CN112544760B - Candy forming machine and application thereof - Google Patents

Candy forming machine and application thereof Download PDF

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Publication number
CN112544760B
CN112544760B CN202011375367.3A CN202011375367A CN112544760B CN 112544760 B CN112544760 B CN 112544760B CN 202011375367 A CN202011375367 A CN 202011375367A CN 112544760 B CN112544760 B CN 112544760B
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CN
China
Prior art keywords
shell
sugar
working cylinder
baffle ring
material guiding
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CN202011375367.3A
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CN112544760A (en
Inventor
陈龙
陈灵宝
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Zhejiang Baogang Sugar Steak Equipment Co ltd
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Zhejiang Baogang Sugar Steak Equipment Co ltd
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23GCOCOA; COCOA PRODUCTS, e.g. CHOCOLATE; SUBSTITUTES FOR COCOA OR COCOA PRODUCTS; CONFECTIONERY; CHEWING GUM; ICE-CREAM; PREPARATION THEREOF
    • A23G3/00Sweetmeats; Confectionery; Marzipan; Coated or filled products
    • A23G3/02Apparatus specially adapted for manufacture or treatment of sweetmeats or confectionery; Accessories therefor
    • A23G3/0236Shaping of liquid, paste, powder; Manufacture of moulded articles, e.g. modelling, moulding, calendering

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  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Confectionery (AREA)

Abstract

The invention discloses a sugar forming machine and application thereof, which solves the problems of inconvenient cleaning and high cleaning operation intensity of the existing sugar processing structure in the sugar forming machine, and adopts the following technical scheme: a candy forming machine comprises a shell, a plurality of rollers are rotatably arranged in the shell, and a material guiding device is arranged between the rollers to form a material guiding channel. At least part of the rollers are of split type structures, each roller of each split type structure comprises a supporting structure and a working cylinder, each working cylinder is detachably sleeved on the periphery of each supporting structure, the supporting structures realize circumferential transmission of the corresponding working cylinder through a connecting structure, a rotating shaft is connected with one end of each supporting structure, and the rotating shaft provides radial support for the supporting structures. An opening is arranged on the shell, the opening corresponds to the position of the working cylinder and is used for the working cylinder to enter and exit the shell, and a cover plate is detachably covered on the shell at the position of the opening. The sugar block forming machine is used for forming sugar blocks, the roller and the material guiding device in the shell are convenient to clean, and the labor intensity is low.

Description

Candy forming machine and application thereof
Technical Field
The present invention relates to a candy forming machine for preparing and forming candy, and to an application of the candy forming machine for preparing candy.
Background
The sugar block forming machine is used for preparing sugar materials into blocks, a forming roller is required to be arranged on the sugar block forming machine in order to realize the forming and solidification of the viscous sugar materials, and a plurality of recessed forming openings are formed on the peripheral surface of the forming roller and are used for accommodating the sugar materials and solidifying and forming the sugar blocks; in order to realize the movement of the sugar materials in the sugar block forming machine, a pressing mechanism is also required to be arranged in the sugar block forming machine so as to promote the movement of the sugar materials. The pressing mechanism generally adopts a roller structure, and a concave-convex structure is arranged on the outer peripheral surface of the roller structure to realize pressing of sugar materials.
The Chinese patent document (publication No. CN 105941783A) discloses a sugar forming machine with convenient sugar processing and high production efficiency, which structurally comprises a pressing device, a sucking device and a feeding device which are arranged on a frame, wherein the pressing device comprises two parallel rollers arranged on the frame, a plurality of forming openings are arranged on the peripheral surface of a main roller, and the two rollers rotate in opposite directions; the material sucking device comprises: the suction head is a hollow pipe fitting with a plurality of suction openings on one surface, the suction head is connected with the filter tank through the connecting pipeline, and the filter tank is connected with the air pump through the connecting pipeline; the feeding device comprises: the device comprises a conveying belt, a traction roller, a driven roller and a tensioning roller, wherein the conveying belt is arranged between the roller and a suction head, two ends of the traction roller and the tensioning roller are arranged in mounting holes on two mutually parallel panels on a frame, the tensioning roller is in contact with the conveying belt, and two ends of the tensioning roller are provided with adjusting devices.
In this candy molding machine, a molding opening is provided in the outer peripheral surface of the molding drum for accommodating the candy. The candy forming machine can prepare and form various candy materials, and when different candy materials are switched, the outer peripheral surface of the roller is required to be cleaned. In addition, after the sugar mass forming machine works for a period of time, the working surface of the roller needs to be cleaned so as to avoid the problem that the sugar mass is accumulated in a certain place for a long time and is deteriorated, and thus the sugar mass forming machine is polluted. When the sugar block forming machine with the structure is used for cleaning the interior of the sugar block forming machine, the components which are required to be disassembled are more, the whole roller is heavy, the cleaning is very inconvenient, and the cleaning effect on the interior of the sugar block forming machine cannot be well ensured.
Disclosure of Invention
The technical problems to be solved by the invention are as follows: the sugar forming machine is convenient to clean the inside of the sugar forming machine, good in cleaning effect and low in cleaning operation labor intensity.
The invention also provides an application of the candy forming machine.
In order to solve the technical problems, the invention adopts the following technical scheme: a candy molding machine comprising:
a shell, wherein a cavity is formed in the shell, a feed inlet for feeding sugar materials into the cavity is formed in the upper side of the shell, and a discharge outlet for discharging sugar blocks is formed in the lower side of the shell;
the rollers are arranged in the shell in a rotating manner and used for pushing sugar materials to move forward in the shell and forming sugar blocks, and a plurality of concave-convex sugar material action structures are arranged on the peripheral surface of at least part of the rollers;
the material guide device is arranged between the rollers, and a material guide channel for feeding sugar forward is formed in the material guide device;
the power mechanism is in transmission connection with the corresponding roller, so that the sugar material can move forward and be molded in the shell;
the rotary shaft is connected with one end of the supporting structure, and the rotary shaft provides radial support for the supporting structure;
an opening is arranged on the shell, the opening corresponds to the position of the working cylinder and is used for the working cylinder to enter and exit the shell, and a cover plate is detachably covered on the shell at the position of the opening.
The rollers can be divided into a pressing roller for pressing sugar materials forward, and a forming roller for forming sugar blocks from sugar materials.
The sugar material action structure can be a forming opening which is arranged on the peripheral surface of the working cylinder and used for containing sugar materials, or can be a concave-convex type working structure which is arranged on the peripheral surface of the working cylinder and used for pushing the sugar materials to move forward. The opening should be relatively large in size to allow the mandrel to enter and exit the housing. When the interior of the candy forming machine, particularly the roller assembly is required to be cleaned, the working cylinder can be detached from the supporting structure, and can be taken out from the opening of the shell of the candy forming machine to the outside for cleaning. After the working cylinder is cleaned, the working cylinder is required to be mounted on a supporting structure, and a cover plate is connected and fixed on the opening so as to realize the sealing of the shell. The shaft itself is radially fixed on the candy shaper, the shaft providing radial support for the drum.
Further, the supporting structure comprises an inner cylinder, the working cylinder is sleeved on the inner cylinder in a clearance way, and the rotating shaft is positioned in the axis direction of the inner cylinder. The inner cylinder is arranged, so that the support of the working cylinder can be well adapted, and the working cylinder has good stability in the working process.
Further, the rotating shaft is fixedly connected with one end part of the inner cylinder, an inner baffle ring is sleeved on the rotating shaft, and the connecting structure is arranged between the inner baffle ring and the working cylinder; an outer baffle ring is arranged at the other end of the inner cylinder, the outer baffle ring is fixedly connected with the working cylinder, and the connecting structure is arranged between the outer baffle ring and the inner cylinder. The inner baffle ring is arranged, so that the circumferential transmission connection between the rotating shaft and the working cylinder can be well adapted. The outer baffle ring and the working cylinder can be connected and fixed in a welding mode, and can also be connected and fixed through a fixing bolt. By arranging the outer baffle ring, the circumferential fixed connection between the inner cylinder and the working cylinder is conveniently realized.
Further, the other end of the inner cylinder is also provided with a coupling head, an extended convex head is arranged at the axis position of the coupling head, and the outer baffle ring is sleeved on the convex head in a clearance way. Through being provided with the connector, the hookup between inner tube and the working cylinder of being convenient for is fixed on the one hand, moreover, through protruding head and apron on the bearing that sets up peg graft mutually, can realize the support to the cylinder other end, can effectively guarantee the job stabilization nature of cylinder.
Further, the connecting structure is a plurality of inserted bars; a plurality of inserted bars are fixed on the connecting head along the axial direction of the connecting head and are inserted into the outer baffle ring in a clearance way; a plurality of inserted bars are fixed on the inner baffle ring along the axial direction of the inner baffle ring, and the inserted bars are inserted into the wall body of the working cylinder in a clearance way. The inserted link can also be replaced by a spline matching structure with mutually matched toothed convex bodies and concave-convex shapes arranged between the corresponding parts. Realize the circumference transmission to the working cylinder through setting up the inserted bar, simple structure conveniently sets up.
Further, the inner cylinder is hollow, the connecting head and the rotating shaft are both inserted and fixed in the inner cylinder, an outward convex ring is integrally formed on the outer peripheral surface of the inserted end of the rotating shaft, and the inner baffle ring is connected with the outward convex ring; the two ends of the working cylinder are respectively provided with a sinking opening, and the inner baffle ring and the outer baffle ring are respectively embedded into the corresponding sinking openings. This results in a good integrity of the drum and a good working stability of the drum.
Further, a bearing is fixed on the surface of the cover plate facing the working cylinder, and the bearing is used for supporting the other end of the supporting structure. The bearing used for supporting the other end of the roller is arranged on the cover plate, so that the stability of the roller in the working process can be effectively ensured, and the working stability of the sugar forming machine can be ensured.
Further, the cover plate is fixedly connected to the shell through a connecting bolt, a knob is connected to the cover plate in a threaded mode, a disc head is formed at the outer end portion of the knob, and the inner end portion of the knob is used for acting on the shell. The knob is rotated to enable the inner end portion of the knob to be propped against the shell, so that the cover plate is gradually separated from the shell, and the cover plate is conveniently detached from the shell.
Further, the material guiding device comprises a fixed body and a frame type material guiding frame, the material guiding channel is fixed in the shell through the material guiding frame, the material guiding frame is slidingly arranged on the fixed body, an opening on the shell corresponds to the position of the material guiding frame, and the opening supplies the material guiding frame to enter and exit the shell. The frame type material guiding frame is arranged, so that a material guiding channel is formed conveniently, the material guiding frame does not need to be thick, and the structural compactness of the interior of the sugar block forming machine can be effectively improved. The material guiding frame and the fixing body are connected, so that the material guiding frame can be detached simultaneously when the inside of the sugar block forming machine is cleaned, and therefore the structure corresponding to the advancing direction of the sugar material in the sugar block forming machine can be well cleaned, and the cleaning effect is guaranteed.
Further, concave cambered surfaces matched with the peripheral surfaces of the rollers close to each other are arranged on the two opposite sides of the material guiding frame, and the concave cambered surfaces are intersected with the inner opening of the material guiding frame. Through setting up the concave cambered surface of looks adaptation, and make the cylinder outer peripheral face and lead the degree of fit between the material frame good, can effectively avoid the sugar material to leak to the outside. The concave cambered surface is directly intersected with the inner opening part of the material guiding frame, so that a relatively sharp scraping opening is formed on the material guiding frame, and the material guiding frame is convenient for scraping sugar materials adhered on the peripheral surface of the roller.
Therefore, the invention has the beneficial effects that: through setting up the opening in the relevant position department of sugar forming machine casing, can realize the installation and the dismantlement that carry out working drum and other corresponding detachable construction, can satisfy the washing work demand of reality to the sugar forming machine inside well. The rotating shaft can provide radial support for the supporting structure, and after the cover plate is opened, the supporting structure can be suspended in the shell in a cantilever shape, so that the working cylinder can be conveniently pulled out of the supporting structure, and the working cylinder and the supporting structure can be separated. When the roller in the sugar forming machine is required to be cleaned, the working cylinder is only required to be disassembled, and other structures which are not contacted with sugar materials can be reserved in the sugar forming machine, so that the workload of cleaning the roller is reduced. The single working cylinder has relatively light weight and convenient disassembly. The whole working cylinder can be taken out from the opening part on the casing of the sugar forming machine, the working cylinder is cleaned outside the sugar forming machine, the cleaning is very convenient and fast, the outer peripheral surface of the working cylinder can be cleaned without dead angles, and the cleaning effect of the working cylinder can be ensured.
Drawings
Fig. 1 is a perspective view of the sugar mass forming machine.
Fig. 2 is a transverse cross-sectional view of the present candy molding machine.
Fig. 3 is a perspective view of the structure in which the pressing roller is coupled with the rotating shaft.
Fig. 4 is an end face structure view of the nip roll.
Fig. 5 is a cross-sectional view taken along A-A in fig. 4.
Fig. 6 is a perspective view of the cover plate in the back direction.
Fig. 7 is a dispersion structure diagram of the material guiding device.
In the figure, 1, a shell; 2. a hopper; 3. a cover plate; 31. a pull ring; 32. a knob; 33. a bearing seat; 34. a bearing; 4. a conveying device; 41. a material sucking structure; 51. a working cylinder; 52. an outer baffle ring; 53. pulling a button; 54. a coupling head; 55. a nose; 56. a fixing bolt; 57. a rod; 58. an inner cylinder; 59. an inner baffle ring; 501. a pressing roller; 502. a forming roller; 503. a crimping roller; 6. a rotating shaft; 7. a material guiding frame; 71. a concave cambered surface; 72. a slot; 8. and a fixing rod.
Detailed Description
The sugar block forming machine is applied to the field of sugar manufacturing and is used for carrying out pushing and pressing processing forming on viscous sugar materials. The structure of the candy forming machine comprises a shell 1, wherein a cavity is formed in the shell 1, a feed inlet is formed in the upper side of the shell 1, a hopper 2 is arranged on the feed inlet, and candy enters the cavity through the hopper 2. The lower side of the shell 1 is provided with a discharge hole, and the sugar blocks are prepared and molded and then discharged from the discharge hole. A conveying device 4 is arranged at the lower side of the discharge hole, a vacuum suction structure 41 is arranged on the conveying device 4 and is used for sucking out sugar blocks onto the conveying device 4, and the sugar blocks are conveyed to the outer side of the shell 1 by the conveying device 4.
Referring to fig. 2, a pair of pressing rollers 501 are rotatably disposed in the housing 1, the pair of pressing rollers 501 are located below the discharge port of the hopper 2, and after the sugar enters the hopper 2, the sugar enters between the pressing rollers 501 from the discharge port, and when the pressing rollers 501 rotate, the sugar is pushed by concave-convex sugar action structures disposed on the outer peripheral surfaces of the two pressing rollers 501. A forming roller 502 is rotatably disposed in the housing 1, a plurality of recessed forming openings are formed in the outer circumferential surface of the forming roller 502, the forming roller 502 is disposed at the lower side of the nip rollers 501 and is disposed in parallel with the pair of nip rollers 501, and the forming roller 502 faces the space between the two nip rollers 501. In the housing 1, a guide is arranged between the forming roller 502 and the pressing roller 501, so that a guide channel is formed between the forming roller 502 and the pressing roller 501. After the sugar material is pressed by the pressing roller 501, the sugar material is pressed against the outer peripheral surface of the forming roller 502 in the guide passage, and the sugar material is pressed into the forming opening of the forming roller 502. The material guiding device also plays a role in scraping the peripheral surface of the forming roller 502, so that the shape of the sugar block manufactured by the forming roller 502 is the same as that of the forming opening, and the consistency of the manufactured sugar block is good.
The structure of the material guiding device comprises two fixing rods 8 fixed in the shell 1, and the two fixing rods 8 are arranged at intervals in parallel. A drawing type material guiding frame 7 is arranged between the two fixing rods 8, the material guiding frame 7 is in a frame shape, and two opposite side surfaces of the material guiding frame 7 are respectively provided with a slot 72. The cross section of the fixing rod 8 is L-shaped, and the side part of the fixing rod 8 is inserted into the slot 72 in a clearance way. In order to ensure the tightness of the material guide channel, two concave cambered surfaces 71 are respectively arranged on the two surfaces of the upper side of the material guide frame 7, and the two concave cambered surfaces 71 are respectively matched with the outer peripheral surfaces of the two material pressing rollers 501; a concave arc surface 71 is also provided at the lower side of the guide frame 7, and the concave arc surface 71 is matched with the outer circumferential surface of the forming roller 502. The three concave cambered surfaces 71 are intersected with the inner opening part of the material guiding frame 7, so that a linear scraping opening is formed at the edge of the inner opening of the material guiding frame 7, and the linear scraping opening is used for scraping sugar materials on the peripheral surface of the corresponding roller into the material guiding channel. For compacting the sugar mass, a pressing roller 503 is further arranged outside the forming roller 502, and the pressing roller 503 is tangent to the two peripheral surfaces of the forming roller 502. The outer peripheral surface of the press roller 503 is smooth, and the sugar action structure is not provided.
The aforementioned rollers are coupled to the end of a shaft 6, the shaft 6 being in driving connection with a motor. Gears meshed with each other are arranged between the rotating shafts 6 on the two material pressing rollers 501, so that linkage is realized; the press roller 503 and the rotary shaft 6 on the forming roller 502 are also linked by gears meshed with each other. The candy forming machine is provided with a supporting seat, the rotating shaft 6 is rotationally inserted into the supporting seat, and the supporting seat realizes stable radial support on the rotating shaft 6.
The rotary drum is of a split type structure and comprises a cylindrical working drum 51 and a supporting structure, the working drum 51 is sleeved on the supporting structure in a clearance way, a rotary shaft 6 is connected and fixed with the supporting structure into a whole, the rotary shaft 6 provides radial support for the supporting structure, and the working drum 51 takes the supporting structure as a supporting foundation.
Referring to fig. 3, a plurality of concave-convex sugar-material action structures are provided on the outer peripheral surface of the working cylinder 51, and the sugar-material action structures are shown as a plurality of convex strips arranged in parallel at intervals, and the convex strips are all arranged along the axial direction of the working cylinder 51. The roller with the sugar material action structure is provided with a mode for double rollers when in use, and is used for pushing and extruding sugar materials.
The support structure is provided with a coupling structure which detachably couples the working cylinder 51 to the support structure and realizes circumferential transmission between the support structure and the working cylinder 51. In the present embodiment, the coupling structure is a plug-in rod 57 described below, one end of the plug-in rod 57 is fixed to one member, and the other end is inserted into the other member with a gap therebetween. After the rotating shaft 6 receives the power of the power mechanism, the rotating shaft 6 realizes the circumferential rotation of the working cylinder 51 through the supporting structure.
The support structure may be a frame structure, and is shown in the figure to include a cylindrical inner cylinder 58, and correspondingly, the working cylinder 51 is also cylindrical, the working cylinder 51 is sleeved on the inner cylinder 58 with a gap, and the rotating shaft 6 is fixedly connected to one end of the inner cylinder 58. An outward convex ring is arranged at the end of the rotating shaft 6 connected with the inner cylinder 58, and the outward convex ring is inserted and fixed in the inner cylinder 58. The inner baffle ring 59 and the outer convex ring sleeved on the rotating shaft 6 can be in circumferential fixed transmission connection through a plug rod 57 which is described below, or can be in bolt connection. A countersink is provided on the end surface of the working cylinder 51 facing the inner stop ring 59, the inner stop ring 59 abuts against the countersink, and the inner stop ring 59 is used for limiting the movement of the working cylinder 51 towards the rotating shaft 6.
A coupling head 54 is inserted and fixed in the other end of the inner cylinder 58, and the coupling head 54 is detachably connected with the working cylinder 51. The coupling head 54 is shaped like a Chinese character 'tu', a convex head 55 is integrally formed on the outer end surface of the coupling head 54, and an outer baffle ring 52 is sleeved on the convex head 55. The fixing bolt 56 passes through the outer baffle ring 52, the fixing bolt 56 is inserted into the wall body of the working cylinder 51 along the axial direction of the working cylinder 51, and the fixing bolt 56 is in threaded connection with the wall body of the working cylinder 51, so that the outer baffle ring 52 and the working cylinder 51 are fixedly connected together. A plurality of insert rods 57 are fixed to the coupling head 54 in an axial coupling manner, and the insert rods 57 are inserted into the outer retaining ring 52 with play, so that a circumferential transmission between the coupling head 54 and the outer retaining ring 52 is achieved, and the outer retaining ring 52 can be disengaged from the insert rods 57. A plurality of insert rods 57 are fixed to the inner retainer 59 in the axial direction thereof, and the insert rods 57 are inserted into the wall of the end portion of the cylinder 51 which is adjacent to each other, so that the cylinder 51 can be disengaged from the insert rods 57. A plurality of insert rods 57 are fixed on the outward convex ring, and the insert rods 57 are inserted into the inner baffle ring 59, so that the relative circumferential fixation between the inner baffle ring 59 and the outward convex ring can be realized.
To facilitate the disassembly of the working cylinder 51, a pull button 53 is coupled to the outer retainer 52, and a disk head is formed at the outer end of the pull button 53. When the working cylinder 51 needs to be disassembled, the hand-held pull button 53 is pulled outwards, the outer baffle ring 52 is separated from the corresponding inserted rod 57, and the end part of the working cylinder 51, facing the rotating shaft 6, is separated from the corresponding inserted rod 57, so that the disassembly between the working cylinder 51 and the inner cylinder 58 is realized.
In order to adapt to the structure and the working requirements of the working cylinder 51, an opening is arranged on the shell 1 of the candy forming machine at a position corresponding to the working cylinder 51, and the opening is sized to ensure the inlet and the outlet of the working cylinder 51. In connection with fig. 6, a cover plate 3 is coupled and covered on the housing 1 at the position of the opening, a bearing seat 33 is provided on the back side of the cover plate 3, and a bearing 34 is coupled and fixed in the bearing seat 33. After the attachment of the cover plate 3 to the housing 1, the projection 55 on the aforementioned attachment head 54 engages in the bearing 34. Also shown in fig. 1, two cover plates 3 are provided on the housing 1, the cover plate 3 on the upper side corresponding to a pair of nip rollers 501, and the cover plate 3 on the lower side corresponding to a nip roller 503 and a forming roller 502. The material guiding frame 7 can be pulled out of the shell 1 from an opening after the cover plate 3 is opened.
In order to facilitate the disassembly of the cover plate 3, the cover plate 3 itself is fastened and fixed to the housing 1 by means of bolts, and in addition, a plurality of knobs 32 are screwed to the cover plate 3, and these knobs 32 are arranged close to the edge of the cover plate 3. The knob 32 has a disk head formed at an outer end portion thereof, and the knob 32 penetrates the cover plate 3. When the cover plate 3 is opened by the knob 32, the inner end of the knob 32 is pressed against the housing 1, so that the cover plate 3 is slowly opened from the housing 1. A pair of tabs 31 are also provided on the outer surface of the cover 3 for lifting and removing the cover 3 from the housing 1 after the cover 3 is opened.
When the drum is required to be cleaned, the cover plate 3 is detached from the housing 1, and the working cylinder 51 and the guide frame 7 are taken out of the housing 1 by the corresponding operations described above. After the working cylinder 51 and the material guiding frame 7 are cleaned, the working cylinder 51 and the material guiding frame 7 are installed in place from the opening on the shell 1, and after the cover plate 3 is assembled, the cleaning of the corresponding structure in the sugar forming machine is completed. By arranging the corresponding opening on the shell 1, all parts in the shell 1, which are in contact with sugar materials, can be thoroughly cleaned when the inside of the shell 1 is cleaned, the cleaning effect is good, and the operation intensity is low.

Claims (6)

1. A candy molding machine comprising:
a shell, wherein a cavity is formed in the shell, a feed inlet for feeding sugar materials into the cavity is formed in the upper side of the shell, and a discharge outlet for discharging sugar blocks is formed in the lower side of the shell;
the rollers are arranged in the shell in a rotating manner and used for pushing sugar materials to move forward in the shell and forming sugar blocks, and a plurality of concave-convex sugar material action structures are arranged on the peripheral surface of at least part of the rollers;
the material guide device is arranged between the rollers, and a material guide channel for feeding sugar forward is formed in the material guide device;
the power mechanism is in transmission connection with the corresponding roller, so that the sugar material can move forward and be molded in the shell;
the rotary shaft is connected with one end of the supporting structure, and the rotary shaft provides radial support for the supporting structure;
an opening is arranged on the shell, the opening corresponds to the position of the working cylinder and is used for the working cylinder to enter and exit the shell, and a cover plate is detachably covered on the shell at the position of the opening; the supporting structure comprises an inner cylinder, the working cylinder is sleeved on the inner cylinder in a clearance way, and the rotating shaft is positioned in the axial direction of the inner cylinder;
the rotating shaft is fixedly connected with one end part of the inner cylinder, an inner baffle ring is sleeved on the rotating shaft, and the connecting structure is arranged between the inner baffle ring and the working cylinder; an outer baffle ring is arranged at the other end of the inner cylinder, the outer baffle ring is fixedly connected with the working cylinder, and the connecting structure is arranged between the outer baffle ring and the inner cylinder;
the other end of the inner cylinder is also provided with a connecting head, an extended convex head is arranged at the axis position of the connecting head, and an outer baffle ring is sleeved on the convex head in a clearance way;
a plurality of inserted bars are fixed on the connecting head along the axial direction of the connecting head and are inserted into the outer baffle ring in a clearance way;
a plurality of inserted bars are fixed on the inner baffle ring along the axial direction of the inner baffle ring and are inserted into the wall body of the working cylinder in a clearance way;
the inner cylinder is hollow, the connecting head and the rotating shaft are inserted and fixed in the inner cylinder, an outward convex ring is integrally formed on the outer peripheral surface of the inserted end of the rotating shaft, and the inner baffle ring is connected with the outward convex ring; the two ends of the working cylinder are respectively provided with a sinking opening, and the inner baffle ring and the outer baffle ring are respectively embedded into the corresponding sinking openings.
2. A sugar mass moulding machine as claimed in claim 1, wherein a bearing is fixed to the surface of the cover plate facing the barrel, the bearing being arranged to bear against the other end of the support structure.
3. The candy bar forming machine as claimed in claim 2, wherein the cover plate is coupled and fixed to the housing by a coupling bolt, a knob is screw-coupled to the cover plate, an outer end of the knob is formed with a pan head, and an inner end of the knob is used to act on the housing.
4. The sugar-cube forming machine of claim 1, wherein the material guiding device comprises a fixed body and a frame-type material guiding frame, the material guiding channel is fixed in the shell through the material guiding frame, the material guiding frame is slidingly arranged on the fixed body, an opening on the shell corresponds to the position of the material guiding frame, and the opening supplies the material guiding frame to enter and exit the shell.
5. The sugar-cube forming machine of claim 4, wherein the opposite sides of the guide frame are each provided with a concave arc surface adapted to the outer peripheral surface of the drum that is adjacent thereto, the concave arc surfaces intersecting the inner mouth of the guide frame.
6. A candy shaper as claimed in any one of claims 1 to 5 for use in the preparation of candy.
CN202011375367.3A 2020-12-01 2020-12-01 Candy forming machine and application thereof Active CN112544760B (en)

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Application Number Priority Date Filing Date Title
CN202011375367.3A CN112544760B (en) 2020-12-01 2020-12-01 Candy forming machine and application thereof

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Application Number Priority Date Filing Date Title
CN202011375367.3A CN112544760B (en) 2020-12-01 2020-12-01 Candy forming machine and application thereof

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CN112544760A CN112544760A (en) 2021-03-26
CN112544760B true CN112544760B (en) 2023-12-26

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105941783A (en) * 2016-06-29 2016-09-21 台州市宝刚机械有限公司 One-piece candy moulding machine
CN110477175A (en) * 2019-08-22 2019-11-22 台州市宝刚机械有限公司 Sugar molding machine and its application
CN110558413A (en) * 2019-08-22 2019-12-13 台州市宝刚机械有限公司 Power device for forming sugar blocks of sugar making machine and application thereof
CN210782785U (en) * 2019-08-22 2020-06-19 台州市宝刚机械有限公司 Sugar block forming die device of sugar making machine

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105941783A (en) * 2016-06-29 2016-09-21 台州市宝刚机械有限公司 One-piece candy moulding machine
CN110477175A (en) * 2019-08-22 2019-11-22 台州市宝刚机械有限公司 Sugar molding machine and its application
CN110558413A (en) * 2019-08-22 2019-12-13 台州市宝刚机械有限公司 Power device for forming sugar blocks of sugar making machine and application thereof
CN210782785U (en) * 2019-08-22 2020-06-19 台州市宝刚机械有限公司 Sugar block forming die device of sugar making machine

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