PH value detection and compensation device for food processing
By designing an automated detection and compensation mechanism and a moving plate, the detection and automatic compensation of food acidity and alkalinity were realized, solving the problem of timely compensation in existing technologies and improving the accuracy and practicality of the detection.
Patent Information
- Application Number
- CN202422899885.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-26
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2034-11-26
AI Technical Summary
While existing technologies can detect the acidity or alkalinity of food, they cannot promptly compensate for acidity or alkalinity based on the test results, thus lacking practicality.
A device including a detection and compensation mechanism was designed. By moving the moving plate up and down, combined with acid and alkali compensation components, the detection and material compensation operations are automated. The pH sensor is used to detect the acidity and alkalinity of the food, and automatic compensation is achieved through acid and alkali storage tanks and conveying pipelines.
This technology improves the accuracy and practicality of food pH testing, automatically compensating for food pH based on test results, thus enhancing the functionality and usability of the testing.
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Figure CN223565671U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to food processing technical field especially a kind of for food processing's acidity and alkalinity detection and compensation device. BACKGROUND
[0002] In food industry, acidity and alkalinity is one of important indicators, and measuring acidity and alkalinity is equivalent to measuring its pH value.The traditional pH test paper method can only roughly determine the pH value of measurement object, and the accuracy is only 1.For food, the range of its acidity and alkalinity will not be too large, even if unqualified food and qualified food, the difference of acidity and alkalinity is not very large.In order to detect the advantages and disadvantages of food, the accuracy of acidity and alkalinity determination is very important, and in Chinese patent number CN209296641U, a kind of acidity and alkalinity measuring instrument for semi-solid food is disclosed, including control module, measuring module, and main lead connected with control module and measuring module, the control module includes shell and control button, display screen set on shell, shell has controller, circuit mainboard connected with, the measuring module includes measuring disc, reference electrode, measuring electrode, detection container, the detection container contains detection liquid, the measuring disc is integrally connected with reference electrode, the measuring electrode is integrally connected with one embedded disc, the embedded disc and measuring disc embeddedly connect.The acidity and alkalinity measuring instrument of the utility model is suitable for various forms of semi-solid food, such as jelly, porous, paste, etc., with high accuracy, sensitive and fast, and high cost performance, the above-mentioned patent can meet the demand of food acidity and alkalinity detection, but it cannot compensate the acidity or alkalinity of food in time according to detection result, and the practicability is relatively deficient. UTILITY MODEL CONTENT
[0003] The utility model provides a kind of for food processing's acidity and alkalinity detection and compensation device to solve the problems that prior art can meet the demand of food acidity and alkalinity detection, however, it cannot compensate the acidity or alkalinity of food in time according to detection result, and the practicability is relatively deficient.
[0004] Technical scheme
[0005] A kind of for food processing's acidity and alkalinity detection and compensation device, including processing table, top plate being located above the processing table and detection compensation mechanism being located on the top plate, support mechanism is equipped between the processing table and the top plate, mobile plate is equipped on the support mechanism, the support mechanism includes guide assembly and lifting assembly, the lifting assembly drives the mobile plate to move up and down;
[0006] The detection compensation mechanism comprises a detection assembly, an acidic compensation assembly and an alkaline compensation assembly, the detection assembly comprises a display control and a detection part, the detection part is connected with the display control arranged on the top plate through a wire, the detection part penetrates the moving plate, the acidic compensation assembly comprises an acid material storage tank and an acid material conveying pipe, the acid material conveying pipe is connected with the acid material storage tank arranged on the top plate through an acid material conveying part, the acid material conveying pipe is fixedly penetrated with the moving plate, the alkaline compensation assembly comprises an alkaline material storage tank and an alkaline material conveying pipe, the alkaline material conveying pipe is connected with the alkaline material storage tank arranged on the top plate through an alkaline material conveying part, and the alkaline material conveying pipe is fixedly penetrated with the moving plate.
[0007] A detection box for containing food to be detected is arranged on the processing table and located below the moving plate.
[0008] In a further embodiment, one end of the wire is connected to the display control, and the other end is connected to the detection part and penetrates the top plate, and the wire between the top plate and the moving plate is wound on an elastic winding part.
[0009] The display control comprises a control display screen, and the detection part comprises a PH sensor.
[0010] In a further embodiment, the acid material conveying part comprises a first transmission pump, the first transmission pump is arranged on the acid material storage tank, the extraction end of the first transmission pump is fixedly communicated with the acid material storage tank, the conveying end of the first transmission pump is fixedly communicated with one end of the acid material conveying pipe, and the end of the acid material conveying pipe not connected with the conveying end of the first transmission pump is fixedly penetrated with the moving plate.
[0011] The alkaline material conveying part comprises a second transmission pump, the second transmission pump is arranged on the alkaline material storage tank, the extraction end of the second transmission pump is fixedly communicated with the alkaline material storage tank, the conveying end of the second transmission pump is fixedly communicated with one end of the alkaline material conveying pipe, and the end of the alkaline material conveying pipe not connected with the conveying end of the second transmission pump is fixedly penetrated with the moving plate.
[0012] In a further embodiment, the acid material conveying pipe and the alkaline material conveying pipe are both in an organ type telescopic structure.
[0013] In a further embodiment, the lifting assembly comprises a lifting motor and a lead screw, the lifting motor is fixed on the processing table, the output end of the lifting motor is connected with the bottom end of the lead screw, and the top end of the lead screw is rotationally connected with the top plate and penetrates the threaded hole arranged on the moving plate.
[0014] In further embodiments, the guiding assembly comprises a guiding column, two ends of the guiding column are fixedly connected with the top plate and the machining table respectively, and the guiding column is located on the side opposite to the lead screw;
[0015] The moving plate is slidably connected with the guiding column through a guiding hole formed in the moving plate.
[0016] In further embodiments, a vibrating mixing member is further arranged on the guiding column, the vibrating mixing member comprises a moving frame, an electromagnetic power member and a vibrator, the moving frame comprises a horizontal rod and a vertical rod fixedly arranged perpendicularly to the horizontal rod, the horizontal rod is slidably connected with the guiding column through a through hole formed in the guiding column, and the horizontal rod is arranged perpendicularly to the guiding column.
[0017] The vertical rod is fixedly connected with the vibrator, and the electromagnetic power member is arranged between the vertical rod and the guiding column.
[0018] The electromagnetic power member comprises an electromagnetic coil, a magnet and a power spring, the electromagnetic coil is arranged on the guiding column, the magnet is arranged on the vertical rod, and the power spring is connected between the vertical rod and the guiding column.
[0019] In further embodiments, a conveying assembly is further arranged on the machining table, the conveying assembly comprises a belt-shaped conveying member and a conveying motor, the belt-shaped conveying member is arranged in a groove formed in the machining table, and the conveying motor is arranged on the machining table and drives the belt-shaped conveying member through a transmission assembly.
[0020] The detection box is placed on the belt-shaped conveying member.
[0021] The detection box is placed on the belt-shaped conveying member. BRIEF DESCRIPTION OF DRAWINGS
[0022] Figure 1 is a front view of the utility model.
[0023] Figure 2 is a front view of the utility model. Figure 1 is an enlarged structure schematic view of A in the utility model. is an enlarged structure schematic view of A in the utility model.
[0024] The figure marks are: processing table 1, detection box 11, transmission assembly 12, controller 13, top plate 2, detection compensation mechanism 3, lifting assembly 4, lead screw 41, lifting motor 42, guide assembly 5, guide column 51, through hole 511, moving plate 6, screw hole 61, guide hole 62, detection assembly 7, wire 71, detection piece 72, elastic winding piece 73, acid compensation assembly 8, acid material conveying pipe 81, alkaline compensation assembly 9, alkaline material conveying pipe 91, vibration mixing piece 10, horizontal rod 101, vertical rod 102, vibrator 103, electromagnetic power piece 104. DETAILED DESCRIPTION
[0025] In the following description, a large number of specific details are given to provide a more complete understanding of the present application. However, it is obvious to those skilled in the art that the present application can be implemented without one or more of these details. In other examples, some technical features known in the art are not described in order not to obscure the present application.
[0026] The present application is further described in detail below with reference to the accompanying drawings.
[0027] Reference Figures 1-2 The present application discloses an acid-base detection and compensation device for food processing, which comprises a processing table 1, a top plate 2 arranged above the processing table 1, and a detection compensation mechanism 3 arranged on the top plate 2. A support mechanism is arranged between the processing table 1 and the top plate 2, and a moving plate 6 is arranged on the support mechanism. The support mechanism comprises a guide assembly 5 and a lifting assembly 4, and the lifting assembly 4 drives the moving plate 6 to move up and down. The detection compensation mechanism 3 comprises a detection assembly 7, an acid compensation assembly 8, and an alkaline compensation assembly 9. The detection assembly 7 comprises a display control piece and a detection piece 72. The detection piece 72 is connected to the display control piece arranged on the top plate 2 through a wire 71, and penetrates through the moving plate 6. The acid compensation assembly 8 comprises an acid material storage box and an acid material conveying pipe 81. The acid material conveying pipe 81 is connected to the acid material storage box arranged on the top plate 2 through an acid material conveying piece, and is fixedly penetrated through the moving plate 6. The alkaline compensation assembly 9 comprises an alkaline material storage box and an alkaline material conveying pipe 91. The alkaline material conveying pipe 91 is connected to the alkaline material storage box arranged on the top plate 2 through an alkaline material conveying piece, and is fixedly penetrated through the moving plate 6. A detection box 11 for containing food to be detected is arranged on the processing table 1, and the detection box 11 is located below the moving plate 6.
[0028] One end of the lead wire 71 is connected to the display control, and the other end penetrates the top plate 2 and is connected to the detection element 72. The lead wire 71 between the top plate 2 and the moving plate 6 is wound on the elastic winding element 73, which includes a winding cylinder. The winding cylinder is rotatably arranged below the top plate 2. A spring is wound on the rotating shaft of the winding cylinder. When the moving plate 6 moves downward, the lead wire 71 is pulled and elongated. At this time, the winding cylinder is driven to perform the lead wire operation. When the moving plate 6 moves upward, the spring is re-wound to enable the lead wire 71 to be re-wound. The display control includes a control display screen. The detection element 72 includes a PH sensor. The PH sensor is inserted into the detection box 11 to contact the food solution to detect the pH value and transmit the data to the control display screen.
[0029] The acid material conveying element includes a first transmission pump arranged on the acid material storage tank. The extraction end of the first transmission pump is fixedly communicated with the acid material storage tank. The conveying end of the first transmission pump is fixedly communicated with one end of the acid material conveying pipe 81. The other end of the acid material conveying pipe 81, which is not connected to the conveying end of the first transmission pump, is fixedly penetrated by the moving plate 6. The alkali material conveying element includes a second transmission pump arranged on the alkali material storage tank. The extraction end of the second transmission pump is fixedly communicated with the alkali material storage tank. The conveying end of the second transmission pump is fixedly communicated with one end of the alkali material conveying pipe 91. The other end of the alkali material conveying pipe 91, which is not connected to the conveying end of the second transmission pump, is fixedly penetrated by the moving plate 6. The transmission pumps are electrically connected with the control display screen. When the detection element 72 detects that the pH value is insufficient, the control display screen can control the corresponding transmission pump to be turned on, so that the corresponding conveying pipe can input the acid material or alkali material in the corresponding storage tank into the detection box 11. The acid material and alkali material include acidic solution and alkaline solution.
[0030] The acid material conveying pipe 81 and the alkali material conveying pipe 91 are both in the organ type telescopic structure. This structure enables the pipe to be telescopic when the moving plate 6 moves, and does not affect the normal conveying compensation of the material.
[0031] The lifting assembly 4 includes a lifting motor 42 and a lead screw 41. The lifting motor 42 is fixed on the processing table 1. The output end of the lifting motor 42 is connected with the bottom end of the lead screw 41. The top end of the lead screw 41 is rotatably connected with the top plate 2 through the threaded hole 61 arranged on the moving plate 6. When the lead screw 41 rotates under the drive of the lifting motor 42, the moving plate 6 can move up and down along the height direction of the lead screw 41 through the cooperation of the threaded hole 61 and the lead screw 41, so as to change the conveying position of the detection element 72 and the conveying pipe.
[0032] The guide assembly 5 comprises a guide column 51, the two ends of the guide column 51 are fixedly connected with the top plate 2 and the processing table 1 respectively, the guide column 51 is located on the opposite side of the lead screw 41, the moving plate 6 is provided with a guide hole 62 for the guide column 51 to pass through, the moving plate 6 is slidably connected with the guide column 51 through the guide hole 62, when the lead screw 41 rotates to drive the moving plate 6 to move up and down, the moving plate 6 also slides with the guide column 51, the guide column 51 and the lead screw 41 are located at the two ends of the moving plate 6 respectively, so that the sliding process of the moving plate 6 is more stable and will not deviate, and the top plate 2 can also be better supported.
[0033] The guide column 51 is also provided with a vibration mixing element 10, the vibration mixing element 10 comprises a moving frame, an electromagnetic power element 104 and a vibrator 103, the moving frame comprises a horizontal rod 101 and a vertical rod 102 fixedly connected with the horizontal rod 101, the horizontal rod 101 is slidably connected with the guide column 51 through a through hole 511 formed in the guide column 51, and the horizontal rod 101 is arranged perpendicularly to the guide column 51; the vertical rod 102 is fixedly connected with the vibrator 103, and the electromagnetic power element 104 is arranged between the vertical rod 102 and the guide column 51; the electromagnetic power element 104 comprises an electromagnetic coil, a magnet and a power spring, the electromagnetic coil is arranged on the guide column 51, the magnet is arranged on the vertical rod 102, and the power spring is connected between the vertical rod 102 and the guide column 51; the electromagnetic coil and the vibrator 103 are electrically connected with the control display, when the conveying pipe compensates the detection box 11, the electromagnetic coil is powered off, no suction force is generated on the magnet, the power elasticity is not limited by the suction force, the power spring is stretched and reset to push the vertical rod 102 to move towards the detection box 11, until the vibrator 103 is attached to the outer wall of the detection box 11, the vibrator 103 is turned on, so that the acid-base material supplemented in the detection box 11 can be more quickly and better fused to compensate the food, when the power spring expands the vertical rod 102, the horizontal rod 101 slides in the through hole 511.
[0034] The processing table 1 is also provided with a transmission assembly 12, the transmission assembly 12 comprises a belt-shaped transmission element and a transmission motor, the belt-shaped transmission element is arranged in a groove formed in the processing table 1, and the transmission motor is arranged on the processing table 1 and drives the belt-shaped transmission element through a transmission assembly, the transmission assembly comprises a transmission roller shaft; the detection box 11 is placed on the belt-shaped transmission element, the belt-shaped transmission element is located between the guide column 51 and the lead screw 41, the detection box 11 is placed on the belt-shaped transmission element, the controller 13 arranged on the processing table 1 is turned on, and then the belt-shaped transmission element can move the detection box 11 to a position below the moving plate 6 and correspond to the detection and conveying pipes, so as to facilitate subsequent pH value detection and compensation.
[0035] The implementation principle of the utility model discloses: after the transmission mechanism is transmitted to the detection box 11 that holds the food to be detected and moves the plate 6 directly below, the motor opens and makes the moving plate 6 move downwards, until the detection piece 72 inserts the detection box 11 and carries out the acidity and alkalinity detection to the food, and the control display controls the first transmission pump or the second transmission pump to open according to the detection result of the detection piece 72, so that the acid material or the alkali material in it can be inputted into the detection box 11 and carry out the compensation operation.
[0036] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
[0037] The preferred embodiments of the utility model are described in detail above in combination with the drawings, but the utility model is not limited to the specific details in the above-described embodiments, and various equivalent transformations can be made to the technical scheme of the utility model within the technical concept of the utility model, and these equivalent transformations all belong to the protection scope of the utility model.
Claims
1. A pH detection and compensation device for food processing, characterized by: The application relates to a processing table, a top plate arranged above the processing table and a detection compensation mechanism arranged on the top plate, wherein a supporting mechanism is arranged between the processing table and the top plate, a moving plate is arranged on the supporting mechanism, the supporting mechanism comprises a guiding assembly and a lifting assembly, and the lifting assembly drives the moving plate to move up and down. The detection compensation mechanism comprises a detection assembly, an acidic compensation assembly and an alkaline compensation assembly, the detection assembly comprises a display control element and a detection element, the detection element is connected with the display control element arranged on the top plate through a wire, the detection element penetrates through the moving plate, the acidic compensation assembly comprises an acid material storage tank and an acid material conveying pipe, the acid material conveying pipe is connected with the acid material storage tank arranged on the top plate through an acid material conveying element, the acid material conveying pipe is fixedly penetrated with the moving plate, the alkaline compensation assembly comprises an alkaline material storage tank and an alkaline material conveying pipe, the alkaline material conveying pipe is connected with the alkaline material storage tank arranged on the top plate through an alkaline material conveying element, and the alkaline material conveying pipe is fixedly penetrated with the moving plate. A detection box for containing food to be detected is arranged on the processing table, and the detection box is located below the moving plate.
2. A pH detection and compensation device for food processing according to claim 1, characterized in that: One end of the wire is connected with the display control element, the other end is connected with the detection element and penetrates through the top plate, and the wire between the top plate and the moving plate is wound on an elastic winding element. The display control element comprises a control display screen, and the detection element comprises a PH sensor.
3. A pH detection and compensation device for food processing as claimed in claim 1, wherein: The acid material conveying element comprises a first transmission pump, the first transmission pump is arranged on the acid material storage tank, the extraction end of the first transmission pump is fixedly communicated with the acid material storage tank, the conveying end of the first transmission pump is fixedly communicated with one end of the acid material conveying pipe, and the end of the acid material conveying pipe, which is not connected with the conveying end of the first transmission pump, is fixedly penetrated with the moving plate. The alkaline material conveying element comprises a second transmission pump, the second transmission pump is arranged on the alkaline material storage tank, the extraction end of the second transmission pump is fixedly communicated with the alkaline material storage tank, the conveying end of the second transmission pump is fixedly communicated with one end of the alkaline material conveying pipe, and the end of the alkaline material conveying pipe, which is not connected with the conveying end of the second transmission pump, is fixedly penetrated with the moving plate.
4. The pH detection and compensation device for food processing according to claim 1, characterized in that: The acid material conveying pipe and the alkaline material conveying pipe are both in the organ pipe type telescopic structure.
5. The pH detection and compensation device for food processing according to claim 1, characterized in that: The lifting assembly comprises a lifting motor and a lead screw, the lifting motor is fixed on the processing table, the output end of the lifting motor is connected with the bottom end of the lead screw, and the top end of the lead screw is rotatably connected with the top plate through a threaded hole arranged on the moving plate.
6. A pH detection and compensation device for food processing according to claim 5, characterized in that: The guiding assembly comprises a guiding column, the two ends of the guiding column are fixedly connected with the top plate and the processing table respectively, and the guiding column is located on the side opposite to the lead screw. A guiding hole is arranged on the moving plate and used for allowing the guiding column to pass through, and the moving plate is slidably connected with the guiding column through the guiding hole.
7. A pH detection and compensation device for food processing according to claim 6, characterized in that: The guiding column is further provided with a vibrating mixing element, the vibrating mixing element comprises a moving frame, an electromagnetic power element and a vibrator, the moving frame comprises a horizontal rod and a vertical rod fixed perpendicularly to the horizontal rod, the horizontal rod is in sliding connection with the guiding column through a through hole formed on the guiding column, and the horizontal rod is arranged perpendicularly to the guiding column; The vertical rod is in fixed connection with the vibrator, and the electromagnetic power element is arranged between the vertical rod and the guiding column; The electromagnetic power element comprises an electromagnetic coil, a magnet and a power spring, the electromagnetic coil is arranged on the guiding column, the magnet is arranged on the vertical rod, and the power spring is connected between the vertical rod and the guiding column.
8. A pH detection and compensation device for food processing as claimed in claim 1, wherein: The processing table is further provided with a transmission assembly, the transmission assembly comprises a belt-shaped transmission element and a transmission motor, the belt-shaped transmission element is arranged in a groove formed on the processing table, and the transmission motor is arranged on the processing table and drives the belt-shaped transmission element through a transmission assembly; The detection box is placed on the belt-shaped transmission element.
Citation Information
Patent Citations
PH value measuring instrument for semi-solid food
CN209296641U