Alloy lining plate machining and forming device
By designing an alloy liner forming device with auxiliary feeding and ejection components, the problem of difficult automatic feeding and unloading of existing devices was solved, realizing a fully automatic loading and unloading process and improving production efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2026-03-31
AI Technical Summary
Existing alloy liner forming equipment is not convenient for automatic unloading and feeding after stamping, which requires manual operation and poses a safety problem.
An alloy liner forming device was designed, which includes a mounting frame, a stamping die, an auxiliary feeding assembly, and an ejection assembly. The device uses a drive motor to rotate the feeding roller, which works with a conveyor belt to achieve automatic feeding. Automatic discharge is achieved through a rotary motor and a lead screw structure, thus realizing fully automatic loading and unloading.
The process of loading and unloading alloy liners has been fully automated, improving production efficiency and safety while reducing the need for manual operation.
Smart Images

Figure CN224058469U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of alloy liner processing technology, specifically to an alloy liner processing and forming device. Background Technology
[0002] Liners are materials used to protect the surfaces of equipment or structures from external environmental damage. They are widely used in various fields, including manufacturing, construction, and the power industry. Alloy liners are made of alloy materials, and some alloy liners can be processed using stamping.
[0003] Existing alloy liner processing and forming equipment is not convenient for automatic unloading and feeding after stamping, while manual material handling is cumbersome and lacks safety.
[0004] Therefore, in view of this, we have studied and improved the existing structure and its shortcomings, and proposed an alloy liner processing and forming device. Utility Model Content
[0005] The purpose of this invention is to provide an alloy liner processing and forming device to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: an alloy liner processing and forming device, comprising a mounting frame, a stamping die, and an auxiliary feeding assembly. Conveyor belts are provided on both the left and right sides of the mounting frame, and a stamping die is provided in the middle of the mounting frame. A support plate is provided on the lower side of the stamping die, and the support plate is fixedly connected to the mounting frame. A lower frame is fixed to the lower side of the support plate, and ejection assemblies are installed on both the front and rear sides of the lower frame. An auxiliary feeding assembly is installed above both the front and rear sides of the stamping die. The auxiliary feeding assembly includes a fixed frame, a rotating shaft, feeding rollers, and a drive motor. Feeding rollers are rotatably arranged inside the fixed frame via rotating shafts, and the feeding rollers are equidistant from each other. A drive motor is installed at the top of one of the rotating shafts, and the rotating shafts are connected by a transmission belt.
[0007] Furthermore, the ejection assembly includes a side frame and a rotary motor. The side frame is fixedly connected to the stamping die and the lower frame, and a side frame is installed on the upper inner side of the side frame.
[0008] Furthermore, the ejection assembly also includes a lead screw and a movable sleeve. The lead screw is provided on the lower side of the rotary motor, and the movable sleeve is sleeved on the outside of the lead screw.
[0009] Furthermore, the ejection assembly also includes a connecting block, the movable sleeve is slidably connected to the inner wall of the side frame, and a connecting block is fixed on one side of the movable sleeve, and the lower frame is provided with a slot corresponding to the connecting block.
[0010] Furthermore, the ejection assembly also includes an ejection rod, which is fixed on one side of the connecting block and is located on both sides inside the lower frame. The support plate and the lower wall of the stamping die are provided with circular holes corresponding to the ejection rod.
[0011] Furthermore, a lifting base plate is fixed to the top of the ejector rod, and the lifting base plate is located inside the lower part of the stamping die and is slidably connected to the inner wall surface of the stamping die.
[0012] Furthermore, a stamping assembly is installed on the upper side of the mounting frame and the fixing frame, and the stamping assembly includes a mounting plate and a cylinder. The mounting plate has an inverted "U" shape, and two cylinders are symmetrically installed on the upper side of the mounting plate.
[0013] Furthermore, the stamping assembly also includes a piston rod and a stamping plate. A piston rod is provided on the lower side of the cylinder, penetrating the mounting plate, and a stamping plate is fixed to the bottom of the piston rod, with the stamping plate located on the upper side of the stamping die.
[0014] This utility model provides an alloy liner plate processing and forming device, which has the following beneficial effects:
[0015] This utility model is equipped with an auxiliary feeding component. The drive motor facilitates the rotation of the rotating shaft and the feeding roller. The rotating shafts of several feeding rollers are connected by a transmission belt to enable them to rotate synchronously. The direction of the feeding roller can be adjusted by controlling the direction of the output shaft of the drive motor, so that the feeding roller can pull and feed the alloy liner on the lifting base plate. This facilitates fully automatic loading and unloading of the alloy liner in conjunction with the ejection component and the conveyor belt, eliminating the need for manual material handling. The stamping component facilitates the stamping and forming of the alloy sheet material inside the stamping die.
[0016] This utility model is equipped with an ejection assembly. The lifting base plate inside the stamping die is used to support the alloy liner. A rotary motor is used to drive the rotation of the lead screw. The movable sleeve on the outside of the lead screw is slidably connected to the inner wall of the side frame, thereby driving the movable sleeve to move up and down. The lower frame is provided with a slot for a corresponding connecting block, so that the movable sleeve can drive the ejector rod to move up and down through the connecting block. The two symmetrically arranged ejector rods can raise and lower the lifting base plate to eject the alloy liner on it, thus facilitating material discharge. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of an alloy liner processing and forming device according to the present invention.
[0018] Figure 2 This is a half-sectional view of the stamping die and ejection assembly of an alloy liner processing and forming device according to this utility model.
[0019] Figure 3 This is a schematic diagram of the stamping die and auxiliary feeding assembly of an alloy liner processing and forming device according to this utility model.
[0020] In the diagram: 1. Mounting frame; 2. Conveyor belt; 3. Stamping die; 4. Support plate; 5. Lower frame; 6. Ejection assembly; 601. Side frame; 602. Rotary motor; 603. Lead screw; 604. Moving sleeve; 605. Connecting block; 606. Ejection rod; 7. Lifting base plate; 8. Auxiliary feeding assembly; 801. Fixed frame; 802. Rotating shaft; 803. Feeding roller; 804. Drive motor; 9. Stamping assembly; 901. Mounting bracket plate; 902. Cylinder; 903. Piston rod; 904. Stamping plate. Detailed Implementation
[0021] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.
[0022] like Figure 1 As shown, an alloy liner forming device includes a mounting frame 1, a stamping die 3, and an auxiliary feeding assembly 8. Conveyor belts 2 are provided on both the left and right sides of the mounting frame 1, and the stamping die 3 is located in the middle of the mounting frame 1. A stamping assembly 9 is mounted on the upper side of the mounting frame 1 and the fixing frame 801. The stamping assembly 9 includes a mounting plate 901 and cylinders 902. The mounting plate 901 has an inverted "U" shape, and two cylinders 902 are symmetrically mounted on the upper side of the mounting plate 901. Component 9 also includes a piston rod 903 and a stamping plate 904. The piston rod 903, which passes through the mounting plate 901, is provided on the lower side of the cylinder 902. The stamping plate 904 is fixed to the bottom of the piston rod 903 and is located on the upper side of the lower stamping die 3. The cylinder 902 and the piston rod 903 facilitate the lifting and lowering of the stamping plate 904. The stamping plate 904 is positioned corresponding to the lower stamping die 3, enabling it to stamp and form the alloy sheet material inside the lower stamping die 3.
[0023] like Figures 2-3As shown, a support plate 4 is provided on the lower side of the stamping die 3, and the support plate 4 is fixedly connected to the mounting frame 1. A lower frame 5 is fixed on the lower side of the support plate 4, and ejection components 6 are installed on both the front and rear sides of the lower frame 5. An auxiliary feeding component 8 is installed on the upper front and rear sides of the stamping die 3. The auxiliary feeding component 8 includes a fixed frame 801, a rotating shaft 802, a feeding roller 803, and a drive motor 804. The feeding roller 803 is rotatably arranged inside the fixed frame 801 through the rotating shaft 802, and the feeding rollers 803 are evenly spaced. A drive motor 804 is installed at the top of one of the rotating shafts 802. The drive motor 804 and the rotating shafts 802 are connected by a transmission belt; the drive motor 804 facilitates the rotation of the rotating shafts 802 and the feeding rollers 803. The rotating shafts 802 of several feeding rollers 803 are connected by a transmission belt so that they can rotate synchronously. The direction of the feeding rollers 803 can be adjusted by controlling the direction of the output shaft of the drive motor 804, so that the feeding rollers 803 can pull and feed the alloy liner on the lifting base plate 7, so as to cooperate with the ejector assembly 6 and the conveyor belt 2 to automatically load and unload the alloy liner without manual material handling.
[0024] like Figure 2 As shown, the ejector assembly 6 includes a side frame 601 and a rotary motor 602. The side frame 601 is fixedly connected to the lower stamping die 3 and the lower frame 5. The side frame 601 is installed on the upper inner side of the side frame 601. The ejector assembly 6 also includes a lead screw 603 and a movable sleeve 604. The lead screw 603 is provided on the lower side of the rotary motor 602, and the movable sleeve 604 is sleeved on the outside of the lead screw 603. The ejector assembly 6 also includes a connecting block 605. The movable sleeve 604 is slidably connected to the inner wall of the side frame 601, and the connecting block 605 is fixed on one side of the movable sleeve 604. The lower frame 5 is provided with a slot corresponding to the connecting block 605. The ejector assembly 6 also includes an ejector rod 606. The ejector rod 606 is fixed on one side of the connecting block 605, and the ejector rod 606 is located on both sides inside the lower frame 5. The support plate 4 and the lower stamping die are also included. The lower wall of die 3 has a circular hole corresponding to the ejector rod 606; the top of the ejector rod 606 is fixed with a lifting base plate 7, and the lifting base plate 7 is located inside the lower side of the stamping die 3 and is slidably connected to the inner wall of the stamping die 3; the lifting base plate 7 inside the stamping die 3 is used to support the alloy liner plate, and the rotation of the lead screw 603 is easily driven by the rotary motor 602. The movable sleeve 604 on the outer side of the lead screw 603 is slidably connected to the inner wall of the side frame 601, so that the movable sleeve 604 can move up and down. The lower frame 5 is provided with a slot corresponding to the connecting block 605, so that the movable sleeve 604 can drive the ejector rod 606 to move up and down through the connecting block 605. The two symmetrically arranged ejector rods 606 can raise and lower the lifting base plate 7 to eject the alloy liner plate on it, thus facilitating material discharge.
[0025] In summary, as Figures 1-3As shown, in use, the alloy liner forming device first feeds the raw material via conveyor belt 2, allowing it to enter the upper side of the lifting base plate 7 in the lower stamping die 3. Then, cylinder 902 and piston rod 903 drive the stamping plate 904 to rise and fall, causing the stamping plate 904 to stamp the alloy sheet material inside the lower stamping die 3. After stamping, rotary motor 602 drives the lead screw 603 to rotate, thereby causing the moving sleeve 604 to move upward. The moving sleeve 604 can then drive the ejector rod 606 to move upward via connecting block 605. Finally, the two symmetrically arranged ejector rods 606 lift the lifting base plate 7. The device is raised, and at this time, the rotating shaft 802 and the feeding roller 803 can be driven to rotate by the drive motor 804. The rotating shafts 802 of several feeding rollers 803 are connected by a transmission belt so that they can rotate synchronously. Then, the direction of the feeding roller 803 can be adjusted by controlling the direction of the output shaft of the drive motor 804, so that the feeding roller 803 pulls and feeds the alloy liner on the lifting base plate 7, moving it to the conveyor belt 2 on the other side. In this way, the alloy liner can be automatically loaded and unloaded in conjunction with the ejector assembly 6 and the conveyor belt 2, without the need for manual material handling. Then the lifting base plate 7 is lowered back, and the process of using the alloy liner processing and forming device is completed.
[0026] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.
Claims
1. An alloy strip processing forming device comprising a mounting frame (1), a stamping lower die (3) and an auxiliary feeding assembly (8), characterized in that, The left and right sides of the mounting frame (1) are provided with conveying belts (2), and the middle part of the mounting frame (1) is provided with a stamping lower die (3), the lower side of the stamping lower die (3) is provided with a supporting plate (4), and the supporting plate (4) is fixedly connected with the mounting frame (1), the lower side of the supporting plate (4) is fixedly connected with a lower frame (5), and the front and rear sides of the lower frame (5) are provided with ejection assemblies (6), the upper sides of the front and rear sides of the stamping lower die (3) are provided with auxiliary feeding assemblies (8), and the auxiliary feeding assemblies (8) comprise a fixed frame (801), a rotating shaft (802), a feeding rod (803) and a driving motor (804), the feeding rod (803) is rotatably arranged in the fixed frame (801) through the rotating shaft (802), and the feeding rods (803) are arranged at equal distances, and the top end of one of the rotating shafts (802) is provided with the driving motor (804), and the rotating shafts (802) are drivingly connected through transmission belts.
2. An alloy strip processing and forming apparatus as defined in claim 1, wherein, The ejection assembly (6) comprises a side frame (601) and a rotating motor (602), the side frame (601) is fixedly connected with the stamping lower die (3) and the lower frame (5), and the inside of the side frame (601) is provided with a side frame (601).
3. An alloy strip processing and forming apparatus as defined in claim 2 wherein, The ejection assembly (6) further comprises a lead screw (603) and a moving sleeve (604), the lower side of the rotating motor (602) is provided with a lead screw (603), and the outside of the lead screw (603) is provided with a moving sleeve (604).
4. An alloy strip processing and forming apparatus as defined in claim 3 wherein, The ejection assembly (6) further comprises a link block (605), the moving sleeve (604) is slidably connected with the inner wall of the side frame (601), and the side of the moving sleeve (604) is fixedly connected with the link block (605), and the lower frame (5) is provided with a slot corresponding to the link block (605).
5. An alloy strip processing and forming apparatus as defined in claim 4 wherein, The ejection assembly (6) further comprises an ejection rod (606), the side of the link block (605) is fixedly connected with the ejection rod (606), and the ejection rod (606) is located on the inside of the lower frame (5), and the lower wall of the supporting plate (4) and the stamping lower die (3) is provided with a circular hole corresponding to the ejection rod (606).
6. An alloy strip processing and forming apparatus as defined in claim 5 wherein, The top of the ejection rod (606) is fixedly connected with a lifting bottom plate (7), and the lifting bottom plate (7) is located on the inside of the stamping lower die (3) and is slidably connected with the inner wall of the stamping lower die (3).
7. An alloy liner plate processing and forming apparatus according to claim 1 wherein, The upper sides of the mounting frame (1) and the fixed frame (801) are provided with a stamping assembly (9), and the stamping assembly (9) comprises a mounting rack plate (901) and a cylinder (902), the mounting rack plate (901) is in an inverted "U" shape, and two cylinders (902) are symmetrically mounted on the upper side of the mounting rack plate (901).
8. An alloy strip processing and forming apparatus as defined in claim 7 wherein, The stamping assembly (9) further comprises a piston rod (903) and a stamping plate (904), the lower side of the cylinder (902) is provided with a piston rod (903) penetrating through the mounting rack plate (901), and the bottom of the piston rod (903) is fixedly connected with a stamping plate (904), and the stamping plate (904) is located on the upper side of the stamping lower die (3).