CN214447403U - From material loading removal mixing transport machine - Google Patents

From material loading removal mixing transport machine Download PDF

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Publication number
CN214447403U
CN214447403U CN202022840762.6U CN202022840762U CN214447403U CN 214447403 U CN214447403 U CN 214447403U CN 202022840762 U CN202022840762 U CN 202022840762U CN 214447403 U CN214447403 U CN 214447403U
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China
Prior art keywords
defeated
arm
saddle
base
support
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CN202022840762.6U
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Chinese (zh)
Inventor
陈传洪
陈财
李群峰
蓝家树
肖燕
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Chongqing Honggong Engineering Machinery Co ltd
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Chongqing Honggong Engineering Machinery Co ltd
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Abstract

The utility model provides a remove stirring cargo airplane from material loading, include traveling system, take off material system, mixing system and defeated material system, traveling system includes saddle and chassis, the saddle passes through the hinge pin and is connected with the chassis is articulated, mixing system sets up on the chassis, take off the material system setting at the saddle front end, defeated material system sets up on the saddle, defeated material system sets up under taking off the material system, the feed inlet setting of defeated material system is in the front end and the downward sloping setting of saddle, mixing system's pan feeding mouth is aimed at to the discharge gate of defeated material system. Make to feed simple more fast, and use the integral type shovel to feed to a multimachine is replaced to a quick-witted, need not more equipment, and the shovel dress is more swift, enables the slag yard clearance cleaner simultaneously.

Description

From material loading removal mixing transport machine
Technical Field
The utility model relates to an engineering machine tool technical field, concretely relates to remove mixing conveyer from material loading.
Background
In the industries of house construction, road construction site and the like, concrete materials are required to be mixed. During construction, stirring and mixing are required on site. At present, the common stirring modes are as follows: 1. a stirring station: a special field and various equipment investments are needed, so that waste is caused, and cost saving is not facilitated; 2. manual stirring is used: the labor intensity is high, the efficiency is low, the mixing is not uniform, the field cleaning is time-consuming and labor-consuming, and the cleaning is not clean; 3. a mixer truck: on-site materials cannot be directly used for stirring.
SUMMERY OF THE UTILITY MODEL
In view of this, the to-be-solved problem of the utility model is to provide a remove mixing transport machine from material loading for it is simple quick more to feed, and uses the integral type shovel to feed, replaces the multimachine with a machine, need not more equipment, and the shovel dress is more swift, enables the slag yard clearance cleaner simultaneously.
The utility model discloses an above-mentioned technical problem is solved to following technical means: the utility model provides a remove stirring cargo airplane from material loading, include traveling system, take off material system, mixing system and defeated material system, traveling system includes saddle and chassis, the saddle passes through the hinge pin and is connected with the chassis is articulated, mixing system sets up on the chassis, take off the material system setting at the saddle front end, defeated material system sets up on the saddle, defeated material system sets up under taking off the material system, the feed inlet setting of defeated material system is in the front end and the downward sloping setting of saddle, mixing system's pan feeding mouth is aimed at to the discharge gate of defeated material system.
Further, the mixing system includes base, support, agitator motor and supporting wheel, the base passes through the rotary disk setting on the chassis, the agitator passes through the support setting on the base, agitator motor and supporting wheel set up respectively at the support both ends, the tail end of agitator and agitator motor's output shaft, the one end that agitator motor was kept away from to the agitator is provided with annular guide rail, the rotatable setting of annular guide rail is on the supporting wheel, the front end of agitator is provided with the pan feeding mouth, the downside of pan feeding mouth still is provided with the blown down tank.
Further, be provided with the swing hydro-cylinder of drive support on the base, swing hydro-cylinder one end is articulated to be set up on the base that the other end is articulated to be set up on the support, the support is kept away from that mixing cylinder one end is articulated to be set up on the base, thereby the agitator can swing in vertical direction and change the height of pan feeding mouth, the spout is articulated to be set up on the support, still be provided with the locating pin that is used for injecing the spout angle on the support.
Further, defeated material system includes defeated material frame, defeated silo and scraper bowl, defeated material frame articulates and sets up on the saddle, be provided with on the saddle and be used for driving defeated material frame pivoted support cylinder, defeated silo sets up on defeated material frame, the front end in defeated silo is the pan feeding mouth, the scraper bowl sets up on defeated material frame, the scraper bowl is connected with defeated silo, the discharge gate of defeated silo and mixing system's pan feeding mouth intercommunication.
Further, a material conveying belt is arranged in the material conveying groove, a rotating motor for driving the material conveying belt to rotate is arranged on the material conveying frame, the bucket is in a shape of an inverted Chinese character 'ba' with a large front part and a small back part, and baffles are arranged on two sides of the bucket and connected with side plates on two sides of the material conveying groove.
Further, the material system of pushing off includes base, support arm, big arm, forearm and lies prone to fight, the base sets up on the saddle, defeated material system sets up in the middle of the base, the support arm rotates and sets up on the base, the articulated setting of one end of big arm is on the support arm, the articulated setting of one end of forearm is kept away from support arm one end at big arm, it is articulated to set up and keeps away from big arm one end at the forearm to lie prone to fight.
Further, be provided with on the support arm and be used for driving big arm wobbling third hydro-cylinder, be provided with on the big arm and be used for driving forearm pivoted second hydro-cylinder, be provided with on the forearm and be used for driving the first hydro-cylinder of the swing of fighting of lying prone, be provided with on the support arm and be used for driving support arm pivoted horizontal swing hydro-cylinder.
Furthermore, the support arm is rotatably arranged on the base through a slewing bearing, and a slewing reducer for driving the support arm to swing is arranged on the base.
Further, a diesel engine and a cab for providing power are arranged on the vehicle seat.
According to the above technical scheme, the beneficial effects of the utility model are that: the utility model provides a remove stirring cargo airplane from material loading, include traveling system, take off material system, mixing system and defeated material system, traveling system includes saddle and chassis, the saddle passes through the hinge pin and is connected with the chassis is articulated, mixing system sets up on the chassis, take off the material system setting at the saddle front end, defeated material system sets up on the saddle, defeated material system sets up under taking off the material system, the feed inlet setting of defeated material system is in the front end and the downward sloping setting of saddle, mixing system's pan feeding mouth is aimed at to the discharge gate of defeated material system. Make to feed simple more fast, and use the integral type shovel to feed to a multimachine is replaced to a quick-witted, need not more equipment, and the shovel dress is more swift, enables the slag yard clearance cleaner simultaneously.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below. Throughout the drawings, like elements or portions are generally identified by like reference numerals. In the drawings, elements or portions are not necessarily drawn to scale.
Fig. 1 is a three-dimensional structure view of the self-feeding mobile mixing conveyor provided by the utility model;
FIG. 2 is a side view of FIG. 1;
fig. 3 is a three-dimensional structure diagram of another view angle of the self-feeding mobile mixing conveyor provided by the present invention;
FIG. 4 is a partial enlarged view of the portion A of FIG. 3;
FIG. 5 is a partial enlarged view of the position of the supporting wheels of the self-feeding mobile mixing conveyor according to the present invention;
reference numerals: 1-a walking system; 2-a material raking system; 3-a material conveying system; 4-a stirring system; 11-a vehicle seat; 12-a chassis; 21-a base; 22-a support arm; 23-big arm; 24-small arm; 25-groveling; 26-a yaw oil cylinder; 27-a first cylinder; 28-a second cylinder; 29-a third cylinder; 31-a material conveying frame; 32-a material conveying groove; 33-a bucket; 311-support oil cylinder; 331-a baffle; 321-side plates; 41-a discharge chute; 42-a stirring barrel; 43-stirring motor; 44-rotating disc; 45-base; 421-ring rail; 46-a support wheel; 47-a scaffold; 48-swing oil cylinder.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only examples, and the protection scope of the present invention is not limited thereby.
It should be noted that the embodiments and features of the embodiments in the present application may be combined with each other without conflict.
In the description of the application, it is to be understood that the terms "central," "longitudinal," "lateral," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like are used in the orientation or positional relationship indicated in the drawings for convenience in describing the application and for simplicity in description, and are not intended to indicate or imply that the referenced devices or elements must have a particular orientation, be constructed in a particular orientation, and be operated in a particular manner, and are not to be considered limiting of the application. Furthermore, the terms "first", "second", etc. are used for descriptive purposes only and are not to be construed as indicating or implying relative importance or implicitly indicating the number of technical features indicated. Thus, a feature defined as "first," "second," etc. may explicitly or implicitly include one or more of that feature. In the description of the present application, "a plurality" means two or more unless otherwise specified.
In the description of the present application, it is to be noted that, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, e.g., as meaning either a fixed connection, a removable connection, or an integral connection; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art through specific situations.
An embodiment, please refer to fig. 1-2, the utility model provides a remove mixing conveyer from material loading, including traveling system 1, take off material system 2, mixing system 4 and defeated material system 3, traveling system 1 includes saddle 11 and chassis 12, saddle 11 is connected through articulated round pin and chassis 12 is articulated, mixing system 4 sets up on chassis 12, it sets up at saddle 11 front end to take off material system 2, defeated material system 3 sets up on saddle 11, defeated material system 3 sets up under taking off material system 2, the feed inlet setting of defeated material system 3 is at the front end of saddle 11 and downward sloping setting, the pan feeding mouth of mixing system 4 is aimed at to the discharge gate of defeated material system 3, be provided with the diesel engine and the driver's cabin that are used for providing power on the saddle 11. In the using process, the needed stone, sand, cement and the like are shoveled to the front end of the material conveying system 3 through the material raking system 2, meanwhile, the material is shoveled into the material conveying groove 32 at the front end of the material conveying system 3 through the forward walking of the transport bureau, and the needed stirring materials are conveyed to the stirring system 4 through the material conveying system 3 to be stirred and conveyed at the same time. Make to feed simple more fast, and use the integral type shovel to feed to a multimachine is replaced to a quick-witted, need not more equipment, and the shovel dress is more swift, enables the slag yard clearance cleaner simultaneously.
As a further improvement to the above technical scheme the stirring system includes base, support, agitator motor and supporting wheel, base 45 passes through rotary disk 44 and sets up on chassis 12, agitator 42 passes through the support setting on base 45, agitator motor and supporting wheel set up respectively at the support both ends, the tail end of agitator and agitator motor's output shaft, the one end that agitator motor was kept away from is provided with the annular rail around agitator a week, the rotatable setting of annular rail is on the supporting wheel, the front end of agitator 42 is provided with the pan feeding mouth, the downside of pan feeding mouth still is provided with blown down tank 41. Be provided with spiral stirring vane on the inner wall of agitator, stir the compounding through rotating agitator 42, rotate agitator 42 ninety degrees left or right through rotary disk 44 during the blowing, then with agitator counter-rotation can be with the material of stirring from blown down tank 41 outflow. The supporting wheels are provided with two pairs, and the two pairs of supporting wheels are symmetrically arranged along the axis of the stirring barrel.
As a further improvement to the above technical scheme, be provided with the swing hydro-cylinder of drive support on the base 45, swing hydro-cylinder one end is articulated to be set up on the base that the other end is articulated to be set up on the support, the support is kept away from the articulated setting on the base of stirring hydro-cylinder one end, thereby agitator 42 can be swung in vertical direction and change the height of pan feeding mouth, the spout is articulated to be set up on the support, still be provided with the locating pin that is used for injecing the spout angle on the support. Stir the material in the agitator 42 when the agitator corotation, the pan feeding mouth that passes through the agitator 42 top with the stirring material in the agitator 42 when the agitator reversal discharges, rethread blown down tank 41 falls into corresponding position, simultaneously pass through the support rotation with agitator 42 and set up on base 45, the flexible low side that changes agitator 42 through the swing hydro-cylinder and the difference in height on top, the height that highly is less than the top of bottom when stirring, be less than the height of low side with the altitude mixture control on top when row material, make the material discharge more easily, simultaneously through the angle that changes between blown down tank 41 and the agitator 42, thereby change the inclination of blown down tank 41, restriction ejection of compact position when making things convenient for the ejection of compact.
As a further improvement to the above technical solution, the material conveying system 3 includes a material conveying frame 31, a material conveying groove 32 and a bucket 33, the material conveying frame 31 is hinged to a seat 11, a supporting cylinder 311 for driving the material conveying frame 31 to rotate is arranged on the seat 11, the material conveying groove 32 is arranged on the material conveying frame 31, the front end of the material conveying groove 32 is a material inlet, the bucket 33 is arranged on the material conveying frame 31, the bucket 33 is connected with the material conveying groove 32, and a material outlet of the material conveying groove 32 is communicated with a material inlet of the stirring system 4. After the price material is groveled to the front end of the bucket 33 through the material raking system 2, the material is shoveled into the bucket 33 through the forward walking of the transportation stage, and the material is conveyed into the stirring barrel 42 through the material conveying groove 32. The inclination angle of the material conveying frame 31 is changed through the extension and contraction of the supporting oil cylinder 311, and when the material is shoveled, the material conveying frame 31 is swung to enable the front end of the bucket 33 to be attached to the ground to shovel the materials; when the transporter walks, the supporting oil cylinder 311 drives the material conveying frame 31 to rotate, so that the bucket 33 leaves the ground from the front end of the material conveying groove 32, and the transporter can walk conveniently.
As a further improvement of the above technical solution, a material conveying belt is arranged in the material conveying groove 32, a rotating motor for driving the material conveying belt to rotate is arranged on the material conveying frame 31, the bucket 33 is in a shape of an inverted eight with a large front and a small back, the two sides of the bucket 33 are provided with baffles 331, and the baffles 331 are connected with the side plates 321 on the two sides of the material conveying groove 32. The material at the feeding port of the conveyer belt is conveyed into the stirring barrel 42 to be stirred by the movement of the conveyer belt driven by the rotating motor. The bucket 33 is arranged to be inverted splayed with a large front part and a small back part, so that the material can be conveniently shoveled, and the material can not be scattered when the material is shoveled.
As the further improvement to above-mentioned technical scheme, the material system 2 of raking off includes base 21, support arm 22, big arm 23, forearm 24 and the fill 25 of lying prone, base 21 sets up on saddle 11, defeated material system 3 sets up in the middle of base 21, support arm 22 rotates and sets up on base 21, the articulated setting of one end of big arm 23 is on support arm 22, the articulated setting of one end of forearm 24 is kept away from support arm 22 one end at big arm 23, the articulated setting of fill 25 of lying prone is kept away from big arm 23 one end at forearm 24.
As a further improvement to the above technical solution, the supporting arm 22 is provided with a third cylinder 29 for driving the large arm 23 to swing, the large arm 23 is provided with a second cylinder 28 for driving the small arm 24 to rotate, the small arm 24 is provided with a first cylinder 27 for driving the groveling bucket 25 to swing, and the supporting arm 22 is provided with a yaw cylinder 26 for driving the supporting arm 22 to rotate. The supporting arm 22 is arranged on the base 21 through a rotating shaft, and then the swinging of the supporting arm 22 is driven through the expansion and contraction of the yaw oil cylinder 26, preferably, the yaw oil cylinder 26 is arranged in two, and the two yaw oil cylinders 26 are symmetrically arranged on two sides of the supporting arm 22, so that the two yaw oil cylinders 26 alternately expand and contract to drive the swinging of the supporting arm 22. Thereby drive through first hydro-cylinder 27, second hydro-cylinder 28 and third hydro-cylinder 29 respectively and lie prone fill 25, forearm 24 and big arm 23 and go on the swing in vertical direction and lie prone the material.
In the second embodiment, the supporting arm 22 is rotatably disposed on the base 21 through a pivoting support, and a pivoting reducer for driving the supporting arm 22 to pivot is disposed on the base 21. Through setting up slewing bearing and slewing reducer drive support arm 22's swing to thereby drive big arm 23 and forearm 24 and lie prone the swing of fill 25 and can shovel the front and back of scraper bowl 33 with materials such as required grit and cement, then shovel the conveyer belt through scraper bowl 33 with the material on.
Finally, it should be noted that: the above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the scope of the embodiments of the present invention, and are intended to be covered by the claims and the specification.

Claims (9)

1. The utility model provides a remove mixing transport machine from material loading which characterized in that: including traveling system (1), take off material system (2), mixing system (4) and defeated material system (3), traveling system (1) includes saddle (11) and chassis (12), saddle (11) are connected through articulated round pin and chassis (12) are articulated, mixing system (4) set up on chassis (12), take off material system (2) and set up at saddle (11) front end, defeated material system (3) set up on saddle (11), defeated material system (3) set up under taking off material system (2), the feed inlet setting of defeated material system (3) is at the front end and the downward sloping setting of saddle (11), the pan feeding mouth of mixing system (4) is aimed at to the discharge gate of defeated material system (3).
2. The self-loading mobile mixing conveyor of claim 1, wherein: the stirring system comprises a base, a support, a stirring barrel, a stirring motor and supporting wheels, wherein the base (45) is arranged on a chassis (12) through a rotating disk (44), the stirring barrel (42) is arranged on the base (45) through the support, the stirring motor and the supporting wheels are respectively arranged at two ends of the support, the tail end of the stirring barrel is connected with an output shaft of the stirring motor, one end, away from the stirring motor, of the stirring barrel is provided with an annular guide rail around the stirring barrel, the annular guide rail is rotatably arranged on the supporting wheels, the front end of the stirring barrel (42) is provided with a feeding port, and the lower side of the feeding port is further provided with a discharge chute (41).
3. The self-loading mobile mixing conveyor of claim 2, wherein: be provided with the swing hydro-cylinder of drive support on base (45), swing hydro-cylinder one end is articulated to be set up on the base that the other end is articulated to be set up on the support, the support is kept away from that mixing cylinder one end is articulated to be set up on the base, thereby agitator (42) can be swung in vertical direction and change the height of pan feeding mouth, the spout is articulated to be set up on the support, still be provided with the locating pin that is used for injecing the spout angle on the support.
4. The self-loading mobile mixing conveyor of claim 1, wherein: defeated material system (3) are including defeated work or material rest (31), defeated material groove (32) and scraper bowl (33), defeated work or material rest (31) are articulated to be set up on saddle (11), be provided with on saddle (11) and be used for driving defeated work or material rest (31) pivoted support cylinder (311), defeated material groove (32) set up on defeated work or material rest (31), the front end of defeated material groove (32) is the pan feeding mouth, scraper bowl (33) set up on defeated work or material rest (31), scraper bowl (33) are connected with defeated material groove (32), the discharge gate of defeated material groove (32) and the pan feeding mouth intercommunication of mixing system (4).
5. The self-loading mobile mixing conveyor of claim 4, wherein: the material conveying device is characterized in that a material conveying belt is arranged in the material conveying groove (32), a rotating motor for driving the material conveying belt to rotate is arranged on the material conveying frame (31), the bucket (33) is in a shape of an inverted Chinese character 'ba' with a large front and a small back, baffles (331) are arranged on two sides of the bucket (33), and the baffles (331) are connected with side plates (321) on two sides of the material conveying groove (32).
6. The self-loading mobile mixing conveyor of claim 1, wherein: the material raking system (2) comprises a base (21), a supporting arm (22), a large arm (23), a small arm (24) and a prone hopper (25), the base (21) is arranged on a saddle (11), the material conveying system (3) is arranged in the middle of the base (21), the supporting arm (22) is rotatably arranged on the base (21), one end of the large arm (23) is hinged to the supporting arm (22), one end of the small arm (24) is hinged to the large arm (23) and is far away from one end of the supporting arm (22), and the prone hopper (25) is hinged to the small arm (24) and is far away from one end of the large arm (23).
7. The self-loading mobile mixing conveyor of claim 6, wherein: be provided with on support arm (22) and be used for driving big arm (23) wobbling third hydro-cylinder (29), be provided with on big arm (23) and be used for driving forearm (24) pivoted second hydro-cylinder (28), be provided with on forearm (24) and be used for driving the first hydro-cylinder (27) of the swing of fill (25), be provided with on support arm (22) and be used for driving support arm (22) pivoted yaw hydro-cylinder (26).
8. The self-loading mobile mixing conveyor of claim 6, wherein: the supporting arm (22) is rotatably arranged on the base (21) through a slewing bearing, and a slewing reducer for driving the supporting arm (22) to swing is arranged on the base (21).
9. The self-feeding mobile mixing conveyor as claimed in any one of claims 1 to 8, wherein: the seat (11) is provided with a diesel engine and a cab for providing power.
CN202022840762.6U 2020-12-02 2020-12-02 From material loading removal mixing transport machine Active CN214447403U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022840762.6U CN214447403U (en) 2020-12-02 2020-12-02 From material loading removal mixing transport machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022840762.6U CN214447403U (en) 2020-12-02 2020-12-02 From material loading removal mixing transport machine

Publications (1)

Publication Number Publication Date
CN214447403U true CN214447403U (en) 2021-10-22

Family

ID=78185369

Family Applications (1)

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CN202022840762.6U Active CN214447403U (en) 2020-12-02 2020-12-02 From material loading removal mixing transport machine

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CN (1) CN214447403U (en)

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