CN220231683U - Noodle moisture on-line measuring device - Google Patents

Noodle moisture on-line measuring device Download PDF

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Publication number
CN220231683U
CN220231683U CN202320973342.6U CN202320973342U CN220231683U CN 220231683 U CN220231683 U CN 220231683U CN 202320973342 U CN202320973342 U CN 202320973342U CN 220231683 U CN220231683 U CN 220231683U
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China
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moisture
noodle
drying room
side wall
support
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CN202320973342.6U
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Chinese (zh)
Inventor
肖晓红
吴桂玲
王旭琳
郑波
娄凯旋
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Beijing Jinrui Dianshan Technology Co ltd
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Beijing Jinrui Dianshan Technology Co ltd
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Abstract

The noodle moisture on-line detection device comprises a drying room, a movable support, a moisture detection device, a temperature and humidity sensor and a central control device, wherein a moisture discharging fan is arranged on the side wall of the drying room, and a cooling fan is arranged at the top of the drying room; a noodle rod conveying chain is arranged in the drying room, the noodle conveying rod is hung on the noodle rod conveying chain, and the noodle is hung on the noodle conveying rod; the movable support comprises a support body through which the noodle conveying rod can pass; mounting frames are respectively arranged on the front side wall and the rear side wall of the bracket body; the mounting frame moves up and down through the lifting mechanism; the moisture detection device comprises a moisture detection probe and an information processor, and the moisture detection probe is arranged in the mounting frame; an information processor mounting rack is further arranged in the bracket body, and the information processor mounting rack can move along the front-back direction of the bracket body; a temperature and humidity sensor is arranged in the drying room; the central control device is connected with the information processor, the temperature and humidity sensor and the operation end, and the output end is connected with the cooling fan and the moisture-removing fan.

Description

Noodle moisture on-line measuring device
Technical Field
The utility model relates to the field of noodle processing, in particular to an online noodle moisture detection device.
Background
The noodle drying is an important link in the noodle processing process, the current noodle drying realizes the drying of single-row or multi-row noodles by using an open drying room, and is not similar to the temperature and humidity stability of closed drying equipment, in order to ensure that the drying quality requirement is met, the temperature and humidity of the drying room are regulated after the hand feeling detection of noodle moisture is usually carried out at fixed time manually in the drying process so as to achieve the moisture target, and sometimes, the temperature and humidity are automatically regulated by detecting the temperature and humidity of each area and comparing the difference between the current temperature and humidity and the preset temperature and humidity so as to achieve the moisture target. The hand feeling mode for adjusting the temperature and the humidity has the defects that the dependence on people is too high, the checking frequency is low, the accuracy cannot be ensured, the automatic control of a drying room cannot be realized, and the like; the temperature and humidity detection is used for indirectly obtaining the water content of the noodles by measuring the environmental temperature and humidity, and the front end processing condition change, the material characteristic change and the like have great influence on the accuracy of adjustment. Therefore, the online noodle moisture detection device overcomes the defects of the two modes at the same time, and can automatically and accurately adjust the temperature and humidity of a drying room so as to enable the dried dough strips to achieve the target moisture, so that the online noodle moisture detection device is an urgent product in the current market.
Disclosure of Invention
In order to solve the problems, the utility model provides the following scheme:
the noodle moisture on-line detection device comprises a drying room, a movable support, a moisture detection device, a temperature and humidity sensor and a central control device, wherein the side wall of the drying room is provided with a moisture discharging fan from front to back, and the top of the drying room is provided with a plurality of heat dissipation fans; a noodle rod conveying chain is arranged in the drying room, the noodle conveying rod is hung on the noodle rod conveying chain, and the noodle is hung on the noodle conveying rod; the movable support comprises a support body, and the noodle conveying rod can penetrate through the support body; mounting frames are respectively arranged on the front side wall and the rear side wall of the bracket body, are positioned on the left side and the right side of the noodle conveying rod and are spaced from the hung noodle; the mounting frame moves up and down along the front side wall and the rear side wall of the bracket body through the lifting mechanism; the water detection device comprises two opposite water detection probes and an information processor, wherein the two water detection probes are oppositely arranged and respectively installed in the installation frame; an information processor mounting frame is further arranged in the bracket body, the information processor mounting frame can move along the front-back direction of the bracket body, and the two water detection probes are connected with the information processor; a temperature and humidity sensor is arranged in the drying room and is arranged on the inner walls of the front end and the rear end of the drying room; the central control device comprises a central control PLC and an operating end, wherein an information processor, a temperature and humidity sensor and the operating end of the central control PLC are connected, an output end is connected with the cooling fan and the moisture-removing fan, and an input end and an output end of the operating end are connected with the central control PLC in a network cable mode to realize communication. Further, the lifting mechanism comprises a gear, a rack, a sliding rail and a scissor type lifting support, the gear is sleeved outside the lifting rocker, the lifting rocker is fixed at the bottom of the side wall of the support body, the sliding rail is arranged at the bottom of the support body along the left-right direction of the support body, a sliding block is fixed at the bottom of the rack, the sliding block slides along the sliding rail, the gear is meshed with the rack, and the gear rotates to drive the rack to slide along the sliding rail; the bottom support leg at one side of the scissor type lifting support is hinged with the rack, and the bottom support leg at the other side of the scissor type lifting support is hinged with the bottom of the support body; the top supporting leg at one side of the scissor type lifting support is hinged with the bottom of the mounting frame, and the top supporting leg at the other side of the scissor type lifting support is in sliding connection with the bottom of the mounting frame; the rack moves to drive the scissor fork type lifting support to stretch up and down, so that the mounting frame is driven to move up and down.
Further, the information processor mounting bracket bottom is fixed with branch, and the branch bottom is connected with the connecting block, and the support body is provided with the slide along the fore-and-aft direction, and connecting block embedding slide can follow the slide and remove.
Further, the connecting block is further provided with a locking bolt, a locking groove is formed in the side wall of the sliding rail, the locking bolt penetrates through the locking groove and is screwed into the connecting block, and after the locking bolt is screwed tightly, the end head of the locking bolt and the side wall of the sliding block clamping sliding way are clamped.
Further, universal wheels are further arranged at the bottom of the support body.
Further, the moisture detection device is a microwave moisture detector.
Further, the lowest installation position of the moisture detection probe is 1.5m from the ground.
Further, the distance between the installation position of the moisture detection probe and the entrance of the drying room is 70-80m.
The beneficial effects of the utility model are as follows:
1. the noodle moisture can be effectively detected, the environment of a drying room is adjusted in real time, and the noodle moisture can be controlled under a target value at any time;
2. the moisture detection probe can move up and down, the bracket body can also move, the position can be changed according to the size of a drying room and the environment of the drying room, and the moisture detection probe can be kept to be always positioned at the optimal position to detect the moisture of the noodles.
Drawings
FIG. 1 is a schematic diagram of the structure of the utility model;
FIG. 2 is a side view of a mobile carriage;
fig. 3 is a front view of the mobile carriage.
In the figure: 1. a drying room; 2. a moisture removing fan; 3. a heat radiation fan; 4. a conveyor chain; 5. a bracket body; 6. an information processor; 7. a moisture detection probe; 8. a temperature and humidity sensor; a central control device; 9 universal wheels; 10. a mounting frame; 11. a noodle conveying rod; 12. an information processor mounting rack; 13. a support rod; 14. noodles; 15. a slide rail; 16. a rack; 17. a slide block; 18. a gear; 19. lifting the rocker; 20. a support rod; 21. a slideway; 22. a locking bolt; 23. a scissor lift bracket; 24. balancing weight; 25. a central control PLC;26. and an operation end.
Detailed Description
The utility model will now be described in further detail with reference to the accompanying drawings. The drawings are simplified schematic representations which merely illustrate the basic structure of the utility model and therefore show only the structures which are relevant to the utility model.
Example 1: as shown in figure 1 of the drawings,
the noodle moisture on-line detection device comprises a drying room 1, a movable support, a moisture detection device, a temperature and humidity sensor 8 and a central control device, wherein the side wall of the drying room 1 is provided with a moisture discharging fan 2 from front to back; a plurality of cooling fans 3 are arranged at the top of the drying room; a rod conveying chain 4 is arranged on the inner surface of the drying room 1; the noodle rod conveying chain 4 is hung with a noodle rod conveying rod 11; the noodles 14 are hung on the noodle conveying rod 11; the movable bracket comprises a bracket body 5, and a noodle conveying rod 11 can pass through the bracket body 5; mounting frames 10 are respectively arranged on the left side wall and the right side wall of the bracket body 5, and the mounting frames 10 are positioned on the left side and the right side of the noodle conveying rod 11 and are spaced from the hung noodle 14; the mounting frame 10 moves up and down along the left and right side walls of the bracket body 5 through a lifting mechanism; the water detection device comprises two opposite water detection probes 7 and an information processor 6, wherein the two water detection probes 7 are oppositely arranged and respectively installed in the installation frame 10; an information processor mounting frame 12 is further arranged in the bracket body 5, the information processor mounting frame 12 can move along the front and back directions of the bracket body 5, and the two moisture detection probes 7 are connected with the information processor 6; the front end and the rear end of the drying room 1 are respectively provided with a temperature and humidity sensor 8, the input end of a central control PLC25 of the central control device is respectively connected with an information processor 6, the temperature and humidity sensor 8 and an operating end 26, the output end of the central control PLC is connected with a cooling fan 3 and a moisture exhausting fan 2, and the input end and the output end of the operating end 26 are connected with a central control PLC27 in a network cable mode to realize communication.
The lifting mechanism comprises a gear 18, a rack 16, a sliding rail 15 and a scissor type lifting support 23, the gear 18 is sleeved outside the lifting rocker 19, the lifting rocker 19 is fixed at the bottom of the side wall of the support body 5, the sliding rail 15 is arranged at the bottom of the support body 5 along the left-right direction of the support body 5, a sliding block 17 is fixed at the bottom of the rack 16, the sliding block 17 slides along the sliding rail 15, the gear 18 is meshed with the rack 16, and the gear 18 rotates to drive the rack 16 to slide along the sliding rail 15; the bottom support leg at one side of the scissor type lifting support 23 is hinged with the rack 16, and the bottom support leg at the other side of the scissor type lifting support 23 is hinged with the bottom of the support body 5; the top support leg at one side of the scissor type lifting support 23 is hinged with the bottom of the mounting frame 10, and the top support leg at the other side is in sliding connection with the bottom of the mounting frame 10; the rack 16 moves to drive the scissor lift bracket 23 to extend and retract up and down, thereby driving the mounting frame 10 to move up and down.
The information processor mounting bracket 12 bottom is fixed with branch 13, and branch 13 bottom is connected with the connecting block, and support body 5 is provided with slide 21 along the fore-and-aft direction, and connecting block embedding slide 21 can follow slide 21 and remove.
The connecting block is further provided with a locking bolt 22, a locking groove is formed in the side wall of the slideway 21, the locking bolt 22 penetrates through the locking groove and is screwed into the connecting block, and after the locking bolt 22 is screwed tightly, the end head of the locking bolt 22 and the side wall of the slideway 21 are clamped by the sliding block.
The bottom of the bracket body 5 is also provided with a universal wheel 9, and the rear end of the bracket body 5 is also provided with a balancing weight 24. The moisture detection device is a microwave moisture detector.
The lowest installation position of the moisture detection probe 7 is 1.5m from the ground. The installation position of the moisture detection probe 7 is 70-80m away from the inlet of the drying room 1.
Before use, a target temperature and humidity range and a target noodle moisture range are preset in an operation end 26 of the central control device according to the internal environment of the drying room 1, and the target temperature and humidity and the target moisture are transmitted to the central control PLC25 through a network cable. During operation, the noodles 14 are hung on the noodle conveying rod 11, the noodle conveying rod 11 is hung on the conveying chain 4, the noodles 14 pass through the bracket body 5 during the period when the noodles are conveyed from the inlet of the drying room 1 to the outlet of the drying room 1, the moisture detection probe 7 detects moisture of the noodles 14 in real time through correlation signals, detected moisture data of the noodles 14 are transmitted to the central control PLC25 through the information processor 6, meanwhile, the temperature and humidity sensor 8 transmits temperature and humidity data received at the same time to the central control PLC25, the central control PLC25 compares the moisture of the noodles 14 at the current position with the moisture of target noodles, if the moisture of the noodles 14 is in the moisture range of the target noodles, and the central control PLC25 does not adjust the working speed of the cooling fan 3 and the moisture removal fan 2, and meanwhile, the central control PLC25 transmits the moisture and the temperature and humidity to the operation end 26 in real time; if the moisture of the noodles 14 is not in the target noodle moisture range, the central control PLC25 can adjust the working speed of the cooling fan 3 and the moisture removal fan 2 by combining the comparison result of the current temperature and humidity data of the drying room transmitted by the current position temperature and humidity sensor 8 and the temperature and humidity data which should be possessed by the current drying room under the target noodle moisture, after the working speeds of the cooling fan 3 and the moisture removal fan 2 are adjusted, the moisture detection probe 7 continuously monitors the current noodle 14 moisture data and transmits the current noodle 14 moisture data to the central control PLC25 through the information processor 6, and meanwhile, the central control PLC25 transmits the moisture and the temperature and humidity conditions to the operation end 26 in real time, and after the noodle 14 moisture detected by the moisture detection probe 7 returns to the target noodle moisture range, the central control PLC25 does not adjust the cooling fan 3 and the moisture removal fan 2.
The moisture detection device adopts a microwave detector, the precision of the detector is higher, the moisture in the noodles can be detected instead of the surface moisture, and the accuracy is higher for materials in which the surface moisture of the noodles is rapidly lost but the internal moisture changes slowly and the surface moisture cannot represent the moisture of the noodles.
The installation of the moisture detection device adopts a mode of combining the lifting mechanism and the movable support, the loading position of the drying room instrument is uncertain according to different environments and sizes, the moisture detection device is required to be placed at the junction point of the area with the fast water drop of the noodles and the invariable area by combining the oven method, and the position of the moisture detection device also changes along with the change of seasons, so that the flexible loading and unloading of the moisture detection instrument and the position adjustment can be realized by the installation mode of combining the lifting mechanism and the movable support. The moisture detection probes 7 of the mutually opposite signals should be placed opposite to each other and should be kept at the same height.
The moisture detecting device is arranged at the position of the fast water drop and stability boundary of the noodles, for example, a 130m drying room, and is generally arranged at a position 70-80m away from the inlet of the drying room.
The position of the moisture detecting device is to be located at a position where the noodle can represent the moisture of the whole noodle rod, generally 1.5 m-the longitudinal middle position of the noodle from the ground, and cannot be located at the lower section or the upper section, if the moisture detecting probe 7 is too low, the high temperature and high humidity environment at the bottom cannot be borne, and if the moisture detecting probe is too high, the moisture change cannot be accurately detected.
The utility model can effectively detect the water content of the noodles, regulate the environment of the drying room 1 in real time and ensure that the water content of the noodles can be controlled under a target value at any time; the moisture detection probe 7 can move up and down, the bracket body can also move, the position can be changed according to the size of a drying room and the environment of the drying room, and the moisture detection probe 7 can be kept to be always positioned at the optimal position to detect the moisture of the noodles.
Finally, it should be noted that the above list is only specific embodiments of the present utility model. Obviously, the utility model is not limited to the above embodiments, but many variations are possible. All modifications directly derived or suggested to one skilled in the art from the present disclosure should be considered as being within the scope of the present utility model.

Claims (8)

1. The utility model provides a noodless moisture on-line measuring device which characterized in that: the device comprises a drying room, a movable support, a moisture detection device, a temperature and humidity sensor and a central control device, wherein the side wall of the drying room is provided with a moisture discharging fan from front to back, and the top of the drying room is provided with a plurality of heat dissipation fans; a noodle rod conveying chain is arranged in the drying room, the noodle conveying rod is hung on the noodle rod conveying chain, and the noodle is hung on the noodle conveying rod; the movable support comprises a support body, and the noodle conveying rod can penetrate through the support body; mounting frames are respectively arranged on the front side wall and the rear side wall of the bracket body, are positioned on the left side and the right side of the noodle conveying rod and are spaced from the hung noodle; the mounting frame moves up and down along the front side wall and the rear side wall of the bracket body through the lifting mechanism; the water detection device comprises two opposite water detection probes and an information processor, wherein the two water detection probes are oppositely arranged and respectively installed in the installation frame; an information processor mounting frame is further arranged in the bracket body, the information processor mounting frame can move along the front-back direction of the bracket body, and the two water detection probes are connected with the information processor; a temperature and humidity sensor is arranged in the drying room and is arranged on the inner walls of the front end and the rear end of the drying room; the central control device comprises a central control PLC and an operating end, wherein an information processor, a temperature and humidity sensor and the operating end of the central control PLC are connected, an output end is connected with the cooling fan and the moisture-removing fan, and an input end and an output end of the operating end are connected with the central control PLC in a network cable mode to realize communication.
2. The noodle moisture on-line detecting device as set forth in claim 1, wherein: the lifting mechanism comprises a gear, a rack, a sliding rail and a scissor type lifting support, the gear is sleeved outside a lifting rocker, the lifting rocker is fixed at the bottom of the side wall of the support body, the sliding rail is arranged at the bottom of the support body along the left-right direction of the support body, a sliding block is fixed at the bottom of the rack, the sliding block slides along the sliding rail, the gear is meshed with the rack, and the gear rotates to drive the rack to slide along the sliding rail; the bottom support leg at one side of the scissor type lifting support is hinged with the rack, and the bottom support leg at the other side of the scissor type lifting support is hinged with the bottom of the support body; the top supporting leg at one side of the scissor type lifting support is hinged with the bottom of the mounting frame, and the top supporting leg at the other side of the scissor type lifting support is in sliding connection with the bottom of the mounting frame; the rack moves to drive the scissor fork type lifting support to stretch up and down, so that the mounting frame is driven to move up and down.
3. The noodle moisture on-line detecting device as set forth in claim 1, wherein: the information processor mounting bracket bottom is fixed with branch, and the branch bottom is connected with the connecting block, and the support body is provided with the slide along the fore-and-aft direction, and connecting block embedding slide can follow the slide and remove.
4. A noodle moisture on-line measuring device as defined in claim 3, wherein: the connecting block is further provided with a locking bolt, the side wall of the sliding rail is provided with a locking groove, the locking bolt penetrates through the locking groove to be screwed into the connecting block, and after the locking bolt is screwed tightly, the end head of the locking bolt and the side wall of the sliding block clamping sliding way are clamped.
5. The noodle moisture on-line detecting device as set forth in claim 1, wherein: the bottom of the bracket body is also provided with universal wheels.
6. The noodle moisture on-line detecting device as set forth in claim 1, wherein: the moisture detection device is a microwave moisture detector.
7. The noodle moisture on-line detecting device as set forth in claim 1, wherein: the lowest installation position of the moisture detection probe is 1.5m away from the ground.
8. The noodle moisture on-line detecting device as set forth in claim 1, wherein: the distance between the installation position of the moisture detection probe and the inlet of the drying room is 70-80m.
CN202320973342.6U 2023-04-26 2023-04-26 Noodle moisture on-line measuring device Active CN220231683U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320973342.6U CN220231683U (en) 2023-04-26 2023-04-26 Noodle moisture on-line measuring device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320973342.6U CN220231683U (en) 2023-04-26 2023-04-26 Noodle moisture on-line measuring device

Publications (1)

Publication Number Publication Date
CN220231683U true CN220231683U (en) 2023-12-22

Family

ID=89174228

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320973342.6U Active CN220231683U (en) 2023-04-26 2023-04-26 Noodle moisture on-line measuring device

Country Status (1)

Country Link
CN (1) CN220231683U (en)

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