CN209171287U - A kind of moon cake processing quantitative segmenting device of dough - Google Patents

A kind of moon cake processing quantitative segmenting device of dough Download PDF

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Publication number
CN209171287U
CN209171287U CN201821457709.4U CN201821457709U CN209171287U CN 209171287 U CN209171287 U CN 209171287U CN 201821457709 U CN201821457709 U CN 201821457709U CN 209171287 U CN209171287 U CN 209171287U
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CN
China
Prior art keywords
connecting rod
feeder
cylinder
fixedly installed
dough
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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
CN201821457709.4U
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Chinese (zh)
Inventor
吴万林
张柯
郑达兰
曹辉
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Tianlun Food Group Co Ltd
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Tianlun Food Group Co Ltd
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Priority to CN201821457709.4U priority Critical patent/CN209171287U/en
Application granted granted Critical
Publication of CN209171287U publication Critical patent/CN209171287U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model discloses a kind of quantitative segmenting devices of moon cake processing dough, including pedestal, the base upper surface is fixedly installed with extrusion cylinder and feeder, described extrusion cylinder one end and the feeder are tightly connected, the extrusion cylinder and the feeder junction are fixedly installed with export nozzle, the extrusion cylinder is fixedly installed with feed hopper far from described feeder one end upper surface, the feed hopper is connected to the extrusion cylinder, it is rotatably connected in the feed hopper and dials face blade, screw extrusion bar is equipped in the extrusion cylinder, the screw extrusion bar passes through the extrusion cylinder far from described feeder one end and connect with the extruding motor drive outside the extrusion cylinder, feeding chamber is offered in the feeder, the feeding chamber penetrates through the feeder, the feeder upper surface is fixedly installed with knife cylinder and first motor.The quantitative segmenting device of moon cake processing dough described in the utility model has the advantages that cut that dough is high-efficient, be not adhered after cutting, dough is automatic round as a ball etc..

Description

A kind of moon cake processing quantitative segmenting device of dough
Technical field
The utility model relates to Production of Moon Cake apparatus fields, it particularly relates to which a kind of moon cake processing dough quantifies Segmenting device.
Background technique
The cakes such as moon cake usually consist of two parts, and a part is made of the food such as sugar, flour as outer surface Leather, another part are the inner core being made of sweetened bean paste, lotus-seed paste and some kernels etc..In traditional moon cake and cake manufacture craft In, it is for the impartial segmentation of leather general all to operate by hand, with charging basket and face, the skin manually divided is transmitted with conveyer Son needs to expend a large amount of physical strength and time, and its inefficiency, and the dough size cut is also according to personal warp It tests, the shape size of cutting is different, causes the moon cake of production also of different sizes, does not meet the requirement of production, do not adapt to cake Mass production.In order to improve the efficiency of Production of Moon Cake, currently, also occur the dough segmenting device of some column in the market, Although such device realizes the segmentation of dough, but can not achieve and carry out preliminary shaping to the dough after segmentation, after segmentation Artificial round as a ball, the serious procedure of processing for affecting subsequent step is also needed, meanwhile, the piecemeal cut down needs to be easy viscous Even, it sometimes also needs manually to be separated the fritter of adhesion.Therefore a kind of moon cake cutting equipment is needed to solve the above problems.
Utility model content
To solve problems of the prior art, the utility model provides a kind of quantitative segmentation of moon cake processing dough Device, has the advantages that cut that dough is high-efficient, be not adhered after cutting, dough is automatic round as a ball etc..
Quantitative point of in order to achieve the above purposes, the technical solution adopted by the utility model is: a kind of moon cake processing dough Device, including pedestal are cut, the base upper surface is fixedly installed with extrusion cylinder and feeder, and described extrusion cylinder one end is sent with described Barrel is tightly connected, and the extrusion cylinder and the feeder junction are fixedly installed with export nozzle, and the extrusion cylinder is far from described Feeder one end upper surface is fixedly installed with feed hopper, and the feed hopper is connected to the extrusion cylinder, rotation in the feed hopper It is connected with and dials face blade, be equipped with screw extrusion bar in the extrusion cylinder, the screw extrusion bar is worn far from described feeder one end It crosses the extrusion cylinder to connect with the extruding motor drive outside the extrusion cylinder, feeding chamber is offered in the feeder, it is described to send Expect that chamber penetrates through the feeder, the feeder upper surface is fixedly installed with knife cylinder and first motor, and the knife cylinder is located at described Feeder is equipped with cutter in described extrusion cylinder one end, the knife cylinder, and the knife cylinder inner wall is fixedly installed with hairbrush, the hair Brush is in contact with the cutter, and the first motor output end is fixedly installed with runner, sets between the runner and the cutter There are first connecting rod, second connecting rod, third connecting rod and fourth link, the cutter top is rotatablely connected described first connecting rod one end, The other end of the first connecting rod is rotatablely connected described third connecting rod one end, is arranged fourth link in the third connecting rod, described Fourth link runs through the third connecting rod, and the both ends of the fourth link pass through the one of connecting shaft and two second connecting rods respectively The other end of end rotation connection, the second connecting rod is rotatablely connected by connecting shaft and the knife cylinder close to described runner one end, The other end of the third connecting rod is rotatablely connected by the marginal position of connecting shaft and the runner, in the pedestal described in correspondence The position of feeding chamber outlet end is equipped with splicing cylinder, and turntable is fixedly installed in the middle part of the splicing cylinder, surrounds institute in the splicing cylinder It states turntable center Circle-Array and shows several splicing chambers, the splicing chamber penetrates through the splicing cylinder, and the is equipped with below the splicing cylinder Two motors, second motor are fixedly connected with the base, and fixed branch is equipped between second motor and the splicing cylinder Fagging, second motor output end pass through the fixed support plate be fixedly connected with the turntable, the fixed support plate and The pedestal is fixedly connected, and inclined discharge port is equipped in the pedestal, it is higher that the fixed support plate corresponds to the discharge port One end is equipped with inclined plate, and described lower one end of discharge port is located on the base side wall;
The two sides of the cutter and the feeding cavity axis vertical direction are fixedly installed with sliding block, and the sliding block passes through bullet Spring is connect with the bottom of the feeder, and the hairbrush is located at the sliding block two sides.
In above structure, dough raw material is put into the feed hopper, described group of face blade makes dough uniform blanking, the spiral shell Revolving pressure ram uniform rotation under the drive for squeezing motor drives dough mobile to the export nozzle direction, and dough is appeared from described It is intracavitary that mouth extrudes into the feeding, and the first motor drives the runner rotation, and the runner connects by described first Bar, second connecting rod, third connecting rod and fourth link drive the cutter to move down, the sliding block follow the cutter to Lower movement makes the spring-compressed, and the cutter cuts dough, and the spring-return drives the cutter to move up, It moves in circles, the hairbrush cleans up the dough waste material sticked together on the cutter, and the dough after being cut is along the feeding chamber It successively promotes, second motor drives the splicing cylinder to rotate by the turntable, and it is intracavitary that dough falls into the splicing, described The rotation of splicing cylinder drives dough to roll on the fixed support plate, finally the discharge port is rolled into from the inclined plate, from described Discharge port discharge.
Preferably, the feeder upper surface is provided with long through-hole, is fixedly installed with and leads along its length in the long through-hole To bar, movable block is slidably connected on the guide rod, the movable block is located in the long through-hole, the movable block with it is described It is equipped with the 5th connecting rod and six-bar linkage between runner, the movable block top is rotatablely connected described 5th connecting rod one end, and described the The five connecting rod other ends are rotatablely connected six-bar linkage one end, the marginal position turn of the six-bar linkage other end and the runner Dynamic connection, the runner are rotatablely connected by same connecting shaft and six-bar linkage and third connecting rod, and the movable block bottom end is fixed Connecting rod is installed, the connecting rod lower end is fixedly installed with conveyer trough, and the conveyer trough is semicylinder, the haul fluted shaft Line direction is identical as feeding cavity axis direction, and the haul trench bottom is in contact with feeding bottom of chamber portion, the haul Slot axial ends is equipped with slope, so set, accelerating the rate of feed that cutting is rolled into a ball below, improves production efficiency.
Preferably, the cutter is equipped with several oiling through-holes, and the oiling through-hole is vertical hole, so set, reducing What cutting was rolled into a ball below is adhered, and reduces manual labor amount, improves productivity effect.
Preferably, the first motor is decelerating motor, and second motor is servo motor, so set, by upper State two motors can better control device operating rate, guarantee the quality of production.
The beneficial effects of the utility model are:
(1) cutting efficiency that cutter is improved by link mechanism, improves productivity effect, while feeding is uniform;
(2) cooperated by screw feeding bar and runner, keep rate of cutting uniform, cutting dough is in the same size, makes cutting Shape conforms to quality requirements, and improves working efficiency, clean hygiene;
(3) by splicing cylinder, the artificial process for rolling dough is eliminated, improves production efficiency, and face can be prevented Group is adhered;
(4) edible oil injected by oiling through-hole, the dough after preventing cutting are adhered, and improve production efficiency;
(5) rate of feed that cutting is rolled into a ball below is improved by conveyer trough, and then improves the production efficiency of device entirety, Increase productivity effect.
Detailed description of the invention
Fig. 1 is that a kind of master of the embodiment 1 of the quantitative segmenting device of moon cake processing dough described in the utility model cuts open View;
Fig. 2 is a kind of vertical view of the embodiment 1 of the quantitative segmenting device of moon cake processing dough described in the utility model Figure;
Fig. 3 is A-A in a kind of embodiment 1 of the quantitative segmenting device of moon cake processing dough described in the utility model Cross-sectional view;
Fig. 4 is a kind of fixation of the embodiment 1 of the quantitative segmenting device of moon cake processing dough described in the utility model Supporting plate structure schematic diagram;
Fig. 5 is the partial enlarged view of A in Fig. 1;
Fig. 6 is the partial enlarged view of B in Fig. 1;
Fig. 7 is that a kind of master of the embodiment 2 of the quantitative segmenting device of moon cake processing dough described in the utility model cuts open View;
Fig. 8 is that a kind of master of the embodiment 3 of the quantitative segmenting device of moon cake processing dough described in the utility model cuts open View;
Fig. 9 is a kind of vertical view of the embodiment 3 of the quantitative segmenting device of moon cake processing dough described in the utility model Figure;
Figure 10 is that figure is put in the part of A in Fig. 8.
Description of symbols:
1, feed hopper;2, face blade is dialled;3, extrusion cylinder;4, export nozzle;5, cutter;6, first connecting rod;7, second connecting rod;8, Third connecting rod;9, runner;10, first motor;11, feeder;12, feeding chamber;13, pedestal;14, screw extrusion bar;15, the 4th Connecting rod;16, sliding block;17, oiling through-hole;18, splicing cylinder;19, splicing chamber;20, turntable;21, spring;22, fixed support plate; 23, inclined plate;24, hairbrush;25, the second motor;26, discharge port;27, knife cylinder;28, the 5th connecting rod;29, six-bar linkage;30, mobile Block;31, guide rod;32, connecting rod;33, conveyer trough;34, long through-hole.
Specific embodiment
The embodiments of the present invention are described in detail with reference to the accompanying drawing.
Embodiment 1:
As shown in figures 1 to 6, a kind of moon cake processing quantitative segmenting device of dough, including pedestal 13,13 upper surface of pedestal It is fixedly installed with extrusion cylinder 3 and feeder 11,3 right end of extrusion cylinder and feeder 11 are tightly connected, and extrusion cylinder 3 and feeder 11 connect The place of connecing is fixedly installed with export nozzle 4, and 3 left end upper surface of extrusion cylinder is fixedly installed with feed hopper 1, and feed hopper 1 and extrusion cylinder 3 connect It is logical, it is rotatably connected in feed hopper 1 and dials face blade 2, be equipped with screw extrusion bar 14 in extrusion cylinder 3,14 left end of screw extrusion bar is worn It crosses extrusion cylinder 3 to connect with the extruding motor drive outside extrusion cylinder 3, feeding chamber 12 is offered in feeder 11, feeding chamber 12 penetrates through Feeder 11,11 upper surface of feeder are fixedly installed with knife cylinder 27 and first motor 10, and knife cylinder 27 is located at 11 left end of feeder, knife Cutter 5 is equipped in cylinder 27,27 inner wall of knife cylinder is fixedly installed with hairbrush 24, and hairbrush 24 is in contact with cutter 5, and first motor 10 exports End is fixedly installed with runner 9, and first connecting rod 6, second connecting rod 7, third connecting rod 8 and fourth link are equipped between runner 9 and cutter 5 15,5 top of cutter is rotatablely connected 6 left end of first connecting rod, and the right end of first connecting rod 6 is rotatablely connected 8 left end of third connecting rod, and third connects 8 middle position of bar is arranged fourth link 15, and fourth link 15 runs through third connecting rod 8, and the both ends of fourth link 15 pass through respectively Connecting shaft and the right end of two second connecting rods 7 are rotatablely connected, and the left end of second connecting rod 7 is rotated by connecting shaft and 27 right end of knife cylinder The right end of connection, third connecting rod 8 is rotatablely connected by the marginal position of connecting shaft and runner 9, corresponds to feeding chamber 12 in pedestal 13 The position of right end is equipped with splicing cylinder 18, and turntable 20 is fixedly installed in the middle part of splicing cylinder 18, surrounds 20 center of turntable in splicing cylinder 18 Circle-Array shows 8 splicing chambers 19, and splicing chamber 19 penetrates through splicing cylinder 18, and the second motor 25, the second electricity are equipped with below splicing cylinder 18 Machine 25 is fixedly connected with pedestal 13, and fixed support plate 22 is equipped between the second motor 25 and splicing cylinder 18, and fixed support plate 22 is Circle, 25 output end of the second motor pass through fixed support plate 22 with turntable 20 is coaxial is connected, fixed support plate 22 is consolidated with pedestal 13 Fixed connection, pedestal 13 is interior to be equipped with inclined discharge port 26, and corresponding 26 higher end of discharge port of fixed support plate 22 is equipped with inclined plate 23, Inclined plate 23 is sector, and the lower one end of discharge port 26 is located on 13 right side wall of pedestal;
The two sides of cutter 5 and 12 axis vertical direction of feeding chamber are fixedly installed with sliding block 16, and sliding block 16 passes through spring 21 It is connect with the bottom of feeder 11, hairbrush 24 is located at 16 two sides of sliding block.
In above structure, dough raw material is put into feed hopper 1, dialling face blade 2 makes dough uniform blanking, screw extrusion bar 14 Uniform rotation drives dough mobile to 4 direction of export nozzle under the drive for squeezing motor, and dough is extruded into from export nozzle 4 to sending Expect in chamber 12, first motor 10 drives runner 9 to rotate, and runner 9 passes through first connecting rod 6, second connecting rod 7, third connecting rod 8 and the 4th Connecting rod 15 drives cutter 5 to move down, and sliding block 16, which follows cutter 5 to move down, compresses spring 21, and cutter 5 cuts dough It cuts, spring 21, which is replied, drives cutter 5 to move up, and moves in circles, hairbrush 24 cleans up the dough waste material sticked together on cutter 5, quilt Dough after cutting is successively promoted along feeding chamber 12, and the second motor 25 drives splicing cylinder 18 to rotate by turntable 20, and dough is fallen Enter in splicing chamber 19, the rotation of splicing cylinder 18 drives dough to roll on fixed support plate 22, finally rolls into discharge port from inclined plate 23 26, it is discharged from discharge port 26.
Embodiment 2:
As shown in fig. 7, the present embodiment is on the basis of embodiment 1,11 upper surface of feeder is provided with long through-hole 34, long through-hole Guide rod 31 is fixedly installed in 34 along its length, movable block 30 is slidably connected on guide rod 31, movable block 30 is located at length In through-hole 34, the 5th connecting rod 28 and six-bar linkage 29,30 top of movable block rotation connection the are equipped between movable block 30 and runner 9 Five connecting rods, 28 left end, 28 right end of the 5th connecting rod are rotatablely connected 29 left end of six-bar linkage, the edge of six-bar linkage 29 right end and runner 9 Position rotation connection, runner 9 are rotatablely connected by same connecting shaft and six-bar linkage 29 and third connecting rod 8,30 bottom end of movable block It is fixedly installed with connecting rod 32,32 lower end of connecting rod is fixedly installed with conveyer trough 33, and conveyer trough 33 is semicylinder, conveyer trough 33 Axis direction is identical as 12 axis direction of feeding chamber, and 33 bottom of conveyer trough and 12 bottom connection of feeding chamber touch, and conveyer trough 33 is axial Both ends are equipped with slope, and runner 9 drives movable block 30 to move back and forth on guide rod 31 by six-bar linkage 29 and the 5th connecting rod 28, Movable block 30 drives conveyer trough 33 that the dough after cutting is transported to feeding chamber 12 and exports, and accelerates the feeding speed that cutting is rolled into a ball below Rate improves production efficiency.
Remaining structure and working principle of embodiment 2 is the same as embodiment 1.
Embodiment 3:
As seen in figs. 8-10, on the basis of embodiment 1, cutter 5 is equipped with several oiling through-holes 17, oiling to the present embodiment Through-hole 17 is vertical hole, and edible oil inject cutter 5 out of oiling through-hole 17, and reduce that cutting rolls into a ball below in cutting process sticks Even, reduce manual labor amount, improve productivity effect.
Remaining structure and working principle of embodiment 3 is the same as embodiment 1.
Specific embodiment of the present utility model above described embodiment only expresses, the description thereof is more specific and detailed, But it should not be understood as limiting the scope of the patent of the utility model.It should be pointed out that for the common of this field For technical staff, without departing from the concept of the premise utility, various modifications and improvements can be made, these all belong to In the protection scope of the utility model.

Claims (3)

1. the quantitative segmenting device that dough is used in a kind of moon cake processing, which is characterized in that including pedestal, the base upper surface is fixed Extrusion cylinder and feeder are installed, described extrusion cylinder one end and the feeder are tightly connected, the extrusion cylinder and the feeding Cylinder junction is fixedly installed with export nozzle, and the extrusion cylinder is fixedly installed with feed hopper far from described feeder one end upper surface, The feed hopper is connected to the extrusion cylinder, is rotatably connected in the feed hopper and is dialled face blade, is equipped with spiral shell in the extrusion cylinder Pressure ram is revolved, the screw extrusion bar passes through the extruding electricity outside the extrusion cylinder and the extrusion cylinder far from described feeder one end Machine is sequentially connected, and feeding chamber is offered in the feeder, and the feeding chamber penetrates through the feeder, the feeder upper surface It is fixedly installed with knife cylinder and first motor, the knife cylinder is located at the feeder in described extrusion cylinder one end, the knife cylinder Equipped with cutter, the knife cylinder inner wall is fixedly installed with hairbrush, and the hairbrush is in contact with the cutter, the first motor output End is fixedly installed with runner, and first connecting rod, second connecting rod, third connecting rod and the 4th are equipped between the runner and the cutter and is connected Bar, the cutter top are rotatablely connected described first connecting rod one end, and the other end of the first connecting rod is rotatablely connected the third Connecting rod one end is arranged fourth link in the third connecting rod, and the fourth link runs through the third connecting rod, and the described 4th connects The both ends of bar pass through connecting shaft respectively and one end of two second connecting rods is rotatablely connected, and the other end of the second connecting rod passes through company Spindle and the knife cylinder are rotatablely connected close to described runner one end, and the other end of the third connecting rod passes through connecting shaft and described turn The marginal position of wheel is rotatablely connected, and the position that feeding chamber outlet end is corresponded in the pedestal is equipped with splicing cylinder, the splicing Cylinder middle part is fixedly installed with turntable, surrounds the turntable center Circle-Array in the splicing cylinder and shows several splicing chambers, described to connect To expect that chamber penetrates through the splicing cylinder, is equipped with the second motor below the splicing cylinder, second motor is fixedly connected with the base, Fixed support plate is equipped between second motor and the splicing cylinder, second motor output end passes through the fixed support Plate is fixedly connected with the turntable, and the fixed support plate is fixedly connected with the base, be equipped in the pedestal it is inclined go out Material mouth, the fixed support plate correspond to the discharge port higher end equipped with inclined plate, and described lower one end of discharge port is located at described On base side wall;
The two sides of the cutter and the feeding cavity axis vertical direction are fixedly installed with sliding block, the sliding block by spring with The bottom of the feeder connects, and the hairbrush is located at the sliding block two sides;
The feeder upper surface is provided with long through-hole, is fixedly installed with guide rod in the long through-hole along its length, described to lead Movable block is slidably connected on bar, the movable block is located in the long through-hole, sets between the movable block and the runner There are the 5th connecting rod and six-bar linkage, the movable block top is rotatablely connected described 5th connecting rod one end, and the 5th connecting rod is another The marginal position of end rotation connection six-bar linkage one end, the six-bar linkage other end and the runner is rotatablely connected, institute It states runner to be rotatablely connected by same connecting shaft and six-bar linkage and third connecting rod, the movable block bottom end is fixedly installed with connection Bar, the connecting rod lower end are fixedly installed with conveyer trough, and the conveyer trough is semicylinder, the conveyer trough axis direction and institute It is identical to state feeding cavity axis direction, the haul trench bottom is in contact with feeding bottom of chamber portion, the conveyer trough axial ends Equipped with slope.
2. the quantitative segmenting device that dough is used in a kind of moon cake processing according to claim 1, which is characterized in that the cutter Several oiling through-holes are equipped with, the oiling through-hole is vertical hole.
3. the quantitative segmenting device that dough is used in a kind of moon cake processing according to claim 1, which is characterized in that described first Motor is decelerating motor, and second motor is servo motor.
CN201821457709.4U 2018-09-06 2018-09-06 A kind of moon cake processing quantitative segmenting device of dough Expired - Fee Related CN209171287U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821457709.4U CN209171287U (en) 2018-09-06 2018-09-06 A kind of moon cake processing quantitative segmenting device of dough

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821457709.4U CN209171287U (en) 2018-09-06 2018-09-06 A kind of moon cake processing quantitative segmenting device of dough

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Publication Number Publication Date
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110771646A (en) * 2019-11-20 2020-02-11 谭爱平 Walnut crisp green bean cake automatic molding machine
CN112042692A (en) * 2020-09-08 2020-12-08 湖南省爱尚乐心食品有限公司 Dough cutting device is used in bread production
CN114600925A (en) * 2022-03-04 2022-06-10 福建福派园食品股份有限公司 Processing equipment and processing technology of sticky rice pie

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110771646A (en) * 2019-11-20 2020-02-11 谭爱平 Walnut crisp green bean cake automatic molding machine
CN110771646B (en) * 2019-11-20 2021-10-08 谭爱平 Walnut crisp green bean cake automatic molding machine
CN112042692A (en) * 2020-09-08 2020-12-08 湖南省爱尚乐心食品有限公司 Dough cutting device is used in bread production
CN114600925A (en) * 2022-03-04 2022-06-10 福建福派园食品股份有限公司 Processing equipment and processing technology of sticky rice pie

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20190730

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