CN214731995U - A kind of inductive vibration plate - Google Patents

A kind of inductive vibration plate Download PDF

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Publication number
CN214731995U
CN214731995U CN202120952421.XU CN202120952421U CN214731995U CN 214731995 U CN214731995 U CN 214731995U CN 202120952421 U CN202120952421 U CN 202120952421U CN 214731995 U CN214731995 U CN 214731995U
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material channel
vibrating disc
channel
disc body
inductive
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马小野
高乾
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Liu Hongjun
Wan Fang
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Suzhou Qianmao Intelligent Equipment Co ltd
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Abstract

本实用新型公开了一种电感振动盘,包括振动盘本体,所述振动盘本体内设置有螺旋料道且呈渐开上升式,所述振动盘本体的出口与转轨连接,所述螺旋料道与转轨之间还设置有吹气料道,所述螺旋料道上设置有第一调整槽和两个导料槽,所述第一调整槽呈弧形且向出料方向尺寸逐渐减小,所述导料槽和吹气料道均倾斜设置,所述振动盘本体上设置有多个第一气孔,所述第一气孔位于螺旋料道上方,所述吹气料道上设置有第二调整槽和多个第二气孔,所述螺旋料道位于第二调整槽下方,减少对电感磨损的同时提高工作效率。

Figure 202120952421

The utility model discloses an inductive vibrating disc, which comprises a vibrating disc body. A spiral material channel is arranged in the vibrating plate body and is in an involute rising type. The outlet of the vibrating disc body is connected with a turning rail. There is also an air blowing material channel between the turning rail and the spiral material channel. A first adjustment groove and two material guide grooves are arranged on the spiral material channel. The material guiding chute and the air blowing material channel are both inclined and arranged, the vibrating plate body is provided with a plurality of first air holes, the first air holes are located above the spiral material channel, and the air blowing material channel is provided with a second adjustment groove And a plurality of second air holes, the spiral material channel is located under the second adjustment groove, which reduces the wear on the inductance and improves the work efficiency.

Figure 202120952421

Description

Inductance vibration dish
Technical Field
The utility model relates to a vibration dish field especially relates to an inductance vibration dish.
Background
The vibrating disc is an auxiliary device of an automatic assembly machine, can orderly discharge specific products, and can be matched with the automatic assembly machine to assemble all parts of the products together to form a complete product. The existing vibration disc can reject the inductance which is not in line with the detection requirement by directly utilizing an air blowing method when the inductance is transported, the inductance with wrong direction is too much, the inductance is directly abraded due to the rejection, and the working efficiency is low.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects, the utility model aims to provide an inductance vibration dish which can improve the work efficiency when reducing the abrasion of the inductance.
In order to achieve the above purpose, the utility model discloses a technical scheme is: the utility model provides an inductance vibration dish, includes the vibration dish body, this internal spiral material way that is provided with of vibration dish just is the formula that rises of gradually opening, the export and the turn rail of vibration dish body are connected, still be provided with between spiral material way and the turn rail and blow the material way, be provided with first adjustment tank and two baffle houses on the spiral material way, first adjustment tank is the arc and reduces gradually to ejection of compact direction size, the baffle house with blow the material and say all slope settings, be provided with a plurality of first gas pockets on the vibration dish body, first gas pocket is located spiral material way top, it is provided with second adjustment tank and a plurality of second gas pocket on the material way to blow, the spiral material is said and is located second adjustment tank below.
Further, the bottom surface of the vibration disc body is provided with three arc-shaped grooves in a counterclockwise manner.
Furthermore, the downward sloping is provided with the sieve material slide in the vibration dish body, arbitrary one the arc recess communicates with sieve material slide, two the baffle box all is located sieve material slide top and is connected with it.
Further, still be provided with the feed chute in the vibration dish body, feed chute one end is connected with spiral material way, all the other two the arc recess all communicates with the feed chute.
Further, be provided with the waste material passageway on the vibration dish body, the waste material passageway is located spiral material way one side and rather than the intercommunication.
Furthermore, the turning rail is connected with the straight rail, and a linear controller is arranged at the bottom of the straight rail.
Compared with the prior art, the utility model, its beneficial effect lies in:
1. the direction of the inductor is adjusted through the matching of the first adjusting groove, the first air hole positioned at the tail end of the first adjusting groove, the second adjusting groove and the second air hole positioned at the tail end of the first adjusting groove, so that the abrasion of direct screening on the inductor is avoided;
2. through the matching of the guide chute and the air blowing material channel which are inclined downwards and the first air hole and the second air hole on the air blowing material channel which are respectively positioned above the guide chute, the inductors which do not meet the conditions fall into the vibration disc and are rearranged and conveyed;
3. unqualified inductors are discharged by arranging a waste material channel.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the vibrating disk body.
In the figure:
1-vibrating the tray body; 2-a spiral material channel; 3-transferring; 4-blowing the material channel; 5-a material guide groove; 6-a first adjustment slot; 7-a first air vent; 8-second pores; 9-a second adjustment groove; 10-arc groove; 11-a material screening chute; 12-a feed chute; 13-a waste channel; 14-straight rail.
Detailed Description
The following detailed description of the preferred embodiments of the present invention will be provided in conjunction with the accompanying drawings, so as to enable those skilled in the art to more easily understand the advantages and features of the present invention, and thereby define the scope of the invention more clearly and clearly.
Referring to fig. 1 and 2, an inductance vibration disc comprises a vibration disc body 1, wherein a spiral material channel 2 is arranged in the vibration disc body 1 and is in a gradually-opened ascending type, an outlet of the vibration disc body 1 is connected with a rotating rail 3, an air blowing material channel 4 is also arranged between the spiral material channel 2 and the rotating rail 3, a first adjusting groove 6 and two material guide grooves 5 are arranged on the spiral material channel 2, the first adjusting groove 6 is arc-shaped and gradually reduces in size towards a discharging direction, the material guide grooves 5 and the air blowing material channel 4 are both obliquely arranged, a plurality of first air holes 7 are formed in the vibration disc body 1, the first air holes 7 are located above the spiral material channel 2, a second adjusting groove 9 and a plurality of second air holes 8 are formed in the air blowing material channel 4, and the spiral material channel 2 is located below the second adjusting groove 9;
in the embodiment, three arc-shaped grooves 10 are arranged on the bottom surface of the vibration disc body 1 anticlockwise, a screening slideway 11 is arranged in the vibration disc body 1 in a downward inclined mode, any one arc-shaped groove 10 is communicated with the screening slideway 11, two guide chutes 5 are positioned above and connected with the screening slideway 11, a feed chute 12 is further arranged in the vibration disc body 1, one end of the feed chute 12 is connected with the spiral material channel 2, and the other two arc-shaped grooves 10 are communicated with the feed chute 12;
in the embodiment, the vibration disc body 1 is provided with the waste material channel 13, and the waste material channel 13 is positioned on one side of the spiral material channel 2 and communicated with the spiral material channel to realize seed changing and material cleaning;
in this embodiment, the turning rail 3 is connected to the straight rail 14, and the bottom of the straight rail 14 is provided with a linear controller to realize inductive transmission.
The specific working process is as follows: the inductor at the bottom of the vibration disc body 1 moves along the arc-shaped grooves 10 and moves to the spiral material channel 2 through the feeding chute 12, because the screening material slide ways 11 are arranged in a downward inclined mode, the inductor can only move from the spiral material channel 2, when the inductor moves through the first adjusting chute 6, if the direction of the inductor is opposite to the set direction, the first air hole 7 at the tail end of the first adjusting chute 6 blows air to adjust the position of the inductor, if the position is still wrong after adjustment, when the inductor passes through the material guide chute 5, the first air hole 7 above the inductor blows air to enable the inductor to slide onto the inclined screening material slide ways 11, finally the inductor falls into the arc-shaped grooves 10 connected with the inductor through the screening material slide ways 11, and the inductor is arranged on the spiral material channel 2 from the rest two arc-shaped grooves 10 through vibration;
in order to avoid screen leakage, when the inductor moves through the material channel of the air blowing material channel 4, if the direction of the inductor is opposite to the set direction, the second air holes 8 at the tail ends of the second adjusting grooves 9 blow air to adjust the position of the inductor, and if the adjusted position is still wrong, the rest second air holes 8 blow air to enable the inductor to fall to the spiral material channel 2 for re-adjustment.
The above embodiments are only for illustrating the technical concept and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, so as not to limit the protection scope of the present invention, and all equivalent changes or modifications made according to the spirit of the present invention should be covered in the protection scope of the present invention.

Claims (6)

1.一种电感振动盘,包括振动盘本体(1),所述振动盘本体(1)内设置有螺旋料道(2)且呈渐开上升式,所述振动盘本体(1)的出口与转轨(3)连接,其特征在于:所述螺旋料道(2)与转轨(3)之间还设置有吹气料道(4),所述螺旋料道(2)上设置有第一调整槽(6)和两个导料槽(5),所述第一调整槽(6)呈弧形且向出料方向尺寸逐渐减小,所述导料槽(5)和吹气料道(4)均倾斜设置,所述振动盘本体(1)上设置有多个第一气孔(7),所述第一气孔(7)位于螺旋料道(2)上方,所述吹气料道(4)上设置有第二调整槽(9)和多个第二气孔(8),所述螺旋料道(2)位于第二调整槽(9)下方。1. An inductive vibrating disc, comprising a vibrating disc body (1), a spiral material channel (2) is provided in the vibrating disc body (1) and is gradually opened and ascending, and the outlet of the vibrating disc body (1) Connected with the rail (3), it is characterized in that: between the spiral material channel (2) and the rail (3), a blowing material channel (4) is also provided, and the spiral material channel (2) is provided with a first Adjustment groove (6) and two material guide grooves (5), the first adjustment groove (6) is arc-shaped and gradually decreases in size in the discharge direction, the material guide groove (5) and the blowing material channel (4) They are all arranged obliquely, the vibrating disc body (1) is provided with a plurality of first air holes (7), the first air holes (7) are located above the spiral material channel (2), and the air blowing material channel (4) A second adjustment groove (9) and a plurality of second air holes (8) are provided on the screw feed channel (2), and the screw feed channel (2) is located below the second adjustment groove (9). 2.根据权利要求1所述的一种电感振动盘,其特征在于:所述振动盘本体(1)底面呈逆时针设置有三个弧形凹槽(10)。2 . The inductive vibration plate according to claim 1 , characterized in that: the bottom surface of the vibration plate body ( 1 ) is provided with three arc-shaped grooves ( 10 ) counterclockwise. 3 . 3.根据权利要求2所述的一种电感振动盘,其特征在于:所述振动盘本体(1)内向下倾斜设置有筛料滑道(11),任意一个所述弧形凹槽(10)与筛料滑道(11)连通,两个所述导料槽(5)均位于筛料滑道(11)上方并与其连接。3. An inductive vibrating disc according to claim 2, characterized in that: the vibrating disc body (1) is provided with a downwardly inclined screen slideway (11), and any one of the arc-shaped grooves (10) ) is communicated with the screening slideway (11), and the two material guide grooves (5) are located above and connected to the screening slideway (11). 4.根据权利要求2所述的一种电感振动盘,其特征在于:所述振动盘本体(1)内还设置有进料槽(12),所述进料槽(12)一端与螺旋料道(2)连接,其余两个所述弧形凹槽(10)均与进料槽(12)连通。4. An inductive vibrating disc according to claim 2, characterized in that: the vibrating disc body (1) is further provided with a feeding chute (12), and one end of the feeding chute (12) is connected to the screw The channels (2) are connected, and the other two arc grooves (10) are communicated with the feeding grooves (12). 5.根据权利要求1所述的一种电感振动盘,其特征在于:所述振动盘本体(1)上设置有废料通道(13),所述废料通道(13)位于螺旋料道(2)一侧并与其连通。5. An inductive vibrating disc according to claim 1, characterized in that: the vibrating disc body (1) is provided with a waste channel (13), and the waste channel (13) is located in the screw channel (2) side and communicate with it. 6.根据权利要求1所述的一种电感振动盘,其特征在于:所述转轨(3)与直轨(14)连接,所述直轨(14)底部设置有直线控制器。6 . The inductive vibration plate according to claim 1 , wherein the rotating rail ( 3 ) is connected to a straight rail ( 14 ), and a linear controller is provided at the bottom of the straight rail ( 14 ). 7 .
CN202120952421.XU 2021-05-06 2021-05-06 A kind of inductive vibration plate Active CN214731995U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115724138A (en) * 2022-12-29 2023-03-03 苏州塞一澳电气有限公司 Automatic screening visual vibration dish

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115724138A (en) * 2022-12-29 2023-03-03 苏州塞一澳电气有限公司 Automatic screening visual vibration dish

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Effective date of registration: 20240820

Address after: No. 267, Beinancai Village, Beinancai Township, Dingxing County, Baoding City, Hebei Province, China 072652

Patentee after: Liu Hongjun

Country or region after: China

Patentee after: Wan Fang

Address before: 215000 no.388, Fuhua Road, Wujiang Economic and Technological Development Zone (Tongli town), Suzhou City, Jiangsu Province

Patentee before: Suzhou qianmao Intelligent Equipment Co.,Ltd.

Country or region before: China

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Effective date of registration: 20241115

Address after: Room 107, No. 21 Heping Road, Yangsong Town, Huairou District, Beijing 101499

Patentee after: Beijing Fuhua Wantong Technology Co.,Ltd.

Country or region after: China

Address before: No. 267, Beinancai Village, Beinancai Township, Dingxing County, Baoding City, Hebei Province, China 072652

Patentee before: Liu Hongjun

Country or region before: China

Patentee before: Wan Fang

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Effective date of registration: 20251209

Address after: 071000 Hebei Province, Dingxing County, Beinancai Township, Beinancai Village, No. 267

Patentee after: Liu Hongjun

Country or region after: China

Patentee after: Wan Fang

Address before: Room 107, No. 21 Heping Road, Yangsong Town, Huairou District, Beijing 101499

Patentee before: Beijing Fuhua Wantong Technology Co.,Ltd.

Country or region before: China

TR01 Transfer of patent right