CN202842264U - Full-automatic electromagnetic heating food frying machine with accurate temperature control device - Google Patents
Full-automatic electromagnetic heating food frying machine with accurate temperature control device Download PDFInfo
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- CN202842264U CN202842264U CN2012204291110U CN201220429111U CN202842264U CN 202842264 U CN202842264 U CN 202842264U CN 2012204291110 U CN2012204291110 U CN 2012204291110U CN 201220429111 U CN201220429111 U CN 201220429111U CN 202842264 U CN202842264 U CN 202842264U
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Abstract
The utility model provides a full-automatic electromagnetic heating food frying machine with an accurate temperature control device. The full-automatic electromagnetic heating food frying machine comprises a rack, a rotary drum, a heating device and a rotary drum driving device, wherein the rotary drum is horizontally mounted on the rack by rotating a supporting mechanism; a feeding hopper and a discharging opening are respectively arranged at the front and rear ends of the rotary drum; the rotary drum and the rotary drum driving device are in transmission connection; the heating device is arranged at the outer side of the rotary drum; and the inner periphery of the rotary drum is provided with a plurality of spiral material guide plates. The full-automatic electromagnetic heating food frying machine is characterized in that the heating device is an electromagnetic heating device; and the rotary drum is provided with a temperature measuring device. The full-automatic electromagnetic heating food frying machine disclosed by the utility model has the advantages that electromagnetic heating is adopted; in a machining process, no smoke or open fire is generated and the full-automatic electromagnetic heating food frying machine is safe, clean and sanitary; with the adoption of an automatic temperature control device, the rotary speed of the rotary drum and the firepower, the temperature and the machining time can be adjusted according to requirements; and an optical coupling transmission manner of a temperature signal is adopted so as to realize the accurate transmission and control of the temperature of the rotary drum and guarantee the food machining quality.
Description
Technical field
The utility model relates to a kind of Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device, utilizes electromagnetism to give birth to pyrogen reason parch cereal and nut fruits food, and the fields such as pharmacy and tea making that also can be applied to simultaneously are to the frying processing of raw material.So-called " automatically " be automatic rotation, temperature automatically controlled, automatic turning and frying, automatically separate rice and the grains of sand or salt grain, automatically take the dish out of the pot.
Background technology
At present, existing cereal and nut parch equipment on the market, but heating energy source mostly is with fire coal, fuel oil, combustion gas and heating heat form the thermal source contaminated environment of fire coal, fuel oil, combustion gas, uncontrollable temperature; The heating heating-up temperature is inhomogeneous, and heating element heater damages easily, and service life is short.In addition, adopt the parch equipment of drum-type, temperature sensor can not be located on the cylinder, and the temperature value error of detection is larger, and temperature-controlled precision is lower, often causes the not yet done of fried matter material or overdoes, and is difficult to guarantee the food processing quality; Have again: for the parch equipment of twin-roll, return in the process of feed end at intermediate medium (sand or salt grain), with its heat transferred inner core, cause the bad control of temperature of inner core, causing often occurring the phenomenon that the fried matter material overdoes, also is a great problem of this equipment of puzzlement.
Summary of the invention
The purpose of this utility model provides a kind of Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device, the contaminated environment that exists to solve prior art; Heating-up temperature is inhomogeneous, and heating element heater damages easily, and service life is short, and temperature-controlled precision is lower, is difficult to guarantee the problem of food processing quality.
The technical solution of the utility model is: a kind of Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device, comprise frame, cylinder, heater and drum drive, cylinder is installed on the frame by rotational support mechanism is horizontal, forward and backward two ends at cylinder are respectively equipped with feed hopper and discharging opening, this cylinder and drum drive are in transmission connection, the outside at cylinder is provided with heater, inner peripheral surface at this cylinder is provided with several spiral stock guides, it is characterized in that: described heater is electromagnetic heater; At described cylinder temperature measuring equipment is housed.
The utility model has the advantages that:
1, adopted advanced Electromagnetic Heating principle, added smokeless, the flames of anger in man-hour, the safety clean health can better be improved working environment.
2, temperature sensor is located at the urceolus outside, and the temperature of direct-detection cylinder realizes the accurate measurement of temperature; And adopt the optically-coupled signal transmission unit that the temperature signal on the cylinder that rotates is transferred on the static temperature controller, utilize the electromagnetic induction power subsystem that the power supply of the electric component on the cylinder is provided, realized the accurate transmission of temperature signal, guarantee accurate measurement and the control of bowl temperature, greatly improved the food processing quality.
3, on the structure frying spatial design is become drum-type, since relative temperature sealing in the cylinder, the temperature height, humidity is higher, and the stewing effect of frying is good especially, and the frying time is short, and ripe is fast, and ripe is saturating.Cylinder ceaselessly rotates during work, makes parched food top to bottom, left and right, front and rear, the omnibearing stereo thermally equivalent that stir-fries, sticking pot phenomenon can not appear and can guarantee dry fruit ripe evenly.
4, owing to be provided with the insulating sandwich of inner core, effectively completely cut off side outer tube and returned fried matter material in the heat transferred inner core of intermediate medium of front end, and insulating sandwich can not intercept the transmission of the electromagnetic energy of electromagnetic heater, solved intermediate medium with the fried matter material at heat transferred inner core rear portion and cause the fried matter material by the quality problems that sharply heat and produce, for this area has solved a great problem.
5, adopt the two-layer cylinder horizontal type structure, feeding mouth and discharging opening are established respectively in two ends, and such structure is to go out pan feeding very convenient.Utilize inner core, screen cloth and internal helical blades that material is advanced to the back-end, and at the screen cloth place with intermediate medium and feed separation, forward end moves under the drive of the external spiral blade of isolated intermediate medium in urceolus, import the front end that blade enters inner core through intermediate medium, begin next cyclic process.The fried matter material has been realized need not manually to separate with the automatic isolating construction of intermediate medium cleverly, and is quick, laborsaving rapidly, keeps clean environment.
Description of drawings
Fig. 1 is front view of the present utility model;
Fig. 2 is the left view of Fig. 1;
Fig. 3 is the left view that removes among Fig. 1 behind front end shield and the material bin;
Fig. 4 is the A-A cutaway view of Fig. 2;
Fig. 5 is the B-B cutaway view of Fig. 4;
Fig. 6 is the enlarged drawing of temperature measuring equipment among Fig. 4.
1, the operation of electrical appliances case, 2, chain-drive mechanism, 3, frame, 4, support wheel, 6, reducing motor (decelerator is housed), 7, adjust leg, 8, temperature measuring equipment, 80, HF signal generator, 81, rotary magnetic core, 82, revolving coil, 83, the rotary magnetic core hole, 84, photoemission cell, 85, regulator rectifier circuit, 86, static magnetic core, 87, stationary coil, 88, static magnetic core hole, 89, photoelectric receiving tube, 9, inner core spiral stock guide, 10, solenoid, 11, cylinder, 110, inner core, 111, the inner core heat preservation sandwich layer, 112, urceolus, 113, the urceolus heat-insulation layer, 12, material bin, 13, coil actuator, 14, capacitor board, 15, binding post, 16, discharging opening, 17, supporting surface, 18, the rear end axle, 20, ring-shaped guide rail, 21, screen cloth, 22, lead sand material blade, 23, intermediate medium imports blade, 24, rotating base, 25, ball bearing, 26, stationary base, 27, the support of stationary base, 28, coil brace, 29, temperature sensor, 30, outer cover (band air vent), 31, input signal processing circuit, 32, output signal processing circuit, 33, temperature controller, 34, front end shield.
The specific embodiment
Referring to Fig. 1~Fig. 6, a kind of Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device of the utility model, comprise frame 3, cylinder 11, heater and drum drive, cylinder 11 is rotatably supported on the frame 3 by rotational support mechanism, outer front end shield 34 tops of the front end of cylinder 11 are provided with material bin 12, the lower port of material bin 12 tilts to extend in the front port of inner core 110, and the rear end of cylinder 11 is provided with discharging opening 16, is provided with heater in the outside of cylinder 11.
Described rotational support mechanism comprises ring-shaped guide rail 20 and support wheel 4, is respectively equipped with one along the ring-shaped guide rail 20 of circumference at this cylinder 11 near the outer peripheral face at place, two ends, and is supported on the support wheel 4 of both sides, bottom, and support wheel 4 is rotatably installed on the frame 3.
Described drum drive comprises reducing motor 6 and chain-drive mechanism 2, and the output shaft of reducing motor 6 is connected with the front end through-drive of cylinder 11 by chain-drive mechanism 2.Power end at this reducing motor 6 is connected with rotational speed governor.
Described heater is electromagnetic heater, comprise solenoid 10, coil brace 28 and coil actuator 13, the upper end of coil brace 28 is provided with the supporting surface 17 that coincide with described cylinder 11 outer peripheral faces, solenoid 10 is installed on this supporting surface 17, and solenoid 10 leaves the gap with the outer peripheral face of described cylinder 11.The output of coil actuator 13 is connected with this solenoid 10.In described frame operation of electrical appliances case 1 is housed, in operation of electrical appliances case 1, be provided with battery main switch, temperature controller, rotational speed governor and timing controller and (be migrating of routine techniques, not shown), the input of this temperature controller is connected with the temperature sensor 29 of temperature measuring equipment 8 in being installed in cylinder 11.
Described temperature measuring equipment 8 comprises temperature sensor 29, optically-coupled signal transmission unit, electromagnetic induction power subsystem and temperature controller 33(are located in the operation of electrical appliances case 1), temperature sensor 29 is installed in the cylinder 11, the signal output part of this temperature sensor 29 is connected with the input of temperature controller 33 by the optically-coupled signal transmission unit on the rear end axle 18 that is installed in center, cylinder 11 rear end, and the latter's output is connected with the coil actuator of described electromagnetic heater 13.The electromagnetic induction power subsystem is delivered to the high-frequency signal in the external world on the cylinder 11, for temperature sensor 29 and optically-coupled signal transmission unit provide working power.
Coil actuator 13(comprises that its resonant capacitance 14 is installed in the frame 3) the output high frequency electric is prior art to solenoid 10().
Described optically-coupled signal transmission unit comprises input signal processing circuit 31, photoemission cell 84, photoelectric receiving tube 89 and output signal processing circuit 32, the input of input signal processing circuit 31 is connected with output to be connected with photoemission cell with temperature sensor 29 and is connected, and the output of photoelectric receiving tube 89 is connected with the input of output signal processing circuit 32.On axle 18 tops, the rear end of cylinder rotating base 24 is housed, (by support 27) installed and these rotating base 24 coaxial corresponding stationary base 26 on frame 3, rotating base 24 and stationary base 26 are drum, and the two by ball bearing 25 coaxial sleeves together.Photoemission cell 84 and the photoelectric receiving tube 89 of mutual correspondence are installed respectively in the central authorities of this rotating base 24 and stationary base 26.
Described electromagnetic induction power subsystem comprises rotary magnetic core 81, revolving coil 82, static magnetic core 86, stationary coil 87, HF signal generator 80 and regulator rectifier circuit 85, the rotary magnetic core 81 that revolving coil 82 is housed is installed in this rotating base 24, and the lead-in wire of revolving coil 82 is connected with the input of regulator rectifier circuit 85.Central authorities at this rotary magnetic core 81 are provided with aperture 83, the described photoemission cell 84 of aperture 83 interior installations.The static magnetic core 86 that stationary coil 87 is housed is installed in the described stationary base 26, the lead-in wire of stationary coil 87 is connected with the output of HF signal generator 80, central authorities at this static magnetic core 86 are provided with aperture 88, the described photoelectric receiving tube 89 of aperture 88 interior installations.
Rotary magnetic core 81 and revolving coil 82 form a transformer with static magnetic core 86 and stationary coil 87, wherein stationary coil 87 is the primary coil of transformer, revolving coil 82 is the secondary coil of transformer, revolving coil 82 is sensed the electromagnetic field of high frequency of stationary coil 87 generations and is produced induced-current, through supplying with dc source of each device behind the rectifying and voltage-stabilizing.Realized like this power supply of temperature measuring equipment in the contactless feed roller.And after the temperature signal of temperature sensor 29 process input signal processing circuit 31 conversion (shaping coding), drive photoemission cell 84 and produce corresponding optical signal, photoelectric receiving tube 89 receives the optical signal that photoemission cells 84 send, and is converted into the signal of telecommunication and delivers to output signal processing circuit 32 and carry out (decoding) processing.The output of output signal processing circuit 32 is connected with the temperature controller of equipment 33, is used for the temperature of control electromagnetic heater.Compare with infrared measurement of temperature, the utility model has improved the precision of temperature survey and temperature control greatly.
Described cylinder 11 is assembled by coaxial inner core 110 and urceolus 112, and the length of this inner core 110 is the large section of urceolus 112 length, and adjacent with the feed end of cylinder 11.The front end of this inner core 110 is shorter than the front end of urceolus 112, being evenly distributed in several intermediate mediums at the front end edge of inner core 110, to import blade 23(similar to blast fan, evenly be connected to the front end of inner core 110, be used for intermediate medium is imported in the front end of inner core 110 from urceolus 112 front ends).Screen cloth 21 at the coaxial connection tubular in the rear end of this inner core 110.Described spiral stock guide comprises the inner core spiral stock guide 9 of forward of the inboard that is located at this inner core 110 and screen cloth 21 and the reverse urceolus spiral stock guide 22 that is located at the inboard of this urceolus 112; Be provided with heat-insulation layer 113 in the outside of urceolus 112, described temperature sensor 29 is located between the outside and heat-insulation layer 113 of urceolus 112.
Barrel at described inner core 110 is provided with insulating sandwich 111.The heat-insulation layer 113 in urceolus 112 outsides and the insulating sandwich 111 of inner core 110 are selected high-quality alumina silicate heat-preservation cotton.Inner core 110, urceolus 112 and screen cloth 21 all adopt stainless steel to make.
During the equipment running, inner core 110 rotates synchronously with urceolus 112, press forward switch (in the operation of electrical appliances case) during operation, the rice of interior cylinder 110 (fried matter material) is mixing sand grains (intermediate medium) limit heating edge and is advancing to discharging opening 16 directions with inner core spiral stock guide 9, when being advanced to screen cloth 21 places screen cloth automatic fitration drop grain, rice continues to be advanced into discharging opening 16 with 9 rotations of inner core spiral stock guide and fries discharging, the sand grains side is filled in the urceolus 112 by screen cloth 21, effect with the interior reverse urceolus spiral stock guide 22 of urceolus 112 advances to charging aperture 12 directions, and in front end, imported in the blade 23 importing inner cores 110 by intermediate medium, thereby enter next round frying process.Only need press reversal switch when needs are changed sand grains, motor 6 drives cylinder 11 counter-rotatings, and sand grains is namely along with urceolus spiral stock guide 22 is discharged by discharging opening 16.Cleverly rice, the automatic isolating construction of sand realized need not artificial separation, and is quick rapidly, the leicht fallen D/A of saving trouble, totally health again.
Owing to be provided with the insulating sandwich 111 of inner core, return in the process of front end (initial stage of especially returning) at sand grains, effectively completely cut off the fried matter material in the heat transferred inner core 110 of the sand grains in inner core 110 outsides, and insulating sandwich 111 can not intercept the transmission of the electromagnetic energy of electromagnetic heater.
Operation principle of the present utility model is as follows: adopt magnetic field induction eddy heating for heating principle, utilize electric current to pass through solenoid 10 and produce magnetic field, when the magnetic line of force of inside, magnetic field passes through the bottom of irony cylinder 11, namely produce countless eddy current at urceolus 112 and inner core 110, make voluntarily at a high speed heating of cylinder itself.Meanwhile calorify the roasted seeds and nuts in barrel tool.In the process of processing, operating personnel can regulate operating current (being temperature) size at any time according to the needs of different roasted seeds and nuts, set the time of processing and the rotating speed of cylinder.
Claims (9)
1. Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device, comprise frame, cylinder, heater and drum drive, cylinder is installed on the frame by rotational support mechanism is horizontal, forward and backward two ends at cylinder are respectively equipped with feed hopper and discharging opening, this cylinder and drum drive are in transmission connection, the outside at cylinder is provided with heater, is provided with several spiral stock guides at the inner peripheral surface of this cylinder, and it is characterized in that: described heater is electromagnetic heater; At described cylinder temperature measuring equipment is housed.
2. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 1, it is characterized in that: described temperature measuring equipment comprises temperature sensor, optically-coupled signal transmission unit, electromagnetic induction power subsystem and temperature controller, temperature sensor is installed in this cylinder, the signal output part of this temperature sensor is connected with the input of temperature controller by the rear end axle glazing coupled signal transmission unit that is installed in center, cylinder rear end, and the latter's output is connected with described electromagnetic heater; The electromagnetic induction power subsystem is delivered to the high-frequency signal in the external world on the cylinder, for temperature sensor and optically-coupled signal transmission unit provide working power.
3. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 2, it is characterized in that: described optically-coupled signal transmission unit comprises input signal processing circuit, photoemission cell, photoelectric receiving tube and output signal processing circuit, the input of input signal processing circuit is connected with output with temperature sensor and is connected with photoemission cell, and the output of photoelectric receiving tube is connected with the input of output signal processing circuit; On axle top, the rear end of cylinder rotating base is housed, is equipped with and the coaxial corresponding stationary base of this rotating base in frame, photoemission cell and the photoelectric receiving tube of mutual correspondence are installed respectively in the central authorities of this rotating base and stationary base.
4. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 3, it is characterized in that: described electromagnetic induction power subsystem comprises rotary magnetic core, revolving coil, static magnetic core, stationary coil, HF signal generator and regulator rectifier circuit, the rotary magnetic core that revolving coil is housed is installed in this rotating base, and the lead-in wire of revolving coil is connected with the input of regulator rectifier circuit; Central authorities at this rotary magnetic core are provided with the first hole, and described photoemission cell is installed in the first hole; The static magnetic core that stationary coil is housed is installed in the described stationary base, and the lead-in wire of stationary coil is connected with the output of HF signal generator, is provided with the second hole in the central authorities of this static magnetic core, and described photoelectric receiving tube is installed in the second hole.
5. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 1, it is characterized in that: described electromagnetic heater comprises solenoid, coil brace and coil actuator, and the output of coil actuator is connected with this solenoid; One end of coil brace is provided with the supporting surface that coincide with described cylinder outer peripheral face, and solenoid is installed on this supporting surface, and solenoid and described cylinder outer peripheral face leave the gap; In described frame the operation of electrical appliances case is housed, in the operation of electrical appliances case, be provided with battery main switch, temperature controller, rotational speed governor and timing controller, the input of this temperature controller is connected with temperature sensor on the supporting surface that is installed in described solenoid or coil brace, and the output of this temperature controller is connected with described coil actuator; This rotational speed governor is connected with described drum drive.
6. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 1, it is characterized in that: described rotational support mechanism comprises ring-shaped guide rail and support wheel, the outer peripheral face of locating near two ends at this cylinder is respectively equipped with one along the ring-shaped guide rail of circumference, and is supported on the support wheel of both sides, bottom.
7. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 1, it is characterized in that: described drum drive comprises reducing motor and chain-drive mechanism, and the output shaft of reducing motor is connected with the front end through-drive of cylinder by chain-drive mechanism; Power end at this reducing motor is connected with rotational speed governor.
8. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 1, it is characterized in that: described cylinder is assembled by coaxial inner core and urceolus, and this inner core length is the large section of urceolus length, and adjacent with feed end; The front end of this inner core is shorter than the front end of urceolus, is evenly distributed in several intermediate mediums at the front end edge of inner core and imports blade; Screen cloth at the coaxial connection tubular in the rear end of this inner core; Described spiral stock guide comprises the inner core spiral stock guide of forward of the inboard that is located at this inner core and screen cloth and the reverse urceolus spiral stock guide that is located at the inboard of this urceolus; The outside at this urceolus is provided with heat-insulation layer, and described temperature sensor is located between this urceolus and the heat-insulation layer.
9. the Full-automatic electromagnetic heated food frying machine with precision temperature-controlling device according to claim 8, it is characterized in that: the barrel at described inner core is provided with insulating sandwich.
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Cited By (11)
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CN104705359A (en) * | 2015-03-30 | 2015-06-17 | 保定嘉利食品机械有限公司 | Rotation station type full-automatic frying and boiling production line |
CN104771314A (en) * | 2014-01-14 | 2015-07-15 | 北京康仁堂药业有限公司 | Numerically-controlled continuous automatic herbal medicine roaster |
CN104801257A (en) * | 2015-04-01 | 2015-07-29 | 中国恩菲工程技术有限公司 | Replacement device |
CN104886720A (en) * | 2015-04-23 | 2015-09-09 | 合肥顺昌电磁感应科技有限公司 | Electromagnetic induction type heating device for roasted nuts and seeds |
CN105639405A (en) * | 2015-12-31 | 2016-06-08 | 江苏大学 | Continuous electromagnetic baking equipment for cereal germs, and electromagnetic baking method of continuous electromagnetic baking equipment |
CN106626172A (en) * | 2016-11-30 | 2017-05-10 | 重庆市成吉思机械制造有限公司 | Adjustable tire vulcanization preheating device |
CN106819771A (en) * | 2017-02-14 | 2017-06-13 | 霍学明 | Electromagnetic Heating continuously bakees frying machine |
CN108185450A (en) * | 2018-02-11 | 2018-06-22 | 青岛理工大学 | Thermal expansion and contraction principle Belt Conveying heat radiation walnut kernel and scarlet separated intelligent device |
CN108450987A (en) * | 2017-12-13 | 2018-08-28 | 安徽省丰龙机械有限公司 | Full-automatic bean food processing apparatus |
WO2020047895A1 (en) * | 2018-09-07 | 2020-03-12 | 淄博齐鼎立专利信息咨询有限公司 | Novel dry food roasting machine |
CN114752433A (en) * | 2022-03-28 | 2022-07-15 | 四川剑虹粮油有限责任公司 | Rapeseed frying pan and temperature monitoring system thereof |
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2012
- 2012-08-28 CN CN2012204291110U patent/CN202842264U/en not_active Expired - Lifetime
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CN104771314A (en) * | 2014-01-14 | 2015-07-15 | 北京康仁堂药业有限公司 | Numerically-controlled continuous automatic herbal medicine roaster |
CN104705359A (en) * | 2015-03-30 | 2015-06-17 | 保定嘉利食品机械有限公司 | Rotation station type full-automatic frying and boiling production line |
CN104801257A (en) * | 2015-04-01 | 2015-07-29 | 中国恩菲工程技术有限公司 | Replacement device |
CN104886720A (en) * | 2015-04-23 | 2015-09-09 | 合肥顺昌电磁感应科技有限公司 | Electromagnetic induction type heating device for roasted nuts and seeds |
CN105639405A (en) * | 2015-12-31 | 2016-06-08 | 江苏大学 | Continuous electromagnetic baking equipment for cereal germs, and electromagnetic baking method of continuous electromagnetic baking equipment |
CN105639405B (en) * | 2015-12-31 | 2019-12-03 | 江苏大学 | Grain germ Continuous Electromagnetic baking apparatus and method |
CN106626172B (en) * | 2016-11-30 | 2018-10-02 | 重庆市成吉思机械制造有限公司 | Adjustable tire vulcanizes preheating device |
CN106626172A (en) * | 2016-11-30 | 2017-05-10 | 重庆市成吉思机械制造有限公司 | Adjustable tire vulcanization preheating device |
CN106819771A (en) * | 2017-02-14 | 2017-06-13 | 霍学明 | Electromagnetic Heating continuously bakees frying machine |
CN108450987A (en) * | 2017-12-13 | 2018-08-28 | 安徽省丰龙机械有限公司 | Full-automatic bean food processing apparatus |
CN108185450A (en) * | 2018-02-11 | 2018-06-22 | 青岛理工大学 | Thermal expansion and contraction principle Belt Conveying heat radiation walnut kernel and scarlet separated intelligent device |
WO2020047895A1 (en) * | 2018-09-07 | 2020-03-12 | 淄博齐鼎立专利信息咨询有限公司 | Novel dry food roasting machine |
CN114752433A (en) * | 2022-03-28 | 2022-07-15 | 四川剑虹粮油有限责任公司 | Rapeseed frying pan and temperature monitoring system thereof |
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