CN219902742U - Concrete stirring equipment - Google Patents

Concrete stirring equipment Download PDF

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Publication number
CN219902742U
CN219902742U CN202321262800.1U CN202321262800U CN219902742U CN 219902742 U CN219902742 U CN 219902742U CN 202321262800 U CN202321262800 U CN 202321262800U CN 219902742 U CN219902742 U CN 219902742U
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CN
China
Prior art keywords
connecting rod
thorns
scratching
bag
mixing plant
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CN202321262800.1U
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Chinese (zh)
Inventor
戴书炜
陈春星
谢华
毛双富
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Fujian Gaohua New Building Materials Development Co ltd
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Fujian Gaohua New Building Materials Development Co ltd
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Priority to CN202321262800.1U priority Critical patent/CN219902742U/en
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Publication of CN219902742U publication Critical patent/CN219902742U/en
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Abstract

The utility model relates to the technical field of concrete processing equipment, and improves the problem of inconvenient blanking in the prior art, and discloses concrete stirring equipment. According to the utility model, the powder bag is placed on the supporting rod, so that the oblique thorns and the scratching thorns on the bag breaking rod penetrate into the powder bag, the driving assembly is controlled to rotate the scratching thorns, so that the scratching thorns move at the broken opening of the powder bag, the broken opening of the powder bag is enlarged, and the powder can flow out of the powder bag with enough gaps.

Description

Concrete stirring equipment
Technical Field
The utility model relates to the technical field of concrete processing equipment, in particular to concrete stirring equipment.
Background
The cement stirring device is mechanical equipment for stirring cement mortar, and can uniformly stir materials by means of the cement stirring device in the stone production process, so that the production efficiency can be improved.
The prior art includes mixer body and defeated hopper, defeated hopper one end and mixer body intercommunication, defeated hopper opening part array is provided with a plurality of bracing pieces, sets up on the bracing piece upper portion of defeated hopper opening middle part position and is provided with a plurality of thorns, and the operating personnel is through putting into the powder bag on a plurality of bracing pieces, makes the thorns puncture broken powder bag to make in the powder bag cement powder flow to the mixer body, a plurality of bracing pieces are arranged in preventing that the powder bag from falling into in the defeated hopper.
Aiming at the related technology, after the powder bag is punctured by the thorns, the thorns can seal the break, and operators need to lift the powder bag so that cement flows out of the break, which is inconvenient.
Disclosure of Invention
In order to solve the problem of inconvenient discharging in the prior art, the utility model provides concrete stirring equipment.
The following technical scheme is adopted:
the utility model provides a concrete mixing equipment, includes mixer body and defeated hopper, defeated hopper opening part array is provided with a plurality of bracing pieces, defeated hopper still be provided with the broken bag pole that the bracing piece is in on the coplanar, broken bag pole deviates from one side of defeated hopper is provided with a plurality of thorns and a plurality of thorns of drawing along length direction interval, draw the thorn rotate connect in on the broken bag pole, defeated hopper is provided with a plurality of the drive assembly who draws thorn synchronous rotation.
Through adopting above-mentioned technical scheme, through placing the powder bag on the bracing piece, make the oblique thorn on the broken bag pole with strike and impale in the powder bag, control drive assembly is with rotating to strike thorn for strike thorn in the powder bag breach department moves, with this breach that enlarges the powder bag, make the powder have sufficient clearance to flow out from the powder bag.
Optionally, a plurality of the thorns and a plurality of the oblique thorns are staggered, one end of the thorns far away from the bag breaking rod is abutted to one end of the adjacent oblique thorns, and the thorns and the oblique thorns are arranged in an angle.
Through adopting above-mentioned technical scheme, the one end of thorn and the one end of oblique thorn are offset, and are the angle setting, form triangle-shaped structure, when the powder bag from top to bottom butt triangle-shaped structure pointed end, the powder bag is punctured under the pressure of gravity, forms the breach, rotates the thorn of drawing this moment, and the thorn of drawing hooks moves the powder bag breach edge, enlarges to the thorn direction of movement of drawing to for the powder flows sufficient clearance.
Optionally, the drive assembly includes the connecting rod, the connecting rod is parallel broken bag pole and sliding connection in broken bag pole's one side, the thorn middle part of drawing with broken bag pole articulates, the thorn one end of drawing has seted up along the length and has been linked the groove, connecting rod length direction interval is provided with a plurality of can be in corresponding link the gliding even post in the groove.
By adopting the technical scheme, the connecting rod slides to drive the connecting column to move, and the connecting column abuts against the outer wall of the connecting groove, so that the scribing is driven to rotate.
Optionally, the drive assembly includes the elastic component, connecting rod one side is provided with the connection piece, the connecting rod passes the conveying hopper is to the external world, the elastic component set up in the connection piece with between the conveying hopper inner wall, the elastic component makes the connecting rod has the trend of removing to initial position all the time.
Through adopting above-mentioned technical scheme, pulling the connecting rod outside the conveying hopper is in order to drive and is pricked and move to enlarge powder bag breach, when removing the power to the connecting rod, the elastic component drives the connecting rod and resets, in order to make things convenient for the operating personnel to take out the sack.
Optionally, the cutting includes a blade portion, and the blade portion is located at a side of the cutting away from the oblique cutting.
By adopting the technical scheme, the edge of the broken opening of the powder bag is scratched by the blade part so as to enlarge the broken opening.
Optionally, the blade part is provided with a plurality of notches at intervals along the length.
Through adopting above-mentioned technical scheme, when cutting the powder bag breach at the cutting part, the breach provides the frictional force of certain degree for cutting part and powder bag for the cutting of cutting part is more stable.
Optionally, a barb is disposed on a side of the oblique spine away from the scribing spine.
By adopting the technical scheme, when the puncture is performed to expand the fracture. The barb of the oblique thorn is hooked with the edge of the other side of the powder bag break, so that the thorn is convenient to scratch and bear force.
Optionally, a supporting rod is arranged on the inner wall of the conveying hopper, the supporting rod is arranged along the length direction of the connecting rod, the supporting rod penetrates through the connecting rod, and a through groove for sliding of the supporting rod is formed in the connecting rod.
Through adopting above-mentioned technical scheme, through wearing to locate the branch in the connecting rod, provide the support for the connecting rod can more stable slide.
In summary, the present utility model includes at least one of the following beneficial effects:
1. the powder bag is scratched at the break of the powder bag to move so as to enlarge the break of the powder bag, so that the powder can flow out of the powder bag with enough clearance;
2. after the opening of the powder bag is enlarged, the elastic piece drives the connecting rod to reset, so that an operator can take out the bag conveniently.
Drawings
FIG. 1 is a schematic view of the overall structure of the present embodiment;
FIG. 2 is a schematic cross-sectional view of a feed hopper;
fig. 3 is an enlarged schematic view of the structure at a.
Reference numerals illustrate: 1. a mixer body; 2. a feed hopper; 21. a support rod; 3. a support rod; 4. a bag breaking rod; 41. oblique needling; 411. a barb; 42. puncturing; 421. a blade section; 422. a notch; 423. a connecting groove; 43. a connecting rod; 431. connecting columns; 432. an elastic member; 433. a through groove; 434. a connecting sheet; 44. and (5) giving way.
Detailed Description
The present utility model will be described in further detail with reference to fig. 1 to 3.
Referring to fig. 1 and 2, an embodiment of the utility model discloses concrete stirring equipment, which comprises a stirring machine body 1 and a conveying hopper 2, wherein a plurality of supporting rods 3 are arranged at an opening of the conveying hopper 2 in an array manner, the conveying hopper 2 is further provided with a bag breaking rod 4 which is positioned on the same plane with the supporting rods 3, one side of the bag breaking rod 4, which is away from the conveying hopper 2, is provided with a plurality of inclined thorns 41 and a plurality of thorns 42 at intervals along the length direction, the thorns 42 are rotationally connected to the bag breaking rod 4, and the conveying hopper 2 is provided with a driving component for driving the thorns 42 to synchronously rotate.
Referring to fig. 2 and 3, specifically, a plurality of piercing pins 42 are staggered with a plurality of oblique pins 41, one end of the piercing pin 42 away from the bag breaking rod 4 abuts against one end of the adjacent oblique pin 41, and the piercing pin 42 is disposed at an angle with the oblique pin 41. One end of the scratching 42 abuts against one end of the inclined thorn 41 and is arranged in an angle to form a triangular structure, when the powder bag abuts against the tip of the triangular structure from top to bottom, the powder bag is punctured under the pressure of gravity to form a break, the scratching 42 is rotated at the moment, the scratching 42 hooks the edge of the break of the powder bag, and the movement direction of the scratching 42 is enlarged to enable the powder to flow out of a sufficient gap.
Referring to fig. 2 and 3, the bag breaking rod 4 is provided with a plurality of relief grooves 44 through which the piercing pins 42 penetrate, the piercing pins 42 are hinged in the relief grooves 44, and the piercing pins 42 can rotate in the relief grooves 44. The driving assembly comprises a connecting rod 43, the connecting rod 43 is parallel to the bag breaking rod 4 and is connected to one side of the bag breaking rod 4 in a sliding manner, the middle part of the thorn 42 is hinged to the bag breaking rod 4, a connecting groove 423 is formed in one end of the thorn 42 along the length, and a plurality of connecting posts 431 capable of sliding in the corresponding connecting groove 423 are arranged at intervals in the length direction of the connecting rod 43. The connecting rod 43 slides to drive the connecting column 431 to move, the connecting column 431 abuts against the outer wall of the connecting groove 423, thereby driving the thorn 42 to rotate
Referring to fig. 2 and 3, the driving assembly includes an elastic member 432, a connecting piece 434 is disposed on one side of the connecting rod 43, the connecting rod 43 passes through the hopper 2 to the outside, the elastic member 432 is disposed between the connecting piece 434 and the inner wall of the hopper 2, and the elastic member 432 makes the connecting rod 43 always have a tendency to move toward the initial position.
Referring to fig. 2 and 3, a supporting rod 21 is disposed on the inner wall of the conveying hopper 2, the supporting rod 21 is disposed along the length direction of the connecting rod 43, the supporting rod 21 is inserted into the connecting rod 43, and a through groove 433 for sliding the supporting rod 21 is formed in the connecting rod 43. By the strut 21 penetrating the link 43, support is provided for the link 43, so that the link 43 can slide more stably.
Referring to fig. 2 and 3, the dicing blade 42 includes a blade 421, and the blade 421 is located on a side of the dicing blade 42 away from the oblique blade 41. The edge 421 is used for scratching the edge of the broken powder bag to enlarge the broken hole. The blade 421 is provided with a plurality of notches 422 spaced apart along the length. When the blade 421 cuts the powder bag, the notch 422 provides a certain friction force for the blade 421 and the powder bag, so that the blade 421 is more stable in cutting. The side of the oblique spike 41 facing away from the spike 42 is provided with a barb 411. When the puncture 42 enlarges the break. The barb 411 of the oblique thorn 41 is used for hooking the edge of the other side of the powder bag break so as to facilitate the stress of the thorn 42.
The implementation principle of the concrete stirring equipment provided by the embodiment of the utility model is as follows:
by placing the powder bag on the support rod 3, the inclined thorns 41 and the thorns 42 on the bag breaking rod 4 are penetrated into the powder bag, and the driving assembly is controlled to rotate the thorns 42, so that the thorns 42 move at the broken opening of the powder bag, thereby expanding the broken opening of the powder bag and enabling the powder to have enough clearance to flow out from the powder bag.
The connecting rod 43 is pulled outside the conveying hopper 2 to drive the scratching 42 to move, so that the powder bag opening is enlarged, and when the force on the connecting rod 43 is removed, the elastic piece 432 drives the connecting rod 43 to reset, so that the bag can be conveniently taken out by an operator.
The above embodiments are not intended to limit the scope of the present utility model, so: all equivalent changes in structure, shape and principle of the utility model should be covered in the scope of protection of the utility model.

Claims (8)

1. A concrete mixing plant, characterized in that: including mixer body (1) and defeated hopper (2), defeated hopper (2) opening part array is provided with a plurality of bracing pieces (3), defeated hopper (2) still be provided with broken bag pole (4) on bracing piece (3) are in the coplanar, broken bag pole (4) deviate from one side of defeated hopper (2) is provided with a plurality of oblique thorns (41) and a plurality of thorns (42) of drawing along length direction interval, thorns (42) of drawing rotate connect in on broken bag pole (4), defeated hopper (2) are provided with a plurality of the drive assembly who draws thorns (42) synchronous rotation.
2. A concrete mixing plant according to claim 1, characterized in that: the multiple scratching (42) and the multiple oblique thorns (41) are arranged in a staggered mode, one end, away from the bag breaking rod (4), of each scratching (42) is abutted to one end of the adjacent oblique thorns (41), and each scratching (42) and each oblique thorn (41) are arranged in an angle mode.
3. A concrete mixing plant according to claim 1, characterized in that: the driving assembly comprises a connecting rod (43), the connecting rod (43) is parallel to the bag breaking rod (4) and is connected to one side of the bag breaking rod (4) in a sliding mode, the middle part of the scratching (42) is hinged to the bag breaking rod (4), a connecting groove (423) is formed in one end of the scratching (42) along the length, and a plurality of connecting columns (431) which can slide in the corresponding connecting groove (423) are arranged at intervals in the length direction of the connecting rod (43).
4. A concrete mixing plant according to claim 3, characterized in that: the driving assembly comprises an elastic piece (432), a connecting piece (434) is arranged on one side of the connecting rod (43), the connecting rod (43) penetrates through the conveying hopper (2) to the outside, the elastic piece (432) is arranged between the connecting piece (434) and the inner wall of the conveying hopper (2), and the elastic piece (432) enables the connecting rod (43) to always have a trend of moving towards an initial position.
5. A concrete mixing plant according to claim 1, characterized in that: the cutting (42) comprises a blade (421), the blade (421) being located on the side of the cutting (42) remote from the oblique (41).
6. A concrete mixing plant according to claim 5, wherein: the blade (421) is provided with a plurality of notches (422) at intervals along the length.
7. A concrete mixing plant according to claim 1, characterized in that: the side of the inclined thorn (41) far away from the scratching thorn (42) is provided with a barb (411).
8. A concrete mixing plant according to claim 4, wherein: be provided with branch (21) on conveying hopper (2) inner wall, branch (21) are followed connecting rod (43) length direction sets up, branch (21) wear to establish with in connecting rod (43), set up in connecting rod (43) and supply branch (21) carry out gliding logical groove (433).
CN202321262800.1U 2023-05-23 2023-05-23 Concrete stirring equipment Active CN219902742U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321262800.1U CN219902742U (en) 2023-05-23 2023-05-23 Concrete stirring equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321262800.1U CN219902742U (en) 2023-05-23 2023-05-23 Concrete stirring equipment

Publications (1)

Publication Number Publication Date
CN219902742U true CN219902742U (en) 2023-10-27

Family

ID=88428391

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321262800.1U Active CN219902742U (en) 2023-05-23 2023-05-23 Concrete stirring equipment

Country Status (1)

Country Link
CN (1) CN219902742U (en)

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