An armored equipment battlefield damage test tooling platform

By designing automated screwing and loading parts and utilizing components such as hydraulic cylinders and magnetic blocks, the problem of difficulty in ensuring nut installation accuracy was solved, thereby improving the accuracy of tank barrel testing.

CN115655000BActive Publication Date: 2025-10-17ARMOR ACADEMY OF CHINESE PEOPLES LIBERATION ARMY
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Patent Information

Application Number
CN202211320423.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-26
Publication Date
2025-10-17
Estimated Expiration
2042-10-26

AI Technical Summary

Technical Problem

The traditional barrel fixing method is difficult to ensure the installation accuracy of the nut due to many human and external interference factors, which affects the test accuracy.

Method used

The screwing part and loading part with horizontal extension and rotation functions are combined with components such as hydraulic cylinder, magnetic block and clamping shaft to realize automatic loading and precise tightening of nuts. The coordination of telescopic parts, pushing blocks and rotating drum ensures the position stability and accuracy of the nut during movement.

Benefits of technology

It achieves high-precision tightening of the nut, improves the accuracy of tank barrel testing, and reduces testing errors caused by inaccurate nut installation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an armored equipment battlefield damage test tool platform, which comprises a base, a supporting mechanism for supporting and fixing a tank barrel is arranged on the base, and an installation mechanism for screw cap fastening installation of a tank barrel connected with the supporting mechanism after assembly is arranged on the base. The installation mechanism can realize automatic installation and fastening of the screw cap between the tank barrel and the supporting mechanism, and has the effect of accurate position control of the screw cap. Firstly, the telescopic part, the push block and the rotating barrel are used in cooperation, when the screw cap is pushed to move to the port position in the rotating barrel, the screw cap is effectively limited due to the shape adaptation between the inner wall of the rotating barrel and the screw cap, so that the screw cap will not be greatly deviated in the moving process.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of armored equipment damage test, and in particular to an armored equipment battlefield damage test tooling platform. BACKGROUND

[0002] Armor generally refers to the application on military equipment, and is composed of solid metal or non-metallic materials, which can defend certain energy physical attacks and reduce the damage of protected targets, and can be divided into passive armor and active armor; armored equipment is related equipment used in military with armor, and common armored equipment includes tanks, military transport vehicles and various military vehicles.

[0003] However, for tanks, after daily simulated battle training, the performance maintenance and damage test of the tank need to be carried out regularly, and in the damage test process of the tank, in order to ensure the accuracy of the shell launching, the wear degree of the inner wall of the barrel needs to be tested, and the specific process is as follows: first, the barrel is separately disassembled, then fixed and installed on the test tooling platform, and then the damage test is carried out through related test instruments.

[0004] The above-mentioned traditional barrel test tooling platform has the following problems in actual use: when the barrel is fixed on the connecting part of the test platform, the mounting hole at the end of the barrel needs to be assembled and connected with the stud on the connecting part, and then the nut is installed on the stud by manual or mechanical screwing device, and since there are many human and external interference factors, the installation accuracy of the nut is difficult to be guaranteed, which finally leads to the deviation of the test accuracy. SUMMARY

[0005] The present application provides an armored equipment battlefield damage test tooling platform, which solves the problem of difficult to guarantee the installation accuracy of the nut.

[0006] In order to solve the above technical problems, the armored equipment battlefield damage test tooling platform provided by the present application comprises: a base, a supporting mechanism for supporting and fixing the tank barrel is arranged on the base, an installation mechanism for nut fastening installation of the assembled tank barrel and the connecting part of the supporting mechanism is arranged on the base, the installation mechanism comprises a screwing part with horizontal extension and rotation function and a filling part for automatically filling the nut into the screwing part, the filling part is installed at one end of the screwing part, the screwing part comprises a fixed plate, a rotating cylinder and a driving part for driving the rotating cylinder to rotate are rotatably installed on one side of the fixed plate respectively, and a pushing part for pushing the fixed plate to move in horizontal direction is fixedly connected to the side of the fixed plate opposite to the rotating cylinder.

[0007] Preferably, one end of the inner side wall of the rotating drum is fixedly provided with a telescopic member arranged along the central axis direction, the telescopic end of the telescopic member is fixedly connected with a push block slidingly installed on the inner side wall of the rotating drum, the front end of the push block is provided with a magnetic block, the upper end of the outer surface of the rotating drum is provided with a movable slot, the upper end of the push block is fixedly connected with an arc-shaped block slidingly installed in the movable slot, the outer surface of the arc-shaped block and the outer surface of the rotating drum are both rotatably provided with a plurality of rolling balls, and the lower end of the outer surface of the rotating drum is fixedly connected with a plurality of linearly distributed counterweights.

[0008] Preferably, the base is provided in an L-shaped structure, the filling part is vertically installed on the vertical upper end of the outer surface of the rotating drum, the filling part comprises two limiting rods symmetrically and vertically fixedly installed on the upper end of the vertical section of the base and an upper and lower through filling hopper, the bottom of the filling hopper is vertically and fixedly connected with the upper end of the outer surface of the rotating drum and communicates with the movable slot, the two sides of the filling hopper are symmetrically and fixedly connected with two sliding members, and the ends away from the filling hopper of the two sliding members are respectively slidingly connected with the outer surfaces of the two limiting rods.

[0009] Preferably, the power member comprises an electric motor and two gears, the electric motor is fixedly installed on one side of the fixed plate close to the rotating drum, the two gears are respectively fixedly installed on the output end of the electric motor and the outer side of the rotating drum, and the two gears are engaged with each other.

[0010] Preferably, the supporting mechanism comprises a rotating part installed on the upper end of the vertical section of the base and a plurality of supporting parts for providing support to the outer side of the rotating drum, the rotating part comprises an electric motor fixedly installed on the upper end of the vertical section of the base, the output end of the electric motor penetrates through the vertical section of the base and is fixedly connected with a connecting seat, and the side of the connecting seat away from the base is fixedly connected with a plurality of stud bolts uniformly arranged along the radial direction thereof.

[0011] Preferably, the plurality of supporting parts are distributed side by side with the vertical section of the base on the top of the horizontal section of the base, the supporting part comprises a supporting plate vertically fixedly installed on the top of the horizontal section of the base, a placing groove is provided through the side of the supporting plate parallel to the base, and a plurality of rollers are rotatably installed on the inner side wall below the placing groove.

[0012] Preferably, a plurality of clamping holes corresponding to the plurality of stud bolts are provided on the circumferential side of the connecting seat, a clamping shaft is slidingly installed on the vertical section of the base directly above the connecting seat, the top end of the clamping shaft is fixedly connected with an elastic member, and the bottom end of the clamping shaft is clamped with the clamping hole directly below the clamping shaft.

[0013] Preferably, the placing groove is composed of a horizontal section and a vertical section, the lower end of the vertical section is semicircular, and the center of the semicircle is on the same straight line as the center of the connecting seat.

[0014] Compared with related technologies, the armored equipment battlefield damage testing tooling platform provided by the embodiments of the present invention has the following beneficial effects:

[0015] (1) By setting up an installation mechanism, the automatic installation and tightening function of the nut between the tank barrel and the support mechanism can be realized, and the position of the nut can be precisely controlled. First, by using the cooperation between the telescopic member, the push block and the rotating drum, when the nut is pushed to the port position inside the rotating drum, the inner wall of the rotating drum is adapted to the shape of the nut, which can effectively limit the nut and prevent it from being displaced to a large extent during the movement. Secondly, a hydraulic cylinder with higher stability and thrust accuracy is used to drive the push block to move, and the cross section of the push block is set to be adapted to the cross section of the nut, which can provide a comprehensive and uniform thrust for the nut, so that the nut can finally reach the port position of the rotating drum accurately. In addition, by setting a magnetic block at the front end of the push block to adsorb the nut, the nut can be prevented from falling or tilting after reaching the port position of the rotating drum. By performing multi-level position control on the nut, the accuracy and stability of the position of the nut before contacting the stud are guaranteed, and the high-precision tightening function of the nut between the tank barrel and the support mechanism is realized, which greatly improves the accuracy of the flaw detection test of the tank barrel.

[0016] (2) By setting up the coordination between the clamping shaft, the elastic member and the connecting seat, the rotation angle of the connecting seat can be accurately controlled. After the connecting seat rotates to the set angle, the clamping shaft automatically engages with the clamping hole on the connecting seat, thereby playing a certain limiting role on the connecting seat, which can prevent the connecting seat from being affected by the rotational inertia of the motor and causing the rotation angle deviation problem, further ensuring the alignment accuracy of the nut and the stud. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 This is a schematic diagram of the armored equipment battlefield damage testing tooling platform provided by the present invention when in use.

[0018] Figure 2 This is a schematic structural diagram of the armored equipment battlefield damage testing tooling platform provided by the present invention.

[0019] Figure 3 for Figure 2 A partial enlarged view of area a is shown.

[0020] Figure 4 for Figure 3 A local enlarged view of area b is shown.

[0021] Figure 5 for Figure 2 The structural diagram of the installation mechanism is shown.

[0022] Figure 6 Fig. 1 is a structural schematic view of a rotating part shown in Fig. 2. Figure 5 Fig. 2 is a structural schematic view of a rotating part shown in Fig. 1.

[0023] Figure 7 Fig. 3 is a structural schematic view of a rotating part, an arc-shaped block and a counterweight block in the application.

[0024] Figure 8 Fig. 4 is a side view of an armored equipment battlefield damage test tooling platform shown in Fig. 5. Figure 1 Fig. 5 is a perspective view of an armored equipment battlefield damage test tooling platform shown in Fig. 4.

[0025] In the drawings: 1, base; 2, supporting mechanism; 21, rotating part; 211, driving motor; 212, connecting seat; 213, stud; 214, clamping hole; 215, clamping shaft; 216, elastic member; 22, supporting part; 221, supporting plate; 222, placing groove; 223, roller; 3, mounting mechanism; 31, rotating part; 311, fixed plate; 312, rotating drum; 313, power member; 3131, electric motor; 3132, gear; 314, pushing member; 315, telescopic member; 316, pushing block; 317, movable groove; 318, arc-shaped block; 319, ball; 3110, counterweight block; 32, loading part; 321, limiting rod; 322, loading hopper; 323, sliding member; 4, tank barrel; 5, nut. DETAILED DESCRIPTION

[0026] The embodiments of the present application will be described below with reference to the drawings. In this process, in order to ensure the clarity and convenience of the description, we may exaggerate the width of the lines or the size of the constituent elements in the drawings.

[0027] In addition, the terms in the following are defined based on the functions in the present application, which can be different according to the intention or habit of the user; therefore, these terms are defined based on the entire content of the present specification.

[0028] Please refer to Figure 1 and Figure 2 An armored equipment battlefield damage test tooling platform, comprising: a base 1, wherein a supporting mechanism 2 for supporting and fixing a tank barrel 4 is arranged on the base 1, and a mounting mechanism 3 for fastening and installing a nut 5 at the connection between the assembled tank barrel 4 and the supporting mechanism 2 is arranged on the base 1, the mounting mechanism 3 comprises a rotating part 31 with horizontal telescopic and rotating functions and a loading part 32 for automatically loading the nut 5 into the rotating part 31, and the loading part 32 is installed at one end of the rotating part 31.

[0029] Please refer to Figure 5, the screwing part 31 comprises a fixed plate 311, one side of the fixed plate 311 is respectively rotationally installed with a rotating cylinder 312 and fixedly installed with a power element 313 for driving the rotating cylinder 312 to rotate, the inner side wall of the rotating cylinder 312 is provided in a hexagonal shape matching the cap 5, which can well limit the cap 5, so that the cap 5 stably slides in the inner side wall of the rotating cylinder 312, and meanwhile, the relative rotation between the cap 5 and the clamping groove is prevented, so that the cap 5 is smoothly installed outside the stud 213; the side opposite to the rotating cylinder 312 of the fixed plate 311 is fixedly connected with a pushing element 314 for pushing the fixed plate 311 to move in a horizontal direction, the pushing element 314 is a hydraulic cylinder with better stability, which can ensure the horizontal movement precision of the whole installation mechanism 3; one end of the inner side wall of the rotating cylinder 312 is fixedly installed with an extension element 315 arranged along the central axis direction, the extension element 315 is preferably a hydraulic cylinder with better stability and sensitivity, and can also be an electric push rod or other structure, the extension end of the extension element 315 is fixedly connected with a pushing block 316 slidingly installed in the inner side wall of the rotating cylinder 312, the pushing block 316 is a hexagonal prism structure matching the cross-sectional shape of the rotating cylinder 312, which can stably slide in the rotating cylinder 312, and the front end of the pushing block 316 is provided with a magnetic block for adsorbing and fixing the end part of the cap 5 entering the rotating cylinder 312, which can prevent the cap 5 from falling from the end part thereof or being inclined in position during the horizontal movement of the rotating cylinder 312;

[0030] Please refer to Figure 6 and Figure 7The upper end of the outer surface of the rotating drum 312 is provided with a movable groove 317, the upper end of the push block 316 is fixedly connected with an arc-shaped block 318 which is slidingly installed in the movable groove 317, the arc-shaped block 318 has the same radius as the rotating drum 312, so that the arc-shaped block 318 is flush with the outer side of the rotating drum 312, when the rotating drum 312 and the arc-shaped block 318 rotate together, the consistent supporting effect on the nut 5 is ensured, and the large range movement of the nut 5 is avoided, so as to affect the normal rotation of the rotating drum 312; and the length of the movable groove 317 is twice the length of the arc-shaped block 318, the arc-shaped block 318 and the push block 316 have sufficient horizontal sliding route, so as to ensure that the nut 5 can smoothly enter the rotating drum 312, and the length of the arc-shaped block 318 is greater than the length of the nut 5, so as to stably provide support for the nut 5, the outer surface of the arc-shaped block 318 and the outer surface of the rotating drum 312 are both rotatably installed with a plurality of rolling balls 319, the plurality of rolling balls 319 are divided into two groups, the number of rolling balls 319 in each group is not limited, and can be adjusted according to the specific size of the arc-shaped block 318 and the rotating drum 312, the two groups of rolling balls 319 are symmetrically distributed on the outer surface of the arc-shaped block 318 and the outer surface of the rotating drum 312 in the width direction of the arc-shaped block 318, for reducing the friction between the arc-shaped block 318 and the nut 5 which has not entered the rotating drum 312, so that the rotating drum 312 and the arc-shaped block 318 rotate more smoothly, the lower end of the outer surface of the rotating drum 312 is fixedly connected with two linearly distributed counterweight blocks 3110 which are circumferentially distributed, the counterweight blocks 3110 are made of metal materials with large mass, such as stainless steel, and are mainly used for increasing the gravity effect of the lower end of the rotating drum 312, so that the state of the rotating drum 312 after stopping rotation is basically consistent with the initial state, and the number of the counterweight blocks 3110 is not limited to two, and can be adjusted according to actual use requirements.

[0031] Please refer to Figure 2 , Figure 5, the base 1 is provided as an L-shaped structure, the filling part 32 is vertically installed on the vertical upper end of the outer surface of the rotating drum 312, the filling part 32 comprises two limiting rods 321 symmetrically and vertically fixedly installed on the upper end of the vertical section of the base 1 and a filling hopper 322 penetrating up and down, the filling hopper 322 is used for storing the cap nut 5 to be installed, a vertical groove provided in the filling hopper 322 can make the cap nut 5 be stacked in the filling hopper 322 from bottom to top in order, the bottom of the filling hopper 322 is fixedly connected with the upper end of the outer surface of the rotating drum 312 in a perpendicular mode and is connected with the movable groove 317 in a communication mode, so that the cap nut 5 can fall into the interior of the rotating drum 312 from the movable groove 317 under the action of gravity, two sliding members 323 are fixedly connected with the two sides of the filling hopper 322 in a symmetric mode, one end of each of the two sliding members 323 away from the filling hopper 322 is slidably connected with the outer surface of the limiting rod 321, and the two sliding members 323 are fixedly connected with the fixed plate 311 through a connecting rod, and the two sliding members 323 are cooperatively slid, which is used for providing horizontal support for the whole installation mechanism 3 on one hand and effectively limiting the movement of the installation mechanism 3 on the other hand, so that the installation mechanism 3 can be stably moved in the horizontal direction and the movement precision of the whole installation mechanism 3 is ensured.

[0032] Please refer to Figure 5 , the power member 313 comprises an electric motor 3131 and two gears 3132, the electric motor 3131 is fixedly installed on one side of the fixed plate 311 close to the rotating drum 312, the two gears 3132 are fixedly installed on the output end of the electric motor 3131 and the outer side of the rotating drum 312 respectively, and the two gears 3132 are engaged with each other, and the driving mode of the power member 313 is not limited to the above structure form and can be adjusted according to actual use requirements.

[0033] Please refer to Figure 2 、 Figure 3 、 Figure 4 and Figure 8The support mechanism 2 comprises a rotating part 21 mounted on the upper end of the vertical section of the base 1 and two support parts 22 for providing support to the outer side of the cannon barrel, the rotating part 21 comprises a motor 211 fixedly mounted on the upper end of the vertical section of the base 1, the output end of the motor 211 penetrates through the vertical section of the base 1 and is fixedly connected with a connecting seat 212, the side, away from the base 1, of the connecting seat 212 is fixedly connected with six stud bolts 213 evenly arranged along the radial direction thereof, the position distribution of the stud bolts 213 is arranged in one-to-one correspondence with the mounting hole positions on the tank cannon barrel 4, the number of the stud bolts 213 is set according to the number of the mounting holes of the tank cannon barrel 4, and it is ensured that the tank cannon barrel 4 and the support mechanism 2 can be smoothly assembled; the two support parts 22 are distributed side by side with the vertical section of the base 1 on the top of the horizontal section of the base 1, the support part 22 comprises a support plate 221 fixedly and vertically mounted on the top of the horizontal section of the base 1, the side, parallel to the base 1, of the support plate 221 is provided with a placing groove 222 penetratingly formed therein, a plurality of rollers 223 are rotatably mounted on the inner side wall below the placing groove 222, the friction between the tank cannon barrel 4 and the placing groove 222 can be reduced, the placing groove 222 is composed of a horizontal section and a vertical section, the lower end of the vertical section is semicircular, the center of the semicircular circle is on the same straight line as the center of the connecting seat 212, and the tank cannon barrel 4 mounted on the support part 22 can be kept in a horizontal state; six clamping holes 214 corresponding to the six stud bolts 213 are formed in the circumferential side of the connecting seat 212, a clamping shaft 215 is slidingly mounted on the vertical section of the base 1 and directly above the connecting seat 212, the bottom end of the clamping shaft 215 is arc-shaped, the top end of the clamping shaft 215 is fixedly connected with an elastic member 216, and the bottom end of the clamping shaft 215 is clamped with the clamping hole 214 directly below the clamping shaft 215; through the clamping of the clamping shaft 215 and the clamping hole 214, the connecting seat 212 can be limited in position.

[0034] The working principle of the armored equipment battlefield damage test tool platform provided by the embodiment of the present application is as follows:

[0035] Step one: in use, first, connect the tank cannon barrel 4 with the support mechanism 2, place the tank cannon barrel 4 outside the two placing grooves 222 respectively, and keep the tank cannon barrel 4 in a horizontal state by the two support plates 221, then, clamp the mounting end of the tank cannon barrel 4 with the stud bolts 213, so that the tank cannon barrel 4 is temporarily connected with the support mechanism 2;

[0036] Step two: then, sequentially put the six nuts 5 into the filling hopper 322 from top to bottom, since the filling hopper 322 and the movable groove 317 are communicated in the initial state, the first nut 5 directly passes through the movable groove 317 and enters the rotating drum 312, and the nuts 5 entering subsequently are stacked together, and the nut 5 filling operation is completed;

[0037] Step three: Then, by the extension of telescopic part 315, push block 316 and arc block 318 move to the direction of the port of rotating drum 312. In the process of moving, the first nut 5 in the rotating drum 312 is adsorbed by the magnetic block at the front end of push block 316 and is pushed to slide together. When arc block 318 moves to the position where filling hopper 322 is communicated with movable groove 317, one end of arc block 318 starts to press the second nut 5 on the top of the first nut 5, so that the second nut 5 moves up and separates from the first nut 5. In the process of pushing the first nut 5 to slide by push block 316, because push block 316 is in full contact with nut 5 and is limited by the inner wall of rotating drum 312, it can ensure that nut 5 always keeps stable in the process of moving until one end of arc block 318 moves to the inner wall of movable groove 317 and finally the bottom of second nut 5 contacts with the upper end of arc block 318. At the same time, telescopic part 315 stops extending, and nut 5 also moves to the port position of rotating drum 312. Under the magnetic adsorption of the magnetic block at the front end of push block 316, nut 5 can keep stable at the port position of rotating drum 312.

[0038] Step four: Then, by the extension of push part 314, fixed plate 311, power part 313, rotating drum 312 and the whole filling part 32 move together to the direction of connecting seat 212 until nut 5 is aligned and contacted with stud 213. Then, motor 3131 starts to rotate forward, so that two gears 3132 rotate together and drive rotating drum 312, telescopic part 315, push block 316 and arc block 318 to rotate together. With the continuous extension of push part 314, nut 5 gradually rotates slowly on stud 213 until nut 5 contacts with the installation end of tank barrel 4. Motor 3131 stops rotating, and the installation of the first nut 5 is completed.

[0039] Step five: Then, push part 314 starts to contract, driving rotating drum 312 and filling part 32 to reset. When rotating drum 312 is completely separated from nut 5, motor 3131 starts to rotate reversely until rotating drum 312 and filling part 32 completely reset. Because the rotating speed of motor 3131 is unchanged and the displacement of rotating drum 312 is constant, and under the action of two counterweight blocks 3110, when motor 3131 stops rotating, the state of rotating drum 312 after stopping rotating is basically the same as the initial state, which ensures that rotating drum 312 can be in communication with movable groove 317 after stopping rotating each time, so as to facilitate the next nut 5 to enter rotating drum 312.

[0040] Step six: then, by driving motor 211 with connecting seat 212 and tank barrel 4 together, because the contact end of shaft 215 and the first card hole 214 is arc-shaped, when the connecting seat 212 rotates, the shaft 215 is subjected to upward extrusion force, starts to move upward, and extrudes the elastic element 216, and finally automatically separates from the first card hole 214, when the second card hole 214 adjacent to the first card hole 214 on the connecting seat 212 gradually rotates to the position below the shaft 215, the driving motor 211 has stopped rotating, and under the action of the elastic force of the elastic element 216, the shaft 215 can be connected with the second card hole 214, and under the action of the two, the connecting seat 212 can avoid the problem of deviation of the rotation angle caused by the inertia of the driving motor 211, then, repeat the above steps, install the remaining nuts 5 on the studs 213, when all the nuts 5 are installed, the damaged instrument can be used to start the damage test on the tank barrel 4.

[0041] The above is only an embodiment of the present application, and does not limit the patent scope of the present application, any equivalent structure or equivalent process transformation using the content of the specification and drawings, or direct or indirect application in other related technical fields, are also included in the patent protection scope of the present application.

Claims

1. An armored equipment battlefield damage test tooling platform, comprising: A base (1) is provided on the base (1) with a support mechanism (2) for supporting and fixing a tank barrel (4), and is characterized in that: the base (1) is provided with a mounting mechanism (3) for fastening and mounting a nut (5) at a connection between the assembled tank barrel (4) and the support mechanism (2), and the mounting mechanism (3) includes a screwing portion (31) with horizontal telescopic and rotational functions and a loading portion (32) for automatically loading the nut (5) into the screwing portion (31). ), the loading portion (32) is mounted on one end of the screwing portion (31), the screwing portion (31) includes a fixed plate (311), one side of the fixed plate (311) is rotatably mounted with a rotating drum (312) and a power member (313) for driving the rotating drum (312) to rotate, and a pushing member (314) for pushing the fixed plate (311) to move in a horizontal direction is fixedly connected to the side of the fixed plate (311) opposite to the rotating drum (312); A telescopic member (315) arranged along the central axis is fixedly mounted on one end of the inner side wall of the rotating cylinder (312); the telescopic end of the telescopic member (315) is fixedly connected to a push block (316) slidably mounted on the inner side wall of the rotating cylinder (312); a magnetic block is provided at the front end of the push block (316); a movable groove (317) is provided at the upper end of the outer surface of the rotating cylinder (312); the upper end of the push block (316) is fixedly connected to an arc block (318) slidably mounted in the movable groove (317); a plurality of balls (319) are rotatably mounted on the outer surface of the arc block (318) and the outer surface of the rotating cylinder (312); and a plurality of linearly distributed counterweight blocks (3110) are fixedly connected to the lower end of the outer surface of the rotating cylinder (312); The base (1) is configured as an L-shaped structure, the loading portion (32) is vertically mounted on the upper end of the outer surface of the rotating drum (312), the loading portion (32) comprises two symmetrically vertically fixed limit rods (321) mounted on the upper end of the vertical section of the base (1) and a loading bucket (322) extending vertically therethrough, the bottom of the loading bucket (322) is vertically fixedly connected to the upper end of the outer surface of the rotating drum (312), and is in communication with the movable groove (317), two sliding members (323) are symmetrically fixedly connected to both sides of the loading bucket (322), and the ends of the two sliding members (323) away from the loading bucket (322) are respectively slidably connected to the outer surfaces of the two limit rods (321); The support mechanism (2) comprises a rotating portion (21) mounted on the upper end of the vertical section of the base (1) and a plurality of supporting portions (22) for providing support to the outer side of the barrel, the rotating portion (21) comprising a driving motor (211) fixedly mounted on the upper end of the vertical section of the base (1), the output end of the driving motor (211) passing through the vertical section of the base (1) and fixedly connected to a connecting seat (212), and a plurality of studs (213) uniformly arranged along its radial direction are fixedly connected to the side of the connecting seat (212) opposite to the base (1); A plurality of latching holes (214) corresponding to the plurality of studs (213) are provided on the peripheral side of the connecting seat (212); a latching shaft (215) is slidably mounted on the vertical section of the base (1) and located directly above the connecting seat (212); an elastic member (216) is fixedly connected to the top end of the latching shaft (215); and the bottom end of the latching shaft (215) is latched with the latching hole (214) directly below it; By providing the installation mechanism (3), the nuts between the tank barrel and the support mechanism (2) are automatically installed and fastened in sequence with high precision.

2. The armored equipment battlefield damage testing tooling platform according to claim 1, characterized in that: The power member (313) comprises an electric motor (3131) and two gears (3132). The electric motor (3131) is fixedly mounted on a side of the fixed plate (311) close to the rotating drum (312). The two gears (3132) are respectively fixedly mounted on the output end of the electric motor (3131) and the outer side of the rotating drum (312), and the two gears (3132) are meshed with each other.

3. The armored equipment battlefield damage testing tooling platform according to claim 1, characterized in that: A plurality of the support parts (22) and the vertical section of the base (1) are arranged side by side on the top of the horizontal section of the base (1); the support part (22) comprises a support plate (221) fixedly mounted vertically on the top of the horizontal section of the base (1); a placement groove (222) is provided on one side of the support plate (221) parallel to the base (1); and a plurality of rollers (223) are rotatably mounted on the inner side wall below the placement groove (222).

4. The armored equipment battlefield damage testing tooling platform according to claim 3, characterized in that: The placement groove (222) is composed of a horizontal section and a vertical section. The lower end of the vertical section is semicircular, and the semicircular shape and the center of the connecting seat (212) are on the same straight line.

Citation Information

Patent Citations

  • Nut screwing device and nut screwing mechanism of nut screwing device

    CN110814716A

  • Device and system for automatically loading nuts for pre-tightener

    CN204094443U

  • VR jia telin

    CN208448614U

  • Positioning device for detecting barrel of gun with medium and small calibers

    CN213481119U

  • Nut screwing device for screw stock

    JP1986131834A