Convenient rice noodle food rapid detection device and detection method thereof

By designing an automated rice noodle inspection device, the problem of low efficiency in traditional manual inspection has been solved. It enables automated inspection and sorting of bagged rice noodles to improve inspection efficiency and prevent leakage and contamination.

CN121453285AInactive Publication Date: 2026-02-03KUNMING TAIMEI FOOD DEV CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202512000405.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-29
Publication Date
2026-02-03
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional manual sampling inspection methods cannot fully test the sealing of instant rice noodle packaging, resulting in low testing efficiency and omissions, which cannot meet the needs of modern fast-paced life.

Method used

A rapid detection device was designed, comprising a main transmission mechanism, sub-transmission mechanisms, branch transmission mechanisms, a detection mechanism, and a co-drive mechanism. By combining automatic transmission and a detection frame, the device enables automatic detection of the sealing of bagged instant rice noodles. The detection frame provides isolation and protection and absorbs leaks. Combined with the co-drive mechanism, it enables synchronous or disconnected transmission, thereby improving detection efficiency and effectiveness.

Benefits of technology

It has enabled automated testing of the airtightness of bagged instant rice noodles, improving testing efficiency, preventing leakage and contamination, and enabling continuous testing and classified transmission of multiple bagged instant rice noodles.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN121453285A_ABST
    Figure CN121453285A_ABST
Patent Text Reader

Abstract

The invention discloses an instant rice noodle food rapid detection device and a detection method thereof, and particularly relates to the technical field of food detection.The instant rice noodle food rapid detection device comprises a base, a main conveying mechanism is fixedly installed on one side of the top end of the base, a branch conveying mechanism is arranged at the end of the main conveying mechanism, and the main conveying mechanism and the branch conveying mechanism are perpendicularly distributed; the middle part of the sub-transmission mechanism is positioned below one end of the main transmission mechanism, and the two end parts of the sub-transmission mechanism are provided with detection lines; the detection line comprises a branch conveying mechanism, one end of the branch conveying mechanism is located below one end of the branch conveying mechanism, a detection mechanism is arranged in the middle of the branch conveying mechanism, and tail conveying mechanisms are arranged at the two ends of the branch conveying mechanism. And the detection mechanism is used for automatically detecting the packaging sealing performance of the bagged instant rice noodles, so that the overall processing efficiency of the bagged instant rice noodles is improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of food detection, in particular to a quick detection device for instant rice noodles and a detection method thereof. BACKGROUND

[0002] As a convenient and efficient instant food, instant rice noodles have become a widely consumed food category in modern fast-paced life due to their convenience, diverse taste, and long shelf life. The production process of instant rice noodles usually includes raw material pretreatment, extrusion molding, cooking and gelatinization, drying, packaging, and detection. After the production of instant rice noodles is completed, the product is in a bagged form. In order to improve the transportation stability of the subsequent instant rice noodles, it is necessary to detect the packaging sealing performance of the bagged instant rice noodles. In the traditional process, the packaging sealing performance of instant rice noodles is detected by manual sampling and testing. This detection method has certain detection omissions and cannot comprehensively detect the packaging sealing performance of each bagged instant rice noodles. The overall detection effect is not ideal. In addition, the overall efficiency of manual detection is relatively slow. Therefore, we propose a quick detection device for instant rice noodles and a detection method thereof to solve the above problems. SUMMARY

[0003] The present application aims to provide a quick detection device for instant rice noodles and a detection method thereof to solve the problems raised in the background.

[0004] To achieve the above-mentioned purpose, the present application provides the following technical solution: a quick detection device for instant rice noodles, comprising a base, a total transmission mechanism fixedly installed on one side of the top end of the base, a sub-transmission mechanism provided at the end of the total transmission mechanism, the total transmission mechanism and the sub-transmission mechanism being vertically distributed, the middle part of the sub-transmission mechanism being located below one end of the total transmission mechanism, and detection lines being provided at both ends of the sub-transmission mechanism. The detection line comprises a branch transmission mechanism, one end of the branch transmission mechanism being located below one end of the sub-transmission mechanism, a detection mechanism being provided at the middle part of the branch transmission mechanism, and end transmission mechanisms being provided at both ends of the branch transmission mechanism, one end of the end transmission mechanism being located below the end of the branch transmission mechanism away from the sub-transmission mechanism. The branch transmission mechanism is provided with a common drive mechanism between the two ends of the branch transmission mechanism and the corresponding end of the sub-transmission mechanism.

[0005] As a preferred technical scheme of the present application, the branch conveying mechanism comprises two first conveying side frames symmetrically distributed, the first conveying side frames are fixedly installed at the top end of the base, first conveying rollers are rotatably installed at the two ends of the two first conveying side frames, first conveying belts are movably sleeved outside the two first conveying rollers, one end of the first conveying side frame is fixedly installed with a first motor, and the driving end of the first motor is fixedly installed with the shaft end of the corresponding first conveying roller.

[0006] As a preferred technical scheme of the present application, the detection mechanism comprises a detection outer frame and a bottom support plate, an inner pressing plate is movably clamped in the detection outer frame, two groups of longitudinal slides are symmetrically arranged outside the detection outer frame, the longitudinal slides are fixedly installed on the corresponding first conveying side frames, longitudinal slide protrusions corresponding to the longitudinal slides are integrally formed on the outer side of the detection outer frame, the longitudinal slide protrusions are slidably clamped in the corresponding longitudinal slides, a connecting clamping protrusion is integrally formed at the side end of the inner pressing plate, the connecting clamping protrusion is slidably clamped on the inner side of the detection outer frame, a guide longitudinal rod corresponding to the connecting clamping protrusion is fixedly installed on the inner side of the detection outer frame, the connecting clamping protrusion is slidably installed on the corresponding guide longitudinal rod, a spring is arranged at the bottom end of the connecting clamping protrusion, the spring is movably sleeved outside the guide longitudinal rod, a sealing gasket is fixedly installed at the bottom end of the detection outer frame, the bottom support plate is fixedly installed between the two first conveying side frames, the bottom support plate is located below the detection outer frame, the bottom support plate is located on the inner side of the first conveying belt, the upper surface of the bottom support plate is in contact with the inner upper wall of the first conveying belt, two groups of L-shaped supports are fixedly installed at the top end of the inner pressing plate, a lifting cylinder is fixedly installed on the outer side of the first conveying side frame, and the driving end of the lifting cylinder is fixedly installed with the L-shaped support.

[0007] As a preferred technical scheme of the present application, a liquid buffering cavity is arranged at the bottom of the detection outer frame, a suction groove is arranged at the inner bottom of the liquid buffering cavity, a suction pipe is fixedly installed outside the liquid buffering cavity, and a connecting pipe is fixedly installed at the end of the suction pipe.

[0008] As a preferred technical scheme of the present application, the branch conveying mechanism comprises two first conveying side frames symmetrically distributed, the first conveying side frames are fixedly installed at the top end of the base, first conveying rollers are rotatably installed at the two ends of the two first conveying side frames, first conveying belts are movably sleeved outside the two first conveying rollers, one end of the first conveying side frame is fixedly installed with a first motor, and the driving end of the first motor is fixedly installed with the shaft end of the corresponding first conveying roller.

[0009] As a preferred technical scheme of the present application, the common driving mechanism comprises a first seat and a second seat, the first seat is fixedly installed at one end of the longitudinal side frame close to the first transmission side frame, the second seat is fixedly installed at one end of the first transmission side frame close to the longitudinal side frame, one end of the first seat is rotatably installed with a first shaft through a bearing, the first shaft is fixedly installed with an axis end corresponding to the second transmission roller, the middle part of the second seat is rotatably installed with a third shaft through a bearing, the third shaft is fixedly installed with an axis end corresponding to the first transmission roller, the other end of the first seat is rotatably installed with a first sprocket through a bearing, the end of the third shaft is fixedly installed with a second sprocket, the outer sides of the first sprocket and the second sprocket are meshingly connected with a transmission chain, the middle part of the first sprocket is slidably inserted with a second shaft, the outer side of the second shaft is integrally formed with a clamping slide strip, the clamping slide strip is slidably clamped in the middle part of the first sprocket, one end of the second shaft close to the first shaft is integrally formed with a clamping tooth, the side of the first shaft close to the second shaft is provided with a groove corresponding to the clamping tooth, and the clamping tooth is movably clamped in the corresponding groove.

[0010] As a preferred technical scheme of the present application, the common driving mechanism further comprises a third seat, the third seat is fixedly installed at one end of the longitudinal side frame close to the first transmission side frame, the third seat is located above the first seat, the end of the third seat is movably clamped with a connecting top rod, one end of the connecting top rod is vertically installed with a connecting longitudinal frame, the bottom of the connecting longitudinal frame is vertically installed with a connecting bottom rod, one end of the second shaft away from the first shaft is fixedly clamped with a mounting bearing, one end of the connecting bottom rod away from the connecting longitudinal frame is fixedly clamped in the mounting bearing, the third seat is provided with a telescopic cylinder, the telescopic cylinder is fixedly installed on the longitudinal side frame, and the driving end of the telescopic cylinder and the end of the connecting top rod are fixedly installed.

[0011] As a preferred technical scheme of the present application, the structure of the final transmission mechanism is the same as that of the branch transmission mechanism, the final transmission mechanism is fixedly installed at the top end of the base through the longitudinal side frame and the longitudinal short side frame, one end of the longitudinal side frame in the final transmission mechanism is fixedly installed with a second motor, and the driving end of the second motor and the axis end of the second transmission roller in the final transmission mechanism are fixedly installed.

[0012] As a preferred technical scheme of the present application, the structure of the total transmission mechanism is the same as that of the branch transmission mechanism, and the total transmission mechanism is fixedly installed at the top end of the base through the first transmission side frame.

[0013] A detection method of a quick detection device for instant rice noodle food comprises the following steps: Step one, the bagged instant rice noodles after production are placed on the first transmission belt in the total transmission mechanism for automatic transmission, and the bagged instant rice noodles are sequentially transmitted to the second transmission belt in the branch transmission mechanism for automatic transmission. Step two, first open the first motor drive corresponding first transmission roller in the transmission mechanism on one side of the position to rotate, thus driving the first transmission belt transmission, and open the side of the position of the extension cylinder in the common drive mechanism retraction, driving the connection of the top bar, the connection of the vertical frame and the connection of the bottom bar to slide, control the second shaft to slide to the side of the first shaft, the pawl is movably clamped in the corresponding groove, when the first transmission roller rotates, control the third shaft to rotate synchronously, cooperate with the transmission of the first sprocket, the second sprocket and the transmission chain, control the second shaft to rotate synchronously, drive the first shaft to rotate synchronously, control the second transmission roller and the first transmission roller on the side of the position to rotate synchronously at the same speed and in the same direction; The bagged instant rice on the second transmission belt in the sub-transmission mechanism is automatically transmitted to the first transmission belt in the transmission mechanism on the side of the position, so that the bagged instant rice is transmitted to the lower side of the detection frame, placed on the upper side of the bottom support plate, and the transmission of the first transmission belt on the side of the position is stopped; And open the extension cylinder in the common drive mechanism on the side of the position to extend, drive the connection of the top bar, the connection of the vertical frame and the connection of the bottom bar to slide reversely, control the second shaft to slide to the side away from the first shaft, and the pawl is disconnected from the corresponding groove; At the same time, open the extension cylinder in the common drive mechanism on the other side of the position to retract, and open the first motor in the transmission mechanism on the other side of the position, drive the first transmission belt to transmit, control the second transmission roller and the first transmission roller on the other side of the position to rotate synchronously at the same speed and in the same direction, then transmit the next bagged instant rice on the sub-transmission mechanism to the first transmission belt in the transmission mechanism on the other side of the position, and carry out the subsequent packaging and sealing detection of the bagged instant rice; Step three, when the bagged instant rice is transmitted to the lower side of the detection frame and placed on the upper side of the bottom support plate, open the lifting cylinder to drive the L-shaped support to lower the inner pressure plate, and at the same time, the detection frame is lowered, until the lower surface of the sealing gasket and the upper surface of the first transmission belt are in contact, and the bagged instant rice is isolated and protected by the detection frame; Then, continue to lower the inner pressure plate, extrude the spring, and the inner pressure plate continues to slide vertically in the detection frame, automatically press the bagged instant rice for packaging and sealing detection; When the bagged instant rice detection appears to leak, immediately open the external suction pump, the liquid is automatically sucked into the liquid buffer cavity through the suction slot, and is automatically extracted to the outside through the suction pipe and the connecting pipe; Step four, when the packaging and sealing detection of the bagged instant rice is qualified, quickly move the reset detection frame and the inner pressure plate upwards, and control the first transmission belt in the transmission mechanism on the side of the position to transmit again, automatically transmit the qualified bagged instant rice to the second transmission belt in one of the final transmission mechanisms for transmission, and carry out subsequent processing of the bagged instant rice; When the bagged instant rice packaging sealing detection is unqualified, the detection outer frame and the inner pressing plate are quickly reset and detected, and the first transmission belt in the position transmission mechanism on the side is controlled again to perform reverse transmission, so that the bagged instant rice with unqualified detection is automatically transmitted to the second transmission belt in the other end transmission mechanism for transmission, and the bagged instant rice is classified and transmitted after detection.

[0014] Compared with the prior art, the beneficial effects of the present application are that: 1. The detection device can automatically transmit the bagged instant rice, and automatically detect the packaging sealing of the plurality of bagged instant rice by using the detection mechanism, thereby improving the overall processing efficiency of the bagged instant rice.

[0015] 2. The detection device, by setting the sub-transmission mechanism, cooperates with the common drive mechanism, flexibly controls the two side position transmission mechanisms to be synchronously transmitted or disconnected with the sub-transmission mechanism, so that the packaging sealing of the plurality of bagged instant rice can be continuously detected by the two side detection mechanisms. 3. The detection device, by setting the detection outer frame to isolate and protect the bagged instant rice, prevents the subsequent bagged instant rice detection from splashing and polluting the environment due to liquid leakage, and can suck the liquid, thereby improving the use effect of the whole device. BRIEF DESCRIPTION OF DRAWINGS

[0016] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can obtain other drawings according to these drawings without creative labor.

[0017] Figure 1 The structure of the present application is shown in the figure.

[0018] Figure 2 The structure connection of the sub-transmission mechanism and the detection line in the present application is shown in the figure.

[0019] Figure 3 The structure of the present application Figure 2 is shown in the figure.

[0020] Figure 4 The structure connection of the sub-transmission mechanism and the detection mechanism in the present application is shown in the figure.

[0021] Figure 5 The structure of the detection mechanism in the present application is shown in the figure.

[0022] Figure 6 The structure of the present application Figure 5 is shown in the figure.

[0023] Figure 7 Structure diagram of the detection outer frame in the present application.

[0024] Figure 8 Structure diagram of the detection outer frame in the present application. Figure 7 Enlarged view of C in the present application.

[0025] Figure 9 Structure diagram of the sub-transmission mechanism in the present application.

[0026] Figure 10 Structure diagram of the co-driving mechanism in the present application.

[0027] Figure 11 Structure diagram of the sub-transmission mechanism in the present application.

[0028] Figure 12 Structure diagram of the total-transmission mechanism in the present application.

[0029] In the figure: 1, base; 2, total-transmission mechanism; 3, sub-transmission mechanism; 4, detection line; 5, sub-transmission mechanism; 6, detection mechanism; 7, sub-transmission mechanism; 71, second motor; 8, co-driving mechanism; 51, first transmission side frame; 52, first transmission roller; 53, first motor; 521, first transmission belt; 61, detection outer frame; 62, inner pressing plate; 621, connecting card convex; 622, guide vertical rod; 623, spring; 63, vertical sliding frame; 64, vertical sliding convex; 65, sealing gasket; 66, L-shaped support; 67, lifting cylinder; 68, bottom support plate; 601, liquid buffering cavity; 6011, suction groove; 602, suction pipe; 603, connecting pipe; 31, vertical long side frame; 32, vertical short side frame; 33, second transmission roller; 34, second transmission belt; 81, first seat; 82, second seat; 83, first shaft; 831, groove; 84, second shaft; 841, card tooth; 842, card sliding bar; 843, mounting bearing; 85, third shaft; 86, first sprocket; 87, second sprocket; 871, transmission chain; 88, connecting bottom rod; 881, connecting vertical frame; 89, third seat; 891, connecting top rod; 810, telescopic cylinder. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0031] Embodiment: as Figures 1-12As shown, the present application provides a kind of instant rice noodle food rapid detection device, including base 1, the top end side of base 1 is fixedly installed with total transmission mechanism 2, the end of total transmission mechanism 2 is equipped with branch transmission mechanism 3, total transmission mechanism 2 and branch transmission mechanism 3 vertically distribute, the middle part of branch transmission mechanism 3 is below one end of total transmission mechanism 2, and the two ends of branch transmission mechanism 3 are equipped with detection line 4; Detection line 4 includes branch transmission mechanism 5, one end of branch transmission mechanism 5 is below one end of branch transmission mechanism 3, the middle part of branch transmission mechanism 5 is equipped with detection mechanism 6, and the two ends of branch transmission mechanism 5 are equipped with end transmission mechanism 7, and one end of end transmission mechanism 7 is below the end of branch transmission mechanism 5 away from branch transmission mechanism 3; The two ends of branch transmission mechanism 5 are respectively equipped with common drive mechanism 8 between the corresponding ends of branch transmission mechanism 3.

[0032] Branch transmission mechanism 5 includes two first transmission side frames 51 symmetrically distributed, the top end of base 1 is fixedly installed with first transmission side frame 51, and the two ends of two first transmission side frames 51 are rotatably installed with first transmission roller 52, and the outer side of two first transmission rollers 52 is movably sleeved with first transmission belt 521, and one end of first transmission side frame 51 is fixedly installed with first motor 53, and the driving end of first motor 53 and the shaft end corresponding to first transmission roller 52 are fixedly installed, by opening first motor 53, corresponding first transmission roller 52 is driven to rotate, so that first transmission belt 521 is driven, and then it is convenient to automatically transmit bagged instant rice noodles, conversely, by opening first motor 53, corresponding first transmission roller 52 is driven to rotate reversely, so that first transmission belt 521 is reversely driven, and then it is convenient to automatically reversely transmit bagged instant rice noodles.

[0033] Branch transmission mechanism 3 includes longitudinal side frame 31 and longitudinal short side frame 32, and longitudinal side frame 31 and longitudinal short side frame 32 are fixedly installed on the top end of base 1, and the two ends of longitudinal side frame 31 and longitudinal short side frame 32 are rotatably installed with second transmission roller 33, and the outer side of two second transmission rollers 33 is movably sleeved with second transmission belt 34, by controlling second transmission roller 33 to rotate, second transmission belt 34 can be driven to transmit, conversely, by controlling second transmission roller 33 to reversely rotate, second transmission belt 34 can be reversely driven, so that it is convenient to transmit bagged instant rice noodles to the first transmission belt 521 of branch transmission mechanism 5 on both sides through branch transmission mechanism 3, and then it is convenient to continuously package and seal bagged instant rice noodles through two side detection mechanisms 6, when one of detection mechanisms 6 detects bagged instant rice noodles, the next bagged instant rice noodles is conveniently transmitted into the other side detection mechanism 6 for detection.

[0034] The structure of the total transmission mechanism 2 is the same as that of the branch transmission mechanism 5, the total transmission mechanism 2 is fixedly installed at the top end of the base 1 through the first transmission side frame 51, and the produced bagged instant rice is placed on the first transmission belt 521 in the total transmission mechanism 2 for automatic transmission, and is sequentially transmitted to the second transmission belt 34 in the branch transmission mechanism 3 for automatic transmission.

[0035] The detection mechanism 6 comprises a detection outer frame 61 and a bottom support plate 68, the movable clamping of the detection outer frame 61 is provided with an inner pressing plate 62, the side end of the inner pressing plate 62 is integrally formed with a connecting clamping convex 621, the connecting clamping convex 621 is slidingly clamped on the inner side of the detection outer frame 61, the inner pressing plate 62 is convenient for vertical sliding in the detection outer frame 61, the outer side of the detection outer frame 61 is provided with two groups of longitudinal sliding frames 63 which are symmetrically distributed, the longitudinal sliding frames 63 are fixedly installed on the corresponding first transmission side frame 51, the outer side of the detection outer frame 61 is integrally formed with longitudinal sliding convexes 64 corresponding to the longitudinal sliding frames 63, the longitudinal sliding convexes 64 are slidingly clamped in the corresponding longitudinal sliding frames 63, and the detection outer frame 61 is convenient for vertical sliding between the two first transmission side frames 51; The inner side of the detection outer frame 61 is fixedly installed with a guide longitudinal rod 622 corresponding to the connecting clamping convex 621, the connecting clamping convex 621 is slidingly installed on the corresponding guide longitudinal rod 622, the bottom end of the connecting clamping convex 621 is provided with a spring 623, the movable sleeve of the spring 623 is sleeved on the outer side of the guide longitudinal rod 622, the bottom end of the detection outer frame 61 is fixedly installed with a sealing gasket 65, the bottom support plate 68 is fixedly installed between the two first transmission side frames 51, the bottom support plate 68 is located below the detection outer frame 61, the bottom support plate 68 is located on the inner side of the first transmission belt 521, the upper surface of the bottom support plate 68 is in contact with the inner upper wall of the first transmission belt 521, the top end of the inner pressing plate 62 is fixedly installed with two groups of L-shaped supports 66, the outer side of the first transmission side frame 51 is fixedly installed with a lifting cylinder 67, the driving end of the lifting cylinder 67 is fixedly installed with the L-shaped support 66, the bagged instant rice is transmitted through the first transmission belt 521 in the branch transmission mechanism 5, is transmitted to the lower side of the detection outer frame 61, is placed above the bottom support plate 68, and stops the transmission of the first transmission belt 521 at this side position, then the lifting cylinder 67 is started to drive the L-shaped support 66 to drive the inner pressing plate 62 to descend, at the same time, the detection outer frame 61 descends until the lower surface of the sealing gasket 65 is in contact with the upper surface of the first transmission belt 521, the bagged instant rice is isolated and protected through the detection outer frame 61, so as to prevent the subsequent bagged instant rice from splashing and polluting the environment due to liquid leakage during detection, then the inner pressing plate 62 continues to descend to press the spring 623, the inner pressing plate 62 continues to vertically slide in the detection outer frame 61, automatically presses the bagged instant rice for packaging and sealing detection, and the overall detection efficiency of the instant rice is improved.

[0036] The bottom of the detection outer frame 61 is provided with a liquid buffering cavity 601, the inner bottom of the liquid buffering cavity 601 is provided with a suction groove 6011, the outer side of the liquid buffering cavity 601 is fixedly provided with a suction pipe 602, the end of the suction pipe 602 is fixedly provided with a connecting pipe 603, the end of the connecting pipe 603 is connected with the input port of an external suction pump, when the bagged instant rice is detected to leak, the external suction pump is immediately started, the leaked liquid is automatically sucked into the liquid buffering cavity 601 through the suction groove 6011, and is automatically extracted to the outside through the suction pipe 602 and the connecting pipe 603, so that environmental pollution caused by the leakage of the bagged instant rice during detection is prevented.

[0037] The common drive mechanism 8 comprises a first seat 81 and a second seat 82, the first seat 81 is fixedly installed at one end of the longitudinal side frame 31 close to the first transmission side frame 51, the second seat 82 is fixedly installed at one end of the first transmission side frame 51 close to the longitudinal side frame 31, one end of the first seat 81 is rotatably installed with a first shaft 83 through a bearing, the first shaft 83 is fixedly installed at the shaft end corresponding to the second transmission roller 33, when the first shaft 83 rotates, the second transmission roller 33 is controlled to rotate synchronously; The middle part of the second seat 82 is rotatably installed with a third shaft 85 through a bearing, the third shaft 85 is fixedly installed at the shaft end corresponding to the first transmission roller 52, when the first transmission roller 52 rotates, the third shaft 85 is controlled to rotate synchronously; The other end of the first seat 81 is rotatably installed with a first sprocket 86 through a bearing, the end of the third shaft 85 is fixedly installed with a second sprocket 87, the outer sides of the first sprocket 86 and the second sprocket 87 are meshingly connected with a transmission chain 871, the middle part of the first sprocket 86 is slidably inserted with a second shaft 84, the outer side of the second shaft 84 is integrally formed with a clamping sliding strip 842, the clamping sliding strip 842 is slidably clamped in the middle part of the first sprocket 86, through the control of the third shaft 85 to rotate, the transmission of the first sprocket 86, the second sprocket 87 and the transmission chain 871 are matched, the second shaft 84 is controlled to rotate synchronously; The end of the second shaft 84 close to the first shaft 83 is integrally formed with a clamping tooth 841, the side of the first shaft 83 close to the second shaft 84 is provided with a groove 831 corresponding to the clamping tooth 841, the clamping tooth 841 is movably clamped in the corresponding groove 831, when the second shaft 84 rotates, the first shaft 83 is driven to rotate synchronously.

[0038] The co-driving mechanism 8 further comprises a third seat 89 fixedly installed at one end of the longitudinal side frame 31 close to the first transmission side frame 51, the third seat 89 being located above the first seat 81, and the end of the third seat 89 movably clamped with a connecting top rod 891, one end of the connecting top rod 891 being vertically installed with a connecting longitudinal frame 881, the bottom of the connecting longitudinal frame 881 being vertically installed with a connecting bottom rod 88, one end of the second shaft 84 away from the first shaft 83 being fixedly clamped with an installation bearing 843, one end of the connecting bottom rod 88 away from the connecting longitudinal frame 881 being fixedly clamped in the installation bearing 843, and the third seat 89 being provided with a telescopic cylinder 810 fixedly installed on the longitudinal side frame 31, the driving end of the telescopic cylinder 810 and the end of the connecting top rod 891 being fixedly installed, the connecting top rod 891, the connecting longitudinal frame 881 and the connecting bottom rod 88 being driven to slide by opening the telescopic cylinder 810 to contract, the second shaft 84 being controlled to slide towards the side close to the first shaft 83, and conversely, the connecting top rod 891, the connecting longitudinal frame 881 and the connecting bottom rod 88 being driven to reversely slide by opening the telescopic cylinder 810 to expand, the second shaft 84 being controlled to slide towards the side away from the first shaft 83.

[0039] The structure of the final transmission mechanism 7 is the same as that of the sub-transmission mechanism 3, the final transmission mechanism 7 being fixedly installed at the top end of the base 1 through the longitudinal side frame 31 and the longitudinal short side frame 32, one end of the longitudinal side frame 31 in the final transmission mechanism 7 being fixedly installed with a second motor 71, the driving end of the second motor 71 and the shaft end of the second transmission roller 33 in the final transmission mechanism 7 being fixedly installed, the second transmission roller 33 in the final transmission mechanism 7 being driven to rotate by opening the second motor 71 to drive the second transmission belt 34 to transmit.

[0040] A detection method of the instant noodle food rapid detection device, comprising the following steps: Step one, the bagged instant noodles after production are placed on the first transmission belt 521 in the total transmission mechanism 2 for automatic transmission, and the bagged instant noodles are sequentially transmitted to the second transmission belt 34 in the sub-transmission mechanism 3 for automatic transmission; Step two, first, the first motor 53 in the one-side position sub-transmission mechanism 5 is opened to drive the corresponding first transmission roller 52 to rotate, thereby driving the first transmission belt 521 to transmit, and the telescopic cylinder 810 in the one-side position co-driving mechanism 8 is opened to contract, thereby driving the connecting top rod 891, the connecting longitudinal frame 881 and the connecting bottom rod 88 to slide, controlling the second shaft 84 to slide towards the side close to the first shaft 83, the clamping teeth 841 being movably clamped in the corresponding grooves 831, the first transmission roller 52 being controlled to synchronously rotate when the first transmission roller 52 rotates, the third shaft 85 being controlled to synchronously rotate, the second shaft 84 being controlled to synchronously rotate through the transmission of the first sprocket 86, the second sprocket 87 and the transmission chain 871, the first shaft 83 being driven to synchronously rotate, and the second transmission roller 33 and the first transmission roller 52 in the one-side position being controlled to synchronously rotate at the same speed and in the same direction; The bagged instant rice on the second transmission belt 34 of the sub-transmission mechanism 3 is automatically transmitted to the first transmission belt 521 of the side position sub-transmission mechanism 5, so that the bagged instant rice is transmitted to the lower side of the detection frame 61, placed on the upper side of the bottom support plate 68, and the transmission of the first transmission belt 521 of the side position sub-transmission mechanism 5 is stopped; At the same time, the telescopic cylinder 810 of the sub-transmission mechanism 5 on the other side is retracted, and the first motor 53 of the sub-transmission mechanism 5 on the other side is started, driving the first transmission belt 521 to rotate, controlling the second transmission roller 33 and the first transmission roller 52 on the other side to rotate at the same speed and in the same direction, and then transmitting the next bagged instant rice on the sub-transmission mechanism 3 to the first transmission belt 521 of the sub-transmission mechanism 5 on the other side for subsequent packaging and sealing detection of the bagged instant rice; At the same time, the telescopic cylinder 810 of the sub-transmission mechanism 5 on the other side is retracted, and the first motor 53 of the sub-transmission mechanism 5 on the other side is started, driving the first transmission belt 521 to rotate, controlling the second transmission roller 33 and the first transmission roller 52 on the other side to rotate at the same speed and in the same direction, and then transmitting the next bagged instant rice on the sub-transmission mechanism 3 to the first transmission belt 521 of the sub-transmission mechanism 5 on the other side for subsequent packaging and sealing detection of the bagged instant rice; Step three, when the bagged instant rice is transmitted to the lower side of the detection frame 61 and placed on the upper side of the bottom support plate 68, the lifting cylinder 67 is started to drive the L-shaped support 66 to drive the inner pressure plate 62 to descend, and at the same time, the detection frame 61 is lowered until the lower surface of the sealing gasket 65 and the upper surface of the first transmission belt 521 are in contact, and the bagged instant rice is isolated and protected by the detection frame 61; Then, continue to lower the inner pressure plate 62 to press the spring 623, and the inner pressure plate 62 continues to slide vertically in the detection frame 61 to automatically press the bagged instant rice for packaging and sealing detection; When the bagged instant rice is detected to have a liquid leakage, the external suction pump is immediately started, the liquid leakage is automatically sucked into the liquid buffer cavity 601 through the suction groove 6011, and is automatically extracted to the outside through the suction pipe 602 and the connecting pipe 603; Step four, when the packaging and sealing detection of the bagged instant rice is qualified, the detection frame 61 and the inner pressure plate 62 are quickly moved upward to reset, and the first transmission belt 521 of the sub-transmission mechanism 5 on the side is controlled again to transmit the qualified bagged instant rice to the second transmission belt 34 of one of the final transmission mechanisms 7 for subsequent processing of the bagged instant rice; When the packaging and sealing detection of the bagged instant rice is not qualified, the detection frame 61 and the inner pressure plate 62 are quickly moved upward to reset, and the first transmission belt 521 of the sub-transmission mechanism 5 on the side is controlled again to transmit the unqualified bagged instant rice to the second transmission belt 34 of the other final transmission mechanism 7 for subsequent classification transmission of the bagged instant rice.

[0041] While embodiments of the application have been shown and described, it is to be understood that the embodiments described are merely exemplary of the principles and application of the present application. Numerous modifications and adaptions can be effected without departing from the spirit and scope of the present application, which is not limited to the exact construction and arrangement described. It is intended, therefore, to cover all modifications and adaptions that fall within the scope of the claims and their equivalents.

Claims

1. A kind of instant rice noodle food quick detection device, including base (1), it is characterized in that: The top end side of the base (1) is fixedly provided with a total transmission mechanism (2), the end of the total transmission mechanism (2) is provided with a branch transmission mechanism (3), the total transmission mechanism (2) and the branch transmission mechanism (3) are vertically distributed, the middle part of the branch transmission mechanism (3) is below one end of the total transmission mechanism (2), and the two end parts of the branch transmission mechanism (3) are provided with detection lines (4); The detection line (4) comprises a branch transmission mechanism (5), one end of the branch transmission mechanism (5) is below one end of the branch transmission mechanism (3), the middle part of the branch transmission mechanism (5) is provided with a detection mechanism (6), and the two end parts of the branch transmission mechanism (5) are provided with end transmission mechanisms (7), one end of the end transmission mechanism (7) is below one end of the branch transmission mechanism (5) away from the branch transmission mechanism (3); The two end parts of the branch transmission mechanism (5) are provided with a common drive mechanism (8) between the corresponding end parts of the branch transmission mechanism (3).

2. The instant rice noodle food rapid detection device according to claim 1, characterized in that: The branch transmission mechanism (5) comprises two first transmission side frames (51) which are symmetrically distributed, the first transmission side frame (51) is fixedly installed at the top end of the base (1), the two end parts of the two first transmission side frames (51) are rotatably provided with first transmission rollers (52), the outer sides of the two first transmission rollers (52) are movably sleeved with first transmission belts (521), one end of the first transmission side frame (51) is fixedly provided with a first motor (53), and the driving end of the first motor (53) and the shaft end of the corresponding first transmission roller (52) are fixedly installed.

3. The instant rice noodle food rapid detection device according to claim 2, characterized in that: The detection mechanism (6) comprises a detection frame (61) and a bottom support plate (68), the inner pressing plate (62) is movably clamped in the detection frame (61), the outer side of the detection frame (61) is provided with two groups of longitudinal slides (63) which are symmetrically distributed, the longitudinal slides (63) are fixedly installed on the corresponding first transmission side frame (51), the outer side of the detection frame (61) is integrally formed with the longitudinal slide convex (64) corresponding to the longitudinal slide (63), the longitudinal slide convex (64) is slidably clamped in the corresponding longitudinal slide (63), the side end of the inner pressing plate (62) is integrally formed with the connecting clamping convex (621), the connecting clamping convex (621) is slidably clamped in the inner side of the detection frame (61), the inner side of the detection frame (61) is fixedly installed with the guide longitudinal rod (622) corresponding to the connecting clamping convex (621), the connecting clamping convex (621) is slidably installed on the corresponding guide longitudinal rod (622), the bottom end of the connecting clamping convex (621) is provided with a spring (623), the spring (623) is movably sleeved on the outer side of the guide longitudinal rod (622), the bottom end of the detection frame (61) is fixedly installed with a sealing gasket (65), the bottom support plate (68) is fixedly installed between the two first transmission side frames (51), the bottom support plate (68) is located below the detection frame (61), the bottom support plate (68) is located on the inner side of the first transmission belt (521), the upper surface of the bottom support plate (68) is in contact with the inner upper wall of the first transmission belt (521), the top end of the inner pressing plate (62) is fixedly installed with two groups of L-shaped supports (66), the outer side of the first transmission side frame (51) is fixedly installed with a lifting cylinder (67), and the driving end of the lifting cylinder (67) is fixedly installed with the L-shaped support (66).

4. The instant rice noodle food rapid detection device according to claim 3, characterized in that: The bottom of the detection frame (61) is provided with a liquid buffering cavity (601), the inner bottom of the liquid buffering cavity (601) is provided with a suction groove (6011), the outer side of the liquid buffering cavity (601) is fixedly installed with a suction pipe (602), and the end of the suction pipe (602) is fixedly installed with a connecting pipe (603).

5. The instant rice noodle food rapid detection device according to claim 4, characterized in that: The sub-transmission mechanism (3) comprises a longitudinal side frame (31) and a longitudinal short side frame (32), the longitudinal side frame (31) and the longitudinal short side frame (32) are fixedly installed at the top end of the base (1), the two end portions of the longitudinal side frame (31) and the longitudinal short side frame (32) are rotatably installed with the second transmission roller (33), and the outer sides of the two second transmission rollers (33) are movably sleeved with the second transmission belt (34).

6. The instant rice noodle food rapid detection device according to claim 5, characterized in that: The co-driving mechanism (8) comprises a first seat (81), a second seat (82), the first seat (81) is fixedly installed on the longitudinal side frame (31) near one end of the first transmission side frame (51), the second seat (82) is fixedly installed on the first transmission side frame (51) near one end of the longitudinal side frame (31), one end of the first seat (81) is rotatably installed with a first shaft (83) through a bearing, the first shaft (83) is fixedly installed with the shaft end corresponding to the second transmission roller (33), the middle part of the second seat (82) is rotatably installed with a third shaft (85) through a bearing, the third shaft (85) is fixedly installed with the shaft end corresponding to the first transmission roller (52), the other end of the first seat (81) is rotatably installed with a first sprocket (86) through a bearing, the end of the third shaft (85) is fixedly installed with a second sprocket (87), the outer sides of the first sprocket (86) and the second sprocket (87) are meshingly connected with a transmission chain (871), the middle part of the first sprocket (86) is slidably inserted with a second shaft (84), the outer side of the second shaft (84) is integrally formed with a clamping sliding strip (842), the clamping sliding strip (842) is slidably clamped in the middle part of the first sprocket (86), one end of the second shaft (84) near the first shaft (83) is integrally formed with a clamping tooth (841), one side of the first shaft (83) near the second shaft (84) is provided with a groove (831) corresponding to the clamping tooth (841), and the clamping tooth (841) is movably clamped in the corresponding groove (831).

7. The instant rice noodle food rapid detection device according to claim 6, characterized in that: The co-driving mechanism (8) further comprises a third seat (89), the third seat (89) is fixedly installed on the longitudinal side frame (31) near one end of the first transmission side frame (51), the third seat (89) is located above the first seat (81), the end of the third seat (89) is movably clamped with a connecting top rod (891), one end of the connecting top rod (891) is vertically installed with a connecting longitudinal frame (881), the bottom of the connecting longitudinal frame (881) is vertically installed with a connecting bottom rod (88), one end of the second shaft (84) away from the first shaft (83) is fixedly clamped with a mounting bearing (843), one end of the connecting bottom rod (88) away from the connecting longitudinal frame (881) is fixedly clamped in the mounting bearing (843), the third seat (89) is provided with a telescopic cylinder (810), the telescopic cylinder (810) is fixedly installed on the longitudinal side frame (31), and the driving end of the telescopic cylinder (810) and the end of the connecting top rod (891) are fixedly installed.

8. The instant rice noodle food rapid detection device according to claim 7, characterized in that: The structure of the final transmission mechanism (7) is the same as that of the sub-transmission mechanism (3), the final transmission mechanism (7) is fixedly installed on the top end of the base (1) through the longitudinal side frame (31) and the longitudinal short side frame (32), one end of the longitudinal side frame (31) in the final transmission mechanism (7) is fixedly installed with a second motor (71), and the driving end of the second motor (71) and the shaft end of the second transmission roller (33) in the final transmission mechanism (7) are fixedly installed.

9. The instant rice noodle food rapid detection device according to claim 8, characterized in that: The structure of the total transmission mechanism (2) is the same as that of the branch transmission mechanism (5), and the total transmission mechanism (2) is fixedly installed at the top end of the base (1) through the first transmission side frame (51).

10. A detection method using the instant rice noodle food rapid detection device according to claim 9, characterized in that, It comprises the following steps: Step one, after production, the bagged instant rice is placed on the first transmission belt (521) in the total transmission mechanism (2) for automatic transmission, and is sequentially transmitted to the second transmission belt (34) in the branch transmission mechanism (3) for automatic transmission; Step two, first, the first motor (53) in the branch transmission mechanism (5) at one side position is started to drive the corresponding first transmission roller (52) to rotate, thereby driving the first transmission belt (521) to transmit, and the telescopic cylinder (810) in the common drive mechanism (8) at the position is retracted to drive the connecting top rod (891), the connecting vertical frame (881) and the connecting bottom rod (88) to slide, control the second shaft (84) to slide towards the side close to the first shaft (83), the clamping tooth (841) is movably clamped in the corresponding groove (831), when the first transmission roller (52) rotates, the third shaft (85) is controlled to rotate synchronously, and the first sprocket (86), the second sprocket (87) and the transmission chain (871) are matched to control the second shaft (84) to rotate synchronously, thereby driving the first shaft (83) to rotate synchronously, and the second transmission roller (33) and the first transmission roller (52) at the position are controlled to rotate synchronously at the same speed and in the same direction; The bagged instant rice on the second transmission belt (34) in the branch transmission mechanism (3) is automatically transmitted to the first transmission belt (521) in the branch transmission mechanism (5) at the position, so that the bagged instant rice is transmitted to the lower side of the detection frame (61), is placed on the upper side of the bottom support plate (68), and the transmission of the first transmission belt (521) at the position is stopped; And the telescopic cylinder (810) in the common drive mechanism (8) at the position is extended, thereby driving the connecting top rod (891), the connecting vertical frame (881) and the connecting bottom rod (88) to slide reversely, controlling the second shaft (84) to slide away from the first shaft (83), and the clamping tooth (841) is separated from the corresponding groove (831); At the same time, the telescopic cylinder (810) in the common drive mechanism (8) at the other position is retracted, and the first motor (53) in the branch transmission mechanism (5) at the other position is started to drive the first transmission belt (521) to transmit, control the second transmission roller (33) and the first transmission roller (52) at the other position to rotate synchronously at the same speed and in the same direction, and then the next bagged instant rice on the branch transmission mechanism (3) is transmitted to the first transmission belt (521) in the branch transmission mechanism (5) at the other position for transmission, and the subsequent packaging and sealing detection of the bagged instant rice is carried out. Step three, when the bagged instant rice is transmitted to the lower side of the detection frame (61) and placed on the upper side of the bottom support plate (68), the lifting cylinder (67) is started to drive the L-shaped support (66) to drive the inner pressing plate (62) to descend, and at the same time, the detection frame (61) is lowered until the lower surface of the sealing gasket (65) and the upper surface of the first transmission belt (521) are in contact, and the bagged instant rice is isolated and protected by the detection frame (61); Then, continue to lower the inner pressing plate (62) to extrude the spring (623), and the inner pressing plate (62) continues to slide vertically in the detection frame (61) to automatically press the bagged instant rice for packaging and sealing detection; When the bagged instant rice is detected to have a leakage, the external suction pump is immediately started, the leakage is automatically sucked into the liquid buffering cavity (601) through the suction groove (6011), and is automatically extracted to the outside through the suction pipe (602) and the connecting pipe (603); Step four, when the bagged instant rice packaging and sealing detection is qualified, the reset detection frame (61) and the inner pressing plate (62) are quickly moved upward, and the first transmission belt (521) in the position branch transmission mechanism (5) is controlled again to transmit, so that the qualified bagged instant rice is automatically transmitted to the second transmission belt (34) in one of the final transmission mechanisms (7) for transmission, and subsequent processing of the bagged instant rice is performed; When the bagged instant rice packaging and sealing detection is unqualified, the reset detection frame (61) and the inner pressing plate (62) are quickly moved upward, and the first transmission belt (521) in the position branch transmission mechanism (5) is controlled again to transmit in reverse, so that the unqualified bagged instant rice is automatically transmitted to the second transmission belt (34) in the other final transmission mechanism (7) for transmission, and the classified transmission of the detected bagged instant rice is performed.