CN214823453U - Impervious anticorrosive novel pay-off shallow for concrete - Google Patents

Impervious anticorrosive novel pay-off shallow for concrete Download PDF

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Publication number
CN214823453U
CN214823453U CN202022996755.5U CN202022996755U CN214823453U CN 214823453 U CN214823453 U CN 214823453U CN 202022996755 U CN202022996755 U CN 202022996755U CN 214823453 U CN214823453 U CN 214823453U
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conveying
storage box
concrete
feeding
inclined plate
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CN202022996755.5U
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高孝荣
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Jiaxing Xincheng Nanfang Concrete Co ltd
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Jiaxing Xincheng Nanfang Concrete Co ltd
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Abstract

The utility model discloses a impervious anticorrosive novel pay-off shallow for concrete, include: the two sides of the front end of the bottom of the storage box are provided with a first roller, and the two sides of the rear end of the bottom of the storage box are provided with a second roller; conveying mechanism, conveying mechanism includes conveying pipeline and conveying screw rod, conveying screw rod rotates to set up in the conveying pipeline, conveying screw rod lower extreme is connected with first motor, the vertical middle part that sets up in the storage case of conveying mechanism, conveying pipeline bottom side is equipped with the feed inlet, the conveying pipeline top can be dismantled and connect the discharging pipe and communicate with the storage case outside, the discharging pipe outside is equipped with and connects the material basin. The utility model has the advantages that: 1. the storage box is of a sealing structure, so that concrete mortar cannot be scattered in the transportation process; 2. the automatic material distribution device can automatically distribute materials, does not need manual subpackage, and reduces the labor amount of workers; 3. the concrete mortar is not easy to dry in the storage box, and the concrete mortar is kept at the optimal slump by the stirring mechanism.

Description

Impervious anticorrosive novel pay-off shallow for concrete
Technical Field
The utility model belongs to concrete equipment field, concretely relates to impervious anticorrosive novel pay-off shallow for concrete.
Background
Impervious anticorrosive concrete is often used for engineering such as concrete water tank, basement, pond, generally wipes the cement face through the manual work, and the concrete mainly relies on concrete tank car to transport, and concrete tank car is bulky can't get into the complicated construction point of environment, need transport the concrete to the construction point through the pay-off shallow and supply the workman to use. But general concrete trolley is when transporting concrete mortar, and concrete mortar shakes out unrestrained in the dolly easily, leads to condensing to be difficult to get rid of subaerial, and when concrete mortar transported to the construction point, the workman generally can use the pail to carry out the partial shipment and plaster the operation again, wastes time and energy, has wasted more labour.
To sum up, for solving current technical problem, the utility model designs a simple structure, can divide the impervious anticorrosive novel pay-off shallow for concrete of weight ejection of compact.
Disclosure of Invention
The utility model discloses a solve current technical problem, designed a simple structure, can divide the impervious anticorrosive novel pay-off shallow for concrete of weight ejection of compact.
The purpose of the utility model can be realized by the following technical proposal:
the utility model provides a impervious anticorrosive novel feeding shallow for concrete, includes:
the two sides of the front end of the bottom of the storage box are provided with a first roller, and the two sides of the rear end of the bottom of the storage box are provided with a second roller;
conveying mechanism, conveying mechanism includes conveying pipeline and conveying screw rod, conveying screw rod rotates to set up in the conveying pipeline, conveying screw rod lower extreme is connected with first motor, the vertical middle part that sets up in the storage case of conveying mechanism, conveying pipeline bottom side is equipped with the feed inlet, the conveying pipeline top can be dismantled and connect the discharging pipe and communicate with the storage case outside, the discharging pipe outside is equipped with and connects the material basin.
Further, the bottom in the storage box is equipped with swash plate one and swash plate two, swash plate one all sets up downwards to storage bottom of the case portion center slope with swash plate two, swash plate one position is higher than swash plate two, swash plate two links up with the feed inlet.
Further, a feed inlet is arranged above the storage box, and a sealing cover is rotatably connected to the feed inlet.
Furthermore, a reduction gear is connected between the material conveying screw and the first motor.
Further, a stirring screw rod is transversely arranged in the material storage box and connected with a second motor.
Furthermore, the roller is connected with a power mechanism.
Furthermore, the second roller is a universal wheel, and a handle is arranged on the upper portion of the side face of the rear end of the material storage box.
Compared with the prior art, the utility model discloses the structure sets up rationally: 1. the storage box is of a sealing structure, so that concrete mortar cannot be scattered in the transportation process; 2. the automatic material distribution device can automatically distribute materials, does not need manual subpackage, and reduces the labor amount of workers; 3. the concrete mortar is not easy to dry in the storage box, and the concrete mortar is kept at the optimal slump by the stirring mechanism.
Drawings
FIG. 1 is a schematic view of the entire feeding cart;
FIG. 2 is a schematic structural view of the present feeding cart;
FIG. 3 is an enlarged schematic view of the feeding mechanism;
referring to fig. 1-3, wherein: 1. a material storage box; 11. a first roller; 12. a second roller; 13. a material receiving basin; 14. a first inclined plate; 15. a second inclined plate; 16. a feed inlet; 17. a handle; 2. a material conveying mechanism; 21. a delivery pipe; 211. a feed inlet; 212. a discharge pipe; 22. a material conveying screw rod; 23. a first motor; 231. a reduction gear; 3. a stirring screw; 31. a second motor.
Detailed Description
The technical solution of the present invention is further explained below with reference to the following examples.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
The first embodiment is as follows:
the utility model provides a impervious anticorrosive novel feeding shallow for concrete, includes:
the device comprises a material storage box 1, wherein two sides of the front end of the bottom of the material storage box 1 are provided with a first roller 11, and two sides of the rear end of the bottom are provided with a second roller 12;
defeated material mechanism 2, defeated material mechanism 2 includes conveying pipeline 21 and defeated material screw rod 22, defeated material screw rod 22 rotates and sets up in conveying pipeline 21, defeated material screw rod 22 lower extreme is connected with first motor 23, 2 vertical middle parts that set up in storage case 1 of defeated material mechanism, conveying pipeline 21 bottom side is equipped with feed inlet 211, the top of conveying pipeline 21 can be dismantled and connect discharging pipe 212 and communicate with the storage case 1 outside, the discharging pipe 212 outside is equipped with and connects material basin 13.
When the concrete is conveyed to a construction point by the cart, some concrete mortar is easy to fall, and is difficult to remove after being solidified on the ground, and the removal needs manpower; the workman transports the concrete at the shallow after to the construction point, need reuse the bucket and carry the partial shipment, waste time and energy.
Specifically, the utility model can move on the ground through the first roller 11 and the second roller 12, the storage box 1 of the utility model is a sealing structure, when in transportation and movement, concrete mortar in the storage box 1 can not scatter concrete due to shaking caused by uneven ground factors, and the cleanness of the construction environment is ensured; and concrete mortar is difficult to condense in sealed storage case 1, has reduced the loss of concrete in the work progress.
After concrete is delivered to a construction point, a motor I23 can be operated to work, the motor I23 drives a conveying screw rod 22 to rotate, concrete mortar in a storage box 1 enters a conveying pipe 21 from a feeding hole 211, the conveying screw rod 22 conveys the concrete mortar from bottom to top until the discharging pipe 212, the concrete mortar is discharged from the discharging pipe 212 and enters a material receiving basin 13, when a proper amount of concrete mortar is in the material receiving basin 13, the motor I23 can stop working, due to shielding of the pipe wall of the discharging pipe 212, the concrete mortar in the material receiving basin 13 cannot flow back to the conveying pipe 21, and workers can use the concrete mortar in the material receiving basin 13 to carry out construction; when a construction point is finished and needs to go to the next construction point, but the concrete mortar in the material receiving basin 13 is not used up, the discharge pipe 212 can be detached, the first motor 23 works reversely, the concrete mortar in the material receiving basin 13 returns to the material storage tank 1 through the material conveying mechanism 2 again, and the concrete mortar cannot be dried in the material receiving basin 13 when the next construction point is used.
Example two:
the difference between the second embodiment and the first embodiment is that a first inclined plate 14 and a second inclined plate 15 are arranged at the bottom in the material storage box 1, the first inclined plate 14 and the second inclined plate 15 are both arranged obliquely downwards towards the center of the bottom of the material storage box 1, the first inclined plate 14 is higher than the second inclined plate 15, and the second inclined plate 15 is connected with the material inlet 211.
Specifically, because the inclination of swash plate one 14 and swash plate two 15, concrete mortar can flow to feed inlet 211 spontaneously, make the concrete mortar in the storage case 1 all can carry out the ejection of compact and use through defeated material mechanism 2, the utilization ratio of concrete mortar has been improved, and swash plate one 14 is higher than swash plate two 15, swash plate two 15 links up with feed inlet 211, concrete mortar on the swash plate one 14 all can flow to on the swash plate two 15, get into feed inlet 211 from swash plate two 15 again, guaranteed that concrete mortar can all get into in the feed inlet 211 of conveying pipeline 21 side.
Example three:
the third embodiment is different from the first embodiment in that a feed opening 16 is arranged above the storage box 1, and a sealing cover 161 is rotatably connected to the feed opening 16.
Specifically, charge door 16 sets up in storage case 1 top, can make things convenient for equipment such as trucd mixer to carry out the ejection of compact in storage case 1, and the design of sealed lid 161 both can prevent concrete mortar spill in the transportation, also can slow down concrete mortar's dry and hard, and the lifting utilization rate.
Example four:
the difference between the fourth embodiment and the first embodiment is that a reduction gear 231 is connected between the feeding screw 22 and the first motor 23.
Specifically, the reduction gear 231 can reduce the output speed of the first motor 23 to the material conveying screw 22, so as to improve the torque of the material conveying screw 22, and ensure that the material conveying screw 22 can stably convey heavy concrete mortar.
Example five:
the fifth embodiment is different from the first embodiment in that a stirring screw 3 is transversely arranged in the material storage tank 1, and the stirring screw 3 is connected with a second motor 31.
Specifically, in the transportation process, the concrete mortar is kept on the best slump all the time through the continuous stirring of the stirring screw rods 3, the strength of the formed concrete mortar is improved, and the whole quality of a building is guaranteed.
Example six:
the difference between the sixth embodiment and the first embodiment is that a power mechanism is connected to the first roller 11.
Specifically, when the transportation is promoted, the first rolling wheels 11 can provide partial power through the connected power mechanism, so that workers can push the storage box 1 filled with concrete mortar easily, the physical strength of the workers is saved, and the transportation efficiency is improved.
Example seven:
the seventh embodiment is different from the first embodiment in that the second roller 12 is a universal wheel, and a handle 17 is disposed at an upper portion of a rear end side of the material storage tank 1.
Specifically, when pushing for transportation, the worker holds the handle 17 for pushing; when turning is needed, a worker holds the handle 17 to adjust the direction, and the second roller 12 can rotate along with the universal wheel, so that the turning is convenient.
The preferred embodiments of the present invention are described herein, but the scope of the present invention is not limited thereto. Modifications or additions to or replacement by similar means to those skilled in the art to which the invention pertains to the specific embodiments described herein are intended to be covered by the scope of the invention.

Claims (7)

1. The utility model provides a impervious anticorrosive novel feeding shallow for concrete which characterized in that includes:
the device comprises a material storage box (1), wherein two sides of the front end of the bottom of the material storage box (1) are provided with a first roller (11), and two sides of the rear end of the bottom are provided with a second roller (12);
conveying mechanism (2), conveying mechanism (2) include conveying pipeline (21) and conveying screw rod (22), conveying screw rod (22) rotate the setting in conveying pipeline (21), conveying screw rod (22) lower extreme is connected with first motor (23), the vertical middle part that sets up in storage case (1) of conveying mechanism (2), conveying pipeline (21) bottom side is equipped with feed inlet (211), conveying pipeline (21) top can be dismantled and connect discharging pipe (212) and communicate with storage case (1) outside, discharging pipe (212) outside is equipped with and connects material basin (13).
2. The novel anti-permeability and anti-corrosion concrete feeding cart according to claim 1, characterized in that a first inclined plate (14) and a second inclined plate (15) are arranged at the bottom of the storage box (1), the first inclined plate (14) and the second inclined plate (15) are both arranged obliquely downwards towards the center of the bottom of the storage box (1), the first inclined plate (14) is higher than the second inclined plate (15), and the second inclined plate (15) is connected with the feeding port (211).
3. The feeding trolley for the novel impervious corrosion-resistant concrete as claimed in claim 1, wherein a feeding opening (16) is arranged above the storage tank (1), and a sealing cover (161) is rotatably connected to the feeding opening (16).
4. The feeding cart for impervious corrosion-resistant concrete according to claim 1, wherein a reduction gear (231) is connected between the feeding screw (22) and the first motor (23).
5. The novel impervious corrosion-resistant concrete feeding trolley as claimed in claim 1, wherein a stirring screw (3) is transversely arranged in the storage box (1), and the stirring screw (3) is connected with a second motor (31).
6. The feeding trolley for the novel impervious and corrosion-resistant concrete as claimed in claim 1, wherein the first roller (11) is connected with a power mechanism.
7. The novel impervious corrosion-resistant concrete feeding trolley as claimed in claim 1, wherein the second rolling wheels (12) are universal wheels, and a handle (17) is arranged at the upper part of the side surface of the rear end of the storage box (1).
CN202022996755.5U 2020-12-13 2020-12-13 Impervious anticorrosive novel pay-off shallow for concrete Active CN214823453U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022996755.5U CN214823453U (en) 2020-12-13 2020-12-13 Impervious anticorrosive novel pay-off shallow for concrete

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022996755.5U CN214823453U (en) 2020-12-13 2020-12-13 Impervious anticorrosive novel pay-off shallow for concrete

Publications (1)

Publication Number Publication Date
CN214823453U true CN214823453U (en) 2021-11-23

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ID=78802944

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022996755.5U Active CN214823453U (en) 2020-12-13 2020-12-13 Impervious anticorrosive novel pay-off shallow for concrete

Country Status (1)

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CN (1) CN214823453U (en)

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