CN208561016U - Big material bin rotary distributing device - Google Patents

Big material bin rotary distributing device Download PDF

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Publication number
CN208561016U
CN208561016U CN201821239889.9U CN201821239889U CN208561016U CN 208561016 U CN208561016 U CN 208561016U CN 201821239889 U CN201821239889 U CN 201821239889U CN 208561016 U CN208561016 U CN 208561016U
Authority
CN
China
Prior art keywords
annular
material bin
big material
wall
feeding tube
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201821239889.9U
Other languages
Chinese (zh)
Inventor
石胤
陈平
屈立强
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Taizhou Danone New Energy Co Ltd
Langfang Danone New Energy Technology Ltd By Share Ltd
Original Assignee
Taizhou Danone New Energy Co Ltd
Langfang Danone New Energy Technology Ltd By Share Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Taizhou Danone New Energy Co Ltd, Langfang Danone New Energy Technology Ltd By Share Ltd filed Critical Taizhou Danone New Energy Co Ltd
Priority to CN201821239889.9U priority Critical patent/CN208561016U/en
Application granted granted Critical
Publication of CN208561016U publication Critical patent/CN208561016U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model provides a kind of big material bin rotary distributing device, including motor, gear reducer, gear, feeding tube, rotating guide tube and big material bin, speed reducer drives gear rotation, feeding tube has the first discharge end, first feed end is socketed on the first discharge end of feeding tube, and the second discharge end of rotating guide tube is located in big material bin.Annular groove and verticle roll unit are successively fixedly installed from the discharge port of feeding tube on the outer wall of feeding tube, a plurality of balls are arranged in annular groove, verticle roll unit includes a plurality of edger rolls and a plurality of fixing pieces, the both ends of each edger roll are separately connected a fixing piece, a plurality of fixing pieces are fixedly arranged on outer wall, and each edger roll fixing piece corresponding with respect to its can be rotated;First annular plate and annular rack are successively fixedly installed on the inner wall of rotating guide tube, and first annular plate is contacted with a plurality of balls, a plurality of edger rolls are contacted with inner wall, annular rack and gear mesh.

Description

Big material bin rotary distributing device
Technical field
The utility model relates to feed bin feeding device more particularly to a kind of big material bin rotary distributing devices.
Background technique
Big material bin is since volume is big, and when with gas transporting material, material parabolically falls, feed bin end or compared with It charges at a distance less, along with material itself has certain stocking angle, causes the utilization rate of big material bin very low, space waste is very Greatly.
Utility model content
Therefore, one of the purpose of this utility model is to provide a kind of big material bin rotary distributing device, to solve existing skill The problem that big material bin utilization rate is low in art, space waste is serious.
In order to achieve the above object, the utility model provides a kind of big material bin rotary distributing device, which rotates cloth dress It sets including motor, gear reducer, gear, feeding tube, rotating guide tube and big material bin, which connect with the speed reducer, this subtracts Fast machine connects and the gear is driven to rotate, which has the first discharge end, which is L-type structure, the rotation First feed end of guide pipe is socketed on first discharge end of the feeding tube, and the second discharge end of the rotating guide tube is located at should In big material bin, and the rotating guide tube can be rotated with respect to a discharge end for the feeding tube;Wherein, on the outer wall of the feeding tube certainly The discharge port of the feeding tube is successively fixedly installed annular groove and verticle roll unit along first direction, and card is set in the annular groove There are a plurality of balls, which includes a plurality of edger rolls and a plurality of fixing pieces, and the both ends of each edger roll are separately connected One fixing piece, a plurality of fixing pieces are fixedly arranged on the outer wall, and each edger roll fixing piece corresponding with respect to its can be rotated;It should It is successively fixedly installed first annular plate and annular rack along the first direction on the inner wall of rotating guide tube, this is first annular Plate is located between the ball and the verticle roll unit, and the first annular plate is contacted with a plurality of balls, a plurality of edger rolls with Inner wall contact, the annular rack and the gear mesh, and the verticle roll unit be located at the annular rack and the first annular plate it Between.
As optional technical solution, the second annular slab is further fixedly arranged on the inner wall of the rotating guide tube, this first Annular slab, second annular slab and the annular rack are set gradually along the first direction, and the annular rack be fixed on this On second ring plate.
As optional technical solution, the first annular plate and second annular slab and the inner wall are integrally formed knot Structure.
As optional technical solution, the first annular plate and second annular slab and rotating guide tube welding connect It connects.
Outer wall as optional technical solution, the annular groove and the feeding tube is an integral molding structure.
As optional technical solution, which includes 4 edger rolls.
Compared with prior art, rotating guide tube is arranged in the discharge end of the utility model feeding tube, which can It is rotated relative to feeding tube, to realize that the discharge end of rotating guide tube can rotate in big material bin, to change the direction of blanking And position, material is equably fallen in big material bin, to greatly improve the loading amount of big material bin, increases operation rate, subtracts Equipment investment is lacked.
The advantages of about the utility model and spirit can be described in detail by utility model below and institute's accompanying drawings obtain into The understanding of one step.
Detailed description of the invention
Fig. 1 show the schematic diagram of big material bin rotary distributing device according to the present utility model;
Fig. 2 show the schematic diagram of the verticle roll unit in Fig. 1;
Fig. 3 show the schematic diagram of the cyclic annular rack gear in Fig. 1;
Fig. 4 show the schematic diagram that the ball in Fig. 1 is set in annular groove.
Specific embodiment
- Fig. 4 referring to Figure 1, Fig. 1 show the schematic diagram of big material bin rotary distributing device according to the present utility model;Fig. 2 It show the schematic diagram of the verticle roll unit in Fig. 1;Fig. 3 show the schematic diagram of the cyclic annular rack gear in Fig. 1;Fig. 4 is shown in Fig. 1 Ball be set to the schematic diagram in annular groove.The utility model provides a kind of big material bin rotary distributing device, big material bin rotation Turning distribution device includes motor 1, speed reducer 2, gear 3, feeding tube 4, rotating guide tube 5 and big material bin 6, motor 1 and is slowed down Machine 2 connects, and speed reducer 2 connects and gear 3 is driven to rotate, and feeding tube 4 has the first discharge end, and rotating guide tube is L-type structure, And the first feed end 51 of rotating guide tube 5 is socketed on the first discharge end of feeding tube 4, the second discharge end of rotating guide tube 5 52 are located in big material bin 6.
Wherein, on the outer wall 40 of feeding tube 4 from the discharge port 41 of feeding tube 4 along first direction (on the drawing of Fig. 1 for from Under up) be successively fixedly installed annular groove 42 and verticle roll unit, a plurality of balls 43 are arranged in annular groove 42, stand Roller arrangement includes a plurality of edger rolls 44 and a plurality of fixing pieces 45, and the both ends of each edger roll 44 are separately connected a fixing piece 45, these fixing pieces 45 are fixedly arranged on outer wall 40, and each edger roll 44 can be rotated with respect to its corresponding fixing piece 45, specifically, As shown in Fig. 2, the both ends of edger roll 44 have central axis 46, central axis 46 and fixed frame 45 are rotatablely connected.
In addition, on the inner wall 50 of rotating guide tube 5 along above-mentioned first direction be successively fixedly installed first annular plate 55 with And annular rack 53, first annular plate 55 is between ball 43 and verticle roll unit, and first annular plate 55 and a plurality of balls 43 contacts, a plurality of edger rolls 44 are contacted with inner wall 50.It is to guarantee to rotate that the purpose of verticle roll unit is arranged in the utility model Guide pipe 5 is able to maintain steadily in the course of rotation, and wherein verticle roll unit is for example including 4 edger rolls.
Moreover, annular rack 53 and gear 3 are ratcheting, and verticle roll unit be located at annular rack 53 and first annular plate 55 it Between.
Speed reducer 2 drives gear 3 to rotate, and annular rack 53 can also rotate under the drive of gear 3, to drive rotation Turn guide pipe 5 to rotate around feeding tube 4, the second discharge end 52 of rotating guide tube 5 will rotate in big material bin 6, to realize Material being uniformly distributed in big material bin 6.And the process rotated in rotating guide tube 5, due to first annular plate 55 and ball 43 contacts, the rolling meeting of ball 43 is so that the rotation of rotating guide tube 5 is more smoothly.In addition, edger roll and rotation on verticle roll unit The contact of inner wall 50 for turning guide pipe 5 can also play guiding function to the rotation of rotating guide tube 5, and can also maintain rotary steering The stationarity that pipe 5 rotates.
In addition, being further fixedly arranged on the second annular slab 54 on the inner wall 50 of rotating guide tube 5 in present embodiment, this One annular slab 55, second annular slab 54 and annular rack 53 are set gradually along the first direction, and annular rack 53 is fixed In on the second annular slab 54.
Wherein in an embodiment, first annular plate 55 and second annular slab 54 and the inner wall 50 are integrally formed knot Structure.But the utility model is not limited thereto, in another embodiment, first annular plate and the second annular slab and rotary steering Pipe is welded to connect.
Wherein in an embodiment, annular groove 42 and the outer wall 40 of the feeding tube 4 are an integral molding structure.
In conclusion the utility model feeding tube discharge end be arranged rotating guide tube, the rotating guide tube can relatively on Expects pipe rotation enables to realize that the discharge end of rotating guide tube rotates in big material bin to change the direction and position of blanking, from And material is equably fallen in big material bin, to greatly improve the loading amount of big material bin, increase operation rate, reduces and set Standby investment.
By the above detailed description of preferred embodiments, it is intended to more clearly describe the feature of the utility model and essence Mind, and not the protection scope of the utility model is limited with above-mentioned disclosed preferred embodiment.On the contrary, The purpose is to wish to cover various changes and have the guarantor for being arranged in the claim that the utility model to be applied of equality It protects in range.Therefore, the applied scope of protection of the claims of the utility model should illustrate that work is most broad according to above-mentioned Explanation, with cause its cover it is all possible change and tool equality arrangement.

Claims (6)

1. a kind of big material bin rotary distributing device, which is characterized in that the big material bin rotary distributing device include motor, speed reducer, Gear, feeding tube, rotating guide tube and big material bin, the motor are connect with the speed reducer, which connects and drive the tooth Wheel rotation, the feeding tube have the first discharge end, which is L-type structure, the first feed end of the rotating guide tube It is socketed on first discharge end of the feeding tube, the second discharge end of the rotating guide tube is located in the big material bin, and the rotation Guide pipe can be rotated with respect to a discharge end for the feeding tube;Wherein, from the discharge port of the feeding tube on the outer wall of the feeding tube It is successively fixedly installed annular groove and verticle roll unit along first direction, a plurality of balls are arranged in the annular groove, it should Verticle roll unit includes a plurality of edger rolls and a plurality of fixing pieces, and the both ends of each edger roll are separately connected a fixing piece, this is multiple Several fixing pieces are fixedly arranged on the outer wall, and each edger roll fixing piece corresponding with respect to its can be rotated;The rotating guide tube it is interior Successively be fixedly installed first annular plate and annular rack along the first direction on wall, the first annular plate be located at the ball with Between the verticle roll unit, and the first annular plate is contacted with a plurality of balls, which contacts with the inner wall, the ring Shape rack gear and the gear mesh, and the verticle roll unit is located between the annular rack and the first annular plate.
2. big material bin rotary distributing device as described in claim 1, which is characterized in that also solid on the inner wall of the rotating guide tube Surely it is provided with the second annular slab, the first annular plate, second annular slab and the annular rack are successively set along the first direction It sets, and the annular rack is fixed on second annular slab.
3. big material bin rotary distributing device as claimed in claim 2, which is characterized in that the first annular plate and second ring Shape plate is an integral molding structure with the inner wall.
4. big material bin rotary distributing device as claimed in claim 2, which is characterized in that the first annular plate and second ring Shape plate and the rotating guide tube are welded to connect.
5. big material bin rotary distributing device as described in claim 1, which is characterized in that the annular groove is outer with the feeding tube Wall is an integral molding structure.
6. big material bin rotary distributing device as described in claim 1, which is characterized in that the verticle roll unit includes 4 edger rolls.
CN201821239889.9U 2018-08-02 2018-08-02 Big material bin rotary distributing device Expired - Fee Related CN208561016U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821239889.9U CN208561016U (en) 2018-08-02 2018-08-02 Big material bin rotary distributing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821239889.9U CN208561016U (en) 2018-08-02 2018-08-02 Big material bin rotary distributing device

Publications (1)

Publication Number Publication Date
CN208561016U true CN208561016U (en) 2019-03-01

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821239889.9U Expired - Fee Related CN208561016U (en) 2018-08-02 2018-08-02 Big material bin rotary distributing device

Country Status (1)

Country Link
CN (1) CN208561016U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114870763A (en) * 2022-05-10 2022-08-09 江西炼石环保科技有限公司 Simple and easy accelerated reaction unit of microchannel reactor

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114870763A (en) * 2022-05-10 2022-08-09 江西炼石环保科技有限公司 Simple and easy accelerated reaction unit of microchannel reactor

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190301