CN105410691A - Single-slice knife built-in pneumatic rice crust mold - Google Patents
Single-slice knife built-in pneumatic rice crust mold Download PDFInfo
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- CN105410691A CN105410691A CN201510720157.6A CN201510720157A CN105410691A CN 105410691 A CN105410691 A CN 105410691A CN 201510720157 A CN201510720157 A CN 201510720157A CN 105410691 A CN105410691 A CN 105410691A
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Abstract
The present invention relates to the technical field of mold and particularly to a single-slice knife built-in pneumatic rice crust mold which include an extrusion mechanism (1). A cutting mechanism is arranged at a material outlet (2) of the extrusion mechanism (1). The cutting mechanism includes a a locating sleeve (3), a material outlet positioning plate (4), a material discharge hole (5), a blade disc (6), a pneumatic device and a blade (7). A through-hole (8) is arranged in the middle of the blade disc (6) and the blade is located within the through-hole (8). The material discharge hole (5) points to the internal of the through-hole (8). This rice crust mold is smaller in space usage, lower in cost and higher in processing efficiency.
Description
Technical field
The present invention relates to technical field of mold, particularly relate to a kind of monolithic cutter built-in pneumatic crispy rice mould.
Background technology
Be close to one deck rice grain that pot coking becomes block when crispy rice is and cooks rice over a slow fire, it is not only fragrant but also crisp, is a kind of Speciality Foods of China's han nationality.But instead of ancient casting iron pan gradually with electric cooker, crispy rice very general in life in the past has also just slowly tailed off, present crispy rice is mainly processed by plant produced, factory process crispy rice mainly comprises following equipment: mixer, expanded extruder, cutting machine, Fryer and flavoring machine etc., because equipment is more, so production line length is longer, and then it is larger to make whole production equipment take up room, and because need between equipment and equipment to connect, so also need extra auxiliary member, and then add production cost, and raw material after an equipment is processed after be not at once enter next equipment to carry out processing, but need through transfer transport transmission, make working (machining) efficiency lower like this.
Summary of the invention
Technical problem to be solved by this invention be to provide a kind of take up room less, cost is lower and the monolithic cutter built-in pneumatic crispy rice mould that working (machining) efficiency is higher.
The technical solution adopted in the present invention is: a kind of monolithic cutter built-in pneumatic crispy rice mould, comprise pressing mechanism, the discharging opening of described pressing mechanism is provided with a cutting mechanism cut for the raw material that will extrude, described cutting mechanism comprises the positioning sleeve being set in pressing mechanism outside, to be fixed on positioning sleeve and to block the discharging positioning disk of discharging opening, be arranged on the discharge opening being communicated with on discharging positioning disk and with discharging opening and extruding for the raw material extruded through pressing mechanism, to be arranged on outside discharging positioning disk and to embed the fan disk in positioning sleeve, the pneumatic means rotated for driving fan disk circumference and be fixed on fan disk and carry out for the raw material extruded by discharge opening the blade that cuts, through hole is provided with in the middle of described fan disk, and described blade is positioned at through hole inside, it is inner that described discharge opening points to through hole,
If it is first end that blade is connected to fan disk one end, blade is the second end away from fan disk one end, and when fan disk rotation makes blade first end be horizontal minimum, now the horizontal level of blade second end is lower than the horizontal level bottom discharge opening; When fan disk rotation makes blade first end be horizontal the highest, now blade second end is lower than the horizontal level bottom discharge opening.
A described discharging positioning disk part stretches into discharging opening and coordinates with discharging opening.
Described blade is close to discharging positioning disk away from discharging opening one end.
Second end of described blade is positioned at the circle centre position of through hole.
Described fan disk comprises housing and is arranged on the rotating disk in housing, described rotating disk excircle is evenly provided with multi-disc drive for air-flow and then drive the blade of dial rotation, described housing is provided with the air inlet supplying the air-flow of pneumatic means generation to flow into and the gas outlet of extruding for air-flow.
Operation principle of the present invention is: the raw material through extruding can be extruded from discharging opening by pressing mechanism endlessly, because pressing mechanism discharging opening is blocked by discharging positioning disk, so raw material can only be extruded from the discharge opening discharging positioning disk, again because be also provided with a fan disk outside discharging positioning disk, and fan disk is provided with blade, like this when fan disk rotation makes blade separate with discharge opening, now blade does not cut, after fan disk rotation makes blade overlap with discharge opening, now blade starts cutting, complete after fan disk rotating band cutting blade leaves discharge opening again and once cut, namely fan disk rotates a circle, blade carries out once complete cutting.
Adopt above structure compared with prior art, the present invention has the following advantages: discharge outlet cutting mechanism being set directly at pressing mechanism, extra auxiliary member is not needed to connect so between the two, cost is lower, and both link together, so centre does not have interval, make production line shorter like this, namely entirety takes up room less; And raw material from pressing mechanism discharging opening out after can cut at once, raw-material like this working (machining) efficiency is higher, and adopt pneumatic means to drive fan disk to rotate, more steady during such rotation, shake is less likely to occur, the intake velocity of pneumatic means also can conveniently regulate, so can facilitate the velocity of rotation of adjusting vane dish.
A part for discharging positioning disk stretched into discharging opening and coordinates with discharging opening, setting out material positioning disk so fixing more firm, namely can better prevent the raw material through extruding from extruding leakage from discharging positioning disk periphery.
Blade is close on discharging positioning disk, like this can directly by blade cuts after raw material is extruded from discharge opening, cutting efficiency is higher.
Blade is arranged on through hole circle centre position, like this when fan disk rotates a circle, just by the complete cutting of blade once, cutting effect is better for the raw material extruded from discharge opening.
Adopt the fan disk of this structure, rotating effect is better, and rotates more steady.
Accompanying drawing explanation
Fig. 1 is the side sectional view of monolithic cutter built-in pneumatic crispy rice mould of the present invention.
Fig. 2 is the front view of monolithic cutter built-in pneumatic crispy rice mould of the present invention.
As shown in the figure: 1, pressing mechanism; 2, discharging opening; 3, positioning sleeve; 4, discharging positioning disk; 5, discharge opening; 6, fan disk; 7, blade; 8, through hole.
Detailed description of the invention
Below in conjunction with accompanying drawing and detailed description of the invention, the present invention is described further, but the present invention is not limited only to following detailed description of the invention.
A kind of monolithic cutter built-in pneumatic crispy rice mould, comprise pressing mechanism 1, described pressing mechanism 1 comprises a compression sleeve, and the worm screw being used for extruding raw material is set in compression sleeve, the discharging opening 2 of described pressing mechanism 1 is provided with a cutting mechanism cut for the raw material that will extrude, described cutting mechanism comprises the positioning sleeve 3 being set in pressing mechanism outside, to be fixed on positioning sleeve 3 and to block the discharging positioning disk 4 of discharging opening 2, be arranged on the discharge opening 5 being communicated with on discharging positioning disk 4 and with discharging opening 2 and extruding for the raw material extruded through pressing mechanism, to be arranged on outside discharging positioning disk and to embed the fan disk 6 in positioning sleeve 3, the pneumatic means rotated for driving fan disk 6 circumference and be fixed on fan disk 6 and carry out for the raw material extruded by discharge opening 5 blade 7 that cuts, through hole 8 is provided with in the middle of described fan disk 6, and described blade 7 is positioned at through hole 8 inside, it is inner that described discharge opening 5 points to through hole 8, described discharge opening 5 is arranged on the circumferential location of discharging positioning disk 4, described circumferential position refers to the disc circumference position of discharging positioning disk 4, namely only otherwise contact with the center of circle of discharging positioning disk, but this position still will ensure that discharge opening 5 communicates with discharging opening 2, can not too edge, preferably according to shown in accompanying drawing 1, be arranged on the edge that discharging positioning disk 4 stretches into discharging opening 2 part.Described positioning sleeve 3 is fixed on compression sleeve by securing member.
If it is first end that blade is connected to fan disk one end, blade is the second end away from fan disk one end, and when fan disk rotation makes blade first end be horizontal minimum, now the horizontal level of blade second end is lower than the horizontal level bottom discharge opening; When fan disk rotation makes blade first end be horizontal the highest, now blade second end is lower than the horizontal level bottom discharge opening.Namely such setting represents that fan disk 6 rotates a circle, and raw material is cut once by blade 7.
Described discharging positioning disk 4 part stretches into discharging opening 2 and coordinates with discharging opening 2.And also sealed by sealing mechanism between described discharging positioning disk 4 and discharging opening 2, namely raw material can not spill from the limit of discharging positioning disk 4, and only can extrude from the discharge opening 5 discharging positioning disk 4.
Described blade 7 is close to discharging positioning disk 4 away from discharging opening 2 one end.
Second end of described blade 7 is positioned at the circle centre position of through hole 8.
Described fan disk 6 comprises housing and is arranged on the rotating disk in housing, described rotating disk excircle is evenly provided with multi-disc drive for air-flow and then drive the blade of dial rotation, described housing is provided with the air inlet supplying the air-flow of pneumatic means generation to flow into and the gas outlet of extruding for air-flow.
Claims (5)
1. a monolithic cutter built-in pneumatic crispy rice mould, comprise pressing mechanism (1), it is characterized in that: the discharging opening (2) of described pressing mechanism (1) is provided with a cutting mechanism cut for the raw material that will extrude, described cutting mechanism comprises the positioning sleeve (3) being set in pressing mechanism outside, be fixed on positioning sleeve (3) to go up and the discharging positioning disk (4) blocking discharging opening (2), be arranged on discharging positioning disk (4) go up and be communicated with the discharge opening (5) extruded for the raw material extruded through pressing mechanism with discharging opening (2), to be arranged on outside discharging positioning disk and to embed the fan disk (6) in positioning sleeve (3), the pneumatic means rotated for driving fan disk (6) circumference and be fixed on fan disk (6) and carry out for the raw material extruded by discharge opening (5) blade (7) that cuts, through hole (8) is provided with in the middle of described fan disk (6), and described blade (7) is positioned at through hole (8) inside, it is inner that described discharge opening (5) points to through hole (8),
If it is first end that blade is connected to fan disk one end, blade is the second end away from fan disk one end, and when fan disk rotation makes blade first end be horizontal minimum, now the horizontal level of blade second end is lower than the horizontal level bottom discharge opening; When fan disk rotation makes blade first end be horizontal the highest, now blade second end is lower than the horizontal level bottom discharge opening.
2. monolithic cutter built-in pneumatic crispy rice mould according to claim 1, is characterized in that: described discharging positioning disk (4) part stretches into discharging opening (2) and coordinates with discharging opening (2).
3. monolithic cutter built-in pneumatic crispy rice mould according to claim 1, is characterized in that: described blade (7) is close to discharging positioning disk (4) away from discharging opening (2) one end.
4. monolithic cutter built-in pneumatic crispy rice mould according to claim 3, is characterized in that: the second end of described blade (7) is positioned at the circle centre position of through hole (8).
5. monolithic cutter built-in pneumatic crispy rice mould according to claim 1, it is characterized in that: described fan disk (6) comprises housing and is arranged on the rotating disk in housing, described rotating disk excircle is evenly provided with multi-disc drive for air-flow and then drive the blade of dial rotation, described housing is provided with the air inlet supplying the air-flow of pneumatic means generation to flow into and the gas outlet of extruding for air-flow.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201510720157.6A CN105410691A (en) | 2015-10-30 | 2015-10-30 | Single-slice knife built-in pneumatic rice crust mold |
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CN201510720157.6A CN105410691A (en) | 2015-10-30 | 2015-10-30 | Single-slice knife built-in pneumatic rice crust mold |
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CN105410691A true CN105410691A (en) | 2016-03-23 |
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CN201510720157.6A Pending CN105410691A (en) | 2015-10-30 | 2015-10-30 | Single-slice knife built-in pneumatic rice crust mold |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114009467A (en) * | 2021-09-26 | 2022-02-08 | 佛山市顺德区兆之泓电器有限公司 | Pressing machine for kitchen |
Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1097685A (en) * | 1993-02-26 | 1995-01-25 | 埃米尔李霍茨基机械制造公司 | Extrusion equipment |
CN2250109Y (en) * | 1995-07-27 | 1997-03-26 | 伏飞如 | Waxing and polishing device of vacuum cleaner |
CN202445039U (en) * | 2011-12-22 | 2012-09-26 | 圣昌达机械(天津)有限公司 | Rotary cutting device of extruder |
CN203888067U (en) * | 2014-06-23 | 2014-10-22 | 四川远星橡胶有限责任公司 | Automatic rubber cutting device of tire rubber filter |
-
2015
- 2015-10-30 CN CN201510720157.6A patent/CN105410691A/en active Pending
Patent Citations (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN1097685A (en) * | 1993-02-26 | 1995-01-25 | 埃米尔李霍茨基机械制造公司 | Extrusion equipment |
CN2250109Y (en) * | 1995-07-27 | 1997-03-26 | 伏飞如 | Waxing and polishing device of vacuum cleaner |
CN202445039U (en) * | 2011-12-22 | 2012-09-26 | 圣昌达机械(天津)有限公司 | Rotary cutting device of extruder |
CN203888067U (en) * | 2014-06-23 | 2014-10-22 | 四川远星橡胶有限责任公司 | Automatic rubber cutting device of tire rubber filter |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN114009467A (en) * | 2021-09-26 | 2022-02-08 | 佛山市顺德区兆之泓电器有限公司 | Pressing machine for kitchen |
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Application publication date: 20160323 |
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