CN117137164B - Semi-dry wet rice noodle machine convenient to operate - Google Patents

Semi-dry wet rice noodle machine convenient to operate Download PDF

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Publication number
CN117137164B
CN117137164B CN202311413166.1A CN202311413166A CN117137164B CN 117137164 B CN117137164 B CN 117137164B CN 202311413166 A CN202311413166 A CN 202311413166A CN 117137164 B CN117137164 B CN 117137164B
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China
Prior art keywords
frame
component
pressure release
rice noodle
mounting frame
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CN202311413166.1A
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CN117137164A (en
Inventor
张锦
罗丽珍
张榕
潘建华
杨宣兰
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Yunnan Xu Zhong Machinery Equipment Co ltd
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Yunnan Xu Zhong Machinery Equipment Co ltd
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Priority to CN202311413166.1A priority Critical patent/CN117137164B/en
Publication of CN117137164A publication Critical patent/CN117137164A/en
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    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23PSHAPING OR WORKING OF FOODSTUFFS, NOT FULLY COVERED BY A SINGLE OTHER SUBCLASS
    • A23P30/00Shaping or working of foodstuffs characterised by the process or apparatus
    • A23P30/20Extruding
    • AHUMAN NECESSITIES
    • A23FOODS OR FOODSTUFFS; TREATMENT THEREOF, NOT COVERED BY OTHER CLASSES
    • A23LFOODS, FOODSTUFFS, OR NON-ALCOHOLIC BEVERAGES, NOT COVERED BY SUBCLASSES A21D OR A23B-A23J; THEIR PREPARATION OR TREATMENT, e.g. COOKING, MODIFICATION OF NUTRITIVE QUALITIES, PHYSICAL TREATMENT; PRESERVATION OF FOODS OR FOODSTUFFS, IN GENERAL
    • A23L7/00Cereal-derived products; Malt products; Preparation or treatment thereof
    • A23L7/10Cereal-derived products

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Food Science & Technology (AREA)
  • Polymers & Plastics (AREA)
  • Manufacturing & Machinery (AREA)
  • Health & Medical Sciences (AREA)
  • Nutrition Science (AREA)
  • Manufacturing And Processing Devices For Dough (AREA)

Abstract

The invention relates to the technical field of food production, in particular to a semi-dry wet rice noodle machine convenient to operate. The invention provides a semi-dry wet rice noodle machine which has flexible temperature adjustment capability and is convenient to operate, and meanwhile, pressure release treatment can be quickly carried out. The utility model provides a semi-dry wet rice noodle machine of simple operation, includes mounting bracket, crowded material subassembly, adjusting part, ejection of compact subassembly, forced air cooling subassembly and temperature sensor etc. is connected with crowded material subassembly on the mounting bracket, and crowded material subassembly front side is connected with adjusting part, and crowded material subassembly upper portion front side is connected with ejection of compact subassembly, is connected with forced air cooling subassembly on the mounting bracket, and there is temperature sensor on the upper side of mounting bracket left portion through bolted connection. According to the invention, the temperature control assembly is adjusted to enable heat to be transferred from the arc-shaped heat conducting piece to the lower portion of the extrusion assembly, so that a good and proper temperature environment is provided for shaping in the preliminary process of extrusion molding of the rice noodle raw materials, the flexibility of temperature adjustment is enhanced, and meanwhile, pressure release treatment is carried out after production is finished to avoid air pressure abnormality accidents.

Description

Semi-dry wet rice noodle machine convenient to operate
Technical Field
The invention relates to the technical field of food production, in particular to a semi-dry wet rice noodle machine convenient to operate.
Background
Rice noodle is popular Chinese traditional flour food, especially in regions of Yunnan and Guangxi, the main raw material of the rice noodle is rice, the rice noodle is prepared by grinding and mixing the rice flour, then mixing the powder with water and stirring, and finally, the rice noodle is manufactured into a linear shape by extrusion.
The temperature control rice noodle machine disclosed in the patent publication No. CN107744090A comprises a container body, wherein an inner cavity is arranged in the container body, and a water storage cavity is arranged between the outer wall of the inner cavity and the inner wall of the container body; the feeding end of the inner cavity is provided with a transmission motor and a feeding funnel respectively, and the discharging end is provided with a discharger; a spiral pusher is arranged in the inner cavity and is connected to a motor shaft of the transmission motor; the water inlet, the air outlet, the safety valve, the heating cavity and the water outlet of the container body are all communicated with the water storage cavity; a heater is arranged in the heating cavity, and a water outlet is connected with a water level detection device; an inner ring is arranged at the inlet of the discharger and sleeved on the spiral pusher; a material plate is arranged in an outlet of the discharger; the outlet of the discharger is provided with a sleeve, and a handle is arranged outside the sleeve; the container body is further provided with a temperature detection device and a pressure detection device, although the device is easy to install, easy to control the temperature, quick in discharging, labor-saving, cost-saving, but in the operation process, heating treatment operation can only be carried out, when the temperature is too high, the temperature is difficult to quickly adjust and lower, certain temperature adjustment flexibility is lacked, meanwhile, the internal air pressure change caused by temperature change is difficult to effectively solve, and risks are easy to generate.
Therefore, the semi-dry wet rice noodle machine which has flexible temperature adjusting capability and is convenient to operate and capable of rapidly releasing pressure is developed aiming at the problems.
Disclosure of Invention
In order to overcome the defect that the existing device lacks certain temperature adjustment flexibility and is difficult to effectively solve the problem that the internal air pressure is changed due to temperature change and risks are easy to generate, the invention provides the semi-dry wet rice noodle machine which has the flexible temperature adjustment capability and is convenient to operate and fast in pressure relief treatment.
The technical implementation scheme of the invention is as follows: the utility model provides a semi-dry wet rice noodle machine of simple operation, including the mounting bracket, crowded material subassembly, adjusting part, the ejection of compact subassembly, the forced air cooling subassembly, temperature sensor, the unloading frame, temperature control mechanism and relief mechanism, be connected with crowded material subassembly on the mounting bracket, crowded material subassembly front side is connected with adjusting part, crowded material subassembly upper portion front side is connected with ejection of compact subassembly, be connected with forced air cooling subassembly on the mounting bracket, there is temperature sensor at mounting bracket left part upside through bolted connection, mounting bracket right side upside rotation type is connected with the unloading frame, be equipped with temperature control mechanism on the crowded material subassembly, be equipped with pressure release mechanism on the crowded material subassembly, temperature control mechanism is including the installing frame, temperature control subassembly and arc heat conduction piece, interior front portion is connected with the installing frame on the installing frame, temperature control subassembly is including the refrigerator, the refrigeration pipe, the heating pipe and heat conduction piece, the top all is connected with the heat conduction piece at the refrigerator and the heating pipe respectively, heat conduction piece top all corresponds to be connected with refrigeration pipe and heat pipe, pressure release pipe and heat pipe connection, pressure release sleeve connection has pressure release sleeve, pressure release sleeve has pressure release mechanism, pressure release sleeve connection between the pressure release sleeve has.
More preferably, the novel heat-conducting device further comprises a rotating mechanism, wherein the rotating mechanism comprises a first fixing frame, a driving motor, a belt pulley assembly, a rotating assembly and a toothed ring, the bottom of the fixing frame is connected with the first fixing frame, the rear side of the first fixing frame is connected with the driving motor, an output shaft of the driving motor is rotationally connected with the first fixing frame, the upper portion of the first fixing frame is connected with the rotating assembly, the belt pulley assembly is connected between the rotating assembly and the output shaft of the driving motor, the toothed ring meshed with the rotating assembly is rotationally connected with the front portion and the rear portion of the fixing frame, and the toothed ring is connected with a corresponding arc-shaped heat-conducting piece.
More preferably, the device further comprises a pushing mechanism, wherein the pushing mechanism comprises a fixed column, a second fixed frame and a sliding frame, the rear side of the arc-shaped heat conducting piece on the upper side is connected with the fixed column, the top of the extrusion component is connected with the second fixed frame, the sliding frame is connected on the second fixed frame in a sliding mode, and the sliding frame is connected with the pressure release piece.
More preferably, the blanking device further comprises a blanking mechanism, wherein the blanking mechanism comprises a limiting piece and a striker plate, the left wall in the blanking frame is connected with a front limiting piece and a rear limiting piece, and the striker plate is connected between the limiting pieces in a sliding mode.
More preferably, the automatic feeding device further comprises a lifting mechanism, wherein the lifting mechanism comprises a mounting plate, a screw rod, lifting plates and lifting rods, the mounting plate is connected to the upper side of the right part of the mounting frame in a front-back symmetrical mode, the screw rod is connected to the mounting plate in a rotary mode, the lifting plates are connected to the mounting plate in a sliding mode, the lifting plates are connected with the adjacent screw rods in a threaded mode, and the lifting rods are connected to the front side and the rear side of the right part of the blanking frame.
More preferably, the adjusting component comprises a conveying pipe and a control valve, the front side of the extruding component is connected with the conveying pipe, and the conveying pipe is connected with the control valve.
More preferably, the discharging assembly comprises a connecting pipe and a discharging hopper, the front side of the upper part of the extruding assembly is connected with the connecting pipe, and the lower side of the connecting pipe is connected with the discharging hopper.
More preferably, the air cooling assembly comprises a dust screen and a fan, the front side of the left part and the front side of the right part of the installation frame are both connected with the fan, and the front and back directions of the fan are both connected with the dust screen.
The invention has the beneficial effects that: 1. according to the invention, the temperature control assembly is adjusted to enable heat to be transferred from the arc-shaped heat conducting piece to the lower part of the extrusion assembly, so that a good and proper temperature environment is provided for shaping in the preliminary process of extrusion molding of the rice noodle raw materials, the rice noodle shaping efficiency is improved, and the flexibility of temperature adjustment is enhanced.
2. According to the invention, the pressure release piece slides rightwards along the pressure release sleeve by pulling the pull rope rightwards, so that the internal air pressure of the extrusion component can recover to a normal value after production is completed, and accidents caused by abnormal air pressure are avoided.
3. According to the invention, the belt pulley assembly is driven to operate by the driving motor output shaft, so that the rotating assembly drives the toothed ring to rotate, and further, the arc-shaped heat conducting piece rotates and heats, and therefore, the temperature regulation and control are more uniform, and the raw materials are heated more efficiently.
4. According to the invention, the fixed column is driven to push the sliding frame to slide through the rotation of the material extrusion assembly, so that the sliding frame drives the pressure release piece to slide rightwards synchronously, the effect of synchronous pressure release treatment in the raw material shaping process is realized, and the operation safety is greatly improved.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic view of a partial perspective structure of the present invention.
Fig. 3 is a schematic perspective view of a temperature control mechanism according to the present invention.
Fig. 4 is a schematic view of a partial perspective structure of the temperature control mechanism of the present invention.
Fig. 5 is a schematic perspective view of a pressure release mechanism according to the present invention.
Fig. 6 is a schematic view of a partially exploded perspective view of a pressure relief mechanism according to the present invention.
Fig. 7 is a schematic perspective view of a rotating mechanism according to the present invention.
Fig. 8 is a schematic view of a first perspective of the pushing mechanism of the present invention.
Fig. 9 is a schematic view of a second perspective of the pushing mechanism of the present invention.
Fig. 10 is a schematic perspective view of a blanking mechanism of the present invention.
Fig. 11 is a schematic perspective view of a lifting mechanism according to the present invention.
Fig. 12 is an enlarged perspective view of the portion a of the present invention.
Reference numerals illustrate: 1_mounting bracket, 2_extrusion assembly, 3_adjustment assembly, 4_discharge assembly, 5_air cooling assembly, 6_temperature sensor, 7_blanking frame, 8_temperature control mechanism, 81_mounting frame, 82_temperature control assembly, 83_arc heat conduction piece, 9_pressure release mechanism, 91_pressure release sleeve, 92_pressure release piece, 93_spring, 94_pull rope, 10_rotation mechanism, 101_first mount, 102_drive motor, 103_pulley assembly, 104_rotation assembly, 105_toothed ring, 11_push mechanism, 111_fixed column, 112_second mount, 113_slide, 12_blanking mechanism, 121_limit piece, 122_striker, 13_lifting mechanism, 131_mounting plate, 132_lead screw, 133_lifting plate, 134_lifting rod.
Detailed Description
The invention is further described below with reference to the drawings and the detailed description.
The utility model provides a semi-dry wet rice noodle machine of simple operation, as shown in fig. 1-3, including mounting bracket 1, crowded material subassembly 2, adjusting part 3, ejection of compact subassembly 4, forced air cooling subassembly 5, temperature sensor 6, unloading frame 7, temperature regulating mechanism 8 and pressure release mechanism 9, be connected with on mounting bracket 1 and be used for carrying out extrusion's crowded material subassembly 2 to the raw materials, crowded material subassembly 2 front side is connected with the adjusting part 3 that is used for controlling the feeding and discharging, adjusting part 3 is including conveyer pipe and control valve, crowded material subassembly 2 front side is connected with the conveyer pipe, be connected with the control valve on the conveyer pipe, crowded material subassembly 2 upper portion front side is connected with ejection of compact subassembly 4, ejection of compact subassembly 4 is including connecting pipe and ejection of compact hopper, crowded material subassembly 2 upper portion front side is connected with the connecting pipe, the connecting pipe downside is connected with ejection of compact fill, be connected with forced air cooling subassembly 5 on the mounting bracket 1, forced air cooling subassembly 5 is including dust screen and fan, all be connected with the fan in the front and back direction to the fan, the mounting bracket 1 left part upper portion is connected with temperature regulating mechanism 3 through the bolt, be used for controlling feeding and pressure release mechanism 2 is used for carrying out extrusion frame 2 to the raw materials to carry out the control of the raw materials on the front side of right side 1, the front side is equipped with temperature regulating mechanism 9.
It should be noted that, when carrying out dry and wet rice noodle production and manufacturing, can use this device to carry out production operation, firstly pour the raw materials into unloading frame 7 in, later start extrusion subassembly 2, roll the raw materials through extrusion subassembly 2, simultaneously according to the numerical value start temperature control mechanism 8 of temperature sensor 6, adjust the temperature in the extrusion subassembly 2 (rise or reduce), thereby make the raw materials can mould fast, after the raw materials accomplishes preliminary extrusion molding in extrusion subassembly 2 lower part, open adjusting part 3, make the rice noodle after the preliminary shaping can get into extrusion subassembly 2 upper portion through adjusting part 3, the final extrusion on rethread extrusion subassembly 2 upper portion makes the rice noodle after the shaping can be discharged through discharging component 4, realize the quick production of rice noodle, need the special specification, in this process in order to guarantee the holistic thermal diffusivity of device, it carries out the cooling treatment to guarantee the device to need to start the forced air cooling subassembly 5, after the production is accomplished, because the inside temperature change of extrusion subassembly 2 can lead to the inside change of extrusion subassembly 2, the pressure change produces the pressure change, it makes the inside pressure release subassembly 2 to need to carry out the normal pressure release handling mechanism to make the pressure release 2 to carry out the pressure release handling.
As shown in fig. 2-4, the temperature control mechanism 8 comprises a mounting frame 81, a temperature control assembly 82 and an arc heat conducting piece 83, the mounting frame 81 is connected with the inner front portion of the mounting frame 1, the temperature control assembly 82 is connected to the mounting frame 81, the temperature control assembly 82 comprises a refrigerator, a refrigerating pipe, a heater, a heating pipe and a heat conducting piece, the left side and the right side of the top of the mounting frame 81 are respectively connected with the refrigerator and the heater, the tops of the refrigerator and the heater are respectively connected with the heat conducting piece, the tops of the heat conducting pieces are respectively correspondingly connected with the refrigerating pipe and the heating pipe, the refrigerating pipe and the heating pipe are respectively connected with the mounting frame 81, the temperature control assembly 82 is used for conveying at high temperature and low temperature to change the temperature of the lower portion of the extrusion assembly 2, and the mounting frame 81 is connected with a plurality of arc heat conducting pieces 83 in a clamping mode.
It should be noted that, because the relevance with the temperature is great when carrying out quick extrusion to rice noodle raw materials, consequently, can be according to the temperature state that temperature sensor 6 calculated, make the temperature of arc heat conduction spare 83 change through adjusting temperature control subassembly 82, it just uses the refrigerator to produce low temperature air current to go out the desired temperature, carry the cooling down through the low temperature, it just uses the heater to produce high temperature air current to go out high temperature transport through the heating pipe to be lower than the desired temperature, whether carry the high temperature transport through the heating pipe, no matter low temperature transport or high temperature transport, final heat can all be carried on mounting frame 81, after the heat gets into mounting frame 81, arc heat conduction spare 83 also receives the heat that comes, thereby carry heat transfer to the crowded material subassembly 2 lower part through arc heat conduction spare 83, and then make the raw materials that is located crowded material 2 lower part under suitable temperature condition carry out shaping treatment, the efficiency of shaping is improved, and the flexibility that has improved the temperature, in conclusion, make the heat transfer to crowded material 2 lower part from arc heat conduction spare 83 to crowded material 2 lower part through adjusting temperature control subassembly 82, thereby the good shaping efficiency is good in the shaping environment, the shaping environment is provided for the shaping the raw materials of the rice noodle in the preliminary shaping process.
As shown in fig. 2, 5 and 6, the device further comprises a pressure release mechanism 9, the pressure release mechanism 9 comprises a pressure release sleeve 91, a pressure release piece 92, a spring 93 and a pull rope 94, the right side of the lower part of the extrusion component 2 is connected with the pressure release sleeve 91, the pressure release sleeve 91 is connected with the pressure release piece 92 for carrying out pressure release treatment on the extrusion component 2 in a sliding manner, a spring 93 for buffering and resetting is connected between the pressure release piece 92 and the pressure release sleeve 91, the front end of the pressure release piece 92 is connected with the pull rope 94, and the right side of the pull rope 94 penetrates through the mounting frame 1.
It should be noted that after the rice noodle production is completed, the extrusion component 2 needs to be pressed down, so that accidents caused by overlarge internal pressure of the extrusion component 2 are prevented, at this time, only the pull rope 94 is required to be pulled rightwards, the pressure release piece 92 slides rightwards along the pressure release sleeve 91, the spring 93 is stressed and compressed, the pressure release piece 92 is pulled rightwards along the pull rope 94, at this time, the inside of the extrusion component 2 starts to be communicated with the outside air, the normal air pressure value of the extrusion component 2 is restored, and the risk occurrence probability is reduced.
As shown in fig. 2 and 7, the device further comprises a rotating mechanism 10, the rotating mechanism 10 comprises a first fixing frame 101, a driving motor 102, a belt pulley assembly 103, a rotating assembly 104 and a toothed ring 105, the bottom of the mounting frame 1 is connected with the first fixing frame 101, the driving motor 102 is connected to the rear side of the first fixing frame 101, an output shaft of the driving motor 102 is arranged in a front direction, an output shaft of the driving motor 102 is rotationally connected with the first fixing frame 101, the rotating assembly 104 is connected to the upper portion of the first fixing frame 101, the belt pulley assembly 103 is connected between the rotating assembly 104 and the output shaft of the driving motor 102, the toothed ring 105 meshed with the rotating assembly 104 is rotationally connected to the front portion and the rear portion of the mounting frame 1, and the toothed ring 105 is connected with a corresponding arc-shaped heat conducting piece 83.
It should be noted that, when the temperature of the lower portion of the extruding assembly 2 is controlled and adjusted, the driving motor 102 can be started, the output shaft of the driving motor 102 rotates to drive the belt pulley assembly 103 to rotate, so that the rotating assembly 104 starts to enter a rotating state, and along with the beginning of the rotation of the rotating assembly 104, the corresponding toothed ring 105 starts to rotate synchronously, and then the arc-shaped heat conducting piece 83 starts to rotate along the outer wall of the lower portion of the extruding assembly 2, so that the lower portion of the extruding assembly 2 is uniformly heated, the heating rate is improved, and in sum, the belt pulley assembly 103 is driven to rotate by the output shaft of the driving motor 102, so that the rotating assembly 104 drives the toothed ring 105 to rotate, and then the arc-shaped heat conducting piece 83 rotates to heat, so that the temperature regulation is more uniform, and the raw materials are heated more efficiently.
As shown in fig. 2, 8 and 9, the device further comprises a pushing mechanism 11, the pushing mechanism 11 comprises a fixing column 111, a second fixing frame 112 and a sliding frame 113, the rear side of the arc-shaped heat conducting piece 83 at the upper side is connected with the fixing column 111, the top of the extrusion component 2 is connected with the second fixing frame 112, the sliding frame 113 which can be pushed by the corresponding fixing column 111 is connected to the second fixing frame 112 in a sliding manner, and the sliding frame 113 is connected with the pressure release piece 92.
It should be noted that, the extrusion component 2 continuously rotates slowly in the running process, so that the arc-shaped heat conducting piece 83 at the upper side drives the fixed column 111 to perform circumferential rotation in a corresponding direction, in the rotating process of the fixed column 111, the fixed column 111 is relied on to push the sliding frame 113, so that the sliding frame 113 slides rightwards along the second fixed frame 112, the sliding frame 113 can pull the pressure release piece 92 to move rightwards synchronously in the rightwards sliding process, the effect of synchronous pressure release treatment in the raw material shaping process is achieved, the safety in the operation process is improved, when the fixed column 111 does not push the sliding frame 113 any more to move, the pressure release piece 92 can slide leftwards under the action of the spring 93 to enable the sliding frame 113 to slide leftwards, in sum, the extrusion component 2 rotates to drive the fixed column 111 to push the sliding frame 113 to slide, so that the sliding frame 113 drives the pressure release piece 92 to slide rightwards synchronously, the effect of synchronous pressure release treatment in the raw material shaping process is achieved, and the operation safety is greatly improved.
As shown in fig. 1 and 10, the blanking mechanism 12 is further included, the blanking mechanism 12 includes a limiting member 121 and a baffle 122, a front limiting member 121 and a rear limiting member 121 are connected to the left wall in the blanking frame 7, and the baffle 122 for blocking and limiting the raw materials is slidably connected between the limiting members 121.
It should be noted that, in order to avoid raw materials directly flowing into the extrusion assembly 2 that is not ready when entering the blanking frame 7, the raw materials are blocked and limited by the baffle plate 122, so that an operator can pour a sufficient amount of raw materials into the blanking frame 7, and pull the baffle plate 122 upwards along the limiting member 121 after the pouring is completed, so that the raw materials are not blocked and limited any more, and can smoothly enter the extrusion assembly 2 for molding.
As shown in fig. 1 and 11, the automatic feeding device further comprises a lifting mechanism 13, the lifting mechanism 13 comprises a mounting plate 131, a screw rod 132, lifting plates 133 and lifting rods 134, the mounting plate 131 which is symmetrical around the upper side of the right part of the mounting frame 1 is connected, the screw rods 132 are rotationally connected to the mounting plate 131, the lifting plates 133 are slidably connected to the mounting plate 131, the lifting plates 133 are in threaded connection with the adjacent screw rods 132, the lifting rods 134 are connected to the front side and the rear side of the right part of the blanking frame 7, and the lifting rods 134 are pushed by the adjacent lifting plates 133.
It should be noted that, after the raw materials are put into the blanking frame 7, the screw rod 132 may be rotated, so that the lifting plates 133 slide upwards along the adjacent mounting plates 131, so as to push the corresponding lifting rods 134 to move upwards, and as the lifting rods 134 start to move upwards, the right side of the blanking frame 7 starts to overturn upwards and lift, so that an inclined angle is formed between the blanking frame 7 and the mounting frame 1, and the raw materials can flow into the extrusion assembly 2 more rapidly.
While the present disclosure has been shown and described with reference to certain exemplary embodiments thereof, it will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the present disclosure as defined by the appended claims and their equivalents. The scope of the disclosure should, therefore, not be limited to the above-described embodiments, but should be determined not only by the following claims, but also by the equivalents of the following claims.

Claims (7)

1. The semi-dry wet rice noodle machine is characterized by comprising a mounting frame (1), an extruding component (2), an adjusting component (3), a discharging component (4), an air cooling component (5), a temperature sensor (6), a blanking frame (7), a temperature control mechanism (8) and a pressure release mechanism (9), wherein the extruding component (2) is connected to the mounting frame (1), the adjusting component (3) is connected to the front side of the extruding component (2), the discharging component (4) is connected to the front side of the upper part of the extruding component (2), the air cooling component (5) is connected to the mounting frame (1), the temperature sensor (6) is connected to the upper side of the left part of the mounting frame (1) through bolts, the blanking frame (7) is connected to the upper side of the right part of the mounting frame (1) in a rotating manner,
the device comprises a squeezing component (2), wherein a temperature control mechanism (8) is arranged on the squeezing component (2), a pressure release mechanism (9) is arranged on the squeezing component (2), the temperature control mechanism (8) comprises a mounting frame (81), a temperature control component (82) and an arc heat conduction piece (83), the mounting frame (81) is connected with the inner front part of the mounting frame (1), the temperature control component (82) is connected with the mounting frame (81), the temperature control component (82) comprises a refrigerator, a refrigerating pipe, a heater, a heating pipe and a heat conduction piece, the left side and the right side of the top of the mounting frame (81) are respectively connected with the refrigerator and the heater, the tops of the refrigerator and the heater are respectively connected with the heat conduction piece, the tops of the heat conduction piece are respectively connected with the refrigerating pipe and the heating pipe, the refrigerating pipe and the heating pipe are respectively connected with the mounting frame (81), the mounting frame (81) is connected with a plurality of arc heat conduction pieces (83) in a clamping manner, the pressure release mechanism (9) comprises a pressure release sleeve (91), a spring (93) and a pull rope (94), the lower side of the squeezing component (2) is connected with the pressure release sleeve (92), and the pressure release sleeve (92) is connected with the pressure release sleeve (91) in a sliding manner; the novel pressure release device is characterized by further comprising a pushing mechanism (11), wherein the pushing mechanism (11) comprises a fixed column (111), a second fixing frame (112) and a sliding frame (113), the fixed column (111) is connected to the rear side of the arc-shaped heat conducting piece (83) at the upper side, the second fixing frame (112) is connected to the top of the extrusion component (2), the sliding frame (113) is connected to the second fixing frame (112) in a sliding mode, and the sliding frame (113) is connected with the pressure release piece (92).
2. The semi-dry and wet rice noodle machine with convenient operation according to claim 1, further comprising a rotating mechanism (10), wherein the rotating mechanism (10) comprises a first fixing frame (101), a driving motor (102), a belt pulley assembly (103), a rotating assembly (104) and a toothed ring (105), the bottom of the mounting frame (1) is connected with the first fixing frame (101), the rear side of the first fixing frame (101) is connected with the driving motor (102), an output shaft of the driving motor (102) is rotationally connected with the first fixing frame (101), the upper part of the first fixing frame (101) is connected with the rotating assembly (104), the belt pulley assembly (103) is connected between the rotating assembly (104) and the output shaft of the driving motor (102), the toothed ring (105) meshed with the rotating assembly (104) is rotationally connected with the corresponding arc-shaped heat conducting piece (83).
3. The semi-dry and wet rice noodle machine convenient to operate according to claim 2, further comprising a blanking mechanism (12), wherein the blanking mechanism (12) comprises a limiting piece (121) and a baffle plate (122), the left wall in the blanking frame (7) is connected with a front limiting piece and a rear limiting piece (121), and the baffle plate (122) is connected between the limiting pieces (121) in a sliding mode.
4. A semi-dry and wet rice noodle machine according to claim 3, further comprising a lifting mechanism (13), wherein the lifting mechanism (13) comprises a mounting plate (131), a screw rod (132), a lifting plate (133) and a lifting rod (134), wherein the mounting plate (131) is connected with the upper side of the right part of the mounting frame (1) in a front-back symmetrical manner, the screw rod (132) is connected with the mounting plate (131) in a rotary manner, the lifting plate (133) is connected with the mounting plate (131) in a sliding manner, the lifting plate (133) is connected with the adjacent screw rod (132) in a threaded manner, and the lifting rod (134) is connected with the front-back two sides of the right part of the blanking frame (7).
5. The semi-dry and wet rice noodle machine convenient to operate according to claim 1, wherein the adjusting component (3) comprises a conveying pipe and a control valve, the front side of the extruding component (2) is connected with the conveying pipe, and the conveying pipe is connected with the control valve.
6. The semi-dry and wet rice noodle machine convenient to operate according to claim 1, wherein the discharging assembly (4) comprises a connecting pipe and a discharging hopper, the front side of the upper part of the extruding assembly (2) is connected with the connecting pipe, and the lower side of the connecting pipe is connected with the discharging hopper.
7. The semi-dry and wet rice noodle machine convenient to operate according to claim 1, wherein the air cooling assembly (5) comprises a dust screen and a fan, the front side of the left part and the front side of the right part of the mounting frame (1) are respectively connected with the fan, and the front and rear directions of the fan are respectively connected with the dust screen.
CN202311413166.1A 2023-10-30 2023-10-30 Semi-dry wet rice noodle machine convenient to operate Active CN117137164B (en)

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CN117137164B true CN117137164B (en) 2024-01-19

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