CN219586574U - Bridge guardrail steel casting mould concrete pouring hopper - Google Patents

Bridge guardrail steel casting mould concrete pouring hopper Download PDF

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Publication number
CN219586574U
CN219586574U CN202320851366.4U CN202320851366U CN219586574U CN 219586574 U CN219586574 U CN 219586574U CN 202320851366 U CN202320851366 U CN 202320851366U CN 219586574 U CN219586574 U CN 219586574U
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China
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hopper
pouring
shape
concrete
guardrail steel
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CN202320851366.4U
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Chinese (zh)
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张勇
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Shaoguan Fuwei Engineering Construction Co ltd
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Shaoguan Fuwei Engineering Construction Co ltd
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Abstract

The utility model discloses a bridge guardrail steel casting mould concrete pouring hopper, and belongs to the technical field of pouring hoppers. Including the guardrail steel mould, guardrail steel mould upper surface is connected with the hopper subassembly, the hopper subassembly is including Y shape hopper and equipment box, pump through the delivery pump of watering machine and pump concrete, and evenly carry to Y shape hopper by the pouring shower nozzle that follows Y shape hopper and shift repeatedly, and a plurality of stirring rods of continuous pivoted make the concrete in the Y shape hopper even and quick fall to in the feeding die cavity, Y shape hopper bottom is gone into in the feeding die cavity through the anti-overflow integrated circuit board, and guardrail steel mould both sides department all is provided with two pairs of vertical distribution's gyro wheels, and the gyro wheel can realize elasticity extrusion guardrail steel mould, make Y shape hopper pass through the gyro wheel can be quick and light follow guardrail steel mould displacement, then can the efficient guardrail steel mould pouring concrete of whole bridge road section, and simple to operate, concrete filling efficiency is more high-efficient.

Description

Bridge guardrail steel casting mould concrete pouring hopper
Technical Field
The utility model relates to the technical field of pouring hoppers, in particular to a bridge guardrail steel casting mould concrete pouring hopper.
Background
The bridge both sides need use the guardrail to carry out safety protection, the guardrail includes steel construction guardrail and concrete structure, steel construction guardrail needs rust-resistant treatment, maintenance cost is high, therefore, the bridge both sides guardrail is taken the concrete construction guardrail more, the concrete construction guardrail is when the preparation, accessible prefabricated steel mould, and pour concrete in to prefabricated steel mould, then make the concrete construction guardrail fast, promote work efficiency, the prior art is CN207592217U provides a bridge guardrail with pouring edulcoration device, the rotatory screen drum of the device can select bulk stone and impurity through high-speed rotatory screening, improve the efficiency of edulcoration, simultaneously also can save a large amount of manpower and materials, auxiliary contact roller can auxiliary support and drive the rotation of rotatory screen drum, resistance when rotatory screen drum is reduced, fixed frame and lower extreme fixed frame can provide stable support for the device, improve safety and firm, but discover the pouring device in the use and although improved the efficiency of concrete edulcoration, misce, the concrete in the pouring device is inconvenient for filling in prefabricated steel mould, fill in the filling steel mould, fill the concrete in the bridge mould is usually used, the concrete in the concrete pouring device is filled in this way, the prefabricated steel mould is usually high-efficient vibration of bridge is produced, the bridge is not filled evenly, the concrete is filled up in this, the bridge is required to be filled up evenly, the quality is greatly improved, and the bridge is filled up evenly is guaranteed.
Disclosure of Invention
1. Technical problem to be solved
The utility model aims to provide a method for pouring concrete into a hopper of a steel casting mould of a bridge guardrail, which solves the technical problems that the concrete in a pouring device in the prior art is inconvenient to uniformly fill in the prefabricated steel casting mould, the filling workload of the prefabricated steel casting mould of the whole bridge guardrail is extremely large, and the filling efficiency is low, and realizes the technical effects that the concrete is convenient to uniformly and rapidly fill in the prefabricated steel casting mould, the pouring hopper can rapidly and lightly displace along the whole prefabricated steel casting mould, and the filling efficiency is high.
2. Technical proposal
The technical scheme of the utility model provides a bridge guardrail steel casting mould concrete pouring hopper, which comprises the following components: guardrail steel mould, guardrail steel mould upper surface is connected with the hopper subassembly, the hopper subassembly is including Y shape hopper and equipment box, fixedly mounted has storage battery in the equipment box, install agitating unit and even pouring subassembly on the equipment box, agitating unit is connected with even pouring subassembly transmission, Y shape hopper fixedly connected with direction subassembly, Y shape hopper upper surface sliding connection has the slide, demountable installation has the pouring shower nozzle on the slide, the delivery pump fixed connection of pouring shower nozzle and grouter.
Through adopting above-mentioned technical scheme, guardrail in bridge both sides is when the preparation, the accessible is to pouring concrete in the steel mould, the hopper subassembly comprises the main part by Y shape hopper and equipment box, can block into in the guardrail steel mould, and can follow the guardrail steel mould through the direction subassembly and stabilize horizontal displacement, then to the guardrail steel mould pouring concrete of whole bridge highway section, pump the concrete through the delivery pump of watering machine, and carry to in the Y shape hopper, agitating unit makes the concrete stir, and evenly fall to in the guardrail steel mould, and evenly the pouring subassembly makes the concrete of being taken follow Y shape hopper and shift repeatedly and pour, then make the concrete in the Y shape hopper evenly fill.
Optionally, the guardrail steel mould is Y shape, the feeding die cavity has been seted up to the guardrail steel mould, feeding die cavity inner wall is connected with the laminating of Y shape hopper bottom.
By adopting the technical scheme, the concrete can be filled into the feeding die groove, so that the structure of the guardrail steel die is reinforced.
Optionally, the blanking mouth has been seted up to Y shape hopper bottom, Y shape hopper bottom mounting is equipped with two spill plates, the spill plate is connected with the laminating of feeding die cavity inner wall, last cavity and lower cavity have been seted up in the equipment box, go up the interior fixed mounting storage battery of cavity, install agitating unit in the lower cavity.
Through adopting above-mentioned technical scheme, the concrete in the Y shape hopper falls to in the feeding die cavity by the blanking mouth, and two spill-proof plates in Y shape hopper bottom can block into in the feeding die cavity.
Optionally, stirring apparatus is including the motor, in the lower cavity was located to the motor is fixed, the output and the Y shape hopper rotation of motor are connected, the output of motor is fixed to be equipped with a plurality of stirring rods, the blanking mouth department is located in the stirring rod rotation, the output transmission of motor is connected with belt mechanism, the band pulley transmission of belt mechanism upper end is connected evenly pouring subassembly.
Through adopting above-mentioned technical scheme, the output drive belt mechanism and the continuous rotation of a plurality of stirring rod of motor, belt mechanism make even pouring subassembly work, and the concrete in the Y shape hopper is then stirred in succession to a plurality of stirring rods, makes the concrete in the Y shape hopper can be smooth fall to in the feeding die cavity.
Optionally, even pouring subassembly is including the pivot, pivot and band pulley fixed connection of belt mechanism upper end, the pivot rotates and is connected with the rectangle frame, the rectangle frame is fixed to be located equipment box upper surface, the one end fixedly connected with pillar of pivot, the pillar rotates with rectangle frame inner wall to be connected, the groove of circling round has been seted up to the pillar surface, rectangular spout has been seted up on the rectangle frame, the sliding connection has L shape slide bar in groove and the rectangular spout of circling round, L shape slide bar and slide fixed connection.
Through adopting above-mentioned technical scheme, belt mechanism passes through pivot transmission swivel post and rotates in succession, and the groove of circling round makes L shape slide bar follow rectangle spout and slides repeatedly, makes the slide follow Y shape hopper and shifts repeatedly then.
Optionally, the direction subassembly is including the mount, the quantity of mount is two, and locates the both sides surface department of Y shape hopper respectively fixedly, the both ends of mount are fixedly connected with L shape seat respectively, two guide seats of equal fixedly connected with of L shape seat, two guide slots have all been seted up on the guide seat, one end and spring fixed connection in the guide slot, sliding connection has the hinge in the guide slot, the other end fixedly connected with hinge of spring, all rotate on the hinge and install the gyro wheel, gyro wheel and guardrail steel mould surface roll connection.
Through adopting above-mentioned technical scheme, the both sides surface of Y shape hopper fixed mounting mount respectively, two guide brackets of L shape seat fixed mounting are passed through respectively at the both ends of mount, and two gyro wheels that then vertically distribute can realize the extrusion guardrail steel mould under the elastic action of corresponding spring, and when Y shape hopper along guardrail steel mould displacement then, the accessible gyro wheel realizes quick, light displacement.
3. Advantageous effects
One or more technical schemes provided in the technical scheme of the utility model at least have the following technical effects or advantages: the concrete is pumped by the delivery pump of the casting machine, and is evenly conveyed into the Y-shaped hopper by the casting nozzle which repeatedly moves along the Y-shaped hopper, and a plurality of stirring rods which continuously rotate enable the concrete in the Y-shaped hopper to evenly and quickly fall into the feeding die cavity, the bottom end of the Y-shaped hopper is clamped into the feeding die cavity through the anti-overflow plate, two pairs of vertically distributed rollers are arranged at two sides of the guardrail steel die, and the rollers can realize elastic extrusion of the guardrail steel die, so that the Y-shaped hopper can quickly and lightly move along the guardrail steel die through the rollers, and then the concrete can be efficiently cast by the guardrail steel die of the whole bridge section, so that the casting machine is convenient to install and the concrete filling efficiency is more efficient.
Drawings
FIG. 1 is a schematic view showing the overall structure of a concrete casting hopper for steel casting molds of bridge guardrails according to a preferred embodiment of the present utility model;
FIG. 2 is a schematic cross-sectional view of a concrete casting hopper assembly for a steel casting mold for a bridge guardrail according to a preferred embodiment of the present utility model;
FIG. 3 is an enlarged schematic view of the concrete casting hopper of steel casting mould for bridge guardrail according to the preferred embodiment of the present utility model;
FIG. 4 is an enlarged schematic view of the structure of the concrete casting hopper of the steel casting mold for the bridge guardrail according to the preferred embodiment of the present utility model shown at B in FIG. 2;
the reference numerals in the figures illustrate: 1. guard bar steel mould; 11. a feeding die groove; 2. a hopper assembly; 21. a Y-shaped hopper; 211. a blanking port; 212. an anti-overflow plate; 22. an equipment box; 221. an upper chamber; 222. a lower chamber; 23. a slide; 24. pouring a spray head; 3. an agitation device; 31. a motor; 32. a belt mechanism; 33. a stirring rod; 4. uniformly casting the assembly; 41. a rotating shaft; 42. a rectangular frame; 421. rectangular sliding grooves; 43. a rotating column; 431. a whirl tank; 44. an L-shaped slide bar; 5. a guide assembly; 51. a fixing frame; 52. an L-shaped seat; 53. a guide seat; 531. a guide groove; 532. a spring; 533. a hinged support; 54. a roller; 6. and a storage battery.
Detailed Description
The utility model is described in further detail below with reference to the drawings.
Referring to fig. 1 and 2, an embodiment of the present utility model provides a bridge guardrail steel casting mold concrete casting hopper, comprising: the guardrail steel mould 1, guardrail steel mould 1 upper surface is connected with hopper subassembly 2, hopper subassembly 2 is including Y shape hopper 21 and equipment box 22, equipment box 22 internal fixation has storage battery 6, install agitating unit 3 and even pouring subassembly 4 on the equipment box 22, agitating unit 3 is connected with even pouring subassembly 4 transmission, Y shape hopper 21 fixedly connected with direction subassembly 5, Y shape hopper 21 upper surface sliding connection has slide 23, detachably installs the pouring shower nozzle 24 on the slide 23, the delivery pump fixed connection of pouring shower nozzle 24 and grouter, the guardrail of bridge both sides is during the preparation, the accessible is cast concrete to the steel mould in, hopper subassembly 2 comprises the main part by Y shape hopper 21 and equipment box 22, can block into guardrail steel mould 1, and can carry out stable horizontal displacement along guardrail steel mould 1 through direction subassembly 5, then to the guardrail steel mould 1 of whole bridge road section, through the delivery pump extraction concrete of watering machine, and carry in the Y shape hopper 21, agitating unit 3 makes the concrete stir, and evenly fall to guardrail steel mould 1, and even pouring subassembly 4 makes the concrete that is taken down and make the concrete that is taken along the Y shape 21 and is followed evenly and is filled in the shape that the bridge section is formed.
Referring to fig. 1 and 2, the guardrail steel die 1 is in a Y shape, the guardrail steel die 1 is provided with a feeding die groove 11, the inner wall of the feeding die groove 11 is connected with the bottom end of the Y-shaped hopper 21 in a fitting manner, and concrete can be filled into the feeding die groove 11, so that the structure of the guardrail steel die 1 is reinforced.
Referring to fig. 2 and 3, a blanking opening 211 is formed in the bottom end of the Y-shaped hopper 21, two spill plates 212 are fixedly arranged at the bottom end of the Y-shaped hopper 21, the spill plates 212 are attached to the inner wall of the feeding die cavity 11, an upper chamber 221 and a lower chamber 222 are formed in the equipment box 22, a storage battery 6 is fixedly installed in the upper chamber 221, the storage battery 6 is electrically connected with a motor 31 through a control switch, an stirring device 3 is installed in the lower chamber 222, concrete in the Y-shaped hopper 21 falls into the feeding die cavity 11 from the blanking opening 211, and the two spill plates 212 at the bottom end of the Y-shaped hopper 21 can be clamped into the feeding die cavity 11.
Referring to fig. 1 and 2, the stirring device 3 includes a motor 31, the motor 31 is fixedly disposed in a lower chamber 222, an output end of the motor 31 is rotationally connected with the Y-shaped hopper 21, a plurality of stirring rods 33 are fixedly disposed at an output end of the motor 31, the stirring rods 33 are rotationally disposed at a blanking opening 211, an output end of the motor 31 is in transmission connection with a belt mechanism 32, a belt wheel at an upper end of the belt mechanism 32 is in transmission connection with the uniform casting component 4, the belt mechanism 32 and the stirring rods 33 continuously rotate, the belt mechanism 32 enables the uniform casting component 4 to work, and the stirring rods 33 continuously stir concrete in the Y-shaped hopper 21, so that the concrete in the Y-shaped hopper 21 can smoothly fall into the feeding mold groove 11.
Referring to fig. 2 and 4, the uniform pouring assembly 4 includes a rotating shaft 41, the rotating shaft 41 is fixedly connected with a belt pulley at the upper end of the belt mechanism 32, the rotating shaft 41 is rotatably connected with a rectangular frame 42, the rectangular frame 42 is fixedly arranged on the upper surface of the equipment box 22, one end of the rotating shaft 41 is fixedly connected with a rotating column 43, the rotating column 43 is rotatably connected with the inner wall of the rectangular frame 42, a rotating groove 431 is formed in the outer surface of the rotating column 43, a rectangular sliding groove 421 is formed in the rectangular frame 42, the rotating groove 431 and the rectangular sliding groove 421 are slidably connected with an L-shaped sliding rod 44, the L-shaped sliding rod 44 is fixedly connected with the sliding seat 23, the belt mechanism 32 continuously rotates through the rotating shaft 41, the rotating groove 431 enables the L-shaped sliding rod 44 to repeatedly slide along the rectangular sliding groove 421, and then the sliding seat 23 repeatedly displaces along the Y-shaped hopper 21.
Referring to fig. 2 and 3, the guide assembly 5 includes two fixing frames 51, the number of the fixing frames 51 is two, and the fixing frames are respectively and fixedly arranged at two side surfaces of the Y-shaped hopper 21, two ends of the fixing frames 51 are respectively and fixedly connected with an L-shaped seat 52, each L-shaped seat 52 is fixedly connected with two guide seats 53, two guide grooves 531 are respectively formed in each guide seat 53, one end of each guide groove 531 is fixedly connected with a spring 532, a hinge seat 533 is slidably connected in each guide groove 531, the other end of each spring 532 is fixedly connected with a hinge seat 533, each hinge seat 533 is rotatably provided with a roller 54, each roller 54 is in rolling connection with the outer surface of the guardrail steel mold 1, the fixing frames 51 are respectively and fixedly arranged at two side surfaces of the Y-shaped hopper 21, two ends of the fixing frames 51 are respectively and fixedly provided with two guide seats 53 through the L-shaped seat 52, then the two rollers 54 which are vertically distributed can realize extrusion of the guardrail steel mold 1 under the elastic action of the corresponding springs 532, and then the Y-shaped hopper 21 can realize rapid and light displacement through the rollers 54 when the guardrail steel mold 1 is displaced.
Working principle: when the guardrail on two sides of the bridge is manufactured, concrete is pumped by a delivery pump of a casting machine and is delivered into the Y-shaped hopper 21 through the casting nozzle 24, the concrete in the Y-shaped hopper 21 falls into the feeding die cavity 11 through the blanking opening 211, when the Y-shaped hopper 21 is installed, two anti-overflow plates 212 at the bottom can be clamped into the feeding die cavity 11, the fixed frames 51 are fixedly installed on the outer surfaces of the two sides of the Y-shaped hopper 21 respectively, two ends of the fixed frames 51 are fixedly installed with two guide seats 53 through L-shaped seats 52 respectively, then two rollers 54 which are vertically distributed can extrude the guardrail steel mould 1 under the elastic action of corresponding springs 532, then the Y-shaped hopper 21 can conveniently and rapidly move along the guardrail steel mould 1 through the rollers 54, then the concrete is cast into the guardrail steel mould 1 of the whole bridge section, the output end of the motor 31 drives the belt mechanism 32 and the stirring rods 33 to rotate continuously, so that the concrete in the Y-shaped hopper 21 can smoothly fall into the feeding die cavity 11, the belt mechanism 32 drives the rotary columns 43 to rotate continuously through the rotary shafts 41, the L-shaped guide seats 53 are arranged at two ends of the fixed frames 51 respectively, then the two rollers 54 which are vertically distributed can realize extrusion of the guardrail steel mould 1 under the elastic action of corresponding springs 532, then the Y-shaped hopper 21 can move along the guardrail steel mould 1 conveniently and rapidly and lightly, and then the concrete can be filled into the Y-shaped hopper 21 through the Y-shaped steel mould 21 by the continuous slide, and can move evenly and evenly along the Y-shaped steel mould 21, and the concrete can be filled and evenly and filled into the Y-shaped 21.

Claims (6)

1. The utility model provides a bridge guardrail steel casting mould concrete pouring hopper which characterized in that: comprising: guardrail steel mould, guardrail steel mould upper surface is connected with the hopper subassembly, the hopper subassembly is including Y shape hopper and equipment box, fixedly mounted has storage battery in the equipment box, install agitating unit and even pouring subassembly on the equipment box, agitating unit is connected with even pouring subassembly transmission, Y shape hopper fixedly connected with direction subassembly, Y shape hopper upper surface sliding connection has the slide, demountable installation has the pouring shower nozzle on the slide, the delivery pump fixed connection of pouring shower nozzle and grouter.
2. A bridge railing steel casting mould concrete casting hopper as claimed in claim 1, wherein: the guardrail steel mould is Y shape, the feeding die cavity has been seted up to the guardrail steel mould, feeding die cavity inner wall is connected with the laminating of Y shape hopper bottom.
3. A bridge railing steel casting mould concrete casting hopper as claimed in claim 2, wherein: the blanking mouth has been seted up to Y shape hopper bottom, Y shape hopper bottom mounting is equipped with two spill plates, spill plate and feeding die cavity inner wall laminating are connected, last cavity and lower cavity have been seted up in the equipment box, go up the interior fixed mounting storage battery of cavity, install agitating unit in the lower cavity.
4. A bridge railing steel casting mould concrete casting hopper according to claim 3, characterized in that: the stirring device comprises a motor, the motor is fixedly arranged in the lower cavity, the output end of the motor is rotationally connected with the Y-shaped hopper, a plurality of stirring rods are fixedly arranged at the output end of the motor, the stirring rods are rotationally arranged at the blanking port, the output end of the motor is in transmission connection with a belt mechanism, and belt wheels at the upper end of the belt mechanism are in transmission connection with a uniform pouring assembly.
5. A bridge guardrail steel casting mold concrete casting hopper as claimed in claim 4 wherein: the utility model provides a device box, including evenly pouring subassembly, including the pivot, pivot and band pulley fixed connection of belt mechanism upper end, the pivot rotates and is connected with the rectangle frame, the equipment box upper surface is fixedly located to the rectangle frame, the one end fixedly connected with pillar of pivot, the pillar rotates with the rectangle frame inner wall to be connected, the groove of circling round has been seted up to the pillar surface, rectangular spout has been seted up on the rectangle frame, the sliding connection has L shape slide bar in groove and the rectangular spout of circling round, L shape slide bar and slide fixed connection.
6. A bridge railing steel casting mould concrete casting hopper as claimed in claim 1, wherein: the guide assembly comprises a fixing frame, the number of the fixing frames is two, the fixing frames are respectively and fixedly arranged at two side surfaces of a Y-shaped hopper, two ends of the fixing frame are respectively and fixedly connected with an L-shaped seat, the L-shaped seats are fixedly connected with two guide seats, two guide grooves are formed in the guide seats, one ends of the guide grooves are fixedly connected with springs, the guide grooves are slidably connected with a hinged support, the other ends of the springs are fixedly connected with the hinged support, rollers are rotatably arranged on the hinged support, and the rollers are in rolling connection with the outer surfaces of the steel moulds of the guardrails.
CN202320851366.4U 2023-04-17 2023-04-17 Bridge guardrail steel casting mould concrete pouring hopper Active CN219586574U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320851366.4U CN219586574U (en) 2023-04-17 2023-04-17 Bridge guardrail steel casting mould concrete pouring hopper

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320851366.4U CN219586574U (en) 2023-04-17 2023-04-17 Bridge guardrail steel casting mould concrete pouring hopper

Publications (1)

Publication Number Publication Date
CN219586574U true CN219586574U (en) 2023-08-25

Family

ID=87697704

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320851366.4U Active CN219586574U (en) 2023-04-17 2023-04-17 Bridge guardrail steel casting mould concrete pouring hopper

Country Status (1)

Country Link
CN (1) CN219586574U (en)

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Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: A Steel Casting Concrete Pouring Hopper for Bridge Guardrail

Effective date of registration: 20230921

Granted publication date: 20230825

Pledgee: Guangdong Shixing Rural Commercial Bank Co.,Ltd.

Pledgor: Shaoguan Fuwei Engineering Construction Co.,Ltd.

Registration number: Y2023980058089

PE01 Entry into force of the registration of the contract for pledge of patent right