CN213290832U - Portable UHPC mixer - Google Patents

Portable UHPC mixer Download PDF

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Publication number
CN213290832U
CN213290832U CN202021601871.6U CN202021601871U CN213290832U CN 213290832 U CN213290832 U CN 213290832U CN 202021601871 U CN202021601871 U CN 202021601871U CN 213290832 U CN213290832 U CN 213290832U
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China
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sides
uhpc
gear
platform
mobile
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CN202021601871.6U
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Chinese (zh)
Inventor
张广平
崔通
杨东来
陆国斌
宁超雄
黄旺胜
李金帝
谢书良
施敏
谭政
李俊均
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Poly Changda Engineering Co Ltd
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Poly Changda Engineering Co Ltd
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Priority to CN202021601871.6U priority Critical patent/CN213290832U/en
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Abstract

The utility model discloses a portable UHPC mixer, wherein, including portable workstation, the agitating unit that is equipped with on portable workstation and the material hoisting device that is equipped with on the portable workstation that corresponds agitating unit one side, be equipped with on portable workstation for agitating unit provide the generator of power supply and provide the hydraulic system of power supply for material hoisting device, and be equipped with the water storage tank that provides the moisturizing supply for agitating unit on portable workstation. The utility model discloses the effect of the site operation of being convenient for has.

Description

Portable UHPC mixer
Technical Field
The utility model relates to a building material processing equipment field, in particular to portable UHPC mixer.
Background
At present, when UHPC materials which are stirred in advance are applied to a construction site in the market for use, the UHPC materials can be applied to site construction only after being added with water and mixed and stirred. Traditional UHPC agitated vessel is bigger-size, is the fixed place moreover, and the unable random removal, the construction receives limitation and flexibility ratio poor, causes the waste of unnecessary manpower and equipment.
SUMMERY OF THE UTILITY MODEL
In view of the above problem, the present invention is directed to a portable UHPC mixer convenient for site operation.
In order to realize the above purpose, the utility model provides a pair of portable UHPC mixer, wherein, including portable workstation, the agitating unit who is equipped with on portable workstation and the material hoisting device who is equipped with on the portable workstation that corresponds agitating unit one side, be equipped with on portable workstation for agitating unit provide the generator of power supply and provide the hydraulic system of power supply for material hoisting device, and be equipped with the water storage tank that provides the moisturizing supply for agitating unit on portable workstation.
The movable workbench comprises a platform plate, supporting upright columns respectively arranged at two sides in front of the platform plate, and sliding wheels respectively arranged at two sides behind the platform plate;
the stirring device comprises a container body, a feeding hole arranged on the container body, and a double-shaft stirring blade structure arranged at the bottom of the middle part of the container body and used for stirring materials;
the material lifting device comprises a parallel frame arranged on a working platform corresponding to two sides of a material inlet of the container body, a lifting mechanism arranged on the parallel frame, a material lifting and supporting platform arranged on the lifting mechanism and used for placing a material barrel, and turnover mechanisms movably connected with the lifting mechanism and arranged on two sides of the material lifting and supporting platform respectively;
the lifting mechanism is connected with the hydraulic system;
the upward movement stroke of the lifting mechanism corresponds to the distance of the lifting material supporting platform to be lifted to the material inlet.
In some embodiments, the lifting mechanism comprises a first vertical rail respectively arranged on the inner sides of the parallel frames on two sides, a first layer of inner side plates respectively arranged on the first vertical rail on two sides and sliding up and down along the first vertical rail, a second vertical rail respectively arranged on the inner side surfaces of the first layer of inner side plates on two sides, a second inner side plate arranged on the second vertical rail and sliding up and down along the second vertical rail, the top frame that is equipped with between the first layer interior plate top of both sides, the first gear that is equipped with on the top frame of first layer interior plate one side, one end and first gear engagement and walk around the top frame that first gear is fixed in first layer interior plate, the other end and second interior plate fixed connection's first chain, and the high position between work platform and the top frame of first chain one side is equipped with the hydraulic ram who upwards extends the top to the top frame from work platform is vertical.
In some embodiments, the lifting and turning mechanism comprises a rotating shaft arranged between the second inner side plates on the two sides, second gears respectively arranged at the two ends of the rotating shaft, a forward and reverse rotating motor arranged on the second inner side plates on the two sides, a third gear arranged on one side of the second gear on the shaft core of the forward and reverse rotating motor, and a second chain arranged between the second gear and the third gear and used for driving and connecting the second gear and the third gear; the lifting and supporting platform is arranged on the rotating shaft; and bearings are respectively arranged between the two ends of the rotating shaft and the second inner side plates at the two sides.
In some embodiments, the material lifting and supporting platform comprises two vertical parallel supporting rods arranged on the rotating shaft, a horizontal supporting plate arranged at the end part of the supporting rods, and an inclined connecting rod arranged between the horizontal supporting plate and the supporting rods and used for reinforcing a stable integral structure.
In some embodiments, protruding rods are provided on both ends of the rotating shaft; the convex rod is sleeved with a steel wire rope, two ends of the steel wire rope are respectively connected with two sides of the horizontal supporting plate; when the material lifting and supporting platform overturns the material, the steel wire rope is wound on the rotating shaft.
In some embodiments, the horizontal supporting plate is provided with a limiting arc-shaped block for limiting the movement of the placed material barrel. An arc guardrail for preventing the placed material barrel from inclining forwards is arranged on the horizontal supporting plate.
In some embodiments, the double-shaft stirring blade structure comprises two rotating shafts horizontally arranged at the bottom of the container body, and stirring blades extending outwards are arranged on the rotating shafts; the rotating shaft is in transmission connection with a motor arranged on the generator.
In some embodiments, the container body comprises a lower layer of stirring cylinder, and a feeding bin with a feeding port is integrally connected with the upper layer of the stirring cylinder; the stirring cylinder is communicated with the water storage tank, and a water pump and a metering valve are arranged between the stirring cylinder and the water storage tank.
In some embodiments, the feed inlet is provided with a flip structure for closing the feed inlet. The cover turning structure comprises rotating arms which are respectively arranged on two sides of the feeding bin and are movably connected with the feeding bin, and bin covers which are movably connected with the rotating arms and correspond to the feeding holes in size are arranged on the end portions between the rotating arms on the two sides.
In some embodiments, the bottom surface of the platform board is provided with an inverted buckle connected with a hook of the automobile towing bracket.
The beneficial effects of the utility model are that have convenient nimble, the swift, the saving cost of transition effect of being convenient for site operation. Compared with the existing equipment, the integral structure does not need a special field, and a construction site is built in an express way, so that the integral structure has the advantages of being fast to move and convenient and flexible to construct. In addition, overall structure mainly comprises work platform and agitating unit, and material hoisting device, need not special place, and can also be connected the back through the couple that car itself was furnished with and back-off, move the job site at will and operate. The advantages of rapid movement and convenient and flexible construction are further realized. In the field construction, the UHPC dry blend which is stirred in advance can be poured into the stirring cylinder, and then the water storage tank is used for replenishing water to the stirring cylinder and stirring to ensure that the dry blend meets the requirements of the materials. Therefore, reciprocating time and construction cost are saved, and the effects of quick movement, convenient and flexible construction and cost saving are achieved.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of a stirring device of the present invention;
FIG. 3 is a schematic structural view of a movable table according to the present invention;
fig. 4 is a schematic view of a partial structure of the material lifting device of the present invention;
fig. 5 is a schematic view of a partial structure of the middle lifting mechanism of the present invention.
Fig. 6 is a schematic view of a partial structure of the turnover mechanism of the present invention;
fig. 7 is a schematic view of a partial structure at another viewing angle of the middle lifting mechanism of the present invention.
Detailed Description
The following describes the present invention in further detail with reference to the accompanying drawings.
As shown in fig. 1-7, a mobile UHPC blender comprises a mobile workbench 01, a blending device 02 provided on the mobile workbench 01, a material lifting device 03 provided on the mobile workbench 01 corresponding to one side of the blending device 02, a generator 04 provided on the mobile workbench 01 for providing a power source for the blending device 02, and a water storage tank 05 provided on the mobile workbench 01 for supplying water to the blending device 02. The movable table 01 includes a deck plate 11, support columns 12 provided at both sides of the front of the deck plate 11, respectively, and a sliding wheel 13 provided at both sides of the rear of the deck plate 11, respectively. The stirring device 02 comprises a container body 21, a feed inlet 22 arranged on the container body 21, and a double-shaft stirring blade structure 23 arranged at the bottom of the middle part of the container body 21 and used for stirring materials. The material lifting device 03 comprises a parallel frame 31 arranged on a working platform corresponding to two sides of the feed port 22 of the container body 21, a lifting mechanism 32 arranged on the parallel frame 31, a material lifting and supporting platform 33 arranged on the lifting mechanism 32 and used for placing a material barrel, and turnover mechanisms 34 movably connected with the lifting mechanism 32 and arranged on two sides of the material lifting and supporting platform 33 respectively. The lifting mechanism is connected with the hydraulic system. The upward movement stroke of the elevating mechanism 32 corresponds to the distance by which the lifter table 33 is lifted to the throat 22.
The lifting mechanism 32 comprises a first vertical rail 321 respectively arranged on the inner sides of the parallel frames 31 on both sides, a first layer of inner side plates 322 respectively arranged on the first vertical rail 321 on both sides and sliding up and down along the first vertical rail 321, a second vertical rail 323 respectively arranged on the inner side surfaces of the first layer of inner side plates 322 on both sides, a second inner side plate 324 arranged on the second vertical rail 323 and sliding up and down along the second vertical rail 323, a top frame 325 arranged between the tops of the first layer of inner side plates 322 on both sides, a first gear 326 arranged on the top frame 325 on one side of the first layer of inner side plates 322, and a top frame 325 one end of which is engaged with the first gear 326 and fixed on the first layer of inner side plates 322 by bypassing the first gear 326, a first chain 327 with the other end fixedly connected with the second inner side plate 324, and a hydraulic ejector rod 328 which extends vertically and upwards from the working platform to be ejected onto the top frame 325 is arranged at the height position between the working platform on one side of the first chain 327 and the top frame 325.
The turnover mechanism 34 includes a rotating shaft 341 disposed between the second inner side plates 324 on both sides, second gears 342 disposed at both ends of the rotating shaft 341, forward and reverse rotating motors 343 disposed on the second inner side plates 324 on both sides, a third gear 344 disposed on a shaft core of the forward and reverse rotating motor 343 and disposed on one side of the second gear 342, and a second chain 345 disposed between the second gear 342 and the third gear 344 and drivingly connecting the second gear 342 and the third gear 344. The material lifting and supporting table 33 is disposed on the rotating shaft 341, and bearings are disposed between both ends of the rotating shaft 341 and the second inner side plates 324 on both sides. The material lifting and supporting table 33 includes two vertical parallel supporting rods 331 provided on the rotating shaft 341, a horizontal supporting plate 332 provided on an end portion of the supporting rods 331, and an inclined connecting rod 333 provided between the horizontal supporting plate 332 and the supporting rods 331 for reinforcing a stable integral structure. Convex rods are arranged at two ends of the rotating shaft; the convex rod is sleeved with a steel wire rope, two ends of the steel wire rope are respectively connected with two sides of the horizontal supporting plate; when the material lifting and supporting platform overturns the material, the steel wire rope is wound on the rotating shaft. The horizontal supporting plate 332 is provided with a limiting arc block 334 which limits the movement of the placed material barrel. The horizontal supporting plate 332 is provided with an arc-shaped guardrail 335 for preventing the placed material barrel from inclining forwards. The double-shaft stirring blade structure 23 comprises two rotating shafts horizontally arranged at the bottom of the container body 21, and stirring blades extending outwards are arranged on the rotating shafts; the rotating shaft is in transmission connection with a motor arranged on the generator. The container body 21 comprises a lower-layer stirring cylinder 211 and a feeding bin 212 with a feeding port 22, which is integrally connected with the upper layer of the stirring cylinder 211; the mixing tank 211 is communicated with the water storage tank 05, and a water pump and a metering valve are arranged between the mixing tank and the water storage tank. A flip structure for sealing the feed inlet is arranged at the position of the feed inlet. The flip structure comprises rotating arms 213 which are respectively arranged at two sides of the feeding bin 212 and are movably connected with the feeding bin 212, and bin covers which are movably connected with the rotating arms 213 and have the size corresponding to the feeding port 22 are arranged at the end parts between the rotating arms 213 at the two sides. The bottom surface of the platform plate 11 is provided with an inverted buckle 06 connected with the automobile hook.
During the application, overall structure does not need special place for current equipment, and the job site is built in the express delivery, has the advantage that remove swiftly and construction convenience is nimble. In addition, overall structure mainly comprises work platform and agitating unit, and material hoisting device, need not special place, and can also be connected the back through the couple that car itself was furnished with and back-off, move the job site at will and operate. The advantages of rapid movement and convenient and flexible construction are further realized. In the field construction, the UHPC dry blend which is stirred in advance can be poured into the stirring cylinder, and then the water storage tank is used for replenishing water to the stirring cylinder and stirring to ensure that the dry blend meets the requirements of the materials. Therefore, reciprocating time and construction cost are saved, and the effects of quick movement, convenient and flexible construction and cost saving are achieved.
What has been described above are only some embodiments of the invention. For those skilled in the art, without departing from the inventive concept, several modifications and improvements can be made, which are within the scope of the invention.

Claims (10)

1. A movable UHPC stirrer is characterized by comprising a movable workbench, a stirring device arranged on the movable workbench, a material lifting device arranged on the movable workbench corresponding to one side of the stirring device, a generator arranged on the movable workbench and used for providing power for the stirring device, a hydraulic system arranged on the movable workbench and used for providing power for the material lifting device, and a water storage tank arranged on the movable workbench and used for providing water for the stirring device;
the movable workbench comprises a platform plate, supporting upright columns respectively arranged at two sides in front of the platform plate, and sliding wheels respectively arranged at two sides behind the platform plate;
the stirring device comprises a container body, a feeding hole arranged on the container body, and a double-shaft stirring blade structure arranged in the middle of the container and used for stirring materials;
the material lifting device comprises a parallel frame arranged on a working platform corresponding to two sides of a material inlet of the container body, a lifting mechanism arranged on the parallel frame, a material lifting and supporting platform arranged on the lifting mechanism and used for placing a material barrel, and turnover mechanisms movably connected with the lifting mechanism and arranged on two sides of the material lifting and supporting platform respectively;
the lifting mechanism is connected with a hydraulic system;
the upward movement stroke of the lifting mechanism corresponds to the distance of the lifting material supporting platform to be lifted to the material inlet.
2. A mobile UHPC blender according to claim 1 wherein, elevating system include the first vertical track that is equipped with respectively on the parallel frame inboard of both sides, be equipped with respectively on the first vertical track of both sides along the first vertical track first layer interior plate that slides from top to bottom, the second vertical track that is equipped with respectively on the medial surface of both sides first layer interior plate, be equipped with on the vertical track of second interior plate that slides from top to bottom along the vertical track of second, the roof-rack that is equipped with between the first layer interior plate top of both sides, the first gear that is equipped with on the roof-rack of first layer interior plate one side, one end and first gear engagement just walk around the roof-rack that first gear is fixed in first layer interior plate, the other end and second interior plate fixed connection's first chain, and the high position between work platform of first chain one side and roof-rack is equipped with and upwards extends the hydraulic ram on the roof-rack from the work platform is vertical.
3. The mobile UHPC mixer according to claim 1, wherein the turnover mechanism comprises a rotating shaft arranged between the second inner side plates at two sides, second gears arranged at two ends of the rotating shaft respectively, a forward and reverse rotating motor arranged on the second inner side plates at two sides, a third gear arranged at one side of the second gear on the shaft core of the forward and reverse rotating motor, and a second chain arranged between the second gear and the third gear and used for driving and connecting the second gear and the third gear;
the lifting and supporting platform is arranged on the rotating shaft;
and bearings are respectively arranged between the two ends of the rotating shaft and the second inner side plates at the two sides.
4. A mobile UHPC mixer according to claim 3 wherein the material lifting and supporting platform comprises two vertically parallel support bars on the axis of rotation, a horizontal support plate at the end of the support bars, and diagonal tie bars between the horizontal support plate and the support bars to strengthen the stable overall structure.
5. A mobile UHPC mixer according to claim 4 wherein the rotatable shaft is provided with protruding bars at each end; the convex rod is sleeved with a steel wire rope, two ends of the steel wire rope are respectively connected with two sides of the horizontal supporting plate; when the material lifting and supporting platform overturns the material, the steel wire rope is wound on the rotating shaft.
6. The mobile UHPC mixer according to claim 4 wherein the horizontal support plate is provided with a limiting arc block for limiting the movement of the placed material barrel;
and the horizontal supporting plate is provided with an arc-shaped guardrail for preventing the placed material barrel from inclining forwards.
7. A mobile UHPC mixer according to claim 1 wherein the twin shaft agitator blade configuration comprises two shafts disposed horizontally at the bottom of the vessel body and having outwardly extending agitator blades disposed thereon; the rotating shaft is in transmission connection with a motor arranged on the generator.
8. The mobile UHPC mixer according to claim 1 or 7, wherein the container body comprises a lower mixing tank, and a feeding bin with a feeding port is integrally connected with the upper layer of the mixing tank; the stirring cylinder is communicated with the water storage tank, and a water pump and a metering valve are arranged between the stirring cylinder and the water storage tank.
9. The mobile UHPC mixer of claim 8 wherein the feed inlet is positioned with a flip structure closing the feed inlet;
the flip structure include be equipped with respectively in feeding storehouse both sides with feeding storehouse swing joint's swinging boom, and be equipped with on the tip between the swinging boom of both sides with swinging boom swing joint and the corresponding storehouse lid of size and feed inlet.
10. A mobile UHPC mixer according to claim 8 wherein the underside of the platform is provided with an undercut for engaging a hook on a truck trailer.
CN202021601871.6U 2020-08-05 2020-08-05 Portable UHPC mixer Active CN213290832U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021601871.6U CN213290832U (en) 2020-08-05 2020-08-05 Portable UHPC mixer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021601871.6U CN213290832U (en) 2020-08-05 2020-08-05 Portable UHPC mixer

Publications (1)

Publication Number Publication Date
CN213290832U true CN213290832U (en) 2021-05-28

Family

ID=76023561

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021601871.6U Active CN213290832U (en) 2020-08-05 2020-08-05 Portable UHPC mixer

Country Status (1)

Country Link
CN (1) CN213290832U (en)

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