A beef jerky microbial detection sampling device and its use method
By designing the crushing roller and servo motor drive of the beef jerky microbial detection sampling device, combined with stable gas protection, the problem of inaccurate detection caused by environmental differences in beef jerky microbial detection was solved, and comprehensive and high-precision sampling was achieved.
Patent Information
- Application Number
- CN202510325985.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2045-03-19
AI Technical Summary
The existing beef jerky microbial detection sampling device cannot effectively solve the problem of uneven microbial distribution caused by environmental differences on various surfaces and depths during the production process, affecting the detection accuracy and comprehensiveness.
A beef jerky microbial detection sampling device was designed, which included a sampling box, a sampling cylinder, a crushing mechanism, a depth adjustment mechanism, and a synchronous drive mechanism. The crushing roller and a servo motor were used to achieve multi-angle and multi-depth cutting sampling of the beef jerky, and the sampling environment was protected by stable gases such as helium, nitrogen, or neon.
It achieves precise cutting and sampling of different sides and depths of beef jerky, ensuring the comprehensiveness and accuracy of the test, avoiding contamination, and improving the reliability of the test results.
Smart Images

Figure CN120102190B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of beef jerky detection, and particularly relates to a beef jerky microbial detection sampling device and a use method thereof. Background Art
[0002] Beef jerky contains a variety of minerals and amino acids needed by the human body. It not only maintains the chewy flavor of beef, but also does not deteriorate for a long time. At present, the preparation of beef jerky requires the selection of beef that has passed health quarantine, the removal of fat muscle membrane, broken bones, etc., cutting it into long strips, soaking it in circulating water for 24 hours, and then marinating and air-drying the beef. Finally, it is baked and packaged. After drying, in order to ensure the factory quality of the beef jerky, the beef jerky needs to be sampled and tested for E. coli.
[0003] For example, in the Chinese utility model with the announcement number CN214373437U and the name of a beef jerky detection and sampling device, it specifically includes a sampling shell, a partition is provided in the sampling shell to divide the interior into a transmission chamber and a sampling chamber, the upper end of the sampling shell supports the rotation of a drive shaft and a driven shaft, the drive shaft and the driven shaft are respectively fixed with driving teeth and driven teeth that are meshed with each other and are located in the transmission chamber, and a knife holder is fixed on both sides of the driven shaft and is located in the sampling chamber, and a sampling blade is fixed on the knife holder. Although the above-mentioned prior art can quickly cut and sample beef jerky, since during the production process of beef jerky, usually only part of the surface is directly exposed to air or heat source, the contact environment of each surface of the beef jerky and the contact environment of different depths of each surface of the beef jerky are different, resulting in different microbial distributions on each surface and at different depths of each surface. Therefore, a beef jerky microbial detection and sampling device and a method of using the same are now needed. Summary of the Invention
[0004] The purpose of the present invention is to provide a beef jerky microbial detection sampling device with a simple structure and reasonable design and a method of using the device in order to solve the above problems.
[0005] The present invention achieves the above-mentioned purpose through the following technical solutions:
[0006] A beef jerky microbial detection sampling device includes a sampling box, wherein a plurality of sampling barrels are rotatably arranged on the inner side of the sampling box, a crushing mechanism is arranged on the inner side of each of the sampling barrels, and a depth adjustment mechanism is arranged on the outer side of each of the sampling barrels for driving the crushing mechanism to slide along the diameter of the sampling barrel. A synchronous drive mechanism is arranged on the upper side of the sampling box for simultaneously driving the plurality of sampling barrels to rotate.
[0007] As a further optimization solution of the present invention, the pulverizing mechanism includes a pulverizing roller arranged inside the sampling cylinder, a plurality of pulverizing teeth are arranged on the outside of the pulverizing roller, and a pulverizing motor for driving the pulverizing roller to rotate is arranged inside the sampling cylinder.
[0008] As a further optimization scheme of the present invention, the depth adjustment mechanism includes a slide plate that slides through the upper and lower ends of the sampling barrel, the two ends of the crushing roller are respectively rotatably set between the two slide plates, the crushing motor is fixed on the slide plate, and one end of the two slide plates is jointly fixed with a connecting plate located on the outside of the sampling barrel, and the outside of the sampling barrel is fixed with an electric telescopic rod that drives the connecting plate to move.
[0009] As a further optimization solution of the present invention, the sampling tube adopts a hollow ring structure that penetrates from top to bottom, and the upper and lower ends of the sampling tube are fixedly provided with guide tubes that are slidably sleeved on the outside of two slides.
[0010] As a further optimization scheme of the present invention, the synchronous drive mechanism includes a gear ring fixedly mounted on the outer side of the upper ends of several sampling tubes, a servo motor is fixedly installed on the upper side of the sampling box, and a central gear is fixedly installed on the output end of the servo motor that is simultaneously engaged with several gear rings.
[0011] As a further optimization scheme of the present invention, the upper side of the sampling box is provided with several sampling fixing components that cooperate with the upper end of the sampling tube, the lower side of the sampling box is provided with several sampling ports that cooperate with the lower end of the sampling tube, the inner sides of several of the sampling tubes are provided with pin assemblies that cooperate with the sampling fixing components, and the inner sides of several of the sampling ports are provided with positioning components that cooperate with the pin assemblies.
[0012] As a further optimization scheme of the present invention, the sampling fixing assembly includes a positioning groove opened on the upper side of the sampling box, and the bottom of the positioning groove is provided with a sampling port that passes through the upper side of the sampling box and is connected to the sampling tube, and the bottom edge of the positioning groove is provided with several screw holes.
[0013] As a further optimization scheme of the present invention, the pin assembly includes a pin that is movably inserted into the inner side of the sampling tube from the sampling port, beef jerky is inserted into the outer side of the pin, and a top plate that cooperates with the positioning groove is fixedly provided on the upper end of the pin. Several through holes that cooperate with the screw holes are opened on the edge of the top plate, and an air inlet pipe for inflating the inner side of the sampling tube is provided on the top plate.
[0014] As a further optimized solution of the present invention, the positioning assembly includes a positioning rod fixedly arranged on the inner side of the sample outlet, and one end of the positioning rod is fixedly provided with a positioning plate that abuts and cooperates with the lower end of the pin.
[0015] A method for using a beef jerky microbial detection sampling device, characterized in that it comprises the following steps:
[0016] S1: Insert the beef jerky needle into the inner side of the sampling tube from the sampling port, then drop the top plate on the upper end of the needle into the inner side of the positioning groove, and then pass the screw through the through hole and fit it into the screw hole to fix the top plate on the upper side of the positioning groove;
[0017] S2: Then, stable gas is filled into the inner side of the sampling cylinder through the air inlet pipe, so that the air inside the sampling cylinder is discharged from the bottom of the sampling cylinder, so that the beef jerky is in a stable gas environment;
[0018] S3: The crushing motor then drives the crushing roller to rotate, and the electric telescopic rod drives the connecting plate to move horizontally, which in turn drives the slides at both ends of the crushing roller to slide along the diameter of the sampling tube, so that the beef jerky outside the pin can be cut and sampled at different depths;
[0019] S4: Finally, the servo motor drives the central gear to rotate, and then the gear ring rotates 90 degrees, which can drive the sampling barrel to rotate 90 degrees, and then the crushing roller inside the sampling barrel rotates 90 degrees relative to the beef jerky. Repeat step S3 to cut and sample the remaining side of the beef jerky at different depths.
[0020] The beneficial effects of the present invention are:
[0021] 1. In the present invention, helium, nitrogen or neon is filled into the inner side of the sampling tube through the air inlet pipe. Since helium, nitrogen or neon are stable gases and have a lower density than air, the air inside the sampling tube will be discharged from the bottom of the sampling tube, so that the beef jerky is in an environment of helium, nitrogen or neon. This can ensure that the beef jerky is not contaminated during the cutting and sampling process, thereby improving the accuracy of subsequent inspections.
[0022] 2. In the present invention, different sides of beef jerky can be cut and sampled, and different depths of different sides of beef jerky can be cut and sampled, thereby improving the comprehensiveness of beef jerky testing, making it easier for personnel to adjust the environment of beef jerky according to test data, and improving the taste of beef jerky. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the overall structure of the present invention;
[0024] Figure 2 It is a schematic diagram of the first internal overall structure of the present invention;
[0025] Figure 3 It is a second internal overall structure schematic diagram of the present invention;
[0026] Figure 4 is a third internal overall structure schematic diagram of the present invention;
[0027] Figure 5It is a schematic diagram of the internal partial overall structure of the present invention;
[0028] Figure 6 This invention Figure 1 Enlarged view of point A in the middle;
[0029] Figure 7 This invention Figure 2 Enlarged view of point B in the middle;
[0030] Figure 8 This invention Figure 3 Enlarged view of point C in the middle;
[0031] Figure 9 This invention Figure 4 Enlarged view of point D in the middle;
[0032] Figure 10 This invention Figure 5 Enlarged view of point E in the middle;
[0033] Figure 11 This invention Figure 5 Enlarged view of point F in the middle.
[0034] In the figure: 1. Sampling box; 2. Sampling tube; 3. Depth adjustment mechanism; 301. Slide plate; 302. Connecting plate; 303. Electric telescopic rod; 304. Guide tube; 4. Synchronous drive mechanism; 401. Servo motor; 402. Center gear; 403. Ring gear; 5. Crushing mechanism; 501. Crushing roller; 502. Crushing teeth; 503. Crushing motor; 6. Pin assembly; 601. Pin; 602. Top plate; 603. Through hole; 604. Air inlet pipe; 7. Beef jerky; 8. Sample outlet; 9. Positioning assembly; 901. Positioning rod; 902. Positioning plate; 10. Sample injection fixing assembly; 1001. Positioning groove; 1002. Sample injection port; 1003. Screw hole. DETAILED DESCRIPTION
[0035] The present application is described in further detail below in conjunction with the accompanying drawings. It is necessary to point out that the following specific implementation methods are only used to further illustrate the present application and cannot be understood as limiting the scope of protection of the present application. Technicians in this field can make some non-essential improvements and adjustments to the present application based on the above application content.
[0036] Example 1
[0037] like Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 10 、 Figure 11As shown, a beef jerky microbial detection sampling device includes a sampling box 1, and a plurality of sampling barrels 2 are rotatably arranged on the inner side of the sampling box 1. In this embodiment, three sampling barrels 2 are arranged, and the specific number can be flexibly set according to actual conditions. The sampling barrel 2 adopts a hollow circular ring structure that passes through the upper and lower parts. Beef jerky 7 is suspended and fixed on the inner side of the sampling barrel 2. The beef jerky 7 is arranged in the center of the sampling barrel 2. A crushing mechanism 5 is provided on the inner side of the three sampling barrels 2. The crushing mechanism 5 includes a crushing roller 501 arranged on the inner side of the sampling barrel 2, and a plurality of crushing teeth 502 are arranged on the outer side of the crushing roller 501. A crushing motor 503 for driving the crushing roller 501 to rotate is provided on the inner side of the sampling barrel 2. When in use, the crushing roller 501 is driven to rotate by the crushing motor 503, which can drive the multiple crushing teeth 502 on the outer side of the crushing roller 501 to rotate, thereby cutting and sampling the beef jerky 7 inside the sampling barrel 2.
[0038] like Figure 4 、 Figure 5 、 Figure 10 、 Figure 11 As shown, the outer sides of the three sampling cylinders 2 are respectively provided with a depth adjustment mechanism 3 that drives the crushing mechanism 5 to slide along the diameter of the sampling cylinder 2. The depth adjustment mechanism 3 includes a guide cylinder 304 fixedly set through the upper and lower ends of the sampling cylinder 2. The inner sides of the two guide cylinders 304 are both slidably provided with a slide plate 301. The two slide plates 301 slide through the sampling cylinder 2. The two ends of the crushing roller 501 are respectively rotatably set between the two slide plates 301. The crushing motor 503 is fixedly set on the slide plate 301. One end of the two slide plates 301 is commonly fixedly provided with a connecting plate 302 located on the outer side of the sampling cylinder 2. The outer side of the sampling cylinder 2 is fixedly provided with There is an electric telescopic rod 303 that drives the connecting plate 302 to move. When it is necessary to cut and sample beef jerky at different depths, it is only necessary to drive the crushing roller 501 to rotate through the crushing motor 503, and then drive the connecting plate 302 to move horizontally through the electric telescopic rod 303, and then drive the slides 301 at both ends of the crushing roller 501 to slide along the diameter of the sampling tube 2, so that the crushing roller 501 can be driven to move along the diameter of the sampling tube 2, so that the crushing roller 501 moves along the diameter of the beef jerky, so that the beef jerky can be cut and sampled at different depths, and the beef jerky outside the pin 601 can be cut and sampled at different depths.
[0039] like Figure 1 、 Figure 2 、 Figure 3 、 Figure 4 、 Figure 5 、 Figure 8 、 Figure 9As shown, the upper side of the sampling box 1 is provided with a synchronous driving mechanism 4 for driving the three sampling tubes 2 to rotate at the same time. The synchronous driving mechanism 4 includes a gear ring 403 fixedly sleeved on the outer side of the upper ends of the three sampling tubes 2. A servo motor 401 is fixedly provided on the upper side of the sampling box 1. The output end of the servo motor 401 is fixedly provided with a central gear 402 that is simultaneously engaged with the three gear rings 403. Generally, the cross-section of the beef jerky 7 is square and has a long strip structure. In order to improve the cutting efficiency of the beef strips, a machine is used to cut the beef jerky into a long strip structure so that the shape of the beef jerky 7 is consistent. When it is necessary to cut and sample the four sides of the beef jerky, it is only necessary to use the servo motor 401 drives the central gear 402 to rotate, thereby causing the ring gear 403 to rotate 90°, which can drive the sampling tube 2 to rotate 90°, thereby causing the crushing roller 501 inside the sampling tube 2 to rotate 90° relative to the beef jerky 7. Repeating the above-mentioned depth adjustment mechanism 3 drives the crushing mechanism 5 to move radially, the other side of the beef jerky 7 can be cut and sampled at different depths. Similarly, when the servo motor 401 drives the central gear 402 to rotate, thereby causing the ring gear 403 to rotate 180° and 270°, the other side of the beef jerky can be cut and sampled at different depths, and finally the four sides of the beef jerky 7 are all cut and sampled at different depths.
[0040] Example 2
[0041] A further improvement on the basis of Example 1 is that Figure 1 、 Figure 2 、 Figure 6 、 Figure 7As shown, the upper side of the sampling box 1 is provided with three sampling fixing components 10 that cooperate with the upper end of the sampling cylinder 2. The sampling fixing component 10 includes a positioning groove 1001 opened on the upper side of the sampling box 1. The bottom of the positioning groove 1001 is provided with a sampling port 1002 that passes through the upper side of the sampling box 1. The sampling port 1002 is connected to the sampling cylinder 2 and is concentrically arranged with the sampling cylinder 2. The positioning groove 1001 and the sampling port 1002 form a stepped structure. The bottom edge of the positioning groove 1001 is provided with a plurality of screw holes 100 3. In this embodiment, three screw holes 1003 are provided, and the specific number can be flexibly adjusted. Three sample outlets 8 are provided on the lower side of the sampling box 1. The sample outlets 8 cooperate with the lower end of the sampling cylinder 2. The sample outlets 8 are connected to the sampling cylinder 2 and are concentrically arranged with the sampling cylinder 2. The inner sides of the three sampling cylinders 2 are all provided with a pin assembly 6 that cooperates with the injection fixing assembly 10. The pin assembly 6 includes a pin 601 that is movably inserted into the inner side of the sampling cylinder 2 from the injection port 1002. The pin 601 is made of metal with good thermal conductivity. The beef jerky 7 is inserted into the outer side of the pin 601, and the upper end of the pin 601 is fixedly provided with a top plate 602 that cooperates with the positioning groove 1001. The pin 601 can be inserted into the beef jerky 7 during the drying or drying process. On the one hand, the inside of the beef jerky 7 can be heated by the pin 601 with good thermal conductivity, thereby improving the drying efficiency of the beef jerky 7. On the other hand, it can also be directly cut and sampled during the cutting and sampling process, thereby avoiding the beef jerky 7 from being contaminated during the processing process, thereby affecting the detection accuracy. In the process of hanging and fixing the beef jerky on the inner side of the sampling tube 2, the pin 601 with the beef jerky 7 inserted is inserted into the inner side of the sampling tube 2 from the sampling port 1002, and then the top plate 602 at the upper end of the pin 601 falls into the inner side of the positioning groove 1001, and then the screw is passed through the through hole 603 to cooperate with the screw hole 1003, so that the top plate 602 is fixed to the upper side of the positioning groove 1001, so that the beef jerky can be fixedly hung on the inner side of the sampling tube 2.
[0042] like Figure 3 As shown, the inner sides of the three sample outlets 8 are all provided with positioning components 9 that cooperate with the pin components 6. The positioning components 9 include a positioning rod 901 fixedly provided on the inner side of the sample outlet 8. A positioning plate 902 is fixedly provided on one end of the positioning rod 901. The positioning plate 902 is located at the inner center of the sample outlet 8. The positioning plate 902 can abut against the lower end of the pin 601 to position one end of the pin 601, thereby avoiding the pin 601 from shaking during the process of cutting and sampling the beef jerky outside the pin 601, which affects the cutting and sampling effect and improves the detection accuracy.
[0043] like Figure 1 、 Figure 6As shown, the edge of the top plate 602 is provided with a plurality of through holes 603 that cooperate with the screw holes 1003. In this embodiment, three through holes 603 are provided, and the specific number can be flexibly selected according to actual conditions. An air inlet pipe 604 for inflating the inner side of the sampling tube 2 is provided on the top plate 602. The lower end of the air inlet pipe 604 passes through the top plate 602, and a valve (not shown in the figure) is provided on the air inlet pipe 604. During use, when the top plate 602 is fixed to the inner side of the positioning groove 1001, helium, nitrogen or neon is then filled into the inner side of the sampling tube 2 through the air inlet pipe 604. Since helium, nitrogen or neon are stable gases and have a lower density than air, the air inside the sampling tube 2 will be discharged from the bottom of the sampling tube 2, so that the beef jerky is in an environment of helium, nitrogen or neon. This can ensure that the beef jerky 7 is not contaminated during the cutting and sampling process, thereby improving the accuracy of subsequent inspections.
[0044] It should be noted that, when using the beef jerky microbial detection sampling device, the pin 601 with the beef jerky 7 inserted therein is inserted into the inner side of the sampling tube 2 from the sampling port 1002, and then the top plate 602 at the upper end of the pin 601 falls into the inner side of the positioning groove 1001, and then the screw is passed through the through hole 603 to cooperate with the screw hole 1003, so that the top plate 602 is fixed on the upper side of the positioning groove 1001, and then helium, nitrogen or neon is filled into the inner side of the sampling tube 2 through the air inlet pipe 604, so that the air inside the sampling tube 2 is discharged from the bottom of the sampling tube 2, so that the beef jerky 7 is in an environment of helium, nitrogen or neon, and then the crushing roller 501 is driven to rotate by the crushing motor 503, and then the electric telescopic rod 303 is used to crush the beef jerky 7. The connecting plate 302 is driven to move horizontally, thereby driving the slides 301 at both ends of the crushing roller 501 to slide along the diameter of the sampling tube 2, so that the beef jerky outside the pin 601 can be cut and sampled at different depths. Finally, the servo motor 401 drives the central gear 402 to rotate, thereby causing the ring gear 403 to rotate 90°, which can drive the sampling tube 2 to rotate 90°, thereby causing the crushing roller 501 inside the sampling tube 2 to rotate 90° relative to the beef jerky 7. Similarly, when the servo motor 401 drives the central gear 402 to rotate, thereby causing the ring gear 403 to rotate 180° and 270°, the other side of the beef jerky can be cut and sampled at different depths, and finally the four sides of the beef jerky 7 are cut and sampled at different depths.
[0045] The above-described embodiments merely illustrate several implementations of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the present invention. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, and all such variations and improvements fall within the scope of protection of the present invention.
Claims
1. A beef jerky microbial detection sampling device, comprising a sampling box (1), characterized in that: A plurality of sampling cylinders (2) are rotatably provided on the inner side of the sampling box (1), a crushing mechanism (5) is provided on the inner side of each of the sampling cylinders (2), a depth adjustment mechanism (3) is provided on the outer side of each of the sampling cylinders (2) for driving the crushing mechanism (5) to slide along the diameter of the sampling cylinder (2), and a synchronous driving mechanism (4) is provided on the upper side of the sampling box (1) for simultaneously driving the plurality of sampling cylinders (2) to rotate; The upper side of the sampling box (1) is provided with a plurality of sample injection fixing components (10) that cooperate with the upper end of the sampling cylinder (2), the lower side of the sampling box (1) is provided with a plurality of sample outlets (8) that cooperate with the lower end of the sampling cylinder (2), the inner sides of the plurality of the sampling cylinders (2) are provided with pin assemblies (6) that cooperate with the sample injection fixing components (10), and the inner sides of the plurality of the sample outlets (8) are provided with positioning components (9) that cooperate with the pin assemblies (6); The sampling fixing assembly (10) comprises a positioning groove (1001) provided on the upper side of the sampling box (1); a sampling port (1002) penetrating the upper side of the sampling box (1) and communicating with the sampling tube (2) is provided at the bottom of the positioning groove (1001); and a plurality of screw holes (1003) are provided at the bottom edge of the positioning groove (1001); The insertion needle assembly (6) comprises an insertion needle (601) that is movably inserted into the inner side of the sampling tube (2) from the sampling port (1002), and beef jerky (7) is inserted into the outer side of the insertion needle (601). A top plate (602) that cooperates with the positioning groove (1001) is fixedly provided on the upper end of the insertion needle (601), and a plurality of through holes (603) that cooperate with the screw holes (1003) are provided on the edge of the top plate (602). An air inlet pipe (604) for inflating air into the inner side of the sampling tube (2) is provided on the top plate (602).
2. The beef jerky microbial detection sampling device according to claim 1, characterized in that: The pulverizing mechanism (5) comprises a pulverizing roller (501) arranged inside the sampling cylinder (2), a plurality of pulverizing teeth (502) being arranged on the outside of the pulverizing roller (501), and a pulverizing motor (503) for driving the pulverizing roller (501) to rotate being arranged on the inside of the sampling cylinder (2).
3. The beef jerky microbial detection sampling device according to claim 2, characterized in that: The depth adjustment mechanism (3) comprises a slide plate (301) that slides through the upper and lower ends of the sampling barrel (2); the two ends of the crushing roller (501) are respectively rotatably arranged between the two slide plates (301); the crushing motor (503) is fixedly arranged on the slide plates (301); one end of the two slide plates (301) is fixedly provided with a connecting plate (302) located outside the sampling barrel (2); and the outer side of the sampling barrel (2) is fixedly provided with an electric telescopic rod (303) that drives the connecting plate (302) to move.
4. The beef jerky microbial detection sampling device according to claim 3, characterized in that: The sampling cylinder (2) adopts a hollow ring structure that penetrates from top to bottom. The upper and lower ends of the sampling cylinder (2) are fixedly provided with guide cylinders (304) that are slidably sleeved on the outside of two slide plates (301).
5. The beef jerky microbial detection sampling device according to claim 4, characterized in that: The synchronous drive mechanism (4) comprises a gear ring (403) fixedly mounted on the outer sides of the upper ends of the plurality of sampling cylinders (2); a servo motor (401) is fixedly mounted on the upper side of the sampling box (1); and a central gear (402) is fixedly mounted on the output end of the servo motor (401) and is meshed with the plurality of gear rings (403).
6. The beef jerky microbial detection sampling device according to claim 1, characterized in that: The positioning assembly (9) comprises a positioning rod (901) fixedly arranged on the inner side of the sample outlet (8), and a positioning plate (902) abutting against the lower end of the pin (601) is fixedly arranged on one end of the positioning rod (901).
7. A method for using the beef jerky microbial detection sampling device according to any one of claims 1 to 6, characterized in that: The following steps are involved: S1: insert the insertion pin (601) with the beef jerky (7) into the inner side of the sampling tube (2) from the sampling port (1002), then drop the top plate (602) at the upper end of the insertion pin (601) into the inner side of the positioning groove (1001), and then pass the screw through the through hole (603) and match it with the screw hole (1003), thereby fixing the top plate (602) on the upper side of the positioning groove (1001); S2: Then, stable gas is injected into the inner side of the sampling cylinder (2) through the air inlet pipe (604), so that the air inside the sampling cylinder (2) is discharged from the bottom of the sampling cylinder (2), so that the beef jerky (7) is in a stable gas environment; S3: The crushing roller (501) is then driven to rotate by the crushing motor (503), and the connecting plate (302) is then driven to move horizontally by the electric telescopic rod (303), thereby driving the slides (301) at both ends of the crushing roller (501) to slide along the diameter of the sampling tube (2), so that the beef jerky outside the insertion needle (601) can be cut and sampled at different depths; S4: Finally, the servo motor (401) drives the central gear (402) to rotate, thereby causing the ring gear (403) to rotate 90°, which can drive the sampling tube (2) to rotate 90°, thereby causing the crushing roller (501) inside the sampling tube (2) to rotate 90° relative to the beef jerky (7). Repeating step S3, the remaining side of the beef jerky (7) can be cut to different depths for sampling.
Citation Information
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