CN203680510U - Floor machine with two stock bins - Google Patents

Floor machine with two stock bins Download PDF

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Publication number
CN203680510U
CN203680510U CN201420069955.8U CN201420069955U CN203680510U CN 203680510 U CN203680510 U CN 203680510U CN 201420069955 U CN201420069955 U CN 201420069955U CN 203680510 U CN203680510 U CN 203680510U
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CN
China
Prior art keywords
feed bin
glassware
pushing ram
shock
bin
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201420069955.8U
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Chinese (zh)
Inventor
詹双利
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Individual
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Individual
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Filing date
Publication date
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Priority to CN201420069955.8U priority Critical patent/CN203680510U/en
Application granted granted Critical
Publication of CN203680510U publication Critical patent/CN203680510U/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

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Abstract

The utility model belongs to the technical field of building material machines and discloses a floor machine with two stock bins. According to the floor machine with the two stock bins, an eccentric wheel is installed on a driving motor, a transmission rod is installed on the eccentric wheel and connected with a pushing rod, the middle portion of the pushing rod is connected with two bases of the front stock bin, the left side of the pushing rod is connected with a rear vibration feeder pushing rod, the right side of the pushing rod is connected with a front-and-back stock bin connecting rod, the front-and-back stock bin connecting rod penetrates through a front stock bin pushing wheel and a rear stock bin pushing wheel and is fixed in a welding mode, a horizontal pushing rod extends out of the bottom of the front stock bin and is fixed to the bottom of the front stock bin through the bases, the horizontal pushing rod and the rear stock bin pushing rod are fixed together in a welding mode through a connecting rod, and the rear stock bin pushing rod is fixed to the rear stock bin through the two bases. According to the floor machine with the two stock bins, synchronized driving of the front stock bin and the rear stock bin is adopted, extrusion feeding and vibration feeding are conducted twice in sequence, a floor can be tamped completely, and the compactness and the strength of the floor are improved effectively.

Description

A kind of bin double floor machine
Technical field
The utility model belongs to building material machinery technical field, relates to a kind of bin double floor machine.
Background technology
At present, floor machine is widely used as a kind of building material machinery, existing floor machine is all pure chamber structure, when use, under the drive of motor, raw material single port is input in shaping mould, shake one-shot forming by extruding, in extruding vibrations process, the raw material in the middle of floor are because the dynamics of extruding vibrations is inadequate, the floor packing that causes making moulding is not high, and the intensity of floor can not meet the actual demand of building trade.
Utility model content
For overcoming prior art deficiency, it is a kind of simple to operate that the utility model provides, and while making floor, can, completely by floor compacting, effectively promote the bin double floor machine of packing and the intensity of floor.
For realizing above-mentioned technical purpose, the utility model adopts following scheme: a kind of bin double floor machine, comprise a bed die frame and drive motors, it is characterized in that: eccentric wheel is installed on drive motors, drive link is installed on eccentric wheel, drive link is connected with pushing ram, the middle part of pushing ram is connected with two bases on front feed bin, the left side of pushing ram connects after shock glassware pushing ram, after shock glassware pushing ram connects after shock glassware swinging block, after shock glassware swinging block and after shock glassware connecting rod are welded and fixed, after shock glassware connecting rod is fixed on the ballast box of bed die frame tail end and is connected with after shock glassware by base, feed bin connecting rod before and after the right side of pushing ram connects, front and back feed bin connecting rod runs through front feed bin and advances wheel and the propelling of rear feed bin to take turns and be welded and fixed, front bin bottom extends horizontal pushing ram, described horizontal pushing ram is fixed on front bin bottom by base, together with horizontal pushing ram is welded and fixed with rear feed bin pushing ram by connecting rod, rear feed bin pushing ram is fixed on rear feed bin by two bases, after shock glassware is between rear feed bin and ballast box.
The below of described after shock glassware swinging block is connected with after shock glassware pushing ram by steady pin.
Described front feed bin and rear feed bin are all that top is large, the trapezium structure that bottom is little.
Described electronic shake glassware is made up of the spring on four jiaos and round iron plate and the vibration motor at spring top, and vibration motor is arranged on the centre position of four springs.
Described after shock glassware, between rear feed bin and ballast box, is formed and is suspended on after shock glassware connecting rod by two hooks by two of left and right spring and the inner core that runs through spring.
Described base two bottom sides is processed with respectively two M8 nut bore, and the top of base is processed with the through hole coordinating with outer link.
The beneficial effects of the utility model are: the utility model adopts front feed bin and rear feed bin synchronous interaction, and twice extruding feeding, twice shake material are realized in front and back, can, completely by floor compacting, effectively promote packing and the intensity of floor.
Accompanying drawing explanation
Fig. 1 is the utility model inclined shaft geodesic structure schematic diagram.
Fig. 2 is the utility model rear side schematic diagram.
Fig. 3 is the enlarged diagram of after shock glassware swinging block.
Fig. 4 is the enlarged diagram of base.
In accompanying drawing, 1, bed die frame, 2, drive motors, 3, front and back feed bin connecting rod, 4, front feed bin, 5, vibration motor, 6, electronic shake glassware, 7, base, 8, rear feed bin, 9, after shock glassware, 10, ballast box, 11, hook, 12, after shock glassware connecting rod, 13, after shock glassware swinging block, 14, after shock glassware pushing ram, 15, rear feed bin pushing ram, 16, connecting rod, 17, horizontal pushing ram, 18, pushing ram, 19, drive link, 20, eccentric wheel, 21, front feed bin advances wheel, and 22, rear feed bin advances wheel, 23, steady pin.
The specific embodiment
Shown in accompanying drawing, the utility model comprises a bed die frame 1 and drive motors 2, drive motors 2 is positioned at the head end of bed die frame 1, eccentric wheel 20 is installed on drive motors 2, drive link 19 is installed on eccentric wheel 20, drive link 19 is connected with pushing ram 18, the middle part of pushing ram 18 is connected with two bases 7 on front feed bin 4, the left side of pushing ram 18 connects after shock glassware pushing ram 14, after shock glassware pushing ram 14 connects after shock glassware swinging block 13, after shock glassware swinging block 13 and after shock glassware connecting rod 12 are welded and fixed, the below of after shock glassware swinging block 13 is connected with after shock glassware pushing ram 14 by steady pin 23, after shock glassware connecting rod 12 is fixed on the ballast box 10 of bed die frame 1 tail end and is connected with after shock glassware 9 by base 7, after shock glassware 9 is between rear feed bin 8 and ballast box 10, form and be suspended on after shock glassware connecting rod 12 by two hooks 11 by two of left and right spring and the inner core that runs through spring, feed bin connecting rod 3 before and after the right side of pushing ram 18 connects, front and back feed bin connecting rod 3 runs through front feed bin and advances wheel 21 and rear feed bin advance wheel 22 and are welded and fixed, horizontal pushing ram 17 is extended in front feed bin 4 bottoms, described horizontal pushing ram 17 is fixed on the bottom of front feed bin 4 by base 7, together with horizontal pushing ram 17 is welded and fixed with rear feed bin pushing ram 15 by connecting rod 16, rear feed bin pushing ram 15 is fixed on rear feed bin 8 by two bases 7, between rear feed bin 8 and front feed bin 4, be electronic shake glassware 6, described electronic shake glassware 6 is made up of the spring on four jiaos and round iron plate and the vibration motor 5 at spring top, and vibration motor 5 is arranged on the centre position of four springs.
When the utility model uses, after switching on power, drive motors 2 and electronic shake glassware 6 entrys into service, eccentric wheel 20 on drive motors 2 drives pushing ram 18 to move by drive link 19, before pushing ram 18, feed bin 4 bottoms are turning point, before driving, feed bin 4 horizontal directions come and go mobile, front feed bin 4 drives its extended horizontal pushing ram 17 in bottom to move, horizontal pushing ram 17 is connected with rear feed bin pushing ram 15, after rear feed bin pushing ram 15 drives, feed bin 8 horizontal directions come and go mobile, simultaneously, the after shock glassware pushing ram 14 that pushing ram 18 connects also comes and goes running, drive after shock glassware 9 vertical tremors, before front and back feed bin connecting rod 3 also drives under the propelling of pushing ram 18, feed bin advances wheel 21 and rear feed bin to advance and takes turns 22 front and back back and forth movements, now, front feed bin 4 and rear feed bin 8 are realized two storehouse synchronous interaction feedings, for convenience of feeding, it is large that front feed bin 4 and the whole designs of rear feed bin 8 become top, the trapezium structure that bottom is little, when front feed bin 4 and rear feed bin 8 are realized the synchronous interaction of two storehouses, bed die frame 1 is under drive motors 2 and powered attendant-controlled wheelchairs drive, move forward, in the time that bed die frame 1 moves, front feed bin 4 is pushed after feeding, through the vibrations compacting of electronic shake glassware 6, rear feed bin 8 come and go for the second time the vibrations of pushing feeding and pass through again after shock glassware 9, floor is all tamped, obtain highly dense solidity, high-intensity floor.

Claims (4)

1. a bin double floor machine, comprise a bed die frame and drive motors, it is characterized in that: eccentric wheel is installed on drive motors, drive link is installed on eccentric wheel, drive link is connected with pushing ram, the middle part of pushing ram is connected with two bases on front feed bin, the left side of pushing ram connects after shock glassware pushing ram, after shock glassware pushing ram connects after shock glassware swinging block, after shock glassware swinging block and after shock glassware connecting rod are welded and fixed, and after shock glassware connecting rod is fixed on the ballast box of bed die frame tail end and is connected with after shock glassware by base; Feed bin connecting rod before and after the right side of pushing ram connects, front and back feed bin connecting rod runs through front feed bin and advances wheel and the propelling of rear feed bin to take turns and be welded and fixed, front bin bottom extends horizontal pushing ram, described horizontal pushing ram is fixed on front bin bottom by base, together with horizontal pushing ram is welded and fixed with rear feed bin pushing ram by connecting rod, rear feed bin pushing ram is fixed on rear feed bin by two bases; After shock glassware is between rear feed bin and ballast box.
2. a kind of bin double floor machine as claimed in claim 1, is characterized in that: the below of described after shock glassware swinging block is connected with after shock glassware pushing ram by steady pin.
3. a kind of bin double floor machine as claimed in claim 1, is characterized in that: described front feed bin and rear feed bin are all that top is large, the trapezium structure that bottom is little.
4. a kind of bin double floor machine as claimed in claim 1, is characterized in that: described base two bottom sides is processed with respectively two M8 nut bore, and the top of base is processed with the through hole coordinating with outer link.
CN201420069955.8U 2014-02-11 2014-02-11 Floor machine with two stock bins Expired - Fee Related CN203680510U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201420069955.8U CN203680510U (en) 2014-02-11 2014-02-11 Floor machine with two stock bins

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201420069955.8U CN203680510U (en) 2014-02-11 2014-02-11 Floor machine with two stock bins

Publications (1)

Publication Number Publication Date
CN203680510U true CN203680510U (en) 2014-07-02

Family

ID=51002467

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201420069955.8U Expired - Fee Related CN203680510U (en) 2014-02-11 2014-02-11 Floor machine with two stock bins

Country Status (1)

Country Link
CN (1) CN203680510U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114012865A (en) * 2021-11-11 2022-02-08 江西荣仁电力器材有限公司 Concrete wire pole production is with pouring device convenient to separation

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114012865A (en) * 2021-11-11 2022-02-08 江西荣仁电力器材有限公司 Concrete wire pole production is with pouring device convenient to separation

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140702

Termination date: 20170211