Metal material detection platform with defective waste cleaning and recycling structure and use method
By designing clamping, buffering, pushing, crushing, and collecting components on the metal material testing platform, the problems of inconvenient clamping and incomplete waste cleaning of existing platforms have been solved, achieving efficient metal material testing and waste treatment.
Patent Information
- Application Number
- CN202510162847.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2045-02-14
AI Technical Summary
Existing metal material testing platforms lack easily adjustable and buffered clamping and positioning structures, and cannot automatically clean and recycle defective waste materials, thus affecting testing efficiency.
A metal material inspection platform with clamping components, buffering components, pushing components, shielding components, crushing components, spring-loaded components, and carrier components was designed. It achieves automated cleaning and recycling by clamping, buffering, pushing, crushing, and collecting defective waste materials.
It improves the convenience of metal material testing and the efficiency of defective waste disposal, thereby enhancing the effectiveness of testing operations.
Smart Images

Figure CN119936339B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of metal material detection, and particularly relates to a metal material detection platform with a defective waste cleaning and recycling structure and a use method. BACKGROUND
[0002] The metal material detection range relates to mechanical performance testing, chemical composition analysis, metallographic analysis, precision size measurement, non-destructive testing, corrosion resistance testing and environmental simulation testing of ferrous metals, non-ferrous metals, mechanical equipment and parts and the like.
[0003] The existing metal material detection platform with a defective waste cleaning and recycling structure has the following disadvantages when in use:
[0004] 1. The metal material detection platform does not have a clamping positioning structure with convenient adjustment and buffering capacity, thereby causing inconvenience in strength or composition analysis of the metal material, and affecting the detection result.
[0005] 2. The defective waste detected cannot be automatically broken and cleaned and recycled, thereby affecting the processing efficiency of the defective waste, and thus being not conducive to the use of the detection work. SUMMARY
[0006] The application aims at the existing metal material detection platform with a defective waste cleaning and recycling structure and use method, and has the following advantages:
[0007] The metal material detection platform has a clamping positioning structure with convenient adjustment and buffering capacity, thereby ensuring convenience in strength or composition analysis of the metal material, and improving the detection result.
[0008] The defective waste detected can be automatically broken and cleaned and recycled, thereby improving the processing efficiency of the defective waste, and thus being conducive to the use of the detection work.
[0009] The technical problem of the present application is solved by the following technical scheme: a metal material detection platform with a defective waste cleaning and recycling structure and a use method, comprising a detection table, a cleaning box is bolted to the bottom of the detection table, a clamping assembly is arranged on the rear side of the top of the detection table, a buffer assembly is arranged on the inner side of the clamping assembly, a pushing assembly is arranged on the rear side of the clamping assembly, a drain groove is formed on the front side of the top of the detection table, a shielding assembly is arranged on the front side of the top of the detection table, the shielding assembly is located on the outer side of the drain groove, auxiliary falling assemblies are arranged on the front side and the rear side of the inner top side of the cleaning box, a crushing assembly is arranged in the cleaning box, an elastic falling assembly is arranged on the bottom side of the inside of the cleaning box, a discharge groove is formed on the bottom of the right side of the cleaning box, the left side of the discharge groove is located on the right side of the elastic falling assembly, a load falling assembly is arranged on the bottom of the right side of the cleaning box, and the load falling assembly is located on the bottom of the discharge groove.
[0010] By setting the detection table, the clamping assembly and the buffer assembly, the metal material to be detected is placed on the top of the detection table, and the metal material is located on the inner side of the clamping assembly. Then, the metal material is clamped by starting the clamping assembly, and the buffer assembly inside the clamping assembly is used for clamping and positioning the metal material. At the same time, the buffer assembly is also used for buffering the clamping and positioning of the metal material, so as to facilitate the detection of the strength or composition of the metal material, improve the detection result, and improve the processing efficiency of the defective waste. The use of the shielding assembly, the auxiliary falling assembly, the crushing assembly, the elastic falling assembly, the discharge groove and the load falling assembly can facilitate the detection work.
[0011] The present application further provides that the clamping assembly comprises a fixed plate, an electric telescopic rod and a moving plate, the fixed plate is bolted to the right side of the rear side of the top of the detection table, the electric telescopic rod is bolted to the rear side of the top of the fixed plate, the moving plate is bolted to the telescopic end of the electric telescopic rod, and the bottom of the moving plate is slidingly connected with the top of the detection table.
[0012] By setting the fixed plate, the electric telescopic rod and the moving plate, the metal material to be detected is placed on the top of the detection table, and the metal material is located inside the fixed plate and the moving plate, then the electric telescopic rod is started to pull the moving plate, so as to realize clamping of the metal material.
[0013] The application further provides that the buffer assembly comprises a first spring telescopic column and a clamping plate, the first spring telescopic column is respectively bolted to the front side and the rear side of the inside of the fixed plate and the moving plate, and the clamping plate is bolted to the inside of the first spring telescopic column.
[0014] By setting the first spring telescopic column and the clamping plate, the first spring telescopic column inside the moving plate and the fixed plate clamps and positions the metal material while the moving plate moves, and the first spring telescopic column also buffers the clamping and positioning of the metal material, thereby ensuring convenience in strength or component analysis and other detection work of the metal material, and improving the detection result.
[0015] The application further provides that the pushing assembly comprises a bearing plate, an electric push rod and a push plate, the bearing plate is bolted to the rear side of the moving plate, the electric push rod is bolted to the rear side of the bearing plate, the telescopic end of the electric push rod penetrates through the rear side of the bearing plate, and the push plate is bolted to the front side of the electric push rod.
[0016] By setting the bearing plate, the electric push rod and the push plate, when the metal material inside the clamping plate is detected as defective waste, the electric push rod at the rear side of the bearing plate is started to push the push plate to push the metal material to the position of the drain groove.
[0017] The application further provides that the shielding assembly comprises a shielding frame and a protective pad, the shielding frame is bolted to the front side of the top of the detection table, the shielding frame is located outside the drain groove, and the protective pad is bonded to the inside of the shielding frame.
[0018] By setting the shielding frame and the protective pad, the metal material waste pushed by the push plate is shielded by the shielding frame outside the drain groove and the protective pad, so that the metal material waste falls into the inside of the cleaning box through the drain groove.
[0019] The application further provides that the auxiliary falling assembly comprises a connecting plate and an inclined plate, the connecting plate is respectively bolted to the front side and the rear side of the inside of the cleaning box, and the inclined plate is welded to the bottom of the connecting plate.
[0020] The technical scheme is adopted, the metal material waste falling into the inside of the cleaning box is received by the connecting plate and the inclined plate connected to the front side and the rear side of the inclined plate in the inside of the cleaning box, and then is slid downward, so that the stability of the metal material waste when falling is ensured.
[0021] The application further provides that the crushing assembly comprises a motor, a primary gear, a secondary gear, a primary crushing shaft and a secondary crushing shaft, the motor is bolted to the left side of the cleaning box, the primary gear is bolted to the output end of the motor, the right side of the primary gear is rotatably connected to the left side of the cleaning box and penetrates through, the secondary gear is rotatably connected to the rear side of the cleaning box, the secondary gear is engaged with the primary gear, the right side of the primary crushing shaft is rotatably connected to the right side in the inside of the cleaning box, the left side of the primary crushing shaft is bolted to the right side of the primary gear, the left side of the secondary crushing shaft is bolted to the right side of the secondary gear, and the right side of the secondary crushing shaft is rotatably connected to the right side in the inside of the cleaning box.
[0022] The technical scheme is adopted, the metal material waste falling into the inside of the cleaning box is received by the connecting plate and the inclined plate connected to the front side and the rear side of the inclined plate in the inside of the cleaning box, and then is slid downward, so that the stability of the metal material waste when falling is ensured.
[0023] The application further provides that the spring row assembly comprises a solid block, a second spring telescopic column and a slag sliding plate, the solid block is bolted to the front side and the rear side of the two sides in the inside of the cleaning box respectively, the second spring telescopic column is bolted to the top of the solid block, and the slag sliding plate is bolted to the top of the second spring telescopic column and located on the left side of the outlet groove.
[0024] The technical scheme is adopted, the metal material waste falling into the inside of the cleaning box is received by the connecting plate and the inclined plate connected to the front side and the rear side of the inclined plate in the inside of the cleaning box, and then is slid downward, so that the stability of the metal material waste when falling is ensured.
[0025] The application further provides that the spring row assembly comprises a solid block, a second spring telescopic column and a slag sliding plate, the solid block is bolted to the front side and the rear side of the two sides in the inside of the cleaning box respectively, the second spring telescopic column is bolted to the top of the solid block, and the slag sliding plate is bolted to the top of the second spring telescopic column and located on the left side of the outlet groove.
[0026] The technical scheme is adopted, the metal material waste falling into the inside of the cleaning box is received by the connecting plate and the inclined plate connected to the front side and the rear side of the inclined plate in the inside of the cleaning box, and then is slid downward, so that the stability of the metal material waste when falling is ensured.
[0027] A kind of using method of metal material detection platform with substandard waste cleaning and recycling structure, comprising the following steps:
[0028] S1.the clamping and positioning of metal material detection, the metal material to be detected is placed on the top of the detection table, and the metal material is located inside the clamping assembly, then the clamping assembly is started to clamp the metal material, and the buffer assembly inside the clamping assembly is used for clamping and positioning the metal material, and the clamping and positioning of the metal material is buffered, so as to facilitate the detection of the strength or composition analysis of the metal material, and improve the detection result.
[0029] S2.waste cleaning and recycling of metal material, when the metal material inside the buffer assembly is detected as defective waste, the push assembly behind the clamping assembly is started to push the metal material to the position of the drain, and then the metal material is dropped into the inside of the cleaning box under the shielding of the shielding assembly, then the metal material is dropped to the top of the crushing assembly under the receiving of the auxiliary assembly in front of and behind the cleaning box, and then the metal material waste is crushed by the started crushing assembly, and then the metal material waste is dropped to the surface of the spring assembly after crushing, so that the spring assembly is bounced under the impact of the metal material waste, and then the crushed metal material waste is quickly discharged through the outlet to the surface of the loading assembly, and then the metal material waste is discharged from the inside of the cleaning box through the loading assembly, and then collected and recycled, the processing efficiency of the defective waste is improved, and the use of detection work is facilitated.
[0030] In summary, the present application has the following advantages:
[0031] By setting the detection table, clamping assembly and buffer assembly, the metal material to be detected is placed on the top of the detection table, and the metal material is located inside the clamping assembly, then the clamping assembly is started to clamp the metal material, and the buffer assembly inside the clamping assembly is used for clamping and positioning the metal material, and the clamping and positioning of the metal material is buffered, so as to facilitate the detection of the strength or composition analysis of the metal material, and improve the detection result.
[0032] Through setting the cleaning box, the pushing assembly, the drainage groove, the shielding assembly, the auxiliary falling assembly, the crushing assembly, the elastic discharge assembly, the outlet groove and the load discharge assembly, when the metal material located in the buffer assembly is detected as defective waste, the pushing assembly located at the rear side of the clamping assembly is started to push the metal material to the position of the drainage groove, and then the metal material is dropped to the inside of the cleaning box through the drainage groove under the shielding protection of the shielding assembly, then the metal material is caught and dropped to the top of the crushing assembly by the auxiliary falling assembly located at the front side and the rear side inside the cleaning box, and then the metal material waste is crushed by the started crushing assembly, and then the crushed metal material waste is dropped to the surface of the elastic discharge assembly, so that the elastic discharge assembly is bounced under the impact of the metal material waste, and then the crushed metal material waste is quickly discharged to the surface of the load discharge assembly through the outlet groove, and then the metal material waste is completely discharged from the inside of the cleaning box, and then collected and recycled, so that the processing efficiency of the defective waste is improved, and the use of detection work is facilitated. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 is the overall structure schematic diagram in the application;
[0034] Figure 2 is the cleaning box internal structure schematic diagram in the application;
[0035] Figure 3 is the clamping assembly structure schematic diagram in the application;
[0036] Figure 4 is the buffer assembly structure schematic diagram in the application;
[0037] Figure 5 is the pushing assembly structure schematic diagram in the application;
[0038] Figure 6 is the shielding assembly structure schematic diagram in the application;
[0039] Figure 7 is the auxiliary falling assembly structure schematic diagram in the application;
[0040] Figure 8 is the crushing assembly structure schematic diagram in the application;
[0041] Figure 9 is the elastic discharge assembly structure schematic diagram in the application;
[0042] Figure 10 is the load discharge assembly structure schematic diagram in the application;
[0043] Figure 11 is the method schematic diagram in the application.
[0044] : 1, detection table; 2, cleaning box; 3, clamping assembly; 301, fixed plate; 302, electric telescopic rod; 303, moving plate; 4, buffer assembly; 401, first spring telescopic column; 402, clamping plate; 5, pushing assembly; 501, bearing plate; 502, electric push rod; 503, push plate; 6, discharge groove; 7, shielding assembly; 701, shielding frame; 702, protective pad; 8, auxiliary falling assembly; 801, connecting plate; 802, inclined plate; 9, crushing assembly; 901, motor; 902, main gear; 903, secondary gear; 904, main crushing shaft; 905, secondary crushing shaft; 10, slag discharging assembly; 1001, solid block; 1002, second spring telescopic column; 1003, slag sliding plate; 11, discharge groove; 12, load discharging assembly; 1201, lower slag plate; 1202, baffle. DETAILED DESCRIPTION
[0045] The application will be further described in detail below with reference to the drawings. EMBODIMENT
[0046] REFERENCE Figures 1-4 A metal material detection platform with a defective waste cleaning and recycling structure, comprising a detection table 1, a clamping assembly 3 arranged on the top rear side of the detection table 1, and a buffer assembly 4 arranged on the inner side of the clamping assembly 3. The metal material to be detected is placed on the top of the detection table 1, and the metal material is located on the inner side of the clamping assembly 3. Then the clamping assembly 3 is started to clamp the metal material, and the buffer assembly 4 located in the clamping assembly 3 is used for clamping and positioning the metal material, and the buffer assembly 4 is also used for buffering the clamping and positioning of the metal material, thereby facilitating the strength or composition analysis of the metal material, and improving the detection result.
[0047] As shown in Figure 3 , the clamping assembly 3 comprises a fixed plate 301, an electric telescopic rod 302 and a moving plate 303. The fixed plate 301 is bolted to the right side of the top rear side of the detection table 1, the electric telescopic rod 302 is bolted to the top rear side of the fixed plate 301, and the moving plate 303 is bolted to the telescopic end of the electric telescopic rod 302. The bottom of the moving plate 303 is slidingly connected to the top of the detection table 1. The metal material to be detected is placed on the top of the detection table 1, and the metal material is located on the inner side of the fixed plate 301 and the moving plate 303. Then the electric telescopic rod 302 is started to pull the moving plate 303, so as to clamp the metal material.
[0048] As shown in Figure 4As shown, the buffer assembly 4 comprises a first spring telescopic column 401 and a clamping plate 402, the first spring telescopic column 401 is respectively bolted on the front side and the back side of the inner side of the fixed plate 301 and the moving plate 303, and the clamping plate 402 is bolted on the inner side of the first spring telescopic column 401. By setting the first spring telescopic column 401 and the clamping plate 402, when the moving plate 303 moves, the first spring telescopic column 401 located in the inner side of the moving plate 303 and the fixed plate 301 cooperates with the clamping plate 402 to clamp and position the metal material, and also realizes the buffering use of clamping and positioning the metal material, thereby ensuring the convenience in the detection work of strength or composition analysis of the metal material, and improving the detection result.
[0049] Brief description of the use process: first, place the metal material to be detected on the top of the detection table 1, and make the metal material located in the inner side of the fixed plate 301 and the moving plate 303, then start the electric telescopic rod 302 to pull the moving plate 303, and then the moving plate 303 moves to the position of the metal material, at the same time, the first spring telescopic column 401 located in the inner side of the moving plate 303 and the fixed plate 301 cooperates with the clamping plate 402 to clamp and position the metal material, and also realizes the buffering use of clamping and positioning the metal material, thereby ensuring the convenience in the detection work of strength or composition analysis of the metal material, and improving the detection result. Embodiment
[0050] Reference Figures 5-10A kind of using method of metal material detection platform with substandard waste cleaning recycling structure, including cleaning box 2, the bottom of detection table 1 is bolted with cleaning box 2, the inner side of clamping assembly 3 is provided with buffer assembly 4, the rear side of clamping assembly 3 is provided with push assembly 5, the front side of the top of detection table 1 is provided with drain groove 6, the front side of the top of detection table 1 is provided with shielding assembly 7, shielding assembly 7 is located at the outside of drain groove 6, the front side and rear side of the inside top of cleaning box 2 are provided with auxiliary fall assembly 8, the inside of cleaning box 2 is provided with crushing assembly 9, the bottom of the inside of cleaning box 2 is provided with elastic discharge assembly 10, the bottom of the right side of cleaning box 2 is provided with outlet 11, the left side of outlet 11 is located at the right side of elastic discharge assembly 10, the bottom of the right side of cleaning box 2 is provided with load discharge assembly 12, load discharge assembly 12 is located at the bottom of outlet 11, by setting cleaning box 2, push assembly 5, drain groove 6, shielding assembly 7, auxiliary fall assembly 8, crushing assembly 9, elastic discharge assembly 10, outlet 11 and load discharge assembly 12, when the metal material located in the inside of buffer assembly 4 is detected as residual waste, after starting the push assembly 5 located in the rear side of clamping assembly 3, it is pushed to the position of drain groove 6 with its metal material, and then it is dropped to the inside of cleaning box 2 under the shielding protection of its shielding assembly 7, then the metal material is again received by the auxiliary fall assembly 8 located at the front side and rear side of the inside of cleaning box 2 and slides down to the top of crushing assembly 9, then after starting the crushing assembly 9, the metal material waste is crushed, then the metal material waste is dropped to the surface of elastic discharge assembly 10 after being crushed, so that the elastic discharge assembly 10 is bounced under the impact of the metal material waste, and then the crushed metal material waste is quickly discharged to the surface of load discharge assembly 12 through outlet 11, and then the metal material waste is completely discharged from the inside of cleaning box 2 through load discharge assembly 12, and then it can be collected and recycled, which improves the processing efficiency of the substandard waste and facilitates the use of detection operation.
[0051] As Figure 5 shown, push assembly 5 includes bearing plate 501, electric push rod 502 and push plate 503, bearing plate 501 is bolted on the rear side of moving plate 303, electric push rod 502 is bolted on the rear side of bearing plate 501, the telescopic end of electric push rod 502 penetrates the rear side of bearing plate 501, push plate 503 is bolted on the front side of electric push rod 502, by setting bearing plate 501, electric push rod 502 and push plate 503, when the metal material located in the inside of clamping plate 402 is detected as residual waste, after starting the electric push rod 502 located in the rear side of bearing plate 501, it is pushed to the position of drain groove 6 with its metal material by pushing push plate 503.
[0052] As Figure 6As shown, the shielding assembly 7 includes a shielding frame 701 and a protective pad 702, the shielding frame 701 is bolted on the front side of the top of the detection table 1, the shielding frame 701 is located outside the row groove 6, and the protective pad 702 is bonded on the inner side of the shielding frame 701. By arranging the shielding frame 701 and the protective pad 702, the metal material waste pushed by the push plate 503 is shielded through the shielding frame 701 located outside the row groove 6 and the protective pad 702, so that the metal material waste falls into the inside of the cleaning box 2 through the row groove 6.
[0053] As shown in Figure 7 The auxiliary falling assembly 8 includes a connecting plate 801 and an inclined plate 802, the connecting plate 801 is bolted on the front side and the rear side of the inside of the cleaning box 2, and the inclined plate 802 is welded on the bottom of the connecting plate 801. By arranging the connecting plate 801 and the inclined plate 802, the metal material waste falling into the inside of the cleaning box 2 is received by the connecting plate 801 connected by the inclined plate 802 on the front side and the rear side of the inside of the cleaning box 2, so as to ensure the stability of the metal material waste when falling.
[0054] As shown in Figure 8 The crushing assembly 9 includes a motor 901, a main gear 902, a secondary gear 903, a main crushing shaft 904 and a secondary crushing shaft 905. The motor 901 is bolted on the left side of the cleaning box 2, the main gear 902 is bolted on the output end of the motor 901, the right side of the main gear 902 is rotatably connected to the left side of the cleaning box 2 and penetrates, the secondary gear 903 is rotatably connected to the rear side of the cleaning box 2, the secondary gear 903 is engaged with the main gear 902, the right side of the main crushing shaft 904 is rotatably connected to the right side of the inside of the cleaning box 2, the left side of the main crushing shaft 904 is bolted with the right side of the main gear 902, the left side of the secondary crushing shaft 905 is bolted with the right side of the secondary gear 903, and the right side of the secondary crushing shaft 905 is rotatably connected to the right side of the inside of the cleaning box 2. By arranging the motor 901, the main gear 902, the secondary gear 903, the main crushing shaft 904 and the secondary crushing shaft 905, the metal material waste sliding through the inclined plate 802 falls to the inside of the main crushing shaft 904 and the secondary crushing shaft 905. In this process, the motor 901 is started to drive the main gear 902 and the secondary gear 903, so that the main gear 902 and the secondary gear 903 drive the main crushing shaft 904 and the secondary crushing shaft 905 respectively to realize the crushing treatment of the metal material waste.
[0055] As shown in Figure 9As shown, the ejection assembly 10 includes a fixed block 1001, a second spring telescopic column 1002 and a slag slide plate 1003, the fixed block 1001 is respectively bolted on the front side and the rear side of the inside of the cleaning box 2, the second spring telescopic column 1002 is bolted on the top of the fixed block 1001, and the slag slide plate 1003 is bolted on the top of the second spring telescopic column 1002. The slag slide plate 1003 is located on the left side of the outlet groove 11. By setting the fixed block 1001, the second spring telescopic column 1002 and the slag slide plate 1003, the metal material waste after the crushing treatment falls on the surface of the slag slide plate 1003 and impacts the slag slide plate 1003. In this way, the slag slide plate 1003 generates elastic movement under the cooperation of the fixed block 1001 and the second spring telescopic column 1002 at the bottom of the slag slide plate 1003, and then the metal material waste after the crushing is quickly discharged through the outlet groove 11.
[0056] As shown, Figure 10 The ejection assembly 12 includes a slag slide plate 1201 and a baffle 1202. The slag slide plate 1201 is bolted on the bottom of the cleaning box 2, and the slag slide plate 1201 is located at the bottom of the outlet groove 11. The baffle 1202 is respectively bolted on the front side and the rear side of the top of the slag slide plate 1201. By setting the slag slide plate 1201 and the baffle 1202, the metal material waste through the outlet groove 11 is discharged to the surface of the slag slide plate 1201, and then the metal material waste is completely discharged from the inside of the cleaning box 2 under the shielding of the baffle 1202. The subsequent collection and recycling can be carried out. The overall processing efficiency of the defective waste is improved, which is conducive to the use of detection operation.
[0057] Brief usage process: first, when the metal material inside the clamp plate 402 is detected as defective waste, the electric push rod 502 behind the bearing plate 501 is started to push the push plate 503 to push the metal material to the position of the drain groove 6, and then the shielding frame 701 outside the drain groove 6 cooperates with the protective pad 702 to shield the metal material waste pushed by the push plate 503, so that the metal material waste falls into the inside of the cleaning box 2 through the drain groove 6, and then the metal material waste falling into the inside of the cleaning box 2 is received by the connecting plate 801 connected by the front and rear inclined plates 802 inside the cleaning box 2 to slide down, and then the metal material waste sliding through the inclined plate 802 falls into the inside of the main crushing shaft 904 and the secondary crushing shaft 905, in the process, the motor 901 is started to drive the main gear 902 and the secondary gear 903, so that the main gear 902 and the secondary gear 903 drive the main crushing shaft 904 and the secondary crushing shaft 905 respectively to realize the crushing treatment of the metal material waste, and then the crushed metal material waste falls onto the surface of the slag sliding plate 1003 and impacts the slag sliding plate 1003, so that the solid block 1001 at the bottom of the slag sliding plate 1003 and the second spring telescopic column 1002 cooperate to produce elastic vibration, and then the crushed metal material waste is quickly discharged through the outlet groove 11 to the surface of the slag plate 1201, and then the metal material waste is completely discharged from the inside of the cleaning box 2 under the shielding of the baffle 1202, and then it can be collected and recycled, which improves the processing efficiency of the defective waste and facilitates the use of detection work.
[0058] The specific embodiment is only an explanation of the present application, which is not a limitation of the present application. Those skilled in the art can make modifications to the embodiment without creative contribution after reading the specification, but as long as it is within the scope of the claims of the present application, it is protected by the patent law.
Claims
1. A metal material detection platform with a defective waste cleaning and recycling structure, comprising a detection table (1), characterized in that: The bottom of the detection table (1) is bolted with a cleaning box (2), the rear side of the top of the detection table (1) is provided with a clamping assembly (3), the inner side of the clamping assembly (3) is provided with a buffer assembly (4), the rear side of the clamping assembly (3) is provided with a pushing assembly (5), the front side of the top of the detection table (1) is provided with a chute (6), the front side of the top of the detection table (1) is provided with a shielding assembly (7), the shielding assembly (7) is located on the outer side of the chute (6), the front side and the rear side of the top side of the inside of the cleaning box (2) are provided with auxiliary falling assemblies (8), the inside of the cleaning box (2) is provided with a crushing assembly (9), the bottom side of the inside of the cleaning box (2) is provided with a spring discharging assembly (10), the bottom of the right side of the cleaning box (2) is provided with an outlet chute (11), the left side of the outlet chute (11) is located on the right side of the spring discharging assembly (10), the bottom of the right side of the cleaning box (2) is provided with a load discharging assembly (12), and the load discharging assembly (12) is located on the bottom of the outlet chute (11); the clamping assembly (3) comprises a fixed plate (301), an electric telescopic rod (302) and a moving plate (303), the fixed plate (301) is bolted on the right side of the rear side of the top of the detection table (1), the electric telescopic rod (302) is bolted on the rear side of the top of the fixed plate (301), the moving plate (303) is bolted on the telescopic end of the electric telescopic rod (302), and the bottom of the moving plate (303) is in sliding connection with the top of the detection table (1); the pushing assembly (5) comprises a bearing plate (501), an electric push rod (502) and a push plate (503), the bearing plate (501) is bolted on the rear side of the moving plate (303), the electric push rod (502) is bolted on the rear side of the bearing plate (501), the telescopic end of the electric push rod (502) penetrates through the rear side of the bearing plate (501), and the push plate (503) is bolted on the front side of the electric push rod (502); the crushing assembly (9) comprises a motor (901), a main gear (902), a secondary gear (903), a main crushing shaft (904) and a secondary crushing shaft (905), the motor (901) is bolted on the left side of the cleaning box (2), the main gear (902) is bolted on the output end of the motor (901), the right side of the main gear (902) is rotatably connected to the left side of the cleaning box (2) and penetrates through, the secondary gear (903) is rotatably connected to the rear side of the cleaning box (2), the secondary gear (903) is in mesh with the main gear (902), the right side of the main crushing shaft (904) is rotatably connected to the right side of the inside of the cleaning box (2), the left side of the main crushing shaft (904) is bolted with the right side of the main gear (902), the left side of the secondary crushing shaft (905) is bolted with the right side of the secondary gear (903), and the right side of the secondary crushing shaft (905) is rotatably connected to the right side of the inside of the cleaning box (2).The elastic row assembly (10) comprises a fixed block (1001), a second spring telescopic column (1002) and a slag sliding plate (1003), the fixed block (1001) is respectively bolted on the front side and the rear side of the inside of the cleaning box (2), the second spring telescopic column (1002) is bolted on the top of the fixed block (1001), the slag sliding plate (1003) is bolted on the top of the second spring telescopic column (1002), and the slag sliding plate (1003) is located on the left side of the outlet groove (11).
2. The metal material detection platform with a defective waste cleaning and recycling structure according to claim 1, characterized in that: The buffer assembly (4) comprises a first spring telescopic column (401) and a clamping plate (402), the first spring telescopic column (401) is bolted on the front side and the back side of the inner side of the fixed plate (301) and the moving plate (303) respectively, and the clamping plate (402) is bolted on the inner side of the first spring telescopic column (401).
3. The metal material detection platform with a defective waste cleaning and recycling structure according to claim 1, characterized in that: The shielding assembly (7) comprises a shielding frame (701) and a protective pad (702), the shielding frame (701) is bolted on the front side of the top of the detection table (1), the shielding frame (701) is located on the outer side of the chute (6), and the protective pad (702) is bonded on the inner side of the shielding frame (701).
4. The metal material detection platform with a defective waste cleaning and recycling structure according to claim 1, characterized in that: The auxiliary falling assembly (8) comprises a connecting plate (801) and an inclined plate (802), the connecting plate (801) is bolted on the front side and the back side of the inside of the cleaning box (2) respectively, and the inclined plate (802) is welded on the bottom of the connecting plate (801).
5. The metal material detection platform with a defective waste cleaning and recycling structure according to claim 1, characterized in that: The load and discharge assembly (12) comprises a slag discharging plate (1201) and a baffle (1202), the slag discharging plate (1201) is bolted on the bottom of the cleaning box (2), the slag discharging plate (1201) is located on the bottom of the chute (11), and the baffle (1202) is bolted on the front side and the back side of the top of the slag discharging plate (1201) respectively.
6. The method of using a metal material inspection platform having a defective scrap cleaning and recycling structure according to any one of claims 1 to 5, characterized in that: The method comprises the following steps: S1. Clamping and positioning during metal material detection, the metal material to be detected is placed on the top of the detection table (1), and the metal material is located in the inner side of the clamping assembly (3), then the metal material is clamped by starting the clamping assembly (3), the buffer assembly (4) in the inner side of the clamping assembly (3) is used for clamping and positioning the metal material, and the clamping and positioning of the metal material is buffered, so that the metal material is conveniently analyzed and detected in terms of strength or composition, and the detection result is improved. S2. Waste cleaning and recycling of metal materials, when the metal material in the inner side of the buffer assembly (4) is detected as defective waste, the metal material is pushed to the position of the chute (6) by starting the pushing assembly (5) on the back side of the clamping assembly (3), and then the metal material is dropped into the inner side of the cleaning box (2) under the shielding and protection of the shielding assembly (7), then the metal material is received by the auxiliary falling assembly (8) on the front side and the back side of the inner side of the cleaning box (2) and slides down to the top of the crushing assembly (9), then the metal material waste is crushed by starting the crushing assembly (9), then the crushed metal material waste falls to the surface of the elastic discharge assembly (10), so that the elastic discharge assembly (10) is bounced under the impact of the metal material waste, and then the crushed metal material waste is quickly discharged to the surface of the load and discharge assembly (12) through the chute (11), and then the metal material waste is completely discharged from the inner side of the cleaning box (2) and then collected and recycled, so that the processing efficiency of the defective waste is improved, and the detection work is facilitated.
Citation Information
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