Steel performance measuring equipment

By designing a steel performance measurement equipment integrating conveyor belts, drive parts, clamping parts, partitions and barriers, the problem of low steel detection efficiency in the prior art is solved, and efficient detection and material classification of large batches of steel are achieved.

CN120028125AInactive Publication Date: 2025-05-23DAFENG LONG HAIR CASTING DERUSTING EQUIP CO LTD
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Patent Information

Application Number
CN202411958961.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-05-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing steel hardness detection methods are inefficient and cannot efficiently detect large batches of steel, and require a lot of manual operation, which increases the work content of staff and reduces the inspection efficiency.

Method used

A steel performance measurement equipment is designed, including steel hardness detection equipment, conveyor belts, carriers, drives, clamping parts, partitions and barriers. The material is conveyed through the conveyor belt, the drive parts and the clamping parts are transported to the bottom of the Rockwell hardness meter for inspection, and the partitions and barriers are used to classify qualified and unqualified materials.

Benefits of technology

It realizes efficient inspection of large batches of steel, reduces manual operation, improves detection efficiency, and facilitates the classification and collection of materials.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of steel material measuring equipment, in particular to steel material performance measuring equipment which comprises steel material hardness detecting equipment, and a conveying belt capable of conveying materials is arranged on one side of the steel material hardness detecting equipment; a plurality of bearing pieces capable of bearing materials are mounted on the conveying belt; a driving piece capable of driving the materials to move left and right is arranged on one side of the conveying belt, and a clamping piece capable of clamping and supporting the materials is installed on the driving piece. In the using process of the device, materials can be conveyed to a proper position, then the materials are conveyed to the position below the Rockwell hardness tester through the clamping piece and the driving piece, then the Rockwell hardness tester detects the materials, and after detection is completed, qualified materials and unqualified materials can be classified out through the partition piece and the blocking piece; therefore, a worker can conveniently detect a large batch of materials, the work content of the worker is further reduced, and the detection efficiency of the worker is indirectly improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of steel material measuring equipment, and more specifically, to a steel material property measuring equipment. Background Art

[0002] Steel performance measurement is a particularly important part of steel testing, which also includes the measurement of steel hardness. The existing measurement method generally uses a Rockwell hardness tester for testing. More specifically, the staff places the steel on the Rockwell hardness tester for testing. When the test is completed, the staff takes the steel off. It is also important to note that the manual testing method is relatively inefficient and cannot be used to test large batches of steel. If the staff tests large batches of steel, it not only increases the staff's workload, but also reduces the steel testing efficiency.

[0003] Therefore, we proposed a steel performance measurement device to solve the above problems. Summary of the invention

[0004] In order to overcome the above-mentioned defects of the prior art, an embodiment of the present invention provides a steel property measurement device to solve the problems raised in the above-mentioned background technology.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a steel material property measuring device, comprising a steel material hardness testing device, a conveyor belt capable of conveying materials is provided on one side of the steel material hardness testing device;

[0006] The conveyor belt is provided with a plurality of bearing members capable of bearing materials;

[0007] A driving member capable of driving the material to move left and right is provided on one side of the conveyor belt, and a clamping member capable of clamping and supporting the material is installed on the driving member;

[0008] A separator capable of classifying materials is provided on one side of the steel hardness testing device, and the separator is located between the conveyor belt and the steel hardness testing device;

[0009] A blocking member is installed on the partition, and the blocking member is located above the partition.

[0010] In a preferred embodiment, the bearing member includes a rubber seat installed on the conveyor belt, a plurality of stabilizing rods are embedded in the rubber seat, the upper end of the rubber seat is fixedly connected to a support seat, the upper end of the support seat is fixedly connected to two bearing seats, and a placement opening is provided between the two bearing seats.

[0011] In a preferred embodiment, two micro air pumps are installed in the support seat, and a plurality of symmetrical through holes are provided on the side walls of the support seat. Arc corners are provided on the side walls of the two bearing seats, and the two arc corners are respectively located on both sides of the placement opening. Arc pads are fixedly connected to the side walls of the two arc corners, and bearing soft rubber pads are fixedly connected to the upper ends of the two bearing seats. A plurality of adsorption holes are provided on the two bearing soft rubber pads, and connecting pipes connected to the micro air pumps are fixedly connected to the bearing soft rubber pads.

[0012] In a preferred embodiment, the driving member includes a workbench arranged on one side of the conveyor belt, a plurality of guide rails are installed on the workbench, guide blocks matching the guide rails are installed on the guide rails, electric telescopic rods are installed on the guide blocks, and drive chucks are installed on the output ends of the plurality of electric telescopic rods.

[0013] In a preferred embodiment, the clamping member includes a plurality of connecting rods fixedly connected to the driving chuck, one end of one of the connecting rods is fixedly connected to the placing seat, and one ends of the other two connecting rods are fixedly connected to clamping blocks, the placing seat is placed horizontally, and the clamping block is placed vertically, and the upper end of the placing seat is fixedly connected to a load-bearing rubber block, and the upper end surface of the load-bearing rubber block is provided with an arc-shaped load-bearing groove, and the upper end surface of the load-bearing rubber block is penetrated by a plurality of push rods that can move up and down, and the plurality of push rods are respectively located on the left and right sides of the arc-shaped load-bearing groove, and the lower end of the push rod is fixedly connected to a spring, and the side walls of the two clamping blocks are fixedly connected to rubber protrusions.

[0014] In a preferred embodiment, the two clamping blocks are each provided with a connecting tube, one end of the two connecting tubes is fixedly connected to a diversion suction block, the two clamping blocks are each provided with an suction cavity connected to the diversion suction block, the two clamping blocks are each provided with an suction port connected to the suction cavity, the two clamping blocks are each provided with a plurality of placement holes, the inner bottoms of the plurality of placement holes are fixedly connected with springs, the upper ends of the plurality of springs are fixedly connected with telescopic rods, and the upper ends of the plurality of telescopic rods are inlaid with balls.

[0015] In a preferred embodiment, a spherical groove matching the ball bearing is provided on the telescopic rod, strip openings are provided on the side walls of the spherical groove, and plastic blocks connected to the ball bearing are provided on the strip openings.

[0016] In a preferred embodiment, the partition includes a partition box arranged on one side of the steel hardness testing equipment, wherein a plurality of cavities are arranged in the partition box, and a rotating rod connected to a motor is rotatably connected to the inner side walls of the plurality of cavities, and a material guide plate is sleeved on the side walls of the plurality of rotating rods, and a vertical plate is fixedly connected to the side walls of the plurality of cavities, and the vertical plate is located below the rotating rod, and the output ends of the plurality of cavities are fixedly connected to two discharge channels, and the two discharge channels are respectively located on the left and right sides of the material guide plate, and a collecting box is provided at the lower end of the partition box, and a plurality of locking universal wheels are installed at the lower end of the collecting box, and a plurality of placement cavities are also provided in the collecting box, and a plurality of partition plates are fixedly connected to the inner side walls of the plurality of placement cavities.

[0017] In a preferred embodiment, the blocking member includes a mounting frame fixedly connected to the upper end of the partition box, an electric telescopic rod is passed through the mounting frame, a shift rod is fixedly connected to the output end of the electric telescopic rod, and a blocking rubber block is fixedly connected to the side wall of the shift rod.

[0018] Technical effects and advantages of the present invention:

[0019] During use, the device can transport materials to a suitable position, and then transport the materials to the bottom of the Rockwell hardness tester through the clamping parts and the driving parts. The Rockwell hardness tester then detects the materials. After the detection is completed, the separators and the blocking parts can classify qualified and unqualified materials, thereby facilitating the staff to test large batches of materials, further reducing the staff's work content, indirectly improving the staff's detection efficiency, and meeting the staff's actual use needs. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a structural schematic diagram of the present invention;

[0021] Figure 2 It is a side view schematic diagram of the connection structure of the present invention;

[0022] Figure 3 It is a top view schematic diagram of the connection structure of the present invention;

[0023] Figure 4 It is a schematic diagram of the connection structure of the present invention when viewed from above;

[0024] Figure 5 It is a schematic diagram of a partial cross-sectional connection structure of a bearing member in the present invention;

[0025] Figure 6 It is a schematic diagram of a partial connection structure of the clamping member in the present invention;

[0026] Figure 7 for Figure 6 A schematic diagram of a front view connection structure;

[0027] Figure 8 It is a schematic diagram of the internal cross-sectional connection structure of the clamping block in the present invention;

[0028] Fig. 9 It is a schematic diagram of the internal connection structure of the ball and the telescopic rod in the present invention;

[0029] Fig.10 It is a schematic diagram of the partial internal connection structure of the separator in the present invention;

[0030] Fig.11 It is a schematic diagram of the connection structure of the blocking member in the present invention.

[0031] The accompanying drawings are denoted as follows: 1 steel hardness testing equipment, 2 conveyor belt;

[0032] 3 bearing member, 31 rubber seat, 32 stabilizing rod, 33 supporting seat, 34 bearing seat, 35 placement opening;

[0033] 311 micro air pump, 312 through hole, 313 arc-shaped corner, 314 arc-shaped pad, 315 load-bearing soft rubber pad, 316 adsorption hole, 317 connecting pipe;

[0034] 4 driving member, 41 working table, 42 guide rail, 43 guide block, 44 electric push rod, 45 driving chuck;

[0035] 5 clamping member, 51 connecting rod, 52 placing seat, 53 clamping block, 54 bearing rubber block, 55 bearing arc groove, 56 ejector rod, 57 rubber protrusion;

[0036] 531 connecting pipe, 532 split flow suction block, 533 suction cavity, 534 suction port, 535 placement hole, 536 spring, 537 telescopic rod, 538 ball;

[0037] 5381 spherical groove, 5382 strip opening, 5383 plastic block;

[0038] 6 partition, 61 partition box, 62 rotating rod, 63 material guide plate, 64 vertical plate, 65 material discharge channel, 66 collection box, 67 partition plate;

[0039] 7 blocking member, 71 mounting frame, 72 electric telescopic rod, 73 gear lever, 74 blocking rubber block. DETAILED DESCRIPTION

[0040] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0041] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 A steel performance measuring device includes a steel hardness testing device 1, wherein the steel hardness testing device 1 is composed of multiple Rockwell hardness testers. It is particularly noteworthy that the steel hardness testing device 1 is a Rockwell hardness tester, which can detect the hardness of steel. A more practical operation method is that the staff places the steel under the Rockwell hardness tester, and then the Rockwell hardness tester detects the hardness performance of the steel.

[0042] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 A conveyor belt 2 is provided on one side of the steel hardness testing equipment 1. It is more important to note that the conveyor belt 2 is a belt conveyor, which can transport materials to a suitable position. It is more important to note that a material conveying device is provided at the material input end of the conveyor belt 2, wherein the material conveying device can place batches of materials on the carrier 3 on the conveyor belt 2, wherein the material conveying device can be a suction cup driven by a linear guide rail, which can move the suction cup up, down, left and right, so as to place the material on the carrier 3, thereby facilitating subsequent processing of the equipment.

[0043] Reference Figure 3 , Figure 4 and Figure 5 , a plurality of bearing members 3 are installed on the conveyor belt 2, and the bearing members 3 include a rubber seat 31 installed on the conveyor belt 2. It is particularly noteworthy that the rubber seat 31 is made of soft rubber, so as to ensure that the bearing member 3 moves on the conveyor belt 2, and a plurality of stabilizing rods 32 are embedded in the rubber seat 31. It should be noted that the stabilizing rod 32 can stabilize the components above the rubber seat 31, further ensuring the stability of the device, and at the same time, the stabilizing rod 32 will not affect the conveying of the rubber seat 31 by the conveyor belt 2. At the same time, the upper end of the rubber seat 31 is fixedly connected with a support seat 33, and the upper end of the support seat 33 is fixedly connected with two bearing seats 34, and a placement opening 35 is provided between the two bearing seats 34. It is particularly noteworthy that steel plates can be placed on the two bearing seats 34, and steel bars can be placed on the two bearing seats 34 and the placement opening 35, so that the device can place steel of different shapes to improve the ability of the device to handle different materials.

[0044] Reference Figure 3 , Figure 4 and Figure 5Two micro air pumps 311 are installed in the support seat 33, and a plurality of symmetrical through holes 312 are provided on the side wall of the support seat 33. The side walls of the two bearing seats 34 are provided with arc corners 313. It is particularly noted that the two arc corners 313 are respectively located on both sides of the placement opening 35, and the side walls of the two arc corners 313 are fixedly connected with arc pads 314. It is particularly noted that the two arc corners 313 and the arc pads 314 can better contact with the steel bars, thereby increasing the stability of the steel bar placement. The upper end of each bearing seat 34 is fixedly connected with a bearing soft rubber pad 315, and the two bearing soft rubber pads 315 are provided with a plurality of adsorption holes 316, and the bearing soft rubber pads 315 are fixedly connected with a connecting pipe 317 connected to the micro air pump 311. It is particularly noteworthy that when the micro air pump 311 is working, the adsorption holes 316 on the bearing soft rubber pad 315 can generate adsorption force. Therefore, when the steel plate is placed on the bearing soft rubber pad 315, the stability of the steel plate can be ensured, thereby ensuring the stability of the material.

[0045] Reference Figure 1 , Figure 2 , Figure 3 and Figure 4 A driving member 4 is provided on one side of the conveyor belt 2. The driving member 4 includes a workbench 41 arranged on one side of the conveyor belt 2. A plurality of guide rails 42 are installed on the workbench 41. The guide rails 42 are each equipped with a guide block 43 matching therewith. Electric telescopic rods 44 are each installed on the plurality of guide blocks 43. A driving chuck 45 is installed at the output end of the plurality of electric telescopic rods 44. It is particularly noteworthy that the electric telescopic rod 44 can adjust the height of the driving chuck 45, so that the height of the material can be adjusted. With the assistance of the guide rail 42, the material can be moved back and forth, so that the material can be moved from the bearing seat 34 to the bottom of the steel hardness testing equipment 1, so that the material can be tested. At the same time, it is particularly noteworthy that the driving chuck 45 is a four-claw chuck, and it is particularly noteworthy that the four-claw chuck is a prior art and will not be described in detail here.

[0046] Reference Figure 6 and Figure 7The driving member 4 is provided with a clamping member 5, and the clamping member 5 includes a plurality of connecting rods 51 fixedly connected to the driving chuck 45. It should be noted that the plurality of connecting rods 51 are respectively fixedly connected to the claws on the four-claw chuck, so that the plurality of connecting rods 51 can be moved. It should be noted that the number of the plurality of connecting rods 51 is three, so that the three connecting rods can be moved accordingly, and the chucks on the four-claw chuck that are not connected to the connecting rods 51 are in a disconnected state, and the claws in the idle state do not affect the overall operation of the device. One end of one of the connecting rods 51 is fixedly connected to the placement seat 52, and one end of the other two connecting rods 51 are fixedly connected to the clamping blocks 53. It should be noted that the placement seat 52 is placed horizontally, and the clamping blocks 53 are placed vertically, so that the placement seat 52 can bear The steel bars are loaded, and the clamping block 53 can not only clamp the steel bars, but also support the steel plate. The upper end of the placement seat 52 is fixedly connected with a load-bearing rubber block 54, and the upper end surface of the load-bearing rubber block 54 is provided with an arc-shaped load-bearing groove 55. It is particularly noteworthy that the arc-shaped load-bearing groove 55 can stabilize the steel bars, and the upper end surface of the load-bearing rubber block 54 is penetrated by a plurality of push rods 56 that can move up and down, and the plurality of push rods 56 are respectively located on the left and right sides of the arc-shaped load-bearing groove 55. It is also particularly noteworthy that the lower end of the push rod 56 is fixedly connected with a spring, and the spring can automatically reset the push rod 56. At the same time, when the steel bars are placed on the push rod 56, the push rod 56 can increase the bearing capacity of the device for the steel bars, further ensuring the stability of the steel bars, and the side walls of the two clamping blocks 53 are fixedly connected with rubber protrusions 57.

[0047] Reference Figure 6 , Figure 7 and Figure 8 , both clamping blocks 53 are provided with connecting pipes 531, one ends of the two connecting pipes 531 are fixedly connected with diversion suction blocks 532, both clamping blocks 53 are provided with suction cavities 533 connected with the diversion suction blocks 532, both clamping blocks 53 are provided with suction ports 534 connected with the suction cavities 533, both clamping blocks 53 are provided with multiple placement holes 535, springs 536 are fixedly connected to the inner bottoms of the multiple placement holes 535, the upper ends of the multiple springs 536 are fixedly connected with telescopic rods 537, and the upper ends of the multiple telescopic rods 537 are inlaid with balls 538.

[0048] Reference Figure 7 , Figure 8 and Fig. 9The telescopic rod 537 is provided with a spherical groove 5381 matching the ball 538, and the side walls of the spherical groove 5381 are provided with strip openings 5382. The strip openings 5382 are provided with plastic blocks 5383 connected to the ball 538. It is particularly noteworthy that when the telescopic rod 537 moves left and right, the plastic block 5383 can move along the spherical groove 5381, and when the telescopic rod 537 moves forward and backward, the ball 538 can drive the material to move forward and backward. It is particularly noteworthy that the ball 538 can increase the contact friction between the device and the material, thereby ensuring the movement of the material.

[0049] Reference Figure 2 , Figure 3 and Fig.10 A partition 6 is provided between the steel hardness testing equipment 1 and the conveyor belt 2. The partition 6 includes a partition box 61 arranged on one side of the steel hardness testing equipment 1. A plurality of cavities are provided in the partition box 61. A rotating rod 62 connected to a motor is rotatably connected to the inner side walls of the plurality of cavities. A guide plate 63 is sleeved on the side walls of the plurality of rotating rods 62. A vertical plate 64 is fixedly connected to the side walls of the plurality of cavities, and the vertical plate is located below the rotating rod 62. Two discharge channels 65 are fixedly connected to the output ends of the plurality of cavities. The two discharge channels 65 are respectively located on the left and right sides of the guide plate 63. A collecting box 66 is provided at the lower end of the partition box 61. A plurality of locking universal wheels are installed at the lower end of the collecting box 66. A plurality of placement cavities are also provided in the collecting box 66. A partition plate 67 is fixedly connected to the inner side walls of the plurality of placement cavities.

[0050] Reference Figure 2 , Figure 3 and Fig.11 A blocking member 7 is installed at the upper end of the partition 6, and the blocking member 7 includes a mounting frame 71 fixedly connected to the upper end of the partition box 61. An electric telescopic rod 72 runs through the mounting frame 71. A gear lever 73 is fixedly connected to the output end of the electric telescopic rod 72, and a blocking rubber block 74 is fixedly connected to the side wall of the gear lever 73. It is particularly noteworthy that the gear lever 73 is located inside the mounting frame 71.

[0051] The method of using this device is as follows: first, other lifting and transporting equipment transports the material to the carrier 3 on the conveyor belt 2. What needs to be noted is that the other lifting equipment is composed of a linear guide rail, a lifting equipment and a suction cup. More specifically, the linear guide rail can move the suction cup left and right, front and back, and the lifting equipment can move the suction cup up and down, so that the material can be adsorbed and placed on the carrier 3 on the conveyor belt 2. It is particularly noted that the suction cup is a special suction cup. When dealing with different materials, the staff can replace the suction cup so that the suction cup can adapt to different materials to meet the actual use of the device.

[0052] It is also necessary to note that there are two types of materials, one is steel bars and the other is steel plates, wherein the steel bars are placed in the placement opening 35 between the two bearing seats 34, and the steel plates are placed on the two bearing seats 34. At this time, the micro air pump 311 is started. When the micro air pump 311 works, the adsorption holes 316 on the bearing soft rubber pad 315 can generate suction, thereby achieving the purpose of fixing the steel plate. If the steel bars are placed in the placement opening 35 between the two bearing seats 34, the arc corners 313 and the arc pad 314 are used in combination, so that the steel bars can be transported more stably, further ensuring the stability of the material during transportation. At the same time, it is particularly important to note that the rubber seat 31 is soft rubber, so that the conveyor belt 2 can drive the bearing member 3 to move, avoiding the situation where the bearing member 3 cannot move. The stabilizing rod 32 has the purpose of stabilizing the rubber seat 31, and the stabilizing rod 31 will not affect the normal use of the rubber seat 31.

[0053] After the material is transported to a suitable position through the conveyor belt 2, the device can start the guide rail 42 in the driving member 4. When the guide rail 42 works, the guide block 43 can be moved. It is particularly noted that the clamping member 5 is just between the two bearing seats 34 and the placement port 35, so that the clamping member 5 can be ensured to move, and the driving chuck 45 can work at this time. When the driving chuck 45 works, the connecting rod 51 can be moved along a certain trajectory, so that the placement seat 52 and the clamping block 53 can move accordingly. It is particularly noted that there are two situations at this time. When steel bars are placed, the driving chuck 45 can drive the connecting rod 51 to move, so that the placement seat 52 can move upward. Move, and the two clamping blocks 53 are close to each other, so that the steel bar can be clamped. What is more important is that at this time, the load-bearing arc groove 55 and the load-bearing rubber block 54 can make the steel bar more stable, and in this process, the push rod 56 is affected by the extrusion force, so the push rod 56 will move downward, but the spring at the lower end of the push rod 56 will not push the steel bar. On the contrary, the push rod 56 can better support the steel bar, further ensuring the stability of the steel bar. At this time, the guide rail 42 moves the guide block 43, so that the steel bar can be placed under the steel hardness testing equipment 1, and then the steel hardness testing equipment 1 will detect the steel bar, and the electric push rod 44 can adjust the height of the steel bar, further improving the practicability of the device.

[0054] If a steel plate is placed, the steel plate is placed on two supporting seats 34, and then the external micro air pump will start working. It should be noted that when the supporting member 3 moves to a suitable position, the micro air pump 311 will stop working. When the external micro air pump is working, the connecting pipe 531, the diverter suction block 532, the suction cavity 533 and the suction port 534 will generate suction, which can further fix the steel plate. In this process, due to the influence of the driving chuck 45, the clamping block 53 will move. When the clamping block 53 moves, the ball 538 on the telescopic rod 537 can rotate horizontally with the assistance of the spherical groove 5381, the strip opening 5382 and the plastic block 5383. When the driving chuck 45 moves forward, the plastic block 5383 and the clamping block 53 can drive the steel plate to move forward, so that the steel plate can be moved into the steel hardness testing device 1, and then the steel hardness testing device 1 can test the steel plate.

[0055] When the steel hardness testing device 1 has completed the testing, the system will start the guide rail 42 to move backwards. When the material moves to the appropriate position, the peripheral micro air pump stops working, so that the steel plate is not affected by the adsorption force. At this time, the driving chuck 45 will move the placement seat 52 and the clamping block 53 to the initial position, and further release the limiting force of the steel bar. At this time, the electric telescopic rod 72 will work accordingly. When the electric telescopic rod 72 works, the blocking rubber block 74 can be placed on one side of the running track of the steel bar or steel plate. Therefore, when the placement seat 52 and the clamping block 53 move backwards, the steel bar and the steel plate are subject to the limiting force. Therefore, the steel plate or steel bar will fall off the placement seat 52 and the clamping block 53. Then, it is particularly important to note that the system will start the external motor, which can make the rotating rod 62 rotate accordingly, so that the angle of the guide plate 63 can be changed, so that qualified materials and unqualified materials can enter different discharge channels 65, so that it is convenient for the staff to collect different materials. At this time, the rollers on the collection box 66 can also facilitate the staff to transport the materials to the appropriate location, among which the partition plate 67 can effectively separate different materials, thereby facilitating the separation work of the staff and indirectly improving the work efficiency of the staff.

[0056] Finally, a few points should be explained: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, which may refer to mechanical connection or electrical connection, or internal communication between two components, or direct connection. "upper", "lower", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the object being described changes, the relative positional relationship may change;

[0057] Secondly: In the drawings of the embodiments disclosed in the present invention, only the structures related to the embodiments disclosed in the present invention are involved, and other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of the present invention can be combined with each other;

[0058] Finally: The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A steel material property measuring device, comprising a steel material hardness testing device (1), characterized in that: A conveyor belt (2) capable of conveying materials is provided on one side of the steel hardness testing equipment (1); The conveyor belt (2) is provided with a plurality of bearing members (3) capable of bearing materials; A driving member (4) capable of driving the material to move left and right is provided on one side of the conveyor belt (2); a clamping member (5) capable of clamping and supporting the material is installed on the driving member (4); A separator (6) capable of classifying materials is provided on one side of the steel material hardness testing device (1), and the separator (6) is located between the conveyor belt (2) and the steel material hardness testing device (1); A blocking member (7) is installed on the partition (6), and the blocking member (7) is located above the partition (6).

2. A steel material performance measuring device according to claim 1, characterized in that: The bearing member (3) comprises a rubber seat (31) mounted on the conveyor belt (2), a plurality of stabilizing rods (32) being embedded in the rubber seat (31), a support seat (33) being fixedly connected to the upper end of the rubber seat (31), two bearing seats (34) being fixedly connected to the upper end of the support seat (33), and a placement opening (35) being provided between the two bearing seats (34).

3. A steel material property measuring device according to claim 2, characterized in that: Two micro air pumps (311) are installed in the support seat (33), a plurality of symmetrical through holes (312) are provided on the side wall of the support seat (33), arc-shaped corners (313) are provided on the side walls of the two bearing seats (34), the two arc-shaped corners (313) are respectively located on the two sides of the placement opening (35), arc-shaped pads (314) are fixedly connected to the side walls of the two arc-shaped corners (313), bearing soft rubber pads (315) are fixedly connected to the upper ends of the two bearing seats (34), the two bearing soft rubber pads (315) are provided with a plurality of adsorption holes (316), and the bearing soft rubber pads (315) are fixedly connected to the connecting pipes (317) connected to the micro air pumps (311).

4. The steel material performance measuring device according to claim 1, characterized in that: The driving member (4) comprises a workbench (41) arranged on one side of the conveyor belt (2), a plurality of guide rails (42) being installed on the workbench (41), guide blocks (43) matching the guide rails (42) being installed on the guide rails (42), electric telescopic rods (44) being installed on the guide blocks (43), and drive chucks (45) being installed on the output ends of the electric telescopic rods (44).

5. A steel material property measuring device according to claim 4, characterized in that: The clamping member (5) comprises a plurality of connecting rods (51) fixedly connected to the driving chuck (45), one end of one of the connecting rods (51) being fixedly connected to the placement seat (52), and one end of the other two connecting rods (51) being fixedly connected to a clamping block (53), the placement seat (52) being placed horizontally, and the clamping block (53) being placed vertically, the upper end of the placement seat (52) being fixedly connected to a bearing rubber block (54), the upper end surface of the bearing rubber block (54) being provided with an arc-shaped bearing groove (55), the upper end surface of the bearing rubber block (54) being penetrated by a plurality of push rods (56) capable of moving up and down, the plurality of push rods (56) being respectively located on the left and right sides of the arc-shaped bearing groove (55), the lower end of the push rod (56) being fixedly connected to a spring, and the side walls of the two clamping blocks (53) being fixedly connected to rubber protrusions (57).

6. A steel material property measuring device according to claim 5, characterized in that: The two clamping blocks (53) are each provided with a connecting tube (531), one end of each of the two connecting tubes (531) is fixedly connected to a diversion suction block (532), each of the two clamping blocks (53) is provided with an suction cavity (533) connected to the diversion suction block (532), each of the two clamping blocks (53) is provided with an suction port (534) connected to the suction cavity (533), each of the two clamping blocks (53) is provided with a plurality of placement holes (535), the inner bottoms of the plurality of placement holes (535) are each fixedly connected to a spring (536), the upper ends of the plurality of springs (536) are each fixedly connected to a telescopic rod (537), and the upper ends of the plurality of telescopic rods (537) are each inlaid with a ball bearing (538).

7. A steel material property measuring device according to claim 6, characterized in that: The telescopic rod (537) is provided with a spherical groove (5381) matching with the ball bearing (538), the side wall of the spherical groove (5381) is provided with a strip opening (5382), and the strip opening (5382) is provided with a plastic block (5383) connected with the ball bearing (538).

8. The steel material property measuring device according to claim 1, characterized in that: The partition (6) comprises a partition box (61) arranged on one side of the steel hardness testing device (1), wherein a plurality of cavities are arranged in the partition box (61), and the inner side walls of the plurality of cavities are rotatably connected to a rotating rod (62) connected to a motor, and the side walls of the plurality of rotating rods (62) are sleeved with a material guide plate (63), and the side walls of the plurality of cavities are fixedly connected to a vertical plate (64), and the vertical plate is located below the rotating rod (62), and the output ends of the plurality of cavities are fixedly connected to two discharge channels (65), and the two discharge channels (65) are respectively located on the left and right sides of the material guide plate (63), and the lower end of the partition box (61) is provided with a collection box (66), and the lower end of the collection box (66) is equipped with a plurality of locking universal wheels, and the collection box (66) is also provided with a plurality of placement cavities, and the inner side walls of the plurality of placement cavities are fixedly connected to a partition plate (67).

9. The steel material property measuring device according to claim 8, characterized in that: The blocking member (7) comprises a mounting frame (71) fixedly connected to the upper end of the partition box (61); an electric telescopic rod (72) is provided through the mounting frame (71); a shift rod (73) is fixedly connected to the output end of the electric telescopic rod (72); and a blocking rubber block (74) is fixedly connected to the side wall of the shift rod (73).