An auxiliary tool for acoustic resonance in-situ mixing of elastomers
By designing auxiliary tooling components such as support frames, U-shaped brackets, and grippers, the problem of difficult assembly and disassembly of the projectile and tooling was solved, enabling an efficient loading process and simplifying the operation procedure.
Patent Information
- Application Number
- CN202411036384.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-31
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2044-07-31
AI Technical Summary
In the existing technology, the disassembly and assembly process of the projectile and tooling is difficult, especially due to the large weight and size of the projectile, which makes manual operation difficult and affects the loading efficiency.
An auxiliary tooling was designed, which includes components such as a support frame, a U-shaped bracket, a gripper, and a riser fixture. Through the lifting mechanism of the support frame and the movable installation of the gripper, the docking, positioning, lifting, assembly, and disassembly of the projectile and the tooling are realized, simplifying the operation process.
It improved the efficiency of disassembling and assembling the projectile and tooling, reduced manual labor, and increased the efficiency of loading explosives.
Smart Images

Figure CN118856988B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to explosive mixing auxiliary tool, specifically relates to a kind of auxiliary tool for acoustic resonance in-situ mixed projectile. BACKGROUND
[0002] Acoustic resonance in-situ mixing process technology is with acoustic resonance mixing system as platform, with projectile as mixing container and realizes the "subversive" process technology of explosive mixing, filling in one body.Due to the pouring link in the traditional process being omitted, its charging efficiency is greatly improved, and charging cost is significantly reduced, and it is expected to become one of the future mainstream mixing and charging processes.
[0003] When projectile is mixed, various shapes and sizes of projectile need to be reliably fixed on the acoustic resonance platform, so the tool is designed to reliably fix the projectile first, then the tool and the projectile are placed on the acoustic resonance platform for mixing, the tool and the projectile are taken off from the acoustic resonance platform after mixing is uniform, and finally the projectile is disassembled from the tool for subsequent process.In actual operation process, due to the large weight and size of the projectile, it is difficult to disassemble the tool and the projectile by manpower. SUMMARY
[0004] In view of the defects or deficiencies of the prior art, the present application provides an auxiliary tool for acoustic resonance in-situ mixed projectile.
[0005] Therefore, the auxiliary tool for acoustic resonance in-situ mixed projectile provided by the present application comprises:
[0006] A support frame is provided with a projectile accommodating space, a riser placing opening is provided at the top of the projectile accommodating space, one side of the projectile accommodating space is of an open structure, and a lifting mechanism is provided at the bottom of the side wall of the projectile accommodating space, and a U-shaped bracket is provided on the lifting mechanism;and a grab is movably mounted on the support frame, which is located in the projectile cavity space and above the U-shaped bracket;
[0007] A riser tool comprises a riser, the main body of the riser is a cylindrical body provided with a cavity, the top of the cavity is provided with a feeding port, and the bottom is provided with a discharging port; a connecting rod is mounted at the bottom of the riser, and a projectile holder is movably mounted at the bottom of the connecting rod; a space for accommodating the projectile is provided between the projectile holder and the riser;
[0008] The riser tool is placed in the riser placing opening and the projectile accommodating space through the open structure.
[0009] Optionally, the U-shaped bracket is slidably mounted on the support frame.
[0010] Optionally, the top of the riser is provided with a lifting ring.
[0011] Optionally, the bottom of the support frame is provided with a roller.
[0012] Optionally, the support frame is a cuboid frame structure assembled by an upper top plate, a lower bottom plate and four main support rods, and the upper top plate, the lower bottom plate and the four main support rods form a space for accommodating the bullet body, and the upper top plate is provided with a riser placing opening.
[0013] Optionally, the bullet body holder is a cylindrical structure, and the top of the bullet body holder is provided with a groove matched with the bullet head.
[0014] Optionally, the bullet body holder is movably mounted on the bottom of the connecting rod by a locking bolt.
[0015] The device of the application can realize the butt joint, positioning, lifting, assembly, disassembly and transportation of the bullet body and the tooling, greatly improving the disassembly and assembly efficiency of the bullet body and the tooling and reducing the labor. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a structural schematic view of the auxiliary tooling for in-situ mixing of the bullet body by sound resonance in the embodiment of the application.
[0017] Figure 2 It is a structural schematic view of the riser tooling in the embodiment of the application.
[0018] Figure 3 It is a preferred mounting structure of the U-shaped support in the embodiment of the application.
[0019] In the figure: 1 - support frame, 2 - roller, 3 - bullet body, 4 - riser tooling, 5 - sliding rail, 6 - pulley, 7 - sliding block, 8 - U-shaped support, 9 - lifting mechanism, 10 - support rod, 11 - clamping, 401 - riser, 402 - connecting rod, 403 - support beam, 404 - locking bolt, 405 - bullet body holder, 406 - lifting ring. DETAILED DESCRIPTION
[0020] Unless otherwise specified, the scientific and technical terms in the present application are understood according to the understanding of the ordinary skilled in the art.
[0021] The top, bottom, horizontal and other directional or positional terms described herein are consistent with the related directions or positions in the drawings of the specification, and it should be noted that the drawings of the specification are intended to explain the application, and the schemes obtained by rotating, exchanging and the like on the basis of the directions or positions of the drawings of the specification by those skilled in the art are within the protection scope of the application.
[0022] The following gives specific embodiments of the application, and it should be noted that the application is not limited to the following specific embodiments, and any equivalent transformation made on the basis of the technical scheme of the present application falls within the protection scope of the application.
[0023] Referring to Figure 1 and 3 As shown in the specific example shown in the drawings, the support frame 1 is a cuboid frame structure, which is assembled by an upper top plate, a lower bottom plate and four main support rods, and the upper top plate, the lower bottom plate and the four main support rods form a body cavity in the middle, and the upper top plate is provided with a riser placing opening; as a preferred example, Figure 1 As shown in the specific example shown in the drawings, the support frame 1 is a cuboid frame structure, which is assembled by an upper top plate, a lower bottom plate and four main support rods, and the upper top plate, the lower bottom plate and the four main support rods form a body cavity in the middle, and the upper top plate is provided with a riser placing opening; as a preferred example, Figure 1 As shown in the specific example shown in the drawings, the support frame 1 is a cuboid frame structure, which is assembled by an upper top plate, a lower bottom plate and four main support rods, and the upper top plate, the lower bottom plate and the four main support rods form a body cavity in the middle, and the upper top plate is provided with a riser placing opening; as a preferred example,
[0024] Referring to Figure 2 As shown in the specific example shown in the drawings, the support frame 1 is a cuboid frame structure, which is assembled by an upper top plate, a lower bottom plate and four main support rods, and the upper top plate, the lower bottom plate and the four main support rods form a body cavity in the middle, and the upper top plate is provided with a riser placing opening; as a preferred example, Figure 2 As shown in the specific example shown in the drawings, the support frame 1 is a cuboid frame structure, which is assembled by an upper top plate, a lower bottom plate and four main support rods, and the upper top plate, the lower bottom plate and the four main support rods form a body cavity in the middle, and the upper top plate is provided with a riser placing opening; as a preferred example,
[0025] When working:
[0026] First, the body 3 is placed vertically on the U-shaped support 8 through the opening of the side of the support frame 1, and the bullet head faces downward, and is clamped on the U-shaped support 8, and the up and down and left and right position of the movable grabber 11 is adjusted to move to the appropriate position above the body, and the grabber supports or fixes the body, so that the body is fixed in the body cavity of the support frame through the U-shaped support and the grabber in advance;
[0027] Then, the riser fixture 4 is moved into the projectile housing space through the opening on the side of the support frame and the top riser placement port, so that the riser 401 is placed in the riser placement port, and the bottom discharge port of the riser is located directly above the tail of the projectile, the projectile support 405 is located directly below the head of the projectile, and the U-shaped bracket 8 is located between the projectile and the projectile support.
[0028] Next, the lifting mechanism 9 moves the projectile upward until the tail of the projectile aligns with the discharge port. Then, the riser 4 and the projectile 3 are fixedly connected (e.g., by bolts). The gripper 11 is then released, and the projectile support 405 is moved upward through the U-shaped opening of the U-shaped bracket 8 to hold the projectile head. The projectile support 405 is then tightened, thus fixing the projectile 3 between the riser 4 and the projectile support 405. Figure 1 (See the state diagram shown);
[0029] Subsequently, the riser with the projectile fixed at the bottom is moved out of the support frame 1 along the original path (during the process, the projectile head and projectile support are moved out from the U-shaped opening of the U-shaped bracket) and moved into the acoustic resonance platform container placement cavity. The riser is located at the opening of the container placement cavity, and the projectile is located inside the container placement cavity for subsequent acoustic resonance in-situ mixing of the projectile.
[0030] Disassembly is performed in reverse order of the above steps.
[0031] In the preferred embodiment, to ensure the effectiveness and stability of the tooling operation, one end of the U-shaped bracket is slidably mounted on the support frame. That is, during the lifting process, the U-shaped bracket can slide on the support frame. Figure 3 As shown, the U-shaped bracket is installed on the support frame via a slide rail 5, a pulley 6, and a sliding block 7 located at the bottom of the support frame. Specifically, the slide rail is vertically fixed to the side wall of the support frame, the sliding block is movably installed on the slide rail via the pulley, and the sliding block can move up and down along the slide rail. One end of the U-shaped bracket extends out and is fixed to the sliding block 7, and the U-shaped bracket and the sliding block are reinforced and fixedly connected by a triangular plate.
[0032] In some other designs, the support frame is equipped with rollers 2 at its bottom.
[0033] In other designs, lifting rings 406 are provided at the top of the riser to facilitate process operation. The illustration shows that lifting rings 406 are provided at all four corners of the top of the riser.
[0034] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present invention, and these improvements and modifications should also be considered within the scope of protection of the present invention.
Claims
1. An auxiliary tool for acoustic resonance in-situ mixing of elastomeric bodies, characterized in that, The application relates to a support frame (1) and a riser tool (4). The support frame (1) is internally provided with a bullet accommodating space, the top of the bullet accommodating space is provided with a riser placing opening, one side of the bullet accommodating space is in an open structure, the bottom of the side wall of the bullet accommodating space is provided with a lifting mechanism (9), the lifting mechanism is provided with a U-shaped support (8) on the top, a grab (11) is movably arranged on the support frame, the grab is located in the bullet accommodating space and above the U-shaped support; The riser tool (4) comprises a riser (401), the riser is a columnar body internally provided with a cavity, the top of the cavity is provided with a feeding opening, and the bottom is provided with a discharging opening; a connecting rod (402) is arranged at the bottom of the riser, a bullet holder (405) is movably arranged at the bottom of the connecting rod, the bullet holder can move up and down, and a space for accommodating bullets is arranged between the bullet holder and the riser; The riser tool is placed in the riser placing opening and the bullet accommodating space through the open structure; The top of the riser is provided with a lifting ring; the support frame is a cubic frame structure which is assembled by an upper top plate, a lower bottom plate and four main supporting rods, the bullet accommodating space is formed in the middle of the upper top plate, the lower bottom plate and the four main supporting rods, and the upper top plate is provided with the riser placing opening.
2. The auxiliary tooling for acoustic resonance in-situ mixing elastomers of claim 1, wherein, The U-shaped support is slidably arranged on the support frame.
3. The auxiliary tooling for acoustic resonance in-situ mixing elastomers of claim 1, wherein, The bottom of the support frame is provided with a rolling wheel.
4. The auxiliary tooling for acoustic resonance in-situ mixing elastomers of claim 1, wherein, The bullet holder is a cylindrical structure, and the top of the bullet holder is provided with a groove matched with a bullet head.
5. The auxiliary tooling for acoustic resonance in-situ mixing elastomers of claim 1, wherein, The bullet holder is movably arranged on the bottom of the connecting rod through a locking bolt. The application further relates to a bullet production device.
Citation Information
Patent Citations
Automatic production line for risers
CN106926357A
Ammunition in-situ mixing and charging production line
CN109631692A