CN204396323U - Automatic sand sieving device - Google Patents

Automatic sand sieving device Download PDF

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Publication number
CN204396323U
CN204396323U CN201420748362.4U CN201420748362U CN204396323U CN 204396323 U CN204396323 U CN 204396323U CN 201420748362 U CN201420748362 U CN 201420748362U CN 204396323 U CN204396323 U CN 204396323U
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CN
China
Prior art keywords
face
load
motion block
husky
hole
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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
CN201420748362.4U
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Chinese (zh)
Inventor
葛灵董
林鸣
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Wenzhou University of Technology
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Wenzhou University Oujiang College
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Priority to CN201420748362.4U priority Critical patent/CN204396323U/en
Application granted granted Critical
Publication of CN204396323U publication Critical patent/CN204396323U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model discloses a kind of automatic sand sieving device, comprise screening plant and power set, described screening plant is provided with rolling motion block, crosses husky opening, plugboard trough, filtration plate, husky net, baffle plate projection, pin hole, latch, perforation, load-bearing swing arm, spacing disk; Described power set are provided with supporting bracket, load-bearing transverse slat, electric rotating machine, rotating hole, rotating circular disk, skew cylinder, connecting plate, oscillating deck, locating hole.The structure of the utility model dress is simple, repeatedly rocking fast of screen pack is realized by motorized motions, fallen by mesh after making sand to screen fast, can in upper end automatic transport sand material, lower end automatic conveying sand material, form an automatic circulating system, accelerate the efficiency of operation greatly.

Description

Automatic sand sieving device
Technical field
The utility model relates to a kind of automatic sand sieving device, is specifically a kind ofly to have driven by power, system quick Sand screen capable of being combined.
Background technology
In civil construction industry, various basic material all needs to carry out a Screening Treatment process, and not as sand material needs to carry out sieving husky process, the foreign matters such as stone wherein screen, and conveniently carry out next step material mixing etc.
In the husky process of traditional sieve, be all generally establish a gauze, then use each up splash of spade, rely on and clash into power formation screening, bothersome effort very, blanking is also easy sometimes mixes in support place accumulation, also postsearch screening will be carried out if desired, inconvenience very.
Utility model content
The object of utility model is the deficiency existed for prior art, provides a kind of automatic sand sieving device.
To achieve the above object, the method that the utility model adopts is: a kind of automatic sand sieving device, comprise screening plant and power set, described screening plant is provided with rolling motion block, crosses husky opening, plugboard trough, filtration plate, husky net, baffle plate projection, pin hole, latch, perforation, load-bearing swing arm, spacing disk, described power set are provided with supporting bracket, load-bearing transverse slat, electric rotating machine, rotating hole, rotating circular disk, skew cylinder, connecting plate, oscillating deck, locating hole, the husky opening of described mistake is positioned at and shakes on motion block, connect upper and lower end face and the anterior end surface of rolling motion block, described plugboard trough was positioned on the left and right end face of husky opening, be connected with the left and right end plate block contact of filtering plate, described filtration plate horizontal positioned, middle opening square hole is connected with the Four built in boundaries of husky net, an end face of described baffle plate projection is fixedly connected with the front end face of rolling motion block, be positioned at the upper end position of plugboard trough, upper surface is concordant with the upper surface of rolling motion block, described pin hole is positioned on the upper surface of baffle plate projection, be connected with latch, described perforation is positioned at rocks on the front/rear end of block, symmetrical, described load-bearing rotation and perforation coordinate, be rotatably connected, the end face center of described spacing disk is fixedly connected with the two ends end face of load-bearing swing arm, described one end of load-bearing transverse slat is fixedly connected with the upper end of the vertical rod of supporting bracket, horizontal positioned, the output end face of described electric rotating machine is fixedly connected on supporting bracket, the vertical rod that described rotating hole is positioned at supporting bracket is visited and to be coordinated with the output shaft of electric rotating machine, the end face center of described rotating circular disk is fixedly connected with the output shaft end face of electric rotating machine, the end face of described skew cylinder is fixedly connected in the end face outside of rotating circular disk, be positioned at the end face edge position of rotating circular disk, described connecting plate one end and skew cylinder are rotatably connected, the other end and oscillating deck lower end are rotatably connected, described locating hole is positioned at the middle section position of oscillating deck, be rotatably connected with load-bearing transverse slat front end, the upper end of described oscillating deck and the cooperation of load-bearing swing arm are rotatably connected.
As preferably, described plugboard trough is set to upper and lower side by side two-layer.
As preferably, described pin hole and the front end face of motion block of shaking tangent.
As preferably, described oscillating deck is with locating hole segmentation, and hypomere is than upper segment length.
Beneficial effect
The structure of the utility model dress is simple, repeatedly rocking fast of screen pack is realized by motorized motions, fallen by mesh after making sand to screen fast, can in upper end automatic transport sand material, lower end automatic conveying sand material, form an automatic circulating system, accelerate the efficiency of operation greatly.
Accompanying drawing explanation
Fig. 1 the utility model apparatus structure schematic diagram;
Fig. 2 the utility model device plan structure schematic diagram;
Wherein, 11-shakes that motion block, 12-cross husky opening, 13-plugboard trough, 14-filter plate, the husky net of 15-, 16-baffle plate projection, 17-pin hole, 18-latch, 19-perforation, 110-load-bearing swing arm, the spacing disk of 111-, 21-supporting bracket, 22-load-bearing transverse slat, 23-electric rotating machine, 24-rotating hole, 25-rotating circular disk, 26-offset cylinder, 27-connecting plate, 28-oscillating deck, 29-locating hole.
Detailed description of the invention
Below in conjunction with the drawings and specific embodiments, illustrate the utility model further, the present embodiment is implemented under premised on technical solutions of the utility model, should understand these embodiments and only be not used in restriction scope of the present utility model for illustration of the utility model.
Embodiment 1:
As shown in Fig. 1 to Fig. 2, a kind of automatic sand sieving device, it is characterized in that: comprise screening plant and power set, screening plant is provided with rolling motion block 11, excessively husky opening 12, plugboard trough 13, filters plate 14, husky net 15, baffle plate projection 16, pin hole 17, latch 18, perforation 19, load-bearing swing arm 110, spacing disk 111; Power set are provided with supporting bracket 21, load-bearing transverse slat 22, electric rotating machine 23, rotating hole 24, rotating circular disk 25, skew cylinder 26, connecting plate 27, oscillating deck 28, locating hole 29.
Crossing husky opening 12 is positioned on rolling motion block 11, connect upper and lower end face and the anterior end surface of rolling motion block 11, when work, the motion block 11 that shakes mainly does the swing of left and right, sand material is made to pass through to rock and screen gradually, crossing husky opening 12 makes the front end of rolling motion block 11 form the opening of " U " shape, and convenient installation filters plate 14.
Plugboard trough 13 was positioned on the left and right end face of husky opening 12, be connected with the left and right end plate block contact of filtering plate 14, filter plate 14 horizontal positioned, middle opening square hole is connected with the Four built in boundaries of husky net 15, can continue conveniently to make the process of filtering, plugboard trough 13 is set to upper and lower both sides arranged side by side, after so blocking on the husky net 15 on upper strata, upper level filter plate 14 can be extracted fast, use lower floor.
An end face of baffle plate projection 16 is fixedly connected with the front end face of rolling motion block 11, be positioned at the upper end position of plugboard trough 13, upper surface is concordant with the upper surface of rolling motion block 11, pin hole 17 is positioned on the upper surface of baffle plate projection 16, be connected with latch 18, skew can not be rocked out in front and back again to make to filter after plate 14 is installed, by tangent for the front end face of pin hole 17 and rolling motion block 11, making latch 18 can be close to the end face filtering plate 14.
Perforation 19 is positioned at shakes on the front/rear end of motion block 11, symmetrical, load-bearing rotation and perforation 19 coordinate, be rotatably connected, the end face center of spacing disk 111 is fixedly connected with the two ends end face of load-bearing swing arm 110, the effect of spacing disk 111 mainly fixes spacing effect to play two ends, and rational length can make to shake motion block 11 and can not load-bearing swing arm 110 slide again.
One end of load-bearing transverse slat 22 is fixedly connected with the upper end of the vertical rod of supporting bracket 21, horizontal positioned, the output end face of electric rotating machine 23 is fixedly connected on supporting bracket 21, the vertical rod that rotating hole 24 is positioned at supporting bracket 21 is visited and to be coordinated with the output shaft of electric rotating machine 23, the end face center of rotating circular disk 25 is fixedly connected with the output shaft end face of electric rotating machine 23, the end face of skew cylinder 26 is fixedly connected in the end face outside of rotating circular disk 25, be positioned at the end face edge position of rotating circular disk 25, when electric rotating machine 23 rotates time, offset cylinder 26 with the center of rotating circular disk 25 for the left circular motion of mid point.
Connecting plate 27 one end and skew cylinder 26 are rotatably connected, the other end and oscillating deck 28 lower end are rotatably connected, when the rotation of skew cylinder 26 is followed in one end of connecting plate 27 time, the motion of the other end has the motion track of about, locating hole 29 is positioned at the middle section position of oscillating deck 28, be rotatably connected with load-bearing transverse slat 22 front end, the upper end of oscillating deck 28 and load-bearing swing arm 110 cooperation are rotatably connected, when oscillating deck 28 lower end movement upper end with locating hole 29 for benchmark does oscillating motion, in order to make the amplitude of swing by a small margin, by oscillating deck 28 with locating hole 29 segmentation, and hypomere is than upper segment length.
Embodiment 2:
As shown in Fig. 1 to Fig. 2, a kind of automatic sand sieving device, it is characterized in that: comprise screening plant and power set, screening plant is provided with rolling motion block 11, excessively husky opening 12, plugboard trough 13, filters plate 14, husky net 15, baffle plate projection 16, pin hole 17, latch 18, perforation 19, load-bearing swing arm 110, spacing disk 111; Power set are provided with supporting bracket 21, load-bearing transverse slat 22, electric rotating machine 23, rotating hole 24, rotating circular disk 25, skew cylinder 26, connecting plate 27, oscillating deck 28, locating hole 29.
Crossing husky opening 12 is positioned on rolling motion block 11, connect upper and lower end face and the anterior end surface of rolling motion block 11, when work, the motion block 11 that shakes mainly does the swing of left and right, sand material is made to pass through to rock and screen gradually, crossing husky opening 12 makes the front end of rolling motion block 11 form the opening of " U " shape, and convenient installation filters plate 14.
Plugboard trough 13 was positioned on the left and right end face of husky opening 12, be connected with the left and right end plate block contact of filtering plate 14, filter plate 14 horizontal positioned, middle opening square hole is connected with the Four built in boundaries of husky net 15, can continue conveniently to make the process of filtering, plugboard trough 13 is set to upper and lower both sides arranged side by side, after so blocking on the husky net 15 on upper strata, upper level filter plate 14 can be extracted fast, use lower floor.
An end face of baffle plate projection 16 is fixedly connected with the front end face of rolling motion block 11, be positioned at the upper end position of plugboard trough 13, upper surface is concordant with the upper surface of rolling motion block 11, pin hole 17 is positioned on the upper surface of baffle plate projection 16, be connected with latch 18, skew can not be rocked out in front and back again to make to filter after plate 14 is installed, by tangent for the front end face of pin hole 17 and rolling motion block 11, making latch 18 can be close to the end face filtering plate 14.
Perforation 19 is positioned at shakes on the front/rear end of motion block 11, symmetrical, load-bearing rotation and perforation 19 coordinate, be rotatably connected, the end face center of spacing disk 111 is fixedly connected with the two ends end face of load-bearing swing arm 110, the effect of spacing disk 111 mainly fixes spacing effect to play two ends, and rational length can make to shake motion block 11 and can not load-bearing swing arm 110 slide again.
One end of load-bearing transverse slat 22 is fixedly connected with the upper end of the vertical rod of supporting bracket 21, horizontal positioned, the output end face of electric rotating machine 23 is fixedly connected on supporting bracket 21, the vertical rod that rotating hole 24 is positioned at supporting bracket 21 is visited and to be coordinated with the output shaft of electric rotating machine 23, the end face center of rotating circular disk 25 is fixedly connected with the output shaft end face of electric rotating machine 23, the end face of skew cylinder 26 is fixedly connected in the end face outside of rotating circular disk 25, be positioned at the end face edge position of rotating circular disk 25, when electric rotating machine 23 rotates time, offset cylinder 26 with the center of rotating circular disk 25 for the left circular motion of mid point.
Connecting plate 27 one end and skew cylinder 26 are rotatably connected, the other end and oscillating deck 28 lower end are rotatably connected, when the rotation of skew cylinder 26 is followed in one end of connecting plate 27 time, the motion of the other end has the motion track of about, locating hole 29 is positioned at the middle section position of oscillating deck 28, be rotatably connected with load-bearing transverse slat 22 front end, the upper end of oscillating deck 28 and load-bearing swing arm 110 cooperation are rotatably connected, when oscillating deck 28 lower end movement upper end with locating hole 29 for benchmark does oscillating motion, in order to make the amplitude of swing by a small margin, by oscillating deck 28 with locating hole 29 segmentation, and hypomere is than upper segment length.
Supermatic ability can be had in order to device further can be made, with supporting bracket 21 for the strong point, connect a feeding conveying belt device, the top of conveyer belt is positioned at directly over the centre of husky net 15, the Power Drive Unit of conveyer belt is connected with electric rotating machine 23 by belt, makes electric rotating machine 23 driving conveying belt while driving device rocks screening transmit sand material.

Claims (4)

1. an automatic sand sieving device, it is characterized in that: comprise screening plant and power set, described screening plant is provided with rolling motion block (11), excessively husky opening (12), plugboard trough (13), filtration plate (14), husky net (15), baffle plate projection (16), pin hole (17), latch (18), perforation (19), load-bearing swing arm (110), spacing disk (111), described power set are provided with supporting bracket (21), load-bearing transverse slat (22), electric rotating machine (23), rotating hole (24), rotating circular disk (25), skew cylinder (26), connecting plate (27), oscillating deck (28), locating hole (29), the husky opening of described mistake (12) is positioned at and shakes on motion block (11), connect upper and lower end face and the anterior end surface of rolling motion block (11), described plugboard trough (13) was positioned on the left and right end face of husky opening (12), be connected with the left and right end plate block contact of filtering plate (14), described filtration plate (14) horizontal positioned, middle opening square hole is connected with the Four built in boundaries of husky net (15), an end face of described baffle plate projection (16) is fixedly connected with the front end face of rolling motion block (11), be positioned at the upper end position of plugboard trough (13), upper surface is concordant with the upper surface of rolling motion block (11), described pin hole (17) is positioned on the upper surface of baffle plate projection (16), be connected with latch (18), described perforation (19) is positioned at shakes on the front/rear end of motion block (11), symmetrical, described load-bearing rotation and perforation (19) coordinate, be rotatably connected, the end face center of described spacing disk (111) is fixedly connected with the two ends end face of load-bearing swing arm (110), one end of described load-bearing transverse slat (22) is fixedly connected with the upper end of the vertical rod of supporting bracket (21), horizontal positioned, the output end face of described electric rotating machine (23) is fixedly connected on supporting bracket (21), the vertical rod that described rotating hole (24) is positioned at supporting bracket (21) is visited and to be coordinated with the output shaft of electric rotating machine (23), the end face center of described rotating circular disk (25) is fixedly connected with the output shaft end face of electric rotating machine (23), the end face of described skew cylinder (26) is fixedly connected in the end face outside of rotating circular disk (25), be positioned at the end face edge position of rotating circular disk (25), described connecting plate (27) one end and skew cylinder (26) are rotatably connected, the other end and oscillating deck (28) lower end are rotatably connected, described locating hole (29) is positioned at the middle section position of oscillating deck (28), be rotatably connected with load-bearing transverse slat (22) front end, the upper end of described oscillating deck (28) and load-bearing swing arm (110) cooperation are rotatably connected.
2. a kind of automatic sand sieving device according to claim 1, is characterized in that: described plugboard trough (13) is set to upper and lower side by side two-layer.
3. a kind of automatic sand sieving device according to claim 1, is characterized in that: the front end face of described pin hole (17) and rolling motion block (11) is tangent.
4. a kind of automatic sand sieving device according to claim 1, is characterized in that: described oscillating deck (28) is with locating hole (29) segmentation, and hypomere is than upper segment length.
CN201420748362.4U 2014-12-03 2014-12-03 Automatic sand sieving device Expired - Fee Related CN204396323U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420748362.4U CN204396323U (en) 2014-12-03 2014-12-03 Automatic sand sieving device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420748362.4U CN204396323U (en) 2014-12-03 2014-12-03 Automatic sand sieving device

Publications (1)

Publication Number Publication Date
CN204396323U true CN204396323U (en) 2015-06-17

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106719410A (en) * 2016-12-22 2017-05-31 重庆市长寿区标杆养鸡股份合作社 A kind of cultural method for raising chicken scattered
CN106804467A (en) * 2016-12-22 2017-06-09 重庆市长寿区标杆养鸡股份合作社 The chicken ray sand bath device of easy cleaning

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106719410A (en) * 2016-12-22 2017-05-31 重庆市长寿区标杆养鸡股份合作社 A kind of cultural method for raising chicken scattered
CN106804467A (en) * 2016-12-22 2017-06-09 重庆市长寿区标杆养鸡股份合作社 The chicken ray sand bath device of easy cleaning

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20150617

Termination date: 20151203

EXPY Termination of patent right or utility model