CN215430108U - Biscuit production is with sieve face stirring all-in-one of kneading dough - Google Patents

Biscuit production is with sieve face stirring all-in-one of kneading dough Download PDF

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Publication number
CN215430108U
CN215430108U CN202120851510.5U CN202120851510U CN215430108U CN 215430108 U CN215430108 U CN 215430108U CN 202120851510 U CN202120851510 U CN 202120851510U CN 215430108 U CN215430108 U CN 215430108U
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stirring
processing
processing tank
tank
material conveying
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CN202120851510.5U
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Chinese (zh)
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张运平
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Jiangxi Fangzhou Ecological Agriculture Co ltd
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Jiangxi Fangzhou Ecological Agriculture Co ltd
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Abstract

A sieve surface stirring and dough mixing integrated machine for biscuit production comprises a processing tank, a base arranged at the bottom of a support and a stirring motor arranged at the top of the processing tank, wherein a sieving assembly is arranged on one side of the outer wall of the processing tank, and a discharging assembly is arranged at the bottom of the processing tank; the screening assembly comprises a processing box, the processing box is arranged on one side of the outer wall of the processing tank, a screen separating net is arranged in a supporting box on the lower side of the feeding hopper, a side surface of the screen separating net is provided with an adjusting rod, one end of the adjusting rod is movably arranged in a guide sleeve, a side surface of the guide sleeve is provided with a reset spring, one end of the reset spring is fixedly connected with the adjusting rod, an ejector rod is arranged on the other side surface of the screen separating net, one end of the ejector rod is movably arranged in the slide sleeve, one end of the ejector rod is abutted to a cam, the cam is arranged on a driving shaft, the driving shaft is rotatably arranged in the adjusting box, and one end of the driving shaft is connected with an output shaft of a driving motor. The flour screening machine can rapidly screen flour, can rapidly output the principle of finishing processing, shortens the processing period and improves the processing efficiency.

Description

Biscuit production is with sieve face stirring all-in-one of kneading dough
Technical Field
The utility model relates to the technical field of biscuit production, in particular to a flour-sieving stirring and kneading integrated machine for biscuit production.
Background
The biscuit is a sheet western-style dessert which is formed and baked by taking flour as a main raw material, is one of the most common snacks at present, and the flour required by the biscuit in the production process is sieved, then the flour is stirred, and the biscuit is generally processed by an integrated machine.
Traditional all-in-one can't carry out quick screening to the flour, and the screening cycle length influences machining efficiency, and traditional all-in-one is simultaneously accomplished with the face after, can't export the operation of the subsequent handling of not being convenient for to the raw materials fast.
SUMMERY OF THE UTILITY MODEL
Objects of the utility model
In order to solve the technical problems in the background art, the utility model provides the flour-sieving stirring and kneading integrated machine for biscuit production, which can quickly sieve flour, quickly output the principle of processing completion, shorten the processing period and improve the processing efficiency.
(II) technical scheme
The utility model provides a sieve surface stirring and dough mixing integrated machine for biscuit production, which comprises a processing tank, a support arranged at the bottom of the processing tank, a base arranged at the bottom of the support and a stirring motor arranged at the top of the processing tank, wherein a sieving assembly is arranged on one side of the outer wall of the processing tank, and a discharging assembly is arranged at the bottom of the processing tank;
the screening subassembly is including handling the box, it sets up in processing jar outer wall one side to handle the box, it sets up the feeder hopper to handle box top one side, set up in the support box of feeder hopper downside and divide the screen cloth, divide screen cloth one side surface to set up the regulation pole, adjust pole one end activity and set up in the guide pin bushing, the guide pin bushing sets up a side surface in the processing box, one side surface sets up reset spring in the guide pin bushing, reset spring one end and regulation pole fixed connection, divide screen cloth opposite side surface to set up the ejector pin, ejector pin one end activity sets up in the sliding sleeve, the sliding sleeve sets up at a processing box side surface, ejector pin one end and cam butt, the cam sets up in the drive shaft, the drive shaft rotates and sets up in the regulating box, it sets up at a processing box side surface to adjust the box, drive shaft one end is connected with driving motor's output shaft, driving motor sets up at a processing box side surface.
Preferably, ejector pin one end sets up the arc kicking block, and the arc kicking block butts with the cam.
Preferably, the bottom of the processing box is provided with a flow guide inclined table, and one end of the flow guide inclined table extends into the processing tank.
Preferably, the processing tank is internally provided with a stirring shaft in a rotating manner, one end of the stirring shaft is connected with an output shaft of a stirring motor, and the stirring shaft is provided with a plurality of groups of stirring blades.
Preferably, the middle part of the stirring shaft is provided with a cross rod, one end of the cross rod is provided with a scraper, and the scraper is attached to the inner wall of the processing tank.
Preferably, ejection of compact subassembly includes defeated material jar, and defeated material jar setting is on the side on the base, and defeated material jar one side sets up out the hopper, goes out hopper one end and processing tank bottoms intercommunication, and defeated material jar internal rotation sets up defeated material axle, and defeated epaxial helical blade that sets up of material, defeated material axle one end is connected with the output shaft of defeated material motor, and defeated material motor setting is at defeated material jar one side surface.
Preferably, the lower part of the discharge hopper is provided with a switch valve, and the other side of the material conveying tank is provided with a discharge hole.
One side of the upper surface of the processing tank is provided with a water injection pipe, and one end of the water injection pipe is connected with external water delivery equipment.
Compared with the prior art, the technical scheme of the utility model has the following beneficial technical effects:
1. according to the flour screening machine, the cam and the ejector rod can be used for driving the screening net to reciprocate, the screening net reciprocates to screen flour, the flour is rapidly screened, and the screening effect is good.
2. The utility model can output the raw materials through the rotating shaft of the material conveying shaft and further through the helical blades, thereby realizing the function of rapidly outputting the raw materials and facilitating the processing of subsequent procedures.
Drawings
FIG. 1 is a schematic structural diagram of a screen surface stirring and dough kneading integrated machine for biscuit production according to the present invention.
FIG. 2 is a schematic diagram of a cross-sectional front view of a screening component of the screen surface stirring and dough mixing all-in-one machine for biscuit production according to the present invention.
Fig. 3 is an enlarged schematic view of a portion a in fig. 2.
FIG. 4 is a schematic view of a cross-sectional structure of a screen surface stirring and dough kneading integrated machine for producing biscuits, which is provided by the utility model.
Reference numerals: 1. a screen assembly; 2. a discharge assembly; 3. a base; 4. a support; 5. processing the tank; 6. a water injection pipe; 7. a stirring motor; 8. a stirring shaft; 9. a stirring blade; 21. a discharge hopper; 22. a material conveying motor; 23. a material conveying shaft; 24. a helical blade; 25. a discharge port; 26. a material conveying tank; 81. a squeegee; 82. a cross bar; 101. separating a screen; 102. a feed hopper; 103. a process cartridge; 104. a return spring; 105. a guide sleeve; 106. adjusting a rod; 107. a flow guiding sloping platform; 108. an adjustment box; 109. a sliding sleeve; 110. a top rod; 111. a drive shaft; 112. a cam; 113. the motor is driven.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present invention will be described in further detail with reference to the accompanying drawings in conjunction with the following detailed description. It should be understood that the description is intended to be exemplary only, and is not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
As shown in fig. 1-4, the sieve surface stirring and dough kneading integrated machine for biscuit production provided by the utility model comprises a processing tank 5, a support 4 arranged at the bottom of the processing tank 5, a base 3 arranged at the bottom of the support 4 and a stirring motor 7 arranged at the top of the processing tank 5, wherein a sieving component 1 is arranged at one side of the outer wall of the processing tank 5, and a discharging component 2 is arranged at the bottom of the processing tank 5;
the sieving assembly 1 comprises a processing box 103, the processing box 103 is arranged on one side of the outer wall of the processing tank 5, one side of the top of the processing box 103 is provided with a feed hopper 102, a sub-sieve 101 is arranged in a supporting box on the lower side of the feed hopper 102, one side surface of the sub-sieve 101 is provided with an adjusting rod 106, one end of the adjusting rod 106 is movably arranged in a guide sleeve 105, the guide sleeve 105 is arranged on one side surface in the processing box 103, one side surface in the guide sleeve 105 is provided with a return spring 104, one end of the return spring 104 is fixedly connected with the adjusting rod 106, the other side surface of the sub-sieve 101 is provided with a push rod 110, one end of the push rod 110 is movably arranged in a sliding sleeve 109, the sliding sleeve 109 is arranged on one side surface of the processing box 103, one end of the push rod 110 is abutted against a cam 112, the cam 112 is arranged on a driving shaft 111, the driving shaft 111 is rotatably arranged in the adjusting box 108, the adjusting box 108 is arranged on one side surface of the processing box 103, one end of the driving shaft 111 is connected with an output shaft of a driving motor 113, the driving motor 113 is provided on one side surface of the process cartridge 103.
In the utility model, firstly, a driving motor 113 is operated, the driving motor 113 drives a driving shaft 111 to rotate, the driving shaft 111 drives a cam 112 to rotate, the cam 112 drives a push rod 110 to move, the push rod 110 drives a sub-screen 101 to move, the sub-screen 101 drives an adjusting rod 106 to move in a guide sleeve 105, the adjusting rod 106 compresses a return spring 104, after the cam 112 is separated from the push rod 110, the return spring 104 drives the adjusting rod 106 to move under the action of elasticity, the adjusting rod 106 drives the sub-screen 101 to move in a resetting manner, the sub-screen 101 reciprocates along with the rotation of the cam 112, flour is conveyed into a processing box 103 through a feed hopper 102, and the sub-screen 101 carries out screening on the flour.
In an alternative embodiment, the ram 110 is provided with an arcuate top block at one end, which abuts the cam 112.
It should be noted that the cam 112 is easily brought into contact with the arc-shaped top block, and the smoothness of contact between the cam 112 and the top bar 110 is improved.
In an alternative embodiment, a flow guide ramp 107 is disposed at the bottom of the processing box 103, and one end of the flow guide ramp 107 extends into the processing tank 5.
It should be noted that the sieved flour is transported into the processing tank 5 through the diversion sloping platform 107, which facilitates transportation of the flour.
In an alternative embodiment, a stirring shaft 8 is rotatably arranged in the processing tank 5, one end of the stirring shaft 8 is connected with an output shaft of the stirring motor 7, and a plurality of groups of stirring blades 9 are arranged on the stirring shaft 8.
It should be noted that, a circuit of the stirring motor 7 is connected, the stirring motor 7 drives the stirring shaft 8 to rotate, the stirring shaft 8 drives the stirring blade 9 to rotate, and the stirring blade 9 stirs flour.
In an alternative embodiment, a cross bar 82 is arranged in the middle of the stirring shaft 8, a scraper 81 is arranged at one end of the cross bar 82, and the scraper 81 is attached to the inner wall of the processing tank 5.
It should be noted that the stirring shaft 8 drives the cross rod 82 to rotate, the cross rod 82 drives the scraper 81 to rotate, the scraper 81 scrapes off the flour adhered to the inner wall of the processing tank 5, and the utilization rate of the flour is improved.
In an optional embodiment, the discharging component 2 includes a material conveying tank 26, the material conveying tank 26 is disposed on the upper side of the base 3, one side of the material conveying tank 26 is provided with a material discharging hopper 21, one end of the material discharging hopper 21 is communicated with the bottom of the processing tank 5, a material conveying shaft 23 is rotatably disposed in the material conveying tank 26, a helical blade 24 is disposed on the material conveying shaft 23, one end of the material conveying shaft 23 is connected with an output shaft of a material conveying motor 22, the material conveying motor 22 is disposed on one side surface of the material conveying tank 26, a switch valve is disposed on the lower portion of the material discharging hopper 21, and the other side of the material conveying tank 26 is provided with a discharging material.
It should be noted that, the switch valve is opened to switch on the circuit of the feeding motor 22, the feeding motor 22 drives the feeding shaft 23 to rotate, the feeding shaft 23 drives the helical blade 24 to rotate, and the helical blade 24 rotates to move the raw material along the feeding tank 26 and discharge the raw material through the discharge port 25.
In an alternative embodiment, a water injection pipe 6 is arranged on one side of the upper surface of the processing tank 5, and one end of the water injection pipe 6 is connected with an external water delivery device.
The processing water can be fed into the processing tank 5 through the water feed pipe 6.
It is to be understood that the above-described embodiments of the present invention are merely illustrative of or explaining the principles of the utility model and are not to be construed as limiting the utility model. Therefore, any modification, equivalent replacement, improvement and the like made without departing from the spirit and scope of the present invention should be included in the protection scope of the present invention. Further, it is intended that the appended claims cover all such variations and modifications as fall within the scope and boundaries of the appended claims or the equivalents of such scope and boundaries.

Claims (8)

1. A screen surface stirring and dough kneading integrated machine for biscuit production is characterized by comprising a processing tank (5), a support (4) arranged at the bottom of the processing tank (5), a base (3) arranged at the bottom of the support (4) and a stirring motor (7) arranged at the top of the processing tank (5), wherein a screening component (1) is arranged on one side of the outer wall of the processing tank (5), and a discharging component (2) is arranged at the bottom of the processing tank (5);
the screening component (1) comprises a processing box (103), the processing box (103) is arranged on one side of the outer wall of a processing tank (5), a feed hopper (102) is arranged on one side of the top of the processing box (103), a separating screen (101) is arranged in a supporting box on the lower side of the feed hopper (102), an adjusting rod (106) is arranged on one side surface of the separating screen (101), one end of the adjusting rod (106) is movably arranged in a guide sleeve (105), the guide sleeve (105) is arranged on one side surface in the processing box (103), a reset spring (104) is arranged on one side surface in the guide sleeve (105), one end of the reset spring (104) is fixedly connected with the adjusting rod (106), an ejector rod (110) is arranged on the other side surface of the separating screen (101), one end of the ejector rod (110) is movably arranged in a sliding sleeve (109), the sliding sleeve (109) is arranged on one side surface of the processing box (103), one end of the ejector rod (110) is abutted against a cam (112), and the cam (112) is arranged on a driving shaft (111), the driving shaft (111) is rotatably arranged in the adjusting box (108), the adjusting box (108) is arranged on one side surface of the processing box (103), one end of the driving shaft (111) is connected with an output shaft of a driving motor (113), and the driving motor (113) is arranged on one side surface of the processing box (103).
2. The all-in-one machine for stirring and kneading flour for biscuit production as claimed in claim 1, wherein one end of the ejector rod (110) is provided with an arc-shaped ejector block, and the arc-shaped ejector block is abutted against the cam (112).
3. The integrated machine for stirring the sieve surface and kneading the flour for producing the biscuits according to claim 1, wherein a flow guide inclined table (107) is arranged at the bottom in the processing box (103), and one end of the flow guide inclined table (107) extends into the processing tank (5).
4. The all-in-one machine for stirring the flour and kneading the dough for biscuit production according to claim 1, wherein a stirring shaft (8) is rotatably arranged in the processing tank (5), one end of the stirring shaft (8) is connected with an output shaft of a stirring motor (7), and a plurality of groups of stirring blades (9) are arranged on the stirring shaft (8).
5. A flour-sieving stirring and dough-kneading integrated machine for biscuit production according to claim 4, characterized in that a cross bar (82) is arranged in the middle of the stirring shaft (8), a scraping plate (81) is arranged at one end of the cross bar (82), and the scraping plate (81) is attached to the inner wall of the processing tank (5).
6. The screen surface stirring and dough kneading integrated machine for biscuit production according to claim 1, wherein the discharging component (2) comprises a material conveying tank (26), the material conveying tank (26) is arranged on the upper side surface of the base (3), a discharging hopper (21) is arranged on one side of the material conveying tank (26), one end of the discharging hopper (21) is communicated with the bottom of the processing tank (5), a material conveying shaft (23) is rotatably arranged in the material conveying tank (26), a helical blade (24) is arranged on the material conveying shaft (23), one end of the material conveying shaft (23) is connected with an output shaft of a material conveying motor (22), and the material conveying motor (22) is arranged on one side surface of the material conveying tank (26).
7. A sieve surface stirring and dough mixing integrated machine for biscuit production according to claim 6, characterized in that the lower part of the discharge hopper (21) is provided with a switch valve, and the other side of the material conveying tank (26) is provided with a discharge hole (25).
8. The all-in-one machine for stirring and kneading flour with sieve surface for biscuit production according to claim 1 is characterized in that a water injection pipe (6) is arranged on one side of the upper surface of the processing tank (5), and one end of the water injection pipe (6) is connected with an external water delivery device.
CN202120851510.5U 2021-04-25 2021-04-25 Biscuit production is with sieve face stirring all-in-one of kneading dough Active CN215430108U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202120851510.5U CN215430108U (en) 2021-04-25 2021-04-25 Biscuit production is with sieve face stirring all-in-one of kneading dough

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202120851510.5U CN215430108U (en) 2021-04-25 2021-04-25 Biscuit production is with sieve face stirring all-in-one of kneading dough

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CN215430108U true CN215430108U (en) 2022-01-07

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CN202120851510.5U Active CN215430108U (en) 2021-04-25 2021-04-25 Biscuit production is with sieve face stirring all-in-one of kneading dough

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114568455A (en) * 2022-03-19 2022-06-03 谷益(深圳)供应链有限公司 Basic full-nutrition fine dried noodle production equipment and fine dried noodle production process

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114568455A (en) * 2022-03-19 2022-06-03 谷益(深圳)供应链有限公司 Basic full-nutrition fine dried noodle production equipment and fine dried noodle production process

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