CN212580175U - Sand loading machine for building construction - Google Patents

Sand loading machine for building construction Download PDF

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Publication number
CN212580175U
CN212580175U CN201922249292.3U CN201922249292U CN212580175U CN 212580175 U CN212580175 U CN 212580175U CN 201922249292 U CN201922249292 U CN 201922249292U CN 212580175 U CN212580175 U CN 212580175U
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sand
main casing
casing body
fixedly connected
transmission
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CN201922249292.3U
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牛林会
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Shenzhen Yingfei Technology Co.,Ltd.
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牛林会
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Abstract

The utility model provides a dress husky machine for construction relates to the construction machinery field, including the main casing body, main casing body top fixedly connected with stores up husky groove, and main casing body bottom fixed surface is connected with the bottom plate, bottom plate below fixed surface is connected with the backup pad, and bottom plate top fixed surface is connected with mechanism case, is equipped with power unit between mechanism case and the main casing body, and the mechanism incasement is equipped with out husky mechanism, store up husky groove and extend to main casing internal portion, store up husky tank bottom size and mechanism case top size looks adaptation. This dress husky machine for construction through crank input power, drives left door rack, the motion of right door rack through initiative pinion, transmission gear wheel isotructure, and left door rack, right door rack isotructure drive left door, right door move to two directions, make the sand inflow of storing up the husky inslot go out the sand fill, and the pulling goes out the sand fill and drives inside sand outflow and accomplish the filling, has saved the time, has promoted work efficiency greatly.

Description

Sand loading machine for building construction
Technical Field
The utility model relates to a construction machinery technical field specifically is a be convenient for pack the sand into machinery in the sack through the structure.
Background
The sand bag refers to the sack that is equipped with the sand, and the sack material is mostly nylon or coarse cotton cloth, and the sack that is equipped with the sand is difficult to be corroded by water, can effectively protect the structure and the position that are easily corroded by water, and the sand bag is used to many times in building construction and flood control flood prevention.
In the prior art, in order to fill sand into the sack, if adopt the artifical dress sand among the prior art, its step is troublesome and complex operation, need consume great manpower and time just can fill the sack with the sand in, lead to production efficiency low to influence the progress.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
Not enough to prior art, the utility model provides a dress husky machine for construction has solved dress husky efficiency and can't quantitative problem slowly.
(II) technical scheme
In order to achieve the above purpose, the utility model discloses a following technical scheme realizes: the utility model provides a building construction is with dress husky machine of dress, includes the main casing body, main casing body top fixedly connected with stores up husky groove, and main casing body bottom fixed surface is connected with the bottom plate, and bottom plate below fixed surface is connected with the backup pad, and bottom plate top fixed surface is connected with the mechanism case, is equipped with power unit between mechanism case and the main casing body, and the mechanism incasement is equipped with out husky mechanism.
Power unit includes the driving shaft, the driving shaft runs through the main casing body and extends to main casing body inboard, the driving shaft is with main casing body swivelling joint, the driving shaft is kept away from and is stored up husky groove one end fixedly connected with crank, the driving shaft surface is located the fixed cover of main casing body inside and has been cup jointed the initiative pinion, the transmission shaft runs through the main casing body and extends to main casing body inboard, transmission shaft and main casing body swivelling joint, the transmission gear wheel has been cup jointed to the external surface mounting that the transmission shaft is located main casing body inside, the transmission pinion has been cup jointed with the transmission gear wheel meshing, the external surface mounting that the transmission shaft is located between transmission gear wheel and the main casing body, the output shaft runs through the main casing body and extends to main casing body inboard, output, lower part spout fixed connection is in mechanism case and is close driving shaft one side outer wall top, upper portion spout fixed connection is in storing up the sand groove and is close driving shaft one side outer wall bottom, the inside slip of lower part spout has cup jointed the left-hand door rack, left-hand door rack and output pinion meshing, the inside slip of upper portion spout has cup jointed the right-hand door rack, right-hand door rack and output pinion meshing, driving shaft one side fixedly connected with driver plate is kept away from to the left-hand door rack, driving shaft one side top fixedly connected with left door is kept away from to the driver plate, driving shaft one side is kept away from at right-hand door rack to the driver plate while fixed connection.
Go out husky mechanism including holding in the palm the strip, hold in the palm strip fixed connection in mechanism incasement wall top, the mechanism case is located the inner wall fixedly connected with layer board of support strip below, and right door one side is kept away from to the mechanism case and is located to hold in the palm the strip top and slide to have cup jointed out husky fill, and right door one side outer wall fixedly connected with goes out the sand slope is kept away from to the mechanism case, goes out the sand slope and runs through the main casing body and extend to the main casing body outside, and the main casing body is located the.
Preferably, the transmission shaft is located the driving shaft and keeps away from a sand slope one side, and the output shaft is located the transmission shaft and is close backup pad one side.
Preferably, the number of the supporting strips is two, and the supporting strips are symmetrically distributed on the inner walls of the two sides of the mechanism box.
Preferably, the sand storage tank extends into the main shell, and the bottom size of the sand storage tank is matched with the top size of the mechanism box.
Preferably, the sand outlet slope is downwards inclined at one end far away from the main shell, and the size of one end, located on the inner side of the main shell, of the sand outlet slope is larger than that of the sand outlet hopper.
Preferably, the distance between the sand storage tank and the mechanism box is matched with the thickness of a left door, and the thickness of the left door is matched with the thickness of a right door.
(III) advantageous effects
The utility model provides a sand loading machine for building construction. The method has the following beneficial effects:
1. this dress husky machine for construction through crank input power, drives left door rack, the motion of right door rack through initiative pinion, transmission gear wheel isotructure, and left door rack, right door rack isotructure drive left door, right door move to two directions, make the sand inflow of storing up the husky inslot go out the sand fill, and the pulling goes out the sand fill and drives inside sand outflow and accomplish the filling, has saved the time, has promoted work efficiency greatly.
2. This dress sand machine for construction has restricted the weight of the sand that flows out at every turn through opening and shutting of going out left door, right door, through the volume of the sand that goes into the sack of the restriction of going out the sand fill, the effectual quantity of balanced filling sand at every turn, makes the weight of every sand bag close.
Drawings
FIG. 1 is a schematic sectional view of the present invention;
FIG. 2 is a schematic cross-sectional structure of the present invention;
fig. 3 is a schematic structural view of the power mechanism of the present invention;
fig. 4 is the structural schematic diagram of the sand outlet mechanism of the present invention.
The sand outlet device comprises a main shell 1, a sand storage groove 2, a bottom plate 3, a supporting plate 4, a mechanism box 5, a power mechanism 6, a sand outlet mechanism 7, a driving shaft 8, a crank 9, a driving pinion 10, a driving transmission shaft 11, a driving gearwheel 12, a driving pinion 13, an output shaft 14, an output gearwheel 15, an output pinion 16, a lower sliding chute 17, an upper sliding chute 18, a left door rack 19, a right door rack 20, a transmission plate 21, a left door 22, a right door 23, a supporting strip 24, a supporting plate 25, a sand outlet hopper 26, a sand outlet slope 27 and a funnel 28.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The embodiment of the utility model provides a dress sand machine for construction, as shown in figure 1-4, including main casing body 1, main casing body 1 top fixedly connected with store sand groove 2, when dress sand machine for construction work, the sand is stored in storing sand groove 2, because gravity influences the sand and can move down, main casing body 1 bottom surface fixedly connected with bottom plate 3, bottom plate 3 below surface fixedly connected with backup pad 4, the mechanism of effective support main casing body 1 and inside, prevent ponding from leading to inside rust, bottom plate 3 top surface fixedly connected with mechanism case 5, store sand groove 2 extends to main casing body 1 inside, store sand groove 2 bottom size and mechanism case 5 top size looks adaptation, be equipped with power unit 6 between mechanism case 5 and the main casing body 1, be equipped with out husky mechanism 7 in the mechanism case 5, power unit 6 includes driving shaft 8, driving shaft 8 runs through main casing body 1 and extends to the main casing body 1 inboard, the driving shaft 8 is rotatably connected with the main shell 1, one end of the driving shaft 8, which is far away from the sand storage tank 2, is fixedly connected with a crank 9, power is input through the crank 9, a driving pinion 10 is fixedly sleeved on the outer surface of the driving shaft 8, which is positioned inside the main shell 1, the crank 9 is rotated, the driving shaft 8 drives the driving pinion 10 to rotate, a transmission shaft 11 penetrates through the main shell 1 and extends to the inner side of the main shell 1, the transmission shaft 11 is rotatably connected with the main shell 1, a transmission gearwheel 12 is fixedly sleeved on the outer surface of the transmission shaft 11, which is positioned inside the main shell 1, the driving pinion 10 is meshed with the transmission gearwheel 12, a transmission pinion 13 is fixedly sleeved on the outer surface of the transmission shaft 11, which is positioned between the transmission gearwheel 12 and the main shell, the driving pinion 10 drives the transmission, the output shaft 14 penetrates through the main shell 1 and extends to the inner side of the main shell 1, the output shaft 14 is rotationally connected with the main shell 1, the outer surface of the output shaft 14, which is positioned inside the main shell 1, is fixedly sleeved with an output big gear 15, a transmission pinion 13 is meshed with the output big gear 15, the transmission pinion 13 drives the output big gear 15 to rotate, the output big gear 15 drives the output shaft 14 to rotate, one end of the output shaft 14, which is far away from the main shell 1, is fixedly sleeved with an output pinion 16, the output shaft 14 drives the output pinion 16 to rotate, a lower sliding chute 17 is fixedly connected above the outer wall of one side, close to the driving shaft 8, of the mechanism box 5, an upper sliding chute 18 is fixedly connected to the bottom of the outer wall of one side, close to the driving shaft 8, of the sand storage tank 2, a, the inside slip of upper portion spout 18 has cup jointed right door rack 20, right door rack 20 and the meshing of output pinion 16, output pinion 16 drives right door rack 20 and slides in upper portion spout 18 is inside, left door rack 19 keeps away from driving shaft 8 one side fixedly connected with driving plate 21, driving plate 21 keeps away from driving shaft 8 one side top fixedly connected with left door 22, left door rack 19 drives left door 22 side-to-side motion through driving plate 21, drive the gear wheel through the pinion and increase moment, make opening and shutting of left door 22, right door 23 more laborsaving, driving plate 21 is fixed connection in the same time and keeps away from driving shaft 8 one side at right door rack 20, driving plate 21 keeps away from driving shaft 8 one side below fixedly connected with right door 23, right door rack 20 drives right door 23 side-to-side motion through driving plate 21, the inflow and the stop inflow of sand is controlled through the side-to-side motion of left door 22, right door 23, drive pinion 10, The driving gear wheel 12 and other structures drive the left door rack 19 and the right door rack 20 to move, the left door rack 19 and the right door rack 20 and other structures drive the left door 22 and the right door 23 to move towards two directions, the weight of sand flowing out each time is limited by the opening and closing of the left door 22 and the right door 23, the distance between the sand storage tank 2 and the mechanism box 5 is matched with the thickness of the left door 22, the thickness of the left door 22 is matched with the thickness of the right door 23, the sand outlet mechanism 7 comprises a supporting strip 24, the supporting strip 24 is fixedly connected above the inner wall of the mechanism box 5, the number of the supporting strip 24 is two, the supporting strips are symmetrically distributed on the inner walls at two sides of the mechanism box 5, the inner wall of the mechanism box 5 below the supporting strip 24 is fixedly connected with a supporting plate 25, the side of the mechanism box 5, far away from the right door 23, is positioned above the supporting strip 24 and is slidably sleeved with a sand outlet hopper 26, the sand flows into the sand outlet hopper 26, the outer wall of the side of the mechanism box 5, go out husky slope 27 and keep away from main casing body 1 one end downward sloping, it is greater than a husky hopper 26 size to go out husky slope 27 position in main casing body 1 inboard one end size, transmission shaft 11 is located driving shaft 8 and keeps away from a husky slope 27 one side, output shaft 14 is located transmission shaft 11 and is close backup pad 4 one side, main casing body 1 is located an outer wall fixedly connected with funnel 28 of a husky slope 27 below, the pulling goes out husky hopper 26 and drives inside sand outflow and accomplish the filling, the time has been saved, work efficiency has been promoted greatly, through the volume of the sand that goes out husky hopper 26 restriction entering sack, the effectual quantity of filling sand at every turn of having balanced, make the weight of every sand. When sand flows into the sand outlet hopper 26, the left door 22 and the right door 23 are closed, the sand in the sand outlet hopper 26 is driven to move outwards by pulling the sand outlet hopper 26, when the sand outlet hopper 26 runs above the sand outlet slope 27, the sand in the sand outlet hopper 26 can flow onto the sand outlet slope 27 because the lower part of the sand outlet hopper 26 is empty, the sand on the slope can flow into the funnel 28 due to the slope of the sand outlet slope 27, the sand flows into the sack through the funnel 28 to complete filling, a sack is filled, after filling is completed, the sand outlet hopper 26 is pushed into the mechanism box 5, the left door 22 and the right door 23 are opened by rotating the hand crank 9 to enable the sand to flow into the sand outlet hopper 26, preparation is made for next filling, and the hand crank 9 can be replaced by an electric motor.
The working principle is as follows: when the sand loading machine for building construction works, sand is stored in the sand storage groove 2, the sand moves downwards due to the influence of gravity, the sand flows into the sand outlet hopper 26, the crank 9 is rotated, the crank 9 drives the driving shaft 8 to rotate, the driving shaft 8 drives the driving pinion 10 to rotate, the driving pinion 10 drives the transmission big gear 12 to rotate, the transmission big gear 12 drives the transmission shaft 11 to rotate, the transmission shaft 11 drives the transmission pinion 13 to rotate, the transmission pinion 13 drives the output big gear 15 to rotate, the output big gear 15 drives the output shaft 14 to rotate, the output shaft 14 drives the output pinion 16 to rotate, the output pinion 16 drives the left door rack 19 to slide in the lower sliding groove 17 and simultaneously drives the right door rack 20 to slide in the upper sliding groove 18, the left door rack 19 drives the left door 22 to move rightwards through the transmission plate 21, the right door rack 20 drives the right door 23 to move leftwards through the transmission, the bottom of the sand storage groove 2 is closed to prevent sand from flowing in continuously, the sand in the sand outlet hopper 26 is driven to move outwards by pulling the sand outlet hopper 26, when the sand outlet hopper 26 moves to the upper part of a sand outlet slope 27, because the lower part of the sand outlet hopper 26 is empty, the sand in the sand outlet hopper 26 can flow to the sand outlet slope 27, the sand on the slope can flow into a funnel 28 by the slope of the sand outlet slope 27, the sand flows into a gunny bag through the funnel 28 to complete filling, after filling of one bag is completed, the sand outlet hopper 26 is pushed into a mechanism box 5, meanwhile, a hand crank 9 is rotated, a driving shaft 8 drives a driving pinion 10 to rotate, the driving pinion 10 drives a transmission gearwheel 12 to rotate, the transmission gearwheel 12 drives a transmission shaft 11 to rotate, the transmission pinion 13 drives an output gearwheel 15 to rotate, the output gearwheel 15 drives an output shaft 14 to rotate, output shaft 14 drives output pinion 16 rotatory, and output pinion 16 drives left door rack 19 and slides in lower part spout 17, drives right door rack 20 simultaneously and slides in upper portion spout 18 is inside, and left door rack 19 drives left door 22 through driving plate 21 and moves left, and right door rack 20 drives right door 23 through driving plate 21 and moves right, opens and stores up the 2 bottoms in husky groove, makes the sand flow in out in the sand fill 26, prepares for filling next time.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a sand loading machine for construction, includes main casing body (1), its characterized in that: the sand storage tank (2) is fixedly connected to the top end of the main shell (1), the bottom end surface of the main shell (1) is fixedly connected with the bottom plate (3), the supporting plate (4) is fixedly connected to the surface below the bottom plate (3), the mechanism box (5) is fixedly connected to the surface above the bottom plate (3), a power mechanism (6) is arranged between the mechanism box (5) and the main shell (1), and a sand outlet mechanism (7) is arranged in the mechanism box (5);
power unit (6) are including driving shaft (8), driving shaft (8) run through main casing body (1) and extend to main casing body (1) inboard, driving shaft (8) and main casing body (1) swivelling joint, driving shaft (8) are kept away from and are stored up husky groove (2) one end fixedly connected with crank (9), driving shaft (8) surface is located main casing body (1) inside fixed driving pinion (10) that has cup jointed, transmission shaft (11) run through main casing body (1) and extend to main casing body (1) inboard, transmission shaft (11) and main casing body (1) swivelling joint, transmission shaft (11) are located main casing body (1) inside external surface fixed the cup joint transmission gear wheel (12), driving pinion (10) and transmission gear wheel (12) meshing, transmission shaft (11) are located the external surface fixed cup joint transmission pinion (13) between transmission gear wheel (12) and the main casing, an output shaft (14) penetrates through a main shell (1) and extends to the inner side of the main shell (1), the output shaft (14) is rotatably connected with the main shell (1), an output large gear (15) is fixedly sleeved on the outer surface of the output shaft (14) positioned inside the main shell (1), a transmission small gear (13) is meshed with the output large gear (15), an output small gear (16) is fixedly sleeved at one end, far away from the main shell (1), of the output shaft (14), a lower sliding chute (17) is fixedly connected above the outer wall of one side, close to a driving shaft (8), of a mechanism box (5), an upper sliding chute (18) is fixedly connected to the bottom of the outer wall of one side, close to the driving shaft (8), of a sand storage groove (2), a left door rack (19) is slidably sleeved inside a lower sliding chute (17), the left door rack (19) is meshed with the, the right door rack (20) is meshed with the output pinion (16), one side, away from the driving shaft (8), of the left door rack (19) is fixedly connected with a transmission plate (21), a left door (22) is fixedly connected above one side, away from the driving shaft (8), of the transmission plate (21), the transmission plate (21) is simultaneously and fixedly connected to one side, away from the driving shaft (8), of the right door rack (20), and a right door (23) is fixedly connected below one side, away from the driving shaft (8), of the transmission plate (21);
go out husky mechanism (7) including holding in the palm strip (24), hold in the palm strip (24) fixed connection in mechanism case (5) inner wall top, mechanism case (5) are located inner wall fixedly connected with layer board (25) of holding in the palm strip (24) below, mechanism case (5) are kept away from right door (23) one side and are located and hold in the palm strip (24) top slip and have been cup jointed out husky fill (26), mechanism case (5) are kept away from right door (23) one side outer wall fixedly connected with and are gone out husky slope (27), go out husky slope (27) and run through main casing body (1) and extend to main casing body (1) outside, main casing body (1) is located outer wall fixedly connected with funnel (28) of going out.
2. The sand loader for building construction according to claim 1, characterized in that: the transmission shaft (11) is positioned on one side, away from the sand outlet slope (27), of the driving shaft (8), and the output shaft (14) is positioned on one side, close to the support plate (4), of the transmission shaft (11).
3. The sand loader for building construction according to claim 1, characterized in that: the number of the supporting strips (24) is two, and the supporting strips are symmetrically distributed on the inner walls of the two sides of the mechanism box (5).
4. The sand loader for building construction according to claim 1, characterized in that: the sand storage groove (2) extends to the inside of the main shell (1), and the bottom size of the sand storage groove (2) is matched with the top size of the mechanism box (5).
5. The sand loader for building construction according to claim 1, characterized in that: go out sand slope (27) and keep away from main casing body (1) one end downward sloping, go out sand slope (27) and be located main casing body (1) inboard one end size and be greater than out sand fill (26) size.
6. The sand loader for building construction according to claim 1, characterized in that: the distance between the sand storage groove (2) and the mechanism box (5) is matched with the thickness of the left door (22), and the thickness of the left door (22) is matched with the thickness of the right door (23).
CN201922249292.3U 2019-12-16 2019-12-16 Sand loading machine for building construction Active CN212580175U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922249292.3U CN212580175U (en) 2019-12-16 2019-12-16 Sand loading machine for building construction

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922249292.3U CN212580175U (en) 2019-12-16 2019-12-16 Sand loading machine for building construction

Publications (1)

Publication Number Publication Date
CN212580175U true CN212580175U (en) 2021-02-23

Family

ID=74656701

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922249292.3U Active CN212580175U (en) 2019-12-16 2019-12-16 Sand loading machine for building construction

Country Status (1)

Country Link
CN (1) CN212580175U (en)

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Date Code Title Description
GR01 Patent grant
GR01 Patent grant
TR01 Transfer of patent right
TR01 Transfer of patent right

Effective date of registration: 20211026

Address after: Room 404, building 10, Shenzhen Bay science and technology ecological park, No. 10, Gaoxin South ninth Road, high tech Zone community, Yuehai street, Nanshan District, Shenzhen, Guangdong 518000

Patentee after: Shenzhen Yingfei Technology Co.,Ltd.

Address before: 473000 Room 102, unit 1, building 3, building 2, Daguanzhuang street, Meixi office, Wolong District, Nanyang City, Henan Province

Patentee before: Niu Linhui