Offshore application test equipment for research and development of new materials of socket box
By designing a marine application testing device for the research and development of new materials for socket boxes, and through the collaborative work of the testing department and the firmware department, the problem of interruption in the strength testing of new materials in traditional testing equipment was solved, realizing efficient and accurate marine environment simulation testing, and ensuring the reliability and stability of the test results.
Patent Information
- Application Number
- CN202510847227.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-24
- Publication Date
- 2025-11-07
AI Technical Summary
Traditional testing equipment requires the removal of new materials for strength tests when simulating marine environments, which leads to test interruptions, makes it impossible to accurately assess the performance of new materials, and external factors affect the test results.
A marine application testing device for the research and development of a new material for socket boxes was designed. Through the collaborative work of the testing department and the firmware department, internal testing of the new material is achieved. The external control cylinder drives the pusher to conduct strength testing. The identification head and the counting side block work together to accurately position and count the number of rotations, ensuring the accuracy of the test data.
It enables efficient and accurate testing of new materials in a simulated marine environment, reduces operational procedures, improves the reliability and stability of test results, and allows strength performance evaluation to be completed without removing the new material.
Smart Images

Figure CN120907957A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of test equipment, in particular to a marine application test equipment for socket box new material research and development. BACKGROUND
[0002] The marine environment has the characteristics of high humidity, high salinity and strong corrosion, and the socket box used at sea needs to have good waterproof, moisture-proof and salt mist corrosion resistance to ensure its long-term stable operation and guarantee the safe power supply of electrical equipment. For example, the traditional metal material socket box is easy to rust and corrode after long-term contact with seawater and salt mist, which affects its electrical performance and service life, so it is necessary to develop new materials to improve the corrosion resistance and reliability of the socket box. The current common socket box material has certain limitations in marine application, and it cannot simultaneously have good electrical performance, mechanical performance and corrosion resistance. In order to overcome these problems, new materials need to be developed. With the continuous development of material science, various new materials provide the possibility for the upgrading of socket boxes. These new materials need to be strictly tested and verified to ensure that they can meet the requirements of marine application. In this process, new material related services play a key role. Professional material research and development institutions can accurately select the most potential candidate materials from a large number of new materials according to the specific use environment and performance requirements of marine socket boxes, so a test equipment is needed.
[0003] As for the current traditional application test equipment, it usually tests the new material by simulating marine factors, but in the simulation process, the new material needs to be taken out when testing the strength, which interrupts the simulation of environmental factors, so that the new material is easily affected by external factors during the test, and thus cannot be accurately tested. SUMMARY
[0004] The application relates to a marine application test equipment for socket box new material research and development, which has a test part and a fixture. The external control cylinder drives the push card holder to push the new material, so that the strength performance of the new material can be tested inside the equipment without taking it out, saving time and operation process. The identification head cooperates with the point counting side block to accurately count the number of rotations of the new material during the test, and controls the angle between the new material and the push card holder through the butt joint to realize accurate positioning, ensure the accuracy of the test data, guarantee the stability of the new material during the test, and make the test result more reliable.
[0005] The application provides a marine application test equipment for new material research and development of a socket box, which specifically comprises an installation part, the installation part comprises an installation box body, two groups of adjusting grooves are formed in the installation box body, locking rods are respectively threadedly connected in the two groups of adjusting grooves, two groups of factor plates are fixedly connected to the inner wall of the installation box body, a test part is arranged in the installation part, an inner fixing block is fixedly connected to the inner wall of the installation box body, an identification head is fixedly connected to the inner fixing block, a sealing part is arranged outside the installation part, an outer extraction part is arranged in the installation part, the outer extraction part comprises an outer extraction plate, a matching U-shaped frame is fixedly connected to the inner side of the outer extraction plate, two groups of butt joint clamping grooves are formed in the top of the matching U-shaped frame, a fastener part is arranged at the top of the outer extraction part, the fastener part comprises a torsion block, two groups of opposite point counting side blocks are fixedly connected to the outer wall of the torsion block, two groups of displacement plates are slidably connected to the top of the torsion block, a binding block is rotatably connected in the overturning groove of each of the two groups of displacement plates, and the binding blocks are fixedly connected with locking side blocks through cylindrical rods.
[0006] Preferably, a cavity structure is arranged in the installation box body, a bottom mounting groove is formed in the bottom of the installation box body, two groups of rectangular through holes are formed in the top of the bottom mounting groove and the cavity of the installation box body, two groups of side adjusting grooves are formed in the installation box body, and the side adjusting grooves are respectively connected with sliding grooves.
[0007] Preferably, the two groups of adjusting grooves are arranged at the top of the two groups of side adjusting grooves, and the adjusting grooves and the corresponding side adjusting grooves are connected through threaded through holes; the top of each of the two groups of locking rods is fixedly connected with a hexagonal protrusion, and the bottom of each of the two groups of locking rods is fixedly connected with a cylindrical insertion block; and two groups of connecting hinges are fixedly connected to the top of the installation box body.
[0008] Preferably, the test part comprises an external control cylinder, the external control cylinder is fixedly connected to the rear side of the installation box body, a telescopic rod of the external control cylinder is fixedly connected with a pushing clamping frame, the inner fixing block is provided with an L-shaped block, the identification head is electrically connected with an external control hub, a water collecting bottom plate is fixedly connected in the bottom mounting groove, two groups of inner plugs are arranged at the top of the water collecting bottom plate, and the two groups of inner plugs are respectively inserted into the corresponding rectangular through holes in the bottom mounting groove.
[0009] Preferably, the sealing part comprises two groups of outer turning cylinders, the bottoms of the two groups of outer turning cylinders are movably connected to the two sides of the installation box body, telescopic rods of the two groups of outer turning cylinders are connected with sealing covers, the sealing covers are connected with the two groups of connecting hinges, a matching top plate is fixedly connected to the inner wall of the sealing cover, and an outer clamping head is fixedly connected to the outer wall of the sealing cover.
[0010] Preferably, the outer wall of the outer pull-out plate is fixedly connected with a clamping head, the clamping head of the outer pull-out plate is inserted with an outer clamping head; the matching U-shaped frame is slidingly connected in the two groups of side adjusting grooves; the two groups of butt joint clamping grooves are respectively connected with circular insertion holes; the circular insertion holes of the two groups of butt joint clamping grooves are respectively inserted with cylindrical insertion blocks of the corresponding locking rods.
[0011] Preferably, the inner side of the matching U-shaped frame is fixedly connected with a cross brace plate; a reinforcing plate is arranged between the cross brace plate and the matching U-shaped frame, a circular annular groove is arranged at the top of the cross brace plate; a torsional motor is fixedly connected to the bottom of the cross brace plate.
[0012] Preferably, the torsional block is rotationally connected in the circular annular groove of the cross brace plate, the torsional block is connected with the motor shaft of the torsional motor; two groups of rectangular blocks are fixedly connected to the top of the torsional block; the point side blocks and the identification head are kept on the same horizontal line; four groups of inner adjusting grooves are arranged at the top of the torsional block; four groups of the inner adjusting grooves are respectively connected with drainage bevels.
[0013] Preferably, the bottom of the two groups of displacement plates is respectively fixedly connected with two groups of L-shaped blocks, the L-shaped blocks of the two groups of displacement plates are respectively slidingly connected in the corresponding inner adjusting grooves; the two groups of displacement plates are respectively provided with overturning grooves; the two groups of displacement plates and the two groups of rectangular blocks at the top of the torsional block are respectively fixedly connected with springs; two groups of cylindrical rods are respectively fixedly connected to the two groups of bundle blocks.
[0014] The socket box new material development offshore application test equipment has the following beneficial effects: In the application, the adjusting groove in the installation box body cooperates with the locking rod, the locking rod can be clamped into the butt joint clamping groove through thread adjustment, the matching U-shaped frame of the outer pull-out part can be stably connected, rapid installation and disassembly are realized, and replacement of new materials is facilitated; the butt joint design of the side adjusting groove and the matching U-shaped frame facilitates the pulling of the outer pull-out plate and the matching U-shaped frame, further improves the convenience of installation and replacement of new materials, and in addition, the bottom installation groove at the bottom of the installation box body assists in installing the water collecting bottom plate, not only can stably support the water collecting bottom plate, but also facilitates the external discharge of liquid such as seawater in the box, ensures the dryness and cleanliness of the equipment interior, and is beneficial to long-term stable operation.
[0015] In addition, the test part and the fixed part work cooperatively to realize efficient and accurate testing of new materials, the outer control cylinder drives the pushing clamping frame to push the new materials, the strength performance of the new materials can be tested in the equipment interior without external taking, time and operation process are saved; the identification head and the point side block cooperate to accurately count the number of rotations of the new materials in the testing process, the angle between the new materials and the pushing clamping frame is controlled through butt joint, accurate positioning is realized, the accuracy of the test data is ensured, and in addition, the bundle block and the locking side block of the fixed part can be flexibly adjusted in position under the assistance of the displacement plate and the spring, the new materials are stably fixed, the stability of the new materials in the testing process is ensured, and the test result is more reliable.
[0016] In addition, the factor plate can be connected with external water supply equipment and blowing equipment, and various test factors are added to the interior of the equipment, such as simulating different humidity and airflow environment; the matched top plate on the inner wall of the sealing cover can provide light factors under the action of external control equipment, which enriches the test conditions and can more comprehensively simulate various environments of the new material in actual application, so that the performance of the new material can be more accurately tested.
[0017] In addition, the outward turning cylinder of the sealing part controls the turning of the sealing cover, so that the new material can be replaced conveniently; the sealing cover is connected with the mounting box through the connecting hinge and is matched with the clamping head on the outer pulling plate, so that a good sealing effect is achieved, the test process is prevented from being interfered by external environmental factors, and the stability of the test environment in the interior of the equipment is ensured; in addition, the design of the outer pulling plate, the matched U-shaped frame and the cross support plate and the like structures makes the overall operation of the equipment more convenient, the torsion motor drives the torsion block to rotate to adjust the test angle of the new material, and the flexibility and diversity of the test are further improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings of the embodiments will be briefly introduced below.
[0019] The drawings described in the following description only relate to some embodiments of the present application, rather than limiting the present application.
[0020] In the drawings: Figure 1 A schematic view of a test state three-dimensional assembly structure according to an embodiment of the present application is shown; Figure 2 A schematic view of a test state three-dimensional assembly bottom structure according to an embodiment of the present application is shown; Figure 3 A schematic view of a replacement state three-dimensional assembly structure according to an embodiment of the present application is shown; Figure 4 A schematic view of a replacement state three-dimensional assembly bottom structure according to an embodiment of the present application is shown; Figure 5 A schematic view of an exploded structure according to an embodiment of the present application is shown; Figure 6 A schematic view of an exploded bottom structure according to an embodiment of the present application is shown; Figure 7 A schematic view of a partial cut structure according to an embodiment of the present application is shown; Figure 8 A schematic view of a mounting part assembly structure according to an embodiment of the present application is shown; Figure 7 A schematic view of an enlarged structure of A part introduced is shown; Figure 9 A schematic view of an enlarged structure of A part introduced is shown; Figure 10 Fig. 1 shows a schematic view of a test part assembly structure according to an embodiment of the present application; Figure 11 Fig. 2 shows a schematic view of a sealing part assembly structure according to an embodiment of the present application; Figure 12 Fig. 3 shows a schematic view of an outer extraction part assembly structure according to an embodiment of the present application; Figure 13 Fig. 4 shows a schematic view of a firmware part assembly structure according to an embodiment of the present application; Figure 14 Fig. 5 shows a schematic view of a B part assembly structure according to an embodiment of the present application; Figure 13 Fig. 6 shows a schematic view of a B part assembly structure according to an embodiment of the present application.
[0021] List of reference signs 1, mounting part; 101, mounting box; 102, bottom mounting groove; 103, side adjusting groove; 104, adjusting groove; 105, locking rod; 106, factor plate; 107, connecting hinge; 2, test part; 201, outer control cylinder; 202, pushing card frame; 203, inner fixed block; 204, identification head; 205, water collecting bottom plate; 3, sealing part; 301, outer turning cylinder; 302, sealing cover; 303, matching top plate; 304, outer card upper head; 4, outer extraction part; 401, outer extraction plate; 402, matching U frame; 403, butt joint card slot; 404, cross bracing plate; 405, torsion motor; 5, firmware part; 501, torsion block; 502, point counting side block; 503, inner adjusting groove; 504, drainage bevel; 505, displacement plate; 506, binding block; 507, locking side block. DETAILED DESCRIPTION
[0022] The embodiments of the present application will be further described in detail below with reference to the accompanying drawings and examples.
[0023] Example 1: Please refer to Figures 1 to 14The application provides a marine application test equipment for socket box new material research and development, which comprises a mounting part 1, the mounting part 1 comprises a mounting box body 101, two groups of adjusting grooves 104 are formed in the mounting box body 101, the adjusting grooves 104 are used for assisting in mounting locking rods 105 and facilitating adjustment, the two groups of adjusting grooves 104 are respectively screw-connected with the locking rods 105, the locking rods 105 are used for being adjusted downwards through screw threads, so that the stability of a cooperating U-shaped frame 402 is maintained through clamping in a butt joint clamping groove 403 during adjustment, two groups of factor plates 106 are fixedly connected to the inner wall of the mounting box body 101, the factor plates 106 are used for adding test factors into the equipment through water supply equipment and blower equipment outside the equipment, so as to simulate test factors of new materials, the mounting part 1 is internally provided with a test part 2, an inner fixing block 203 is fixedly connected to the inner wall of the mounting box body 101, the inner fixing block 203 is used for assisting in fixing an identification head 204 and facilitating stability, the identification head 204 is fixedly connected to the inner fixing block 203, the identification head 204 is used for cooperating with point counting side blocks 502 to count new materials, so as to count the rotation number of the new materials during the test, and the angle between the new materials and a pushing clamping frame 202 is controlled through butt joint, so as to facilitate positioning, the mounting part 1 is externally provided with a sealing part 3, the mounting part 1 is internally provided with an external extraction part 4, the external extraction part 4 comprises an external extraction plate 401, the external extraction plate 401 is internally fixedly connected with the cooperating U-shaped frame 402, the cooperating U-shaped frame 402 is used for externally pulling a fixed part 5 through external extraction, so as to facilitate replacement of the new materials, two groups of butt joint clamping grooves 403 are formed in the top of the cooperating U-shaped frame 402, the butt joint clamping grooves 403 are used for connecting the cooperating U-shaped frame 402 and the mounting box body 101 through the locking rods 105 when the cooperating U-shaped frame 402 is inserted, so as to facilitate use, the fixed part 5 is arranged at the top of the external extraction part 4, the fixed part 5 comprises a torsion block 501, two groups of opposite point counting side blocks 502 are fixedly connected to the outer wall of the torsion block 501, the point counting side blocks 502 are used for cooperating with the identification head 204 to count new materials, so as to count the rotation number of the new materials during the test, and the angle between the new materials and the pushing clamping frame 202 is controlled through butt joint, so as to facilitate positioning, two groups of displacement plates 505 are slidingly connected to the top of the torsion block 501, the displacement plates 505 are used for driving a binding block 506 and a locking side block 507 to adjust positions under the action of springs, so as to assist in maintaining the stability of the new materials and facilitating test, the binding blocks 506 are respectively rotationally connected in the turning grooves of the two groups of displacement plates 505, the binding blocks 506 are used for cooperating with the locking side blocks 507 to fix new materials, so as to assist in maintaining the stability of the new materials and facilitating test, the two groups of binding blocks 506 are respectively screw-connected with the locking side blocks 507 through cylindrical rods, and the locking side blocks 507 are used for cooperating with the binding blocks 506 to test new materials, so as to facilitate test of the new materials.
[0024] Embodiment two: on the basis of embodiment one, as shown in Figures 1 to 14 The installation box 101 is internally provided with a cavity structure; the installation box 101 is used for assisting in installing and fixing other structures of the equipment, so as to facilitate sealing treatment with the sealing cover 302, and facilitate testing of the new material; the bottom of the installation box 101 is provided with a bottom groove 102; the top of the bottom groove 102 and the cavity position of the installation box 101 are provided with two groups of rectangular through holes; the bottom groove 102 is used for assisting in installing the water collecting bottom plate 205, so as to keep it stable and facilitate the discharge of seawater in the box; the inside of the installation box 101 is provided with two groups of side adjusting grooves 103; the two groups of side adjusting grooves 103 are respectively connected with sliding grooves; the side adjusting grooves 103 are used for assisting in butt joint with the U-shaped frame 402, facilitating pulling out, so as to facilitate installation of the new material.
[0025] Two groups of adjusting grooves 104 are respectively arranged at the top of the two groups of side adjusting grooves 103, and the two groups of adjusting grooves 104 are connected with the corresponding side adjusting grooves 103 through threaded through holes; the top of the two groups of locking rods 105 is respectively fixedly connected with a hexagonal protrusion, and the bottom of the two groups of locking rods 105 is respectively fixedly connected with a cylindrical plug; the top of the installation box 101 is fixedly connected with two groups of connecting hinges 107; the connecting hinges 107 are used for assisting in connecting the installation box 101 and the sealing cover 302, so as to facilitate the external turning adjustment.
[0026] The test part 2 includes an external control cylinder 201; the external control cylinder 201 is fixedly connected to the rear side of the installation box 101; the external control cylinder 201 is used for driving the push card frame 202 to adjust the position, so as to facilitate strength testing of the new material under the condition of not taking out during the test; the telescopic rod of the external control cylinder 201 is fixedly connected with the push card frame 202; the push card frame 202 is used for pushing the new material under the driving of the external control cylinder 201 when testing the new material, so as to test the strength performance of the new material during the test; the inner fixed block 203 is provided with an L-shaped block; the identification head 204 is electrically connected with an external control hub; the inside of the bottom groove 102 is fixedly connected with the water collecting bottom plate 205; the top of the water collecting bottom plate 205 is provided with two groups of internal plugs, and the two groups of internal plugs at the top of the water collecting bottom plate 205 are respectively inserted into the corresponding rectangular through holes of the bottom groove 102; the water collecting bottom plate 205 is used for assisting in discharging the seawater added in the inside, so as to facilitate discharging of the excess water.
[0027] The sealing part 3 comprises two groups of everted cylinders 301, the bottoms of the two groups of everted cylinders 301 are movably connected on the two sides of the installation box body 101 respectively, the everted cylinders 301 are used for controlling the everted processing of the sealing cover 302, so as to facilitate the replacement processing of the new material, the telescopic rods of the two groups of everted cylinders 301 are connected with the sealing cover 302, the sealing cover 302 is connected with the two groups of connecting hinges 107, the sealing cover 302 is used for cooperating with the installation box body 101 to install other structures of the equipment, so as to facilitate the overall stability of the equipment and facilitate the test processing of the performance of the new material, the inner wall of the sealing cover 302 is fixedly connected with a cooperating top plate 303, the cooperating top plate 303 is used for providing illumination factors inside the equipment under the action of the external control equipment, so as to assist in increasing the test factors of the new material, the outer wall of the sealing cover 302 is fixedly connected with an outer clamping head 304, the outer clamping head 304 is used for sealing the sealing cover 302 in cooperation with the clamping head on the outer pulling plate 401, so as to facilitate the stability.
[0028] The outer wall of the outer pulling plate 401 is fixedly connected with a clamping head, the clamping head of the outer pulling plate 401 is inserted with the outer clamping head 304, the outer pulling plate 401 is used for assisting in fixing the cooperating U-shaped frame 402, so as to facilitate the pulling processing and facilitate the replacement processing of the new material through the outer pulling mode, the cooperating U-shaped frame 402 is slidably connected in the two groups of side adjusting grooves 103, the two groups of butt-joint clamping grooves 403 are respectively connected with circular insertion holes, the circular insertion holes of the two groups of butt-joint clamping grooves 403 are respectively inserted with cylindrical insertion blocks of the corresponding locking rods 105.
[0029] The inner side of the cooperating U-shaped frame 402 is fixedly connected with a cross brace plate 404, the cross brace plate 404 and the cooperating U-shaped frame 402 are provided with a reinforcing plate, the top of the cross brace plate 404 is provided with a circular annular groove, the cross brace plate 404 is used for supporting the fastener part 5, so as to facilitate the stability, the bottom of the cross brace plate 404 is fixedly connected with a torsion motor 405, the torsion motor 405 is used for driving the torsion block 501 to rotate and adjust, so as to facilitate the adjustment of the test angle of the new material.
[0030] The torsion block 501 is rotatably connected in the circular annular groove of the cross brace plate 404, the torsion block 501 is connected with the motor shaft of the torsion motor 405, the top of the torsion block 501 is fixedly connected with two groups of rectangular blocks, the torsion block 501 is used for assisting in adjusting the test angle of the new material in the process of rotation, so as to facilitate the test processing, the two groups of counting side blocks 502 are kept on the same horizontal line with the identification head 204, the top of the torsion block 501 is provided with four groups of inner adjusting grooves 503, the inner adjusting grooves 503 are used for assisting in installing the displacement plate 505, so as to facilitate the stability of the displacement plate 505 in the adjustment process, the four groups of inner adjusting grooves 503 are respectively connected with drainage bevels 504, the drainage bevels 504 are used for draining the accumulated water in the inner adjusting grooves 503.
[0031] The bottoms of the two groups of displacement plates 505 are respectively fixedly connected with two groups of L-shaped blocks, the L-shaped blocks of the two groups of displacement plates 505 are respectively slidably connected in the corresponding inner adjusting grooves 503; the two groups of displacement plates 505 are respectively provided with overturning grooves; the two groups of displacement plates 505 and the two groups of rectangular blocks on the top of the torsion block 501 are respectively fixedly connected with springs; the two groups of binding blocks 506 are respectively fixedly connected with two groups of cylindrical rods.
[0032] The specific use mode and role of the embodiment are as follows: in the embodiment, the outer turning cylinder 301 is started, the telescopic rod of the outer turning cylinder 301 is controlled to act, the sealing cover 302 is driven to turn and open around the connecting hinge 107, the internal space of the device is exposed, the new material installation operation is facilitated, the outer pulling plate 401 is pulled, the matching U-shaped frame 402 is driven to pull out along the side adjusting groove 103, the fastener part 5 is moved out of the installation box 101 by a part, the new material is placed, the new material to be tested is placed on the torsion block 501, the position of the displacement plate 505 under the action of the spring is adjusted, the binding block 506 and the locking side block 507 stably clamp and fix the new material, the new material is ensured not to move in the testing process, the outer pulling plate 401 is pushed, the matching U-shaped frame 402 and the fastener part 5 are pushed back to the original position in the installation box 101, the matching top plate 303 in the sealing cover 302 is opened through the external control device, the required illumination condition is provided, the actual application environment of the new material is simulated, the torsion motor 405 is started, the torsion block 501 is driven to rotate, and the test angle of the new material is adjusted; in the testing process, the recognition head 204 cooperates with the counting side block 502 to count the rotation number of the new material in real time, the angle between the new material and the pushing clamping frame 202 is controlled through the butt joint, the new material is positioned, the relevant test data is recorded and transmitted to the external control center, in the testing process, if the strength of the new material needs to be tested, the outer control cylinder 201 is opened, the telescopic rod of the outer control cylinder 201 is controlled to drive the pushing clamping frame 202 to move, the fixed new material is pushed, the strength performance of the new material is tested in the internal space of the device, the new material does not need to be taken out, the testing efficiency is improved, and the testing of the new material is completed.
[0033] In this paper, the following points need to be noted: 1. The drawings of the disclosed embodiment only relate to the structures involved in the disclosed embodiment, and other structures can be referred to the general design.
[0034] 2. In the case of no conflict, the embodiments and the features in the embodiments of the disclosure can be combined with each other to obtain new embodiments.
[0035] The above merely describes specific embodiments of the present disclosure, but the protection scope of the present disclosure is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present disclosure, which should be covered within the protection scope of the present disclosure. Therefore, the protection scope of the present disclosure should be subject to the protection scope of the claims.
Claims
1. A socket box new material research and development offshore application test equipment, comprising: The utility model provides an installation part (1), its characterized in be that installation part (1) includes installation box (101), inside installation box (101) is equipped with two sets of adjusting groove (104), and the inside of two sets of adjusting groove (104) is respectively connected with locking rod (105) in thread, and the inner wall of installation box (101) is fixedly connected with two sets of factor board (106), and the inside of installation part (1) is equipped with test part (2), and the inner wall of installation box (101) is fixedly connected with inner fixed block (203), and inner fixed block (203) is fixedly connected with identification head (204), and the outside of installation part (1) is equipped with sealing part (3), and the inside of installation part (1) is equipped with outer extraction part (4), and outer extraction part (4) includes outer extraction plate (401), and the inner side of outer extraction plate (401) is fixedly connected with cooperation U frame (402), and the top of cooperation U frame (402) is equipped with two sets of butt joint slot (403), and the top of outer extraction part (4) is equipped with fastener part (5), and fastener part (5) includes torsion block (501), and the outer wall of torsion block (501) is fixedly connected with two sets of opposite point side block (502), and the top of torsion block (501) is slidably connected with two sets of displacement plate (505), and the turning groove of two sets of displacement plate (505) is respectively connected with binding piece block (506), and two sets of binding piece block (506) are respectively connected with locking side block (507) through cylindrical rod.
2. The socket box new material research and development offshore application test equipment according to claim 1, characterized in that: The inside of installation box (101) is equipped with cavity structure, and the bottom of installation box (101) is equipped with bottom installation groove (102), and the top of bottom installation groove (102) and the cavity position of installation box (101) are equipped with two sets of rectangular through holes, and the inside of installation box (101) is equipped with two sets of side adjusting grooves (103), and two sets of side adjusting grooves (103) are respectively connected with sliding groove.
3. The socket box new material research and development offshore application test equipment according to claim 1, characterized in that: Two sets of adjusting groove (104) are respectively arranged at the top of two sets of side adjusting grooves (103), and two sets of adjusting groove (104) are connected through thread through hole between the corresponding side adjusting groove (103), and the top of two sets of locking rod (105) is respectively fixedly connected with six prism convex, and the bottom of two sets of locking rod (105) is respectively fixedly connected with cylindrical plug, and the top of installation box (101) is fixedly connected with two sets of connecting hinges (107).
4. The socket box new material research and development offshore application test equipment according to claim 2, characterized in that: The test part (2) includes outer control cylinder (201), and the rear side of installation box (101) is fixedly connected with outer control cylinder (201), and the telescopic rod of outer control cylinder (201) is fixedly connected with push card frame (202), and the inside of bottom installation groove (102) is fixedly connected with water collecting bottom plate (205), and the top of water collecting bottom plate (205) is equipped with two sets of inner plug, and two sets of inner plug of water collecting bottom plate (205) top are respectively inserted in the corresponding rectangular through hole of bottom installation groove (102).
5. The socket box new material research and development offshore application test equipment according to claim 3, characterized in that: The sealing part (3) comprises two groups of everted cylinders (301); the bottoms of the two groups of everted cylinders (301) are movably connected on the two sides of the installation box (101) respectively; the telescopic rods of the two groups of everted cylinders (301) are connected with sealing covers (302); the sealing covers (302) are connected with two groups of connecting hinges (107); the inner walls of the sealing covers (302) are fixedly connected with matching top plates (303); the outer walls of the sealing covers (302) are fixedly connected with outer clamping heads (304).
6. The socket box new material research and development offshore application test equipment according to claim 5, characterized in that: The outer walls of the outer pulling plates (401) are fixedly connected with clamping heads, the clamping heads of the outer pulling plates (401) are inserted with outer clamping heads (304); the matching U-shaped frames (402) are slidingly connected in the two groups of side adjusting grooves (103); the two groups of butt-joint clamping grooves (403) are respectively connected with circular insertion holes; the circular insertion holes of the two groups of butt-joint clamping grooves (403) are respectively inserted with cylindrical insertion blocks of corresponding locking rods (105).
7. The socket box new material research and development offshore application test equipment according to claim 1, characterized in that: The inner sides of the matching U-shaped frames (402) are fixedly connected with cross struts (404); the cross struts (404) and the matching U-shaped frames (402) are provided with reinforcing plates, the top portions of the cross struts (404) are provided with circular recesses; the bottoms of the cross struts (404) are fixedly connected with torsion motors (405).
8. The socket box new material research and development offshore application test equipment according to claim 7, characterized in that: The torsion blocks (501) are rotatably connected in the circular recesses of the cross struts (404), the torsion blocks (501) are connected with the motor shafts of the torsion motors (405); the top portions of the torsion blocks (501) are fixedly connected with two groups of rectangular blocks; the two groups of point side blocks (502) and the identification heads (204) are kept on the same horizontal line; the top portions of the torsion blocks (501) are provided with four groups of inner adjusting grooves (503); the four groups of inner adjusting grooves (503) are respectively connected with drainage bevels (504).
9. The socket box new material research and development offshore application test equipment according to claim 8, characterized in that: The bottoms of the two groups of displacement plates (505) are respectively fixedly connected with two groups of L-shaped blocks, the L-shaped blocks of the two groups of displacement plates (505) are slidingly connected in the corresponding inner adjusting grooves (503) respectively; the two groups of displacement plates (505) are respectively provided with overturning grooves; the two groups of displacement plates (505) and the two groups of rectangular blocks on the top portions of the torsion blocks (501) are respectively fixedly connected with springs; the two groups of displacement plates (505) are respectively fixedly connected with two groups of cylindrical rods.
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