more components in the drawings can be realized in a single component, or a single component shown in the drawings can be realized as multiple separate components.

[0028] Unless otherwise defined, technical terms or scientific terms used herein shall have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terms "first", "second", and similar terms do not imply any order, quantity, or importance, but are used to distinguish one element from another, and are used only to distinguish different components. Similarly, the terms "one" or "a" or "an" do not necessarily mean "one", "single" or "only one". The terms "including", "comprising", "consisting of", and the like mean the elements or objects listed after such terms encompass the elements or objects recited and equivalents thereof, and do not exclude other elements or objects. The terms "connected", "coupled", and the like do not necessarily mean physically or mechanically connected, but can include electrical connection, whether direct or indirect. The terms "upper", "lower", "left", "right", and the like are used only to indicate relative positions, and when the absolute positions of the described objects are changed, the relative positions may also be changed accordingly.

[0029] Please refer to Figure 1 - Figure 5 The utility model provides a kind of embodiment: a tubular terminal vibration feeder, comprising: bottom warehouse 12, one side of bottom warehouse 12 is equipped with electric control cabinet 11, the side of bottom warehouse 12 away from electric control cabinet 11 is equipped with wire hole 121, wire groove 122 is equipped between wire hole 121 and electric control cabinet 11, the top of bottom warehouse 12 is equipped with workbench surface 2, the top of workbench surface 2 is placed with several vibration feeder devices 3, vibration feeder device 3 includes the bottom plate 31 of sticking the top of workbench surface 2, the top of bottom plate 31 is equipped with vibration disc 32, vibration disc 32 includes screening guardrail 321, tubular terminal can pass through screening guardrail 321, screening guardrail 321 tangent is equipped with material passing channel 322, tubular terminal can pass through material passing channel 322 and be transferred into push part 5, one side of push part 5 is equipped with the vertical adjusting block 42 that protrudes downward, one side of vertical adjusting block 42 is connected with horizontal adjusting block 41, vertical adjusting block 42 is equipped with long hole, vertical adjusting block 42 can move up and down relative to horizontal adjusting block 41, the bottom of horizontal adjusting block 41 is connected with the top of bottom plate 31. Power supply is supplied to electrical components inside feeder by electric control cabinet 11, wire groove 122 inside bottom warehouse 12 can place cable, main power supply can be connected at wire hole 121, several vibration feeder devices 3 on the top of workbench surface 2 can speed up feeding speed, improve feeding efficiency, vertical adjusting block 42 can adjust the relative position of push part 5, so that push part 5 can smoothly receive the material of vibration feeder device 3.

[0030] Please refer to Figure 1 - Figure 4In the embodiment, the pushing part 5 comprises a limiting block 51 fixedly connected with the vertical adjusting block 42, a top of the limiting block 51 is slidably provided with a material taking sliding block 57, the material taking sliding block 57 is movable along a length direction of the limiting block 51, a side of the material taking sliding block 57 facing the material passing channel 322 is provided with a corresponding accommodating opening 572 capable of accommodating the tubular terminal. The tubular terminal is accommodated through the accommodating opening 572, the material taking sliding block 57 is facilitated to move the tubular terminal, an effect of feeding to a corresponding position is realized, a side of the length direction of the limiting block 51 is provided with a pneumatic cylinder 55, the pneumatic cylinder 55 comprises an output rod 551, the output rod 551 moves together with the material taking sliding block 57, a bottom of the limiting block 51 is provided with a material falling opening 511, when the output rod 551 pulls the accommodating opening 572 away from the side of the material passing channel 322, the accommodating opening 572 is coaxially provided with the material falling opening 511. The tubular terminal in the accommodating opening 572 is discharged through the material falling opening 511, a next process is realized, the material taking sliding block 57 is provided with a moving groove 573 in a width direction, the moving groove 573 is provided with a movable material taking shaft sliding block 58, a top of the material taking shaft sliding block 58 is provided with a penetrating supporting hole 581, the supporting hole 581 is capable of blocking the falling of the tubular terminal. The tubular terminal is blocked through the supporting hole 581, a height of the tubular terminal entering the accommodating opening 572 is facilitated to be detected.

[0031] Please refer to Figure 4 - Figure 5In the embodiment, the upper side of the taking shaft sliding block 58 is attached with a sliding block cover plate 53, the side of the sliding block cover plate 53 corresponding to the taking shaft sliding block 58 is provided with a limiting groove 531, the top of the taking shaft sliding block 58 is provided with a bolt 582, the bolt 582 can move in the limiting groove 531, when the output rod 551 is retracted, the taking shaft sliding block 58 can move towards the side away from the containing port 572 in the width direction of the limiting block 51; when the output rod 551 is retracted, the taking shaft sliding block 58 can move towards the side close to the dropping port 511 in the length direction of the limiting block 51. Through the cooperation of the air cylinder 55 and the bolt 582, the taking shaft sliding block 58 has the ability of oblique movement, realizes the ability of canceling holding the tubular terminal and driving towards the dropping port 511, the top of the limiting block 51 close to the side of the vibration disc 32 is provided with a taking fixing block 52, the taking fixing block 52 is provided with a feeding port 521 corresponding to the position of the containing port 572, the top of the taking fixing block 52 is fixed with a feeding blowing fixing block 54, the top of the feeding blowing fixing block 54 is provided with a gas pipe joint 541 corresponding to the position of the dropping port 511. Through the gas pipe joint 541 connected with the gas pipe joint, the tubular terminal is discharged from the dropping port 511, the working efficiency is improved, the limiting block 51 is provided with a support fixing block 56 in the length direction, the support fixing block 56 includes a fiber support mounting hole 561 arranged in the length direction of the limiting block 51, the fiber support mounting hole 561 can be mounted with a fiber support, the side wall of the taking sliding block 57 is provided with a fiber port 571 corresponding to the fiber, the fiber port 571 can pass through the containing port 572. Through the fiber, the height of the tubular terminal is detected, when the light of the fiber can be sensed by the corresponding sensor, it represents that the length distance of the tubular terminal is small, when the light of the fiber cannot be sensed by the corresponding sensor, it represents that the length distance of the tubular terminal is long.

[0032] In the process of working, three-phase electricity passes through the wire hole 121, enters the electric control cabinet 11 along the wire groove 122, and the electric control cabinet 11 is electrically connected with the corresponding electrical components in the feeder. The connection mode is prior art, and the working principle is not repeated here. After the tubular terminal is poured into the vibration disc 32, the vibration disc 32 drives the tubular terminal to move along the screening guardrail 321. The correct position of the tubular terminal will enter the pushing part 5 along the material passing channel 322. First, the tubular terminal will pass through the feeding port 521 of the material taking fixed block 52, and then enter the containing port 572 of the material taking sliding block 57. The material taking shaft sliding block 58 in the moving groove 573 will lift the tubular terminal, so that the optical fiber of the optical fiber port 571 and the corresponding sensor can work and judge the length of the tubular terminal. For the appropriate tubular terminal, the material falling port 511 will pull the material taking sliding block 57 to the side close to the air cylinder 55, and at the same time, the bolt 582 of the material taking shaft sliding block 58 moves in the limiting groove 531, so that the material taking shaft sliding block 58 cannot lift the tubular terminal. The tubular terminal will fall under gravity. When the containing port 572 corresponds to the material falling port 511, the tubular terminal will fall out of the material falling port 511, and the airflow blown from the air pipe interface 541 can speed up the falling speed.

[0033] The above embodiments only exemplarily illustrate the principles and effects of the present application, and are not used to limit the present application. Any person skilled in the art can modify or change the above embodiments without departing from the spirit and scope of the present application. Therefore, all equivalent modifications or changes completed by those skilled in the art without departing from the spirit and technical thought disclosed by the present application should be covered by the claims of the present application.

Claims

1. A vibratory feeder for tubular terminals, characterized in that, The utility model relates to a kind of vibration feeding device, including: Bottom warehouse (12), one side of bottom warehouse (12) is equipped with electric control cabinet (11), the side of bottom warehouse (12) away from electric control cabinet (11) is equipped with wire hole (121), wire slot (122) is equipped between wire hole (121) and electric control cabinet (11), the top of bottom warehouse (12) is equipped with workbench surface (2), the top of workbench surface (2) is placed with several vibration feeding devices (3), vibration feeding device (3) includes the bottom plate (31) of sticking workbench surface (2) top, the top of bottom plate (31) is equipped with vibrating disk (32), vibrating disk (32) includes screening guardrail (321), screening guardrail (321) can pass through tubular terminal, screening guardrail (321) tangent is equipped with material passing channel (322), tubular terminal can pass through material passing channel (322) and be delivered into push part (5), the side of push part (5) is equipped with the vertically adjusting block (42) of downward protruding, the side of vertically adjusting block (42) is connected with horizontal adjusting block (41), vertically adjusting block (42) is equipped with long hole, vertically adjusting block (42) can be moved up and down relative to horizontal adjusting block (41), the bottom of horizontal adjusting block (41) is connected with the top of bottom plate (31).

2. The tubular terminal vibrating feeder according to claim 1, wherein Push part (5) includes limiting block (51), limiting block (51) is fixedly connected with vertically adjusting block (42), the top of limiting block (51) is slidably equipped with material taking sliding block (57), material taking sliding block (57) can be moved along the length direction of limiting block (51), the side of material taking sliding block (57) towards material passing channel (322) is equipped with corresponding accommodating port (572), accommodating port (572) can accommodate tubular terminal.

3. The tubular terminal vibrating feeder according to claim 2, wherein The side of length direction of limiting block (51) is installed with pneumatic cylinder (55), pneumatic cylinder (55) includes output rod (551), output rod (551) moves with material taking sliding block (57), the bottom of limiting block (51) is equipped with blanking port (511), when output rod (551) pulls accommodating port (572) away from the side of material passing channel (322), accommodating port (572) can be coaxially arranged with blanking port (511).

4. The tubular terminal vibrating feeder according to claim 3, wherein Material taking sliding block (57) is equipped with moving groove (573) in width direction, moving groove (573) is equipped with movable material taking shaft sliding block (58) inside, the top of material taking shaft sliding block (58) is equipped with through hole (581), through hole (581) can prevent tubular terminal from falling.

5. The tubular terminal vibration feeder according to claim 4, wherein The top of material taking shaft sliding block (58) is equipped with sliding block cover plate (53), the side of sliding block cover plate (53) corresponding to material taking shaft sliding block (58) is equipped with limiting groove (531), the top of material taking shaft sliding block (58) is equipped with bolt (582), bolt (582) can be moved in limiting groove (531), when output rod (551) retracts, material taking shaft sliding block (58) can move towards the side away from accommodating port (572) in the width direction of limiting block (51);When output rod (551) retracts, material taking shaft sliding block (58) can move towards the side close to blanking port (511) in the length direction of limiting block (51).

6. The tubular terminal vibration feeder according to claim 5, wherein The top of the limiting block (51) is provided with a material taking fixing block (52) near one side of the vibrating disc (32), the material taking fixing block (52) is provided with a feeding port (521) corresponding to the position of the containing port (572), the top of the material taking fixing block (52) is fixed with a feeding blowing fixing block (54), and the top of the feeding blowing fixing block (54) is provided with a gas pipe interface (541) corresponding to the position of the blanking port (511).

7. The tubular terminal vibration feeder according to claim 6, wherein The limiting block (51) is provided with a support fixing block (56) in the length direction, the support fixing block (56) comprises a fiber support mounting hole (561) arranged along the length direction of the limiting block (51), the fiber support mounting hole (561) can be mounted with a fiber support, and the side wall of the material taking sliding block (57) is provided with a fiber port (571) corresponding to the fiber, and the fiber port (571) can pass through the containing port (572).