Meat product detection equipment
By designing a simple meat product testing device, multi-point testing is achieved using loading and synchronization components, solving the problems of complex operation and inaccurate testing of existing equipment, improving the convenience and accuracy of testing, and making it suitable for enterprises of various sizes.
Patent Information
- Application Number
- CN202520389967.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-03-06
AI Technical Summary
Existing meat product testing equipment is complex in structure and cumbersome to operate. There is a lack of simple equipment specifically designed for compression testing of meat products, resulting in high testing costs and low efficiency, making it difficult to conduct rapid testing in small processing plants or on-site.
A meat product testing device was designed, comprising a testing platform, a testing cylinder, a contact plate, and a loading component. The loading component applies force to the contact plate for compression testing, and a synchronization component and a testing component enable multi-point testing. Accurate data is obtained by combining a guide shaft and a stroke detection sensor.
It simplifies the operation process, reduces the professional skill requirements, improves the convenience and accuracy of testing, is suitable for large and small enterprises, obtains more comprehensive and accurate flexible data, and enhances the reliability and application scope of test results.
Smart Images

Figure CN223955274U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to meat product detection equipment technical field, concretely is a meat product detection equipment. BACKGROUND
[0002] In the meat product production and processing industry, quality detection of meat products is very important, and elasticity is one of the key indicators for measuring the quality of meat products. By compressing the meat product, its physical properties such as elasticity can be effectively evaluated, and the quality of the meat product can be judged. However, in the actual detection work, the existing technology has certain limitations: on the one hand, most detection equipment has complex structure and is difficult to operate, which requires professional personnel to operate, which not only increases the detection cost, but also limits the application of detection equipment in some small processing plants or on-site detection. On the other hand, the existing detection equipment often pays too much attention to comprehensive detection and lacks simple equipment for detecting the elasticity of meat products. The lack of such equipment makes it difficult for production enterprises to conduct rapid and preliminary elasticity detection, and it is difficult to efficiently detect the elasticity of meat products on a daily basis and control the quality, which affects the production efficiency and the stability of product quality. SUMMARY
[0003] In view of the deficiencies of the prior art, the utility model provides a meat product detection equipment to solve the problem of lack of simple equipment for detecting the elasticity of meat products in the prior art.
[0004] To achieve the above purpose, the utility model provides a meat product detection equipment, which comprises a detection table and a detection cylinder arranged on the detection table, the end face of the detection cylinder is provided with a placing hole for placing the meat product to be detected from outside along the height direction of the detection cylinder, the placing hole is movably provided with an abutting plate for contacting the meat product to be detected from outside along the axis direction of the placing hole, the detection table is provided with a loading part for applying force to the abutting plate to compress the meat product to be detected through the abutting plate, the outer peripheral wall of the abutting plate is provided with a plurality of synchronous parts for synchronous movement when the abutting plate moves, and the detection table is provided with a detection part corresponding to each synchronous part for linkage cooperation with the synchronous part to detect the linear movement distance of the abutting plate at multiple points.
[0005] The technical scheme has the beneficial effects that: first, the meat product to be detected is placed in the placement hole opened in the end face of the detection cylinder along the height direction, at this time, the abutment plate is not in the placement hole, the loading member provided on the detection table is started, the loading member starts to apply force to the abutment plate, the abutment plate moves to the meat product to be detected along the axis direction of the placement hole under the action of the loading member, so as to compress the meat product to be detected, with the movement of the abutment plate, the plurality of synchronous members provided on the outer peripheral wall of the abutment plate also move synchronously, since the synchronous members are closely connected with the abutment plate, they can accurately follow the movement track of the abutment plate, and the detection table is provided with the detection member corresponding to each synchronous member, the detection members are linked with the synchronous members, and the linear movement distance of the abutment plate is detected in multiple points in real time; in the above technology, the operator only needs to place the meat product to be detected in the placement hole of the detection cylinder, and the compression detection of the meat product can be realized by applying force to the abutment plate through the loading member, without a complex operation process, the requirement for the professional skill of the operator is reduced, the convenience of detection is improved, meanwhile, the equipment is specially designed for the elastic detection of the meat product, the meat product to be detected is compressed by the abutment plate, and the linear movement distance of the abutment plate is detected in multiple points by the detection member, so that the elastic change data of the meat product in the compression process can be accurately obtained, the elasticity of the meat product is effectively evaluated, and the specific requirement for the elastic detection in the production and processing process of the meat product is met; the plurality of synchronous members are arranged on the outer peripheral wall of the abutment plate, and the detection member corresponding to each synchronous member is arranged on the detection table, so that the linear movement distance of the abutment plate is detected in multiple points. Compared with the traditional single-point detection mode, the multiple-point detection can obtain more comprehensive and accurate detection data, reduces the error possibly caused by the single-point detection, and improves the reliability and accuracy of the detection result; since the equipment structure is simple, the required parts are relatively few, and the manufacturing cost is low. This makes the equipment not only suitable for batch detection of large meat product production enterprises, but also suitable for rapid detection of small processing plants or on-site, has a wide application range, and helps to improve the quality detection level of the entire meat product industry; in the above technology, the detection member transmits the movement distance data of the abutment plate detected in real time to the data processing unit, so that the data detected by the detection member can be transmitted to the intelligent industrial control equipment or computer outside according to the actual requirement and detection requirement, so as to evaluate the elastic performance of the meat product, since the intelligent industrial control equipment or computer is prior art, and therefore the structure and function thereof will not be described in detail.
[0006] The utility model further sets up: the detection cylinder outer wall is in the annular direction and is uniformly distributed with a plurality of sliding slots, a plurality of The sliding slot all is connected with the placement hole and sets up, every The sliding slot all slides in the synchronous board setting, The synchronous board is synchronous piece, The sliding slot is connected to the detection cylinder top wall and forms has the sliding mouth that the synchronous board wears out, The synchronous board beginning end is connected with the abutment plate outer wall and sets up, The synchronous board end wears out the sliding slot and forms has the detection end, The sliding slot both sides inner wall all is along the detection cylinder height direction and is equipped with the limiting slot, The synchronous board all extends the limiting block in the direction of two adjacent limiting slots, A plurality of The limiting block all slides in the corresponding limiting slot, The limiting slot is connected to the detection cylinder top wall and sets up.
[0007] The utility model discloses a beneficial adoption above -mentioned technical scheme is: because the synchronous board beginning end is connected with the abutment plate, and the abutment plate moves when driving the synchronous board synchronous sliding in the sliding slot, in the synchronous board movement process, the limiting block on it synchronous movement along the limiting slot, ensure the accuracy and stability of the synchronous board moving direction, with the movement of the synchronous board, the detection end position of its end changes. The detection piece obtains the moving distance of the synchronous board by monitoring the position change of the detection end, and then the moving distance of the abutment plate is obtained, so as to reflect the elastic change of the meat product in the compression process. The sliding slot on the outer wall of the detection cylinder is connected with the placement hole in the annular direction, which ensures that the synchronous board moves accurately and synchronously when the abutment plate moves, so that the detection piece can accurately obtain the moving distance of the abutment plate by detecting the detection end at the end of the synchronous board, and then accurately reflect the elastic change of the meat product in the compression process, improve the accuracy of the detection data. At the same time, the limiting slot along the height direction of the detection cylinder is opened on the inner wall of the sliding slot, and the limiting block on the synchronous board is slidably arranged in the limiting slot. Not only does it provide stable guidance for the movement of the synchronous board, ensuring its linear movement and avoiding deviation and interfering with the detection result, but also it limits the synchronous board to prevent it from coming out of the sliding slot, enhancing the stability and reliability of the equipment operation. A plurality of synchronous boards are evenly distributed around the outer wall of the detection cylinder in the annular direction, and the movement of the abutment plate is synchronously detected from multiple directions. This means that the elastic feedback of the meat product when compressed at different positions can be obtained, and the overall elastic uniformity of the meat product can be comprehensively reflected, which helps to more comprehensively and deeply evaluate the quality of the meat product.
[0008] The utility model further sets up: the detection table is equipped with the detection hole in every detection end position, the detection end bottom wall is provided with the guide shaft that is used for the movable setting in the corresponding detection hole, every The detection hole all is provided with the stroke detection sensor that is used for detecting the guide shaft displacement, The stroke detection sensor is detection piece.
[0009] The beneficial effects of the above technical scheme are that: by arranging the guide shaft on the bottom wall of the detection end and movably arranging it in the detection hole, and cooperating with the stroke detection sensor in the detection hole, the displacement of the guide shaft can be accurately measured, and then the linear movement distance of the abutment plate can be accurately obtained, the small displacement change in the compression process of the meat product can be accurately captured through the technical arrangement, high-precision data support is provided for the elasticity detection, which helps to improve the reliability and accuracy of the detection result, and the cooperation of the guide shaft and the detection hole provides a stable structural basis for the detection of the stroke detection sensor. The guide shaft can guide the detection end, ensure the stability of the detection end during movement, and avoid detection errors caused by shaking or deviation. At the same time, this structure makes the installation and fixation of the stroke detection sensor more stable and less susceptible to external interference, ensuring the stability and reliability of the detection process; since the detection holes and the stroke detection sensors are arranged on the detection table corresponding to the position of each detection end, the linear movement distance of the abutment plate can be detected at multiple points. This multi-point detection method can comprehensively obtain the movement data of the abutment plate at different positions, more comprehensively reflect the elasticity change of the meat product during compression, avoid the one-sidedness that may occur in single-point detection, and thus provide more abundant and accurate data basis for the evaluation of the elasticity performance of the meat product; the detection sensor in the above technology is the prior art, and therefore the structure and function thereof will not be described in detail.
[0010] The abutment plate is further provided with a plurality of contact protrusions on the bottom surface for contacting the external meat product to be detected to prevent the meat product to be detected from slipping during compression.
[0011] The beneficial effects of the above technical scheme are that: the contact protrusions arranged on the bottom surface of the abutment plate in the above technology can effectively increase the friction between the abutment plate and the meat product to be detected, when the loading piece compresses the meat product through the abutment plate, the hemispherical contact protrusions are embedded into the surface of the meat product, which can effectively prevent the meat product from slipping during compression, ensure the stability and accuracy of the compression detection process, and make the detection data truly reflect the elasticity characteristics of the meat product. The contact protrusions are in a uniform state, so that the force can be evenly transmitted to each part of the meat product when the abutment plate compresses the meat product. This avoids detection errors caused by uneven local stress, ensures that the detection result can accurately reflect the elasticity performance of the whole meat product, improves the detection accuracy, and the hemispherical contact protrusions can simulate the point or small area pressure that the meat product may be subjected to during actual consumption and use, and compared with sharp or angular structures, the hemispherical contact protrusions can prevent slipping while reducing damage to the surface of the meat product. This is particularly important for meat product detection with high appearance quality requirements, as it not only ensures that the meat product after detection still has a certain integrity, but also avoids affecting the judgment of its elasticity and other qualities due to excessive damage to the sample.
[0012] The utility model further sets up: the detection platform is provided with support, the loading piece includes the cylinder of setting up on the support and is used for with the coaxial cooperation of cylinder output end loading shaft, the loading shaft end is connected with the loading disc that is used for with the end face of abutment plate abutment cooperation.
[0013] The beneficial of the above technical scheme is: adopt the cylinder as the power source, the cylinder can provide stable and continuous power output, ensure that the loading piece when compressing the meat product to be detected, the pressure application has good stability, at the same time, by controlling the cylinder intake and pressure, the force exerted by loading shaft can be accurately adjusted, so as to meet the detection needs of different types, different elasticity degree meat product, ensure the accuracy and reliability of detection result, loading shaft and cylinder output end coaxial cooperation, so that the power generated by the cylinder can be accurately transmitted to the loading shaft along the axial, and then act on the loading disc and the abutment plate. This accurate force transmission mode reduces the loss and deviation of force in the transmission process, ensures the accuracy and consistency of the pressure applied to the meat product, avoids the deviation of force transmission resulting in detection error; The cylinder in the above technology is prior art, therefore, its structure and function are not repeated.
[0014] The utility model further sets up: the loading shaft initial end is connected with the force sensor between cylinder output end.
[0015] The beneficial of the above technical scheme is: the setting of force sensor, in the detection process, the force borne by loading shaft, that is, the pressure that cylinder is transmitted to the abutment plate and the meat product to be detected through loading shaft can be monitored in real time, and the operator can acquire pressure data in real time, so as to understand the change of pressure in the compression process in time, provide key data support for analyzing the elastic property of meat product; The force sensor in the above technology is prior art, therefore, its structure and function are not repeated. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is three-dimensional view of the utility model;
[0017] Figure 2 It is sectional view of the utility model;
[0018] Figure 3 It is simple schematic sectional view of the utility model in the cooperation state of synchronous plate and sliding slot. DETAILED DESCRIPTION
[0019] The utility model provides a kind of meat product detection equipment, including detection platform 1 and the detection cylinder 2 being set on detection platform 1, the detection cylinder 2 end face is opened with the placement hole 21 for outside meat product to be detected to place along its height direction, the placement hole 21 is movably provided with the abutment plate 22 for being contacted with outside meat product to be detected along the axis direction of placement hole 21, the detection platform 1 is provided with the loading piece for applying force to abutment plate 22 to compress meat product to be detected by abutment plate 22, the abutment plate 22 outer peripheral wall is provided with a plurality of synchronous pieces for synchronous movement when abutment plate 22 moves, the detection platform 1 is provided with the detection piece for linkage cooperation with synchronous piece to carry out multi-point detection to the linear movement distance of abutment plate 22 corresponding each synchronous piece, the outer peripheral wall of the detection cylinder 2 is evenly distributed with a plurality of sliding grooves 23 in ring direction, a plurality of sliding grooves 23 are communicated with placement hole 21 and are provided, the synchronous plate 231 is slidably arranged in each sliding groove 23, the synchronous plate 231 is synchronous piece, the sliding groove 23 is communicated to the top wall of detection cylinder 2 and is formed with the sliding port 232 for synchronous plate 231 to pass out, the synchronous plate 231 initial end is connected with the outer peripheral wall of abutment plate 22 and is provided, the synchronous plate 231 end passes out sliding groove 23 and is formed with detection end 233, the sliding groove 23 both sides inner wall is opened with limit groove 24 along the height direction of detection cylinder 2, the synchronous plate 231 is extended limit block 241 towards adjacent two limit grooves 24, a plurality of limit blocks 241 are slidably arranged in each corresponding limit groove 24, the limit groove 24 is communicated to the top wall of detection cylinder 2 and is provided, the detection platform 1 is provided with detection hole 11 corresponding each detection end 233 position, the bottom wall of detection end 233 is provided with the guide shaft 12 for movably arranged in corresponding detection hole 11, each detection hole 11 is provided with the stroke detection sensor 3 for detecting the displacement of guide shaft 12, the stroke detection sensor 3 is detection piece, the bottom surface of abutment plate 22 is evenly distributed with a plurality of contact protrusions 221 for being contacted with outside meat product to be detected to prevent the phenomenon of skidding when meat product to be detected is compressed, the contact protrusion 221 is hemispherical, the detection platform 1 is provided with bracket 13, the loading piece includes the air cylinder 14 being set on bracket 13 and the loading shaft 15 for coaxial cooperation with the output end of air cylinder 14, the loading shaft 15 end is connected with the loading disc 16 for abutment cooperation with the end surface of abutment plate 22, force sensor 31 is connected between the loading shaft 15 initial end and the output end of air cylinder 14.
[0020] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the person skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only to illustrate the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed for protection, and the protection scope of the utility model is defined by the appended claims and equivalents thereof.
Claims
1. A meat product inspection apparatus characterized by: The application relates to a meat product detection device, which comprises a detection table and a detection cylinder arranged on the detection table, the end face of the detection cylinder is provided with a placing hole for placing external meat products to be detected along the height direction of the end face, an abutting plate for contacting the external meat products to be detected is movably arranged in the placing hole along the axis direction of the placing hole, a loading piece for applying force to the abutting plate to compress the meat products to be detected through the abutting plate is arranged on the detection table, a plurality of synchronous pieces for synchronous movement when the abutting plate moves are arranged on the peripheral wall of the abutting plate, and the detection table is provided with a detection piece corresponding to each synchronous piece for linkage cooperation with the synchronous piece to detect the linear movement distance of the abutting plate at multiple points.
2. A meat product inspection apparatus according to claim 1, characterised in that: A plurality of sliding grooves are uniformly distributed on the peripheral wall of the detection cylinder in a ring shape, the sliding grooves are communicated with the placing hole, a synchronous plate is slidably arranged in each sliding groove, the synchronous plate is the synchronous piece, the sliding grooves are communicated with the top wall of the detection cylinder and are formed with sliding openings for the synchronous plate to pass through, the synchronous plate is connected to the peripheral wall of the abutting plate at the initial end, the synchronous plate passes through the sliding grooves at the tail end and is formed with a detection end, the sliding grooves are provided with limiting grooves on the inner walls of the two sides along the height direction of the detection cylinder, the synchronous plate is provided with limiting blocks extending towards the two adjacent limiting grooves, and the limiting blocks are slidably arranged in the corresponding limiting grooves.
3. A meat product inspection apparatus according to claim 2, characterised in that: The detection table is provided with a detection hole corresponding to the position of each detection end, the bottom wall of the detection end is provided with a guide shaft movably arranged in the corresponding detection hole, a stroke detection sensor for detecting the displacement of the guide shaft is arranged in each detection hole, and the stroke detection sensor is the detection piece.
4. The meat product inspection apparatus of claim 1, wherein: The bottom surface of the abutting plate is uniformly provided with a plurality of contact protrusions for contacting the external meat products to be detected to prevent the meat products to be detected from slipping when being compressed.
5. The meat product inspection apparatus of claim 1, wherein: The detection table is provided with a support, the loading piece comprises a gas cylinder arranged on the support and a loading shaft coaxially matched with the output end of the gas cylinder, and the loading shaft is connected with a loading disc for abutting cooperation with the end face of the abutting plate.
6. A meat product inspection apparatus according to claim 5, characterised in that: A force sensor is connected between the initial end of the loading shaft and the output end of the gas cylinder.