CN215099644U - Hopper for deep foundation pit deslagging - Google Patents

Hopper for deep foundation pit deslagging Download PDF

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Publication number
CN215099644U
CN215099644U CN202120779047.8U CN202120779047U CN215099644U CN 215099644 U CN215099644 U CN 215099644U CN 202120779047 U CN202120779047 U CN 202120779047U CN 215099644 U CN215099644 U CN 215099644U
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China
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hopper
main
charging
deslagging
foundation pit
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CN202120779047.8U
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上经卫
林华
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China Railway First Engineering Group Co Ltd
China Railway First Engineering Group Co Ltd Guanzhou Branch
China Railway First Engineering Group Guangzhou Construction Engineering Co Ltd
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China Railway First Engineering Group Co Ltd
China Railway First Engineering Group Co Ltd Guanzhou Branch
China Railway First Engineering Group Guangzhou Construction Engineering Co Ltd
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Abstract

The utility model discloses a hopper for deep basal pit is discharged slag. The utility model discloses a hopper for deep basal pit is discharged slag, include: the charging body is provided with a discharging hole; a main lifting member connected with the charging body; the discharging door is arranged on the charging main body; and the auxiliary lifting piece is connected with the discharge door and can enable the discharge door to shield or expose the discharge hole. The utility model discloses a hopper for deep basal pit is slagging tap can realize mechanized loading and unloading operation, and simple structure, rationally distributed, can effectively improve operating efficiency and economic benefits, and easily processing and daily dimension are protected simultaneously, and maneuverability and practicality are all stronger.

Description

Hopper for deep foundation pit deslagging
Technical Field
The utility model relates to a hopper technical field especially relates to a hopper for deep basal pit is discharged slag.
Background
In the process of excavation of a foundation pit, with the increase of construction depth, the lifting capacity of conventional excavation equipment cannot meet the requirement of site slag discharge, hopper operation is required, the conventional hopper is generally adopted in the industry at present, a special person is required to be arranged above and below the foundation pit during the hopper operation to cooperate with the installation and the disassembly of a hopper lifting rope and the opening and closing of a hopper bottom switch before and after slag discharge, the work efficiency and labor cost are high, and the construction progress is difficult to guarantee; when personnel cooperate with the hopper to lift, potential safety hazards such as overturning of the slag hopper, falling of the lifting hook, object striking and other hoisting injuries exist.
SUMMERY OF THE UTILITY MODEL
Based on this, the utility model aims at providing a hopper for deep basal pit is slagging tap can realize mechanized loading and unloading operation, and simple structure, rationally distributed, can effectively improve operating efficiency and economic benefits, and easily processing and daily dimension are protected simultaneously, and maneuverability and practicality are all stronger.
A hopper for deep foundation pit deslagging, comprising:
the charging body is provided with a discharging hole;
a main lifting member connected with the charging body;
the discharging door is arranged on the charging main body;
and the auxiliary lifting piece is connected with the discharge door and can enable the discharge door to shield or expose the discharge hole.
Use the utility model discloses a during hopper loading and unloading material sediment for deep basal pit is slagging tap, transfer the main part of feeding through main elevating part, charge in the main part of feeding, during promote vice elevating part always and make the discharge door shelter from the discharge gate all the time, treat the material completion back, promote main elevating part and vice elevating part simultaneously and move the main part of feeding to the position of unloading, when treating to reach the position of unloading, main elevating part keeps motionless, transfer vice elevating part, make the discharge door expose the discharge gate, the material sediment in the main part of feeding is unloaded from the discharge gate, treat to unload and finish, can promote vice elevating part again, the reciprocal material loading and unloading operation of circulation then. The utility model discloses a hopper for deep basal pit slagging tap can realize whole mechanized operations, need not the manual cooperation operation when this hopper of foundation ditch hoist and mount, only need the promotion and the decline of main elevating part of control and vice elevating part can, perhaps cooperate the automatic of current controlling means also can realize the discharge door and open and close, greatly save the cost of labor, improve economic benefits, just the utility model discloses a hopper for deep basal pit slagging tap simple structure, rationally distributed need not to install repeatedly and dismantle main elevating part and vice elevating part during the assembly, can effectively improve the operating efficiency, easily processes simultaneously and daily dimension guarantor, maneuverability and practicality are all stronger.
Further preferably, the discharge port is formed in the bottom of the charging body, the discharge door is hinged to the charging body, and the auxiliary lifting member is connected with the discharge door and can enable the discharge door to rotate so as to shield or expose the discharge port.
Further preferably, the discharge door includes left board and right board, the left side board with the right board is arranged in the discharge gate department of the main part of charging and is formed a door structure, the left side of left board with the right side of right board respectively in discharge gate department with the main part of charging is articulated, the front side of left board, rear side with the front side of right board, rear side all with vice elevating part is connected.
Further preferably, a limiting member is arranged on the charging body and used for limiting the left-right deviation of the auxiliary lifting member.
Further preferably, the limiting part is an anti-drop ring, the auxiliary lifting part is an auxiliary chain, and the auxiliary lifting part is arranged in the limiting part in a penetrating manner.
Further preferably, the main lifter is connected to the charging body by a connecting assembly.
Further preferably, coupling assembling includes link and connecting chain, the one end of connecting chain with one side fixed connection of link, the other end of connecting chain with one side of the main part of charging is connected, the link for with the opposite side that the connecting chain is connected with the opposite side of the main part of charging is connected, the main part of charging with one side that the connecting chain is connected and the main part of charging with the opposite side that the link is connected sets up relatively, main lift is located the link with on one side that the connecting chain is connected.
Further preferably, the charging body side wall is provided with a reinforcement.
Further preferably, the reinforcing member is provided in a plurality of numbers, respectively spaced apart on the side wall of the charging body.
Further preferably, the auxiliary lifting piece is connected with the discharging door through a lifting lug.
Compared with the prior art, use the utility model discloses a during hopper loading and unloading material sediment for deep basal pit slagging tap, transfer the main part of charging through main elevating part, charge toward in the main part of charging, during promote vice elevating part always and make the discharge gate shelter from the discharge gate all the time, treat the material completion back, promote main elevating part and vice elevating part simultaneously and move the main part of charging to the discharge position, when treating to reach the discharge position, main elevating part keeps motionless, transfer vice elevating part, make the discharge gate expose the discharge gate, the material sediment in the main part of charging is discharged from the discharge gate, treat to unload and finish, can promote vice elevating part again, then the reciprocal loading and unloading operation of circulation. The utility model discloses a hopper for deep basal pit slagging tap can realize whole mechanized operations, need not the manual cooperation operation when this hopper of foundation ditch hoist and mount, only need the promotion and the decline of control main elevating part and vice elevating part can, perhaps cooperate current controlling means also can realize the automatic of discharge door and open and close, can greatly save the cost of labor, just the utility model discloses a hopper for deep basal pit slagging tap simple structure, rationally distributed need not to install repeatedly and dismantle main elevating part and vice elevating part during the assembly, can effectively improve the operating efficiency, and the safety risk is controllable, and easy processing and daily dimension are protected simultaneously, and maneuverability and practicality are all stronger, have wide development prospect and good economic benefits.
For a better understanding and an implementation, the present invention is described in detail below with reference to the accompanying drawings.
Drawings
Figure 1 is the utility model discloses a schematic diagram of a hopper for deep basal pit slagging tap.
Fig. 2 is another schematic view of the hopper for deep foundation pit deslagging of the utility model.
Reference numerals: 1. a charging body; 11. a limiting member; 12. a reinforcement; 2. a main lifting member; 3. a discharge door; 31. a left panel; 32. a right plate; 33. lifting lugs; 4. an auxiliary lifting member; 5. a connecting assembly; 51. a connecting frame; 511. a positioning member; 52. and connecting the chains.
Detailed Description
The terms of orientation of up, down, left, right, front, back, top, bottom, and the like, referred to or may be referred to in this specification, are defined relative to their configuration, and are relative concepts. Therefore, it may be changed according to different positions and different use states. Therefore, these and other directional terms should not be construed as limiting terms.
The implementations described in the exemplary embodiments below are not intended to represent all implementations consistent with the present disclosure. Rather, they are merely examples of methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.
The terminology used in the present disclosure is for the purpose of describing particular embodiments only and is not intended to be limiting of the disclosure. As used in this disclosure and the appended claims, the singular forms "a," "an," and "the" are intended to include the plural forms as well, unless the context clearly indicates otherwise. It should also be understood that the term "and/or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
The utility model discloses a hopper for deep basal pit is slagging tap, as shown in fig. 1-2, include:
the charging device comprises a charging body 1, wherein the charging body 1 is provided with a discharge hole;
a main lifter 2, said main lifter 2 being connected to said charging body 1;
the discharging door 3 is arranged on the charging body 1;
and the auxiliary lifting piece 4 is connected with the discharge door 3 and can enable the discharge door 3 to shield or expose the discharge hole.
Use the utility model discloses a during hopper loading and unloading material sediment for deep basal pit is slagging tap, transfer charging body 1 through main elevating part 2, charge in charging body 1, during promote vice elevating part 4 always and make discharge door 3 shelter from the discharge gate all the time, treat the material completion back, promote main elevating part 2 and vice elevating part 4 simultaneously and will charge charging body 1 and move to the position of unloading, treat when reaching the position of unloading, main elevating part 2 keeps motionless, transfer vice elevating part 4, make discharge door 3 expose the discharge gate, the material sediment in charging body 1 is unloaded from the discharge gate, treat to unload and finish, can promote vice elevating part 4 again, the reciprocal operation of unloading of loading and unloading of circulation then. The utility model discloses a hopper for deep basal pit slagging tap can realize whole mechanized operations, need not the manual cooperation operation when this hopper of foundation ditch hoist and mount, only need control main elevating part 2 and vice elevating part 4 promote with descend can, perhaps cooperate current controlling means also can realize the automatic of discharge door 3 and open and close, just the utility model discloses a hopper for deep basal pit slagging tap simple structure, rationally distributed, need not to install repeatedly during the assembly and dismantle main elevating part 2 and vice elevating part 4, can effectively improve the operating efficiency, easily process simultaneously and daily dimension guarantor, maneuverability and practicality are all stronger.
In particular, the main lifter 2 is preferably a main iron chain.
Preferably, the discharge port is arranged at the bottom of the charging body 1, the discharge door 3 is hinged to the charging body 1, and the auxiliary lifting member 4 is connected to the discharge door 3 and can enable the discharge door 3 to rotate so as to shield or expose the discharge port.
When unloading, transfer vice elevating part 4 and make discharge door 3 rotate in order to expose the discharge gate, and the material sediment in the main part of charging 1 can utilize its self gravity further "push open" discharge door 3 fast, when the structure that so sets up can combine the gravity law well, guarantee the operating efficiency, also can guarantee connection stability between the structure, improve the practicality.
Preferably, the discharging door 3 comprises a left plate 31 and a right plate 32, the left plate 31 and the right plate 32 are arranged at the discharging port of the charging body 1 and form a door structure, the left side of the left plate 31 and the right side of the right plate 32 are respectively hinged with the charging body 1 at the discharging port, and the front side and the rear side of the left plate 31 and the front side and the rear side of the right plate 32 are connected with the auxiliary lifting member 4.
Specifically, the left plate 31 and the right plate 32 are horizontally arranged side by side at the discharge port of the charging body 1, and the auxiliary lifting member 3 is provided in two, one of which connects the front side of the left plate 31 and the front side of the right plate 32, and the other of which connects the rear side of the left plate 31 and the rear side of the right plate 32.
More specifically, the shape of the discharge hole is rectangular, and the left plate 31 and the right plate 32 are identical in shape and size.
The discharge door 3 is located the main part of charging 1 bottom, and the setting of left board 31 and right board 32 forms the discharge door 3 of "two opening doors" forms, transfers two vice lifters 4 simultaneously during the unloading and makes left board 31 and right board 32 utilize its self gravity to open downwards, and the material sediment in the main part of charging 1 can utilize its self gravity to pour down and go out completely simultaneously, further accelerates the operating efficiency.
Preferably, the charging body 1 is provided with a limiting member 11 for limiting the left-right deviation of the sub elevating member 4.
Be equipped with the skew about locating part 11 restriction vice elevating part 4, can guarantee that vice elevating part 4 is in vertical operating condition all the time, avoid unnecessary loss.
Preferably, the limiting member 11 is an anti-drop ring, the auxiliary lifting member 4 is an auxiliary chain, and the auxiliary lifting member 4 is inserted into the limiting member 11.
In particular, the secondary chain is preferably a secondary iron chain.
More specifically, the two limiting members 11 are respectively located at two sides of the charging body 1, and the two auxiliary lifting members 4 are arranged in the two auxiliary lifting members.
The auxiliary lifting piece 4 penetrates through the limiting piece 11, the limiting piece 11 can ensure that the auxiliary lifting piece 4 is always in a vertical working state, and the auxiliary lifting piece 4 can be prevented from being separated from the charging main body 1 to influence normal charging and discharging operation.
Preferably, the auxiliary lifting member 4 is connected with the discharging door 3 through a lifting lug 33.
The auxiliary lifting element 4 is often required to be lifted or lowered, at which time a crane may be utilized, and the lifting lug 33 can assist the auxiliary lifting element 4 to bear the weight of the charging body 1 and the slag therein well, so as to ensure the stability of the connection between the auxiliary lifting element 4 and the discharge door 3.
Preferably, the main lifter 2 is connected to the loading body 1 by a connection assembly 5.
Connecting assembly 5 can increase the connection stability between main lifter 2 and the charging body 1, avoids main lifter 2 to promote or transfer work in and the charging body 1 between have direct wearing and tearing, leads to main lifter 2 fracture.
Preferably, the connecting assembly 5 comprises a connecting frame 51 and a connecting chain 52, one end of the connecting chain 52 is fixedly connected with one side of the connecting frame 51, the other end of the connecting chain 52 is connected with one side of the charging body 1, the connecting frame 51 is connected with the other side of the charging body 1 relative to the other side connected with the connecting chain 52, the charging body 1 is connected with one side of the connecting chain 52 and the other side connected with the connecting frame 51 are oppositely arranged, and the main lifting piece 2 is arranged on one side of the connecting frame 51 connected with the connecting chain 52.
Specifically, the connecting chain 52 is preferably a connecting iron chain.
More specifically, a connecting block is further arranged between the main lifting member 2 and the connecting frame 51, and the connecting block is triangular and used for further stabilizing the connection stability between the main lifting member 2 and the connecting frame 51.
The connecting frame 51, the connecting links 52 and the charging body 1 form a triangular connecting structure, so that the charging body 1 operates more smoothly when lifting and lowering the charging body 1.
Preferably, the connection between the connecting frame 51 and the loading body 1 is a hinge.
Because when loading to the main body of charging 1, the material sediment in the main body of charging 1 probably unevenness or incline a certain side, the articulated between link 51 and the main body of charging 1 does benefit to the adjustment main body of charging 1, combines link 51, connecting chain 52 and the triangle-shaped connection structure between the main body of charging 1 again for further improve its mobility stability when moving main body of charging 1, avoid the main body of charging 1 to empty.
Preferably, the connecting frame 51 is provided with a positioning member 511 for limiting the left and right deviation of the sub elevating member 4.
Specifically, the positioning element 511 is also preferably an anti-drop ring, and two positioning elements 511 are provided for two auxiliary lifting elements 4 to penetrate through.
The combination positioning member 511 and the limiting member 11 jointly limit the left and right deviation of the sub lifting member 4, thereby further ensuring the normal operation of the sub lifting member 4.
Preferably, the loading body 1 side wall is provided with a reinforcement 12.
The reinforcing element 12 is able to reinforce the structural solidity of the charging body 1, preventing it from breaking, and at the same time increasing the amount of slag that the charging body 1 can withstand.
Preferably, the reinforcing elements 12 are provided in several numbers, respectively spaced on the side walls of the loading body 1.
Specifically, the charging body 1 is a cuboid, and the reinforcing members 12 are preferably reinforcing steel plates, and are respectively located on the outer side wall of the charging body 1 at vertical intervals.
The firmness of main part 1 of feeding can further be guaranteed to a plurality of reinforcements 12 that the interval set up, and the reinforcement 12 of vertical setting can also be for the effort of the material sediment of main part 1 dispersion of feeding that it bore, effectively prolongs the utility model discloses an effective life of a hopper for deep basal pit slagging tap.
Compared with the prior art, use the utility model discloses a during hopper loading and unloading material sediment for deep basal pit slagging tap, load main part 1 through main elevating part 2 transferring, load in toward load main part 1, during promote vice elevating part 4 always and make discharge door 3 shelter from the discharge gate all the time, treat the material completion back, promote main elevating part 2 and vice elevating part 4 simultaneously and will load main part 1 and move to the discharge position, when treating to reach the discharge position, main elevating part 2 keeps motionless, transfer vice elevating part 4, make discharge door 3 expose the discharge gate, the material sediment in the main part 1 of loading is discharged from the discharge gate, treat to unload and finish, can promote vice elevating part 4 again, the reciprocal operation of unloading of loading and unloading of circulation then. The utility model discloses a hopper for deep basal pit slagging tap can realize whole mechanized operation, need not the manual cooperation operation when this hopper of foundation ditch hoist and mount, only need control main elevating part 2 and vice elevating part 4 promote and descend can, perhaps cooperate current controlling means also can realize the automatic of discharge door 3 and open and close, can greatly save the cost of labor, just the utility model discloses a hopper for deep basal pit slagging tap simple structure, rationally distributed need not to install repeatedly and dismantle main elevating part 2 and vice elevating part 4 during the assembly, can effectively improve the operating efficiency, and the safety risk is controllable, easily processes simultaneously and daily dimension guarantor, maneuverability and practicality are all stronger, have wide development prospect and good economic benefits.
The above-mentioned embodiments only represent some embodiments of the present invention, and the description thereof is specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention.

Claims (10)

1. The utility model provides a hopper for deep basal pit is mucked, its characterized in that includes:
the charging body is provided with a discharging hole;
a main lifting member connected with the charging body;
the discharging door is arranged on the charging main body;
and the auxiliary lifting piece is connected with the discharge door and can enable the discharge door to shield or expose the discharge hole.
2. The hopper for deep foundation pit deslagging of claim 1, wherein: the discharge gate is located the main part bottom of feeding, the discharge door with the main part of feeding is articulated, vice elevating part with the discharge door is connected and can make the discharge door rotates to shelter from or expose the discharge gate.
3. The hopper for deep foundation pit deslagging of claim 2, wherein: the discharge door includes left board and right board, the left side board with the right side board is arranged in the discharge gate department of the main part of feeding and formation door structure, the left side of left side board with the right side of right side board respectively in discharge gate department with the main part of feeding is articulated, the front side of left side board, rear side with the front side of right side board, rear side all with vice elevating part is connected.
4. The hopper for deep foundation pit deslagging of any one of claims 1-3, wherein: and the material loading main body is provided with a limiting part for limiting the left and right deviation of the auxiliary lifting part.
5. The hopper for deep foundation pit deslagging of claim 4, wherein: the locating part is the anticreep ring, vice lifting unit is vice chain, vice lifting unit wears to locate in the locating part.
6. The hopper for deep foundation pit deslagging of any one of claims 1-3, wherein: the main lifting piece is connected with the charging main body through a connecting assembly.
7. The hopper for deep foundation pit deslagging of claim 6, wherein: coupling assembling includes link and connecting chain, the one end of connecting chain with one side fixed connection of link, the other end of connecting chain with one side of the main part of feeding is connected, the link for with the opposite side that the connecting chain is connected with the opposite side of the main part of feeding is connected, the main part of feeding with one side that the connecting chain is connected and the main part of feeding with the opposite side that the link is connected sets up relatively, main lift unit locates the link with on one side that the connecting chain is connected.
8. The hopper for deep foundation pit deslagging of any one of claims 1-3, wherein: the side wall of the charging body is provided with a reinforcing piece.
9. The hopper for deep foundation pit deslagging of claim 8, wherein: the reinforcing piece is provided with a plurality of reinforcing pieces which are respectively positioned on the side wall of the charging main body at intervals.
10. The hopper for deep foundation pit deslagging of any one of claims 1-3, wherein: the auxiliary lifting piece is connected with the discharge door through a lifting lug.
CN202120779047.8U 2021-04-15 2021-04-15 Hopper for deep foundation pit deslagging Active CN215099644U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120779047.8U CN215099644U (en) 2021-04-15 2021-04-15 Hopper for deep foundation pit deslagging

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120779047.8U CN215099644U (en) 2021-04-15 2021-04-15 Hopper for deep foundation pit deslagging

Publications (1)

Publication Number Publication Date
CN215099644U true CN215099644U (en) 2021-12-10

Family

ID=79266356

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202120779047.8U Active CN215099644U (en) 2021-04-15 2021-04-15 Hopper for deep foundation pit deslagging

Country Status (1)

Country Link
CN (1) CN215099644U (en)

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