CN204583683U - A kind of uniform chute of feed of vibratory sieve top - Google Patents
A kind of uniform chute of feed of vibratory sieve top Download PDFInfo
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- CN204583683U CN204583683U CN201420784599.8U CN201420784599U CN204583683U CN 204583683 U CN204583683 U CN 204583683U CN 201420784599 U CN201420784599 U CN 201420784599U CN 204583683 U CN204583683 U CN 204583683U
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- deflector
- cutting plate
- lower house
- guide plate
- upper shell
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Abstract
A kind of uniform chute of feed of vibratory sieve top, comprise chute housing, chute housing is made up of the lower house of columniform upper shell and truncated cone-shaped, upper shell and lower house are coaxially arranged, the lower surface of upper shell is fixedly connected with the upper surface of lower house, key is: in upper shell, set up cutting plate, cutting plate comprises the first identical cutting plate of structure and the second cutting plate, first cutting plate and the second cutting plate arrange along the axisymmetrical of upper shell and form the V-shaped that Open Side Down, first cutting plate is all fixedly connected with the inwall of upper shell with the two ends of the second cutting plate length direction.When not increasing any power, material can be made to be uniformly distributed on the vibrating, and eliminate putty phenomenon, structure is simple, easy to operate, can improve the efficiency of screening.
Description
Technical field
The utility model belongs to metallurgical steel slag treatment facility technical field, relates to a kind of chute, particularly a kind of uniform chute of feed of vibratory sieve top.
Background technology
In field of metallurgical slag treatment, vibratory sieve is common equipment, more than a times of the width of vibratory sieve normally feeding belt width, and how uniform on the vibrating material is, and improve screening efficiency, tool is of great significance.There is following shortcoming in current slag screening: humidity of materials large (water content is generally 12 ~ 15%), raw meal particle size concentration ratio is high, on vibratory sieve, feed is uneven, and the plug-hole phenomenon of vibratory sieve is serious, often causes putty to stop production, clears up the situation of vibratory sieve.
Summary of the invention
The utility model, in order to overcome the defect of prior art, devises a kind of uniform chute of feed of vibratory sieve top, when not increasing any power, material can be made to be uniformly distributed on the vibrating, and eliminate putty phenomenon, structure is simple, easy to operate, the efficiency of screening can be improved.
The concrete technical scheme that the utility model is taked is: a kind of uniform chute of feed of vibratory sieve top, comprise chute housing, chute housing is made up of the lower house of columniform upper shell and truncated cone-shaped, upper shell and lower house are coaxially arranged, the lower surface of upper shell is fixedly connected with the upper surface of lower house, key is: in upper shell, set up cutting plate, cutting plate comprises the first identical cutting plate of structure and the second cutting plate, first cutting plate and the second cutting plate arrange along the axisymmetrical of upper shell and form the V-shaped that Open Side Down, first cutting plate is all fixedly connected with the inwall of upper shell with the two ends of the second cutting plate length direction.
Angle between the first described cutting plate and upper shell axis is 45 °, and the width of the first cutting plate is 150mm, and the top of the first cutting plate is 350mm to the distance between upper shell upper surface.
Guide plate is set up in lower house, guide plate comprises the first identical guide plate of structure and the second guide plate, first guide plate and the second guide plate are arranged along the axisymmetrical of lower house, first guide plate is all fixedly connected with the inwall of lower house with the two ends of the second guide plate length direction, first guide plate and the first cutting plate be arranged in parallel, and the second guide plate and the second cutting plate be arranged in parallel.
The top of the first described guide plate is 160mm to the distance between lower house upper surface, and the distance between the top of the first guide plate to lower house axis is 0.285 with the ratio of the internal diameter being in conplane lower house.
Deflector is set up in lower house, deflector comprises the first deflector and the second deflector, first deflector is identical with the second deflector structure, the V-shaped be all made up of two boards and Open Side Down, first deflector and the second deflector are arranged along the axisymmetrical of lower house, first deflector is concordant with the openend of the second deflector and the lower surface of lower house, and the first deflector is all fixedly connected with the inwall of lower house with the two ends of the second deflector length direction.
The angle of the first described deflector and the second deflector blind end is all 45 °.
The width of the first described deflector two boards is all 100mm, and the center line of the first deflector is 400mm to the distance between lower house axis.
The beneficial effects of the utility model are: in upper shell, set up cutting plate, guide plate and deflector is set up in lower house, under the acting in conjunction of cutting plate, guide plate and deflector, when not increasing any power, material can be made to be uniformly distributed on the vibrating, eliminating putty phenomenon, structure is simple, easy to operate, the Probability that putty stops production, clears up vibratory sieve situation can be reduced, improve the efficiency of screening.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
In accompanying drawing, 1 represents upper shell, and 2 represent lower house, and 3 represent the first cutting plate, and 4 represent the second cutting plate, and 5 represent the first guide plate, and 6 represent the second guide plate, and 7 represent the first deflector, and 8 represent the second deflector.
Detailed description of the invention
Below in conjunction with accompanying drawing, the utility model is described further:
As shown in Figure 1, a kind of uniform chute of feed of vibratory sieve top, comprise chute housing, chute housing is made up of the lower house 2 of columniform upper shell 1 and truncated cone-shaped, upper shell 1 and lower house 2 are coaxially arranged, the lower surface of upper shell 1 is fixedly connected with the upper surface of lower house 2, cutting plate is set up in upper shell 1, cutting plate comprises the first identical cutting plate 3 and the second cutting plate 4 of structure, first cutting plate 3 and the second cutting plate 4 arrange along the axisymmetrical of upper shell 1 and form the V-shaped that Open Side Down, first cutting plate 3 is all fixedly connected with the inwall of upper shell 1 with the two ends of the second cutting plate 4 length direction, angle between first cutting plate 3 and upper shell 1 axis is 45 °, the width of the first cutting plate 3 is 150mm, the top of the first cutting plate 3 is 350mm to the distance between upper shell 1 upper surface.First cutting plate 3 and the second cutting plate about 4 material-distributing actions, make material can be evenly distributed the left and right sides in upper shell 1, and can not be deposited in middle part.
As to further improvement of the utility model, guide plate is set up in lower house 2, guide plate comprises the first identical guide plate 5 and the second guide plate 6 of structure, first guide plate 5 and the second guide plate 6 are arranged along the axisymmetrical of lower house 2, first guide plate 5 is all fixedly connected with the inwall of lower house 2 with the two ends of the second guide plate 6 length direction, first guide plate 5 and the first cutting plate 3 be arranged in parallel, second guide plate 6 and the second cutting plate 4 be arranged in parallel, the top of the first guide plate 5 is 160mm to the distance between lower house 2 upper surface, distance between the top of the first guide plate 5 to lower house 2 axis is 0.285 with the ratio of the internal diameter being in conplane lower house 2.First guide plate 5 and the second guide plate 6 play the guiding role, and make material in lower house 2, be divided into left, center, right three part, prevent solid accumulation further.
As to further improvement of the utility model, deflector is set up in lower house 2, deflector comprises the first deflector 7 and the second deflector 8, first deflector 7 is identical with the second deflector 8 structure, the V-shaped be all made up of two boards and Open Side Down, first deflector 7 and the second deflector 8 are arranged along the axisymmetrical of lower house 2, first deflector 7 is concordant with the lower surface of lower house 2 with the openend of the second deflector 8, first deflector 7 is all fixedly connected with the inwall of lower house 2 with the two ends of the second deflector 8 length direction, the angle of the first deflector 7 and the second deflector 8 blind end is all 45 °, the width of the first deflector 7 two boards is all 100mm, the center line of the first deflector 7 is 400mm to the distance between lower house 2 axis.First deflector 7 and the second deflector 8 material-distributing actions, improve the uniform property of material further, eliminates putty phenomenon.
The utility model is in the specific implementation: after material enters chute, the left and right sides is evenly distributed under the effect of the first cutting plate 3 and the second cutting plate 4, then continue to fall, the first guide plate 5 and the second guide plate 6 is run in dropping process, under the effect of the first guide plate 5 and the second guide plate 6, part material falls in the space on the left of the first guide plate 5, part material falls in the space between the first guide plate 5 and the second guide plate 6, another part material falls in the space on the right side of the second guide plate 6, material continues to fall, material in dropping process in the first guide plate 5 leftward space is divided into two parts under the effect of the first deflector 7, a part falls in the space on the left of the first deflector 7, another part falls in the space between the first deflector 7 and the second deflector 8, material between first guide plate 5 and the second guide plate 6 directly falls in the space between the first deflector 7 and the second deflector 8, material in second guide plate 6 rightward space is divided into two parts under the effect of the second deflector 8, a part falls in the space on the right side of the second deflector 8, another part falls in the space between the first deflector 7 and the second deflector 8, material is divided into a left side, in, right three parts, fall on vibratory sieve simultaneously, when not increasing any power, at cutting plate, under the acting in conjunction of guide plate and deflector, material is evenly distributed on vibratory sieve, putty phenomenon can be eliminated, structure is simple, easy to operate, screening efficiency can be improved.
Claims (7)
1. the uniform chute of the feed of a vibratory sieve top, comprise chute housing, chute housing is made up of the lower house (2) of columniform upper shell (1) and truncated cone-shaped, upper shell (1) and lower house (2) are coaxially arranged, the lower surface of upper shell (1) is fixedly connected with the upper surface of lower house (2), it is characterized in that: in upper shell (1), set up cutting plate, cutting plate comprises identical the first cutting plate (3) of structure and the second cutting plate (4), first cutting plate (3) and the second cutting plate (4) arrange along the axisymmetrical of upper shell (1) and form the V-shaped that Open Side Down, first cutting plate (3) is all fixedly connected with the inwall of upper shell (1) with the two ends of the second cutting plate (4) length direction.
2. the uniform chute of feed of a kind of vibratory sieve top according to claim 1, it is characterized in that: the angle between described the first cutting plate (3) and upper shell (1) axis is 45 °, the width of the first cutting plate (3) is 150mm, and the top of the first cutting plate (3) is 350mm to the distance between upper shell (1) upper surface.
3. the uniform chute of feed of a kind of vibratory sieve top according to claim 1, it is characterized in that: in lower house (2), set up guide plate, guide plate comprises identical the first guide plate (5) of structure and the second guide plate (6), first guide plate (5) and the second guide plate (6) are arranged along the axisymmetrical of lower house (2), first guide plate (5) is all fixedly connected with the inwall of lower house (2) with the two ends of the second guide plate (6) length direction, first guide plate (5) and the first cutting plate (3) be arranged in parallel, second guide plate (6) and the second cutting plate (4) be arranged in parallel.
4. the uniform chute of feed of a kind of vibratory sieve top according to claim 3, it is characterized in that: the top of described the first guide plate (5) is 160mm to the distance between lower house (2) upper surface, the distance between the top of the first guide plate (5) to lower house (2) axis is 0.285 with the ratio of the internal diameter being in conplane lower house (2).
5. the uniform chute of feed of a kind of vibratory sieve top according to claim 3, it is characterized in that: in lower house (2), set up deflector, deflector comprises the first deflector (7) and the second deflector (8), first deflector (7) is identical with the second deflector (8) structure, the V-shaped be all made up of two boards and Open Side Down, first deflector (7) and the second deflector (8) are arranged along the axisymmetrical of lower house (2), first deflector (7) is concordant with the lower surface of lower house (2) with the openend of the second deflector (8), first deflector (7) is all fixedly connected with the inwall of lower house (2) with the two ends of the second deflector (8) length direction.
6. the uniform chute of feed of a kind of vibratory sieve top according to claim 5, is characterized in that: described the first deflector (7) and the angle of the second deflector (8) blind end are all 45 °.
7. the uniform chute of feed of a kind of vibratory sieve top according to claim 5, it is characterized in that: the width of described the first deflector (7) two boards is all 100mm, the center line of the first deflector (7) is 400mm to the distance between lower house (2) axis.
Priority Applications (1)
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CN201420784599.8U CN204583683U (en) | 2014-12-12 | 2014-12-12 | A kind of uniform chute of feed of vibratory sieve top |
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CN201420784599.8U CN204583683U (en) | 2014-12-12 | 2014-12-12 | A kind of uniform chute of feed of vibratory sieve top |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106733628A (en) * | 2016-12-14 | 2017-05-31 | 新乡市振英机械设备有限公司 | A kind of straight line shaker tripper |
CN108188011A (en) * | 2017-12-04 | 2018-06-22 | 云南云铝涌鑫铝业有限公司 | Vibrating screen |
CN110624822A (en) * | 2019-11-06 | 2019-12-31 | 唐山陆凯科技有限公司 | Vibration dry method feed box of even cloth |
CN113210257A (en) * | 2021-05-13 | 2021-08-06 | 新疆八一钢铁股份有限公司 | Full-width feeding control method for sintering ore screening machine |
-
2014
- 2014-12-12 CN CN201420784599.8U patent/CN204583683U/en active Active
Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106733628A (en) * | 2016-12-14 | 2017-05-31 | 新乡市振英机械设备有限公司 | A kind of straight line shaker tripper |
CN108188011A (en) * | 2017-12-04 | 2018-06-22 | 云南云铝涌鑫铝业有限公司 | Vibrating screen |
CN110624822A (en) * | 2019-11-06 | 2019-12-31 | 唐山陆凯科技有限公司 | Vibration dry method feed box of even cloth |
CN113210257A (en) * | 2021-05-13 | 2021-08-06 | 新疆八一钢铁股份有限公司 | Full-width feeding control method for sintering ore screening machine |
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