Feeding mechanism for nickel alloy production

By designing a nickel alloy production loading mechanism, the automatic distance adjustment and loading of the raw material storage box is achieved by using the combination of the toggle rod and the limit rod, which solves the problems of cumbersome operation and low production efficiency in the existing technology, improves production efficiency and reduces the equipment failure rate.

CN222934671UActive Publication Date: 2025-06-03HENAN HENGYI METAL PRODUCTS CO LTD
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Patent Information

Application Number
CN202421903974.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-07
Publication Date
2025-06-03
Estimated Expiration
2034-08-07

AI Technical Summary

Technical Problem

The existing nickel alloy production and loading mechanism is complicated to operate and requires repeated switches, resulting in large workloads and low production efficiency of staff.

Method used

A feeding mechanism for nickel alloy production is designed, including the feeding mechanism body, support frame, distance adjustment frame, toggle plate, return spring and other components. Through the coordination of the toggle rod and the limit rod, the automatic distance adjustment and loading of the raw material storage box is realized to avoid repeated switches.

Benefits of technology

It effectively reduces the workload of staff, improves production efficiency, and reduces equipment failure rate and maintenance costs through cleaning devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a feeding mechanism for nickel alloy production, which comprises a feeding mechanism body, and support frames are arranged on two sides of the feeding mechanism body. When raw material storage boxes are conveyed to the distance adjusting frame through the feeding mechanism body, the front raw material storage box pulls a poke rod along with power of the feeding mechanism body, a connecting rod is matched with a pulling rod, a limiting rod is pulled outwards, and therefore limitation of a poke disc is relieved, the feeding mechanism body drives the raw material storage boxes to move, and the distance adjusting frame is driven to move. The raw material storage box drives the distance adjusting frame to rotate, when the raw material storage box on the distance adjusting frame moves out of the distance adjusting frame, the reset spring pulls the limiting rod back to fix the stirring disc, and when the raw material storage box just moved out of the distance adjusting frame reaches the stirring rod, distance adjusting feeding of the raw material storage box on the feeding mechanism body is achieved according to the same principle. The feeding mechanism body is prevented from being repeatedly opened and closed, the workload of workers is effectively reduced, and the production efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of nickel alloy production equipment, in particular to a feeding mechanism for nickel alloy production. Background Art

[0002] Nickel alloy is an alloy composed of nickel as the base and other elements. Nickel alloy has super mechanical, physical and chemical properties. As long as suitable elements are added to it, its oxidation resistance, corrosion resistance and high temperature strength will be improved. When producing nickel alloy, a feeding mechanism is required to transport the proportioned nickel alloy to the smelting furnace.

[0003] At present, the feeding mechanism used in most factories simply transports the nickel alloy raw materials to the side of the smelting furnace. Nickel alloy ensures the stability of the smelting process and the uniformity of the alloy composition. The raw materials are uniformly added to the smelting furnace in a certain order and proportion. The existing feeding device places the raw materials on the feeding mechanism at random, so that the feeding mechanism needs to be repeatedly opened and closed. This operation is cumbersome, time-consuming and labor-intensive, and thus inconvenient to use. Utility Model Content

[0004] The purpose of the utility model is to provide a feeding mechanism for nickel alloy production to solve the problems raised in the above background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a feeding mechanism for nickel alloy production, comprising a feeding mechanism body, wherein support frames are arranged on both sides of the feeding mechanism body, one side of the support frame is fixedly connected with a connecting block, the inner wall of the connecting block is rotatably connected with a distance adjusting frame, the lower end of the distance adjusting frame is fixedly connected with a toggle plate, the lower end of the support frame is fixedly connected with a mounting platform one, the middle part of the upper end of the mounting platform one is rotatably connected with a limiting rod, one side of the limiting rod is rotatably connected with the outer side wall of the toggle plate, the upper end of the limiting rod is rotatably connected with a return spring, the other end of the return spring is rotatably connected with one side of the lower end of the connecting block, one side of the limiting rod is fixedly connected with a rotating frame, the inner wall of the rotating frame is rotatably connected with a pulling rod, one end of the pulling rod is rotatably connected with a connecting rod, one end of the connecting rod is rotatably connected with a toggle rod, one side of the lower end of the toggle rod is rotatably connected with a U-shaped connecting frame, and one side of the U-shaped connecting frame is fixedly connected to one side of the support frame.

[0006] As a further preferred embodiment of the present technical solution, a plurality of raw material storage boxes are provided at the upper end of the feeding mechanism body, and the outer side walls of the raw material storage boxes are slidably connected to the outer side wall of the toggle rod.

[0007] As a further preferred embodiment of the present technical solution, a second mounting platform is provided at the lower end of the support frame, a cylinder is fixedly mounted at the lower end of the second mounting platform, an output end of the cylinder is rotatably connected to a rotating rod, and one end of the rotating rod is rotatably connected to a clamping frame.

[0008] As a further preferred embodiment of the present technical solution, a slideway is fixedly connected to the other side of the lower end of the second mounting platform, and an outer side wall of the slideway is slidably connected to one side of the clamping frame.

[0009] As a further preferred embodiment of the present technical solution, a cleaning rack is provided at the lower end of the feeding mechanism body, a cleaning brush is fixedly mounted on one side of the cleaning rack, and a storage box is slidably connected to the inner wall of the cleaning rack.

[0010] As a further preferred embodiment of the present technical solution, an atomizing nozzle is fixedly installed on the other side of the cleaning rack, a water pump is provided at the lower end of the cleaning rack, an output end of the water pump is fixedly connected to one side of the atomizing nozzle, a water supply tank is provided on one side of the water pump, and the output end of the water supply tank is fixedly connected to the input end of the water pump.

[0011] The utility model provides a feeding mechanism for nickel alloy production, which has the following beneficial effects:

[0012] (1) When the utility model transports the raw material storage box to the distance adjusting rack through the feeding mechanism body, the front raw material storage box will pull the toggle rod with the power of the feeding mechanism body, and the connecting rod and the pulling rod will cooperate to pull the limit rod outward, thereby releasing the restriction of the toggle disk, and the feeding mechanism body drives the raw material storage box to move, and the raw material storage box drives the distance adjusting rack to rotate. When the raw material storage box on the distance adjusting rack is moved out of the distance adjusting rack, the return spring will pull the limit rod back to fix the toggle disk. When the raw material storage box just moved out of the distance adjusting rack reaches the toggle rod, the same principle is used to realize the distance adjustment and loading of the raw material storage box on the feeding mechanism body, avoiding repeated opening and closing of the feeding mechanism body, effectively reducing the workload of the staff and improving production efficiency.

[0013] (2) The utility model starts the water pump to transport clean water in the water supply tank to the atomizing nozzle, washes the surface of the feeding mechanism body in the atomizing nozzle, and cleans the surface debris of the feeding mechanism body with a cleaning brush into a storage box, thereby preventing the nickel alloy raw material from entering the transmission parts of the feeding mechanism body and affecting the stable feeding of the conveyor platform body, thereby reducing the equipment failure rate and maintenance costs. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] Figure 1 It is a three-dimensional structural schematic diagram of the utility model;

[0015] Figure 2 It is a three-dimensional structural schematic diagram of the installation platform 1 in the utility model;

[0016] Figure 3 This is a schematic three-dimensional structure diagram of the second mounting table in the present utility model;

[0017] Figure 4 This is a schematic diagram showing the connection relationship between the cleaning frame and the water supply tank in the present utility model;

[0018] In the figure: 1. Feeding mechanism body; 2. Support frame; 3. First mounting table; 4. Connecting block; 5. Spacing adjustment frame; 6. U-shaped connecting frame; 7. Poking rod; 8. Water supply tank; 9. Clamping frame; 10. Raw material storage tank; 11. Cleaning frame; 12. Poking disc; 13. Return spring; 14. Rotating frame; 15. Pulling rod; 16. Connecting rod; 17. Limiting rod; 18. Cylinder; 19. Rotating rod; 20. Slideway; 21. Second mounting table; 22. Storage box; 23. Cleaning brush; 24. Atomizing nozzle; 25. Water pump. Specific embodiments

[0019] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model.

[0020] The present utility model provides a technical solution: As Figure 1 - Figure 4As shown in the figure, in this embodiment, a feeding mechanism for nickel alloy production includes a feeding mechanism body 1. On both sides of the feeding mechanism body 1, there are support frames 2. On one side of the support frame 2, there is a fixed connection block 4. Inside the connection block 4, there is a rotatable distance-adjusting frame 5. At the lower end of the distance-adjusting frame 5, there is a fixed connection with a toggle disk 12. At the lower end of the support frame 2, there is a fixed connection with a first mounting table 3. In the middle of the upper end of the first mounting table 3, there is a rotatable limit rod 17. One side of the limit rod 17 is slidably clamped with the outer wall of the toggle disk 12. At the upper end of the limit rod 17, there is a rotatable return spring 13. The other end of the return spring 13 is rotatably connected to one side of the lower end of the connection block 4. On one side of the limit rod 17, there is a fixed connection with a rotating frame 14. Inside the rotating frame 14, there is a rotatable pulling rod 15. One end of the pulling rod 15 is rotatably connected to a connecting rod 16. One end of the connecting rod 16 is rotatably connected to a toggle rod 7. On one side of the lower end of the toggle rod 7, there is a rotatable U-shaped connecting frame 6. One side of the U-shaped connecting frame 6 is fixedly connected to one side of the support frame 2. When the feeding mechanism body 1 transports the raw material storage box 10 to the distance-adjusting frame 5, the previous raw material storage box 10 will pull the toggle rod 7 with the power of the feeding mechanism body 1. Through the cooperation of the connecting rod 16 and the pulling rod 15, the limit rod 17 is pulled outwards, thus releasing the restriction on the toggle disk 12. The feeding mechanism body 1 drives the raw material storage box 10 to move, and the raw material storage box 10 drives the distance-adjusting frame 5 to rotate. While the raw material storage box 10 on the distance-adjusting frame 5 moves out of the distance-adjusting frame 5, the return spring 13 will pull the limit rod 17 back and fix the toggle disk 12. When the raw material storage box 10 that has just moved out of the distance-adjusting frame 5 reaches the toggle rod 7, by the same principle, it realizes the distance-adjusting feeding of the raw material storage box 10 on the feeding mechanism body 1, avoiding repeated opening and closing of the feeding mechanism body 1, effectively reducing the workload of the staff, and improving the production efficiency.

[0021] As Figure 1 shown, there are multiple raw material storage boxes 10 arranged at the upper end of the feeding mechanism body 1. The outer wall of the raw material storage box 10 is slidably connected to the outer wall of the toggle rod 7. The raw materials for producing nickel alloy are divided into multiple parts by the raw material storage box 10 to prevent the produced nickel alloy from being unqualified.

[0022] As Figure 1 and Figure 3 shown, at the lower end of the support frame 2, there is a second mounting table 21. At the lower end of the second mounting table 21, there is a fixed installation of a cylinder 18. The output end of the cylinder 18 is rotatably connected to a rotating rod 19. One end of the rotating rod 19 is rotatably connected to a clamping frame 9. When the cylinder 18 is opened, the raw material storage box 10 is adjusted to be centered on the feeding mechanism body 1, facilitating the quick pouring of the raw materials in the raw material storage box 10 into the melting furnace by the feeding device.

[0023] As Figure 3As shown, a slideway 20 is fixedly connected to the other side of the lower end of the second mounting platform 21 , and an outer wall of the slideway 20 is slidably connected to one side of the clamping frame 9 , and the slideway 20 is used to limit the sliding direction of the clamping frame 9 .

[0024] like Figure 1 and Figure 4 As shown, a cleaning rack 11 is provided at the lower end of the feeding mechanism body 1, a cleaning brush 23 is fixedly installed on one side of the cleaning rack 11, and a storage box 22 is slidably connected to the inner wall of the cleaning rack 11. The debris on the feeding mechanism body 1 is collected and stored through the storage box 22 to avoid waste of resources.

[0025] like Figure 4 As shown, an atomizing nozzle 24 is fixedly installed on the other side of the cleaning frame 11, and a water pump 25 is arranged at the lower end of the cleaning frame 11. The output end of the water pump 25 is fixedly connected with one side of the atomizing nozzle 24. A water supply tank 8 is arranged on one side of the water pump 25. The output end of the water supply tank 8 is fixedly connected with the input end of the water pump 25. The water pump 25 is turned on to transport the clean water in the water supply tank 8 to the atomizing nozzle 24, and the surface of the feeding mechanism body 1 in the atomizing nozzle 24 is flushed, thereby preventing the nickel alloy raw material from entering the transmission components of the feeding mechanism body 1, affecting the stable feeding of the conveying platform body, and reducing the equipment failure rate and maintenance cost.

[0026] The utility model provides a feeding mechanism for nickel alloy production, and the specific working principle is as follows:

[0027] When producing nickel alloy, firstly, the proportioned raw materials are loaded into the raw material storage box 10, and then the raw material storage box 10 is placed on the feeding mechanism body 1, and the feeding mechanism body 1 is opened. When the feeding mechanism body 1 transports the raw material storage box 10 to the distance adjusting frame 5, the front raw material storage box 10 pulls the toggle rod 7 with the power of the feeding mechanism body 1, and the connecting rod 16 cooperates with the pulling rod 15 to pull the limit rod 17 outward, thereby releasing the restriction of the toggle disk 12, and the feeding mechanism body 1 drives the raw material storage box 10 to move, and the raw material storage box 10 drives the distance adjusting frame 5 to rotate, and when the raw material storage box 10 on the distance adjusting frame 5 is moved out from the distance adjusting frame 5 , the reset spring 13 will pull the limit rod 17 back and fix the toggle plate 12. When the raw material storage box 10 just moved out of the distance adjusting frame 5 reaches the toggle rod 7, the same principle is used to realize the distance adjustment and feeding of the raw material storage box 10 on the feeding mechanism body 1. When the raw material storage box 10 with adjusted distance passes through the clamping frame 9, the cylinder 18 is turned on to ensure that the raw material storage box 10 is centered on the feeding mechanism body 1. While the equipment is running, the water pump 25 is turned on to transport the clean water in the water supply tank 8 to the atomizing nozzle 24, and the surface of the feeding mechanism body 1 in the atomizing nozzle 24 is rinsed. The cleaning brush 23 cleans the surface debris of the feeding mechanism body 1 into the storage box 22.

[0028] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present utility model. The scope of the present utility model is defined by the appended claims and their equivalents.

Claims

1. A feeding mechanism for nickel alloy production, comprising a feeding mechanism body (1), characterized in that: Support frames (2) are provided on both sides of the feeding mechanism body (1), one side of the support frame (2) is fixedly connected with a connecting block (4), the inner wall of the connecting block (4) is rotatably connected with a distance adjusting frame (5), the lower end of the distance adjusting frame (5) is fixedly connected with a toggle plate (12), the lower end of the support frame (2) is fixedly connected with a mounting platform (3), the middle part of the upper end of the mounting platform (3) is rotatably connected with a limiting rod (17), one side of the limiting rod (17) is slidably engaged with the outer side wall of the toggle plate (12), and the upper end of the limiting rod (17) is rotatably connected with a reset spring A spring (13), the other end of the return spring (13) is rotatably connected to one side of the lower end of the connecting block (4), one side of the limit rod (17) is fixedly connected to a rotating frame (14), the inner wall of the rotating frame (14) is rotatably connected to a pulling rod (15), one end of the pulling rod (15) is rotatably connected to a connecting rod (16), one end of the connecting rod (16) is rotatably connected to a toggle rod (7), one side of the lower end of the toggle rod (7) is rotatably connected to a U-shaped connecting frame (6), and one side of the U-shaped connecting frame (6) is fixedly connected to one side of the supporting frame (2).

2. A feeding mechanism for nickel alloy production according to claim 1, characterized in that: A plurality of raw material storage boxes (10) are arranged at the upper end of the feeding mechanism body (1), and the outer side walls of the raw material storage boxes (10) are slidably connected to the outer side wall of the toggle rod (7).

3. A feeding mechanism for nickel alloy production according to claim 1, characterized in that: A second mounting platform (21) is provided at the lower end of the support frame (2), a cylinder (18) is fixedly mounted at the lower end of the second mounting platform (21), an output end of the cylinder (18) is rotatably connected to a rotating rod (19), and one end of the rotating rod (19) is rotatably connected to a clamping frame (9).

4. A feeding mechanism for nickel alloy production according to claim 3, characterized in that: A slideway (20) is fixedly connected to the other side of the lower end of the second mounting platform (21), and an outer side wall of the slideway (20) is slidably connected to one side of the clamping frame (9).

5. The feeding mechanism for nickel alloy production according to claim 1, characterized in that: A cleaning frame (11) is provided at the lower end of the feeding mechanism body (1), a cleaning brush (23) is fixedly mounted on one side of the cleaning frame (11), and a storage box (22) is slidably connected to the inner wall of the cleaning frame (11).

6. A feeding mechanism for nickel alloy production according to claim 5, characterized in that: An atomizing nozzle (24) is fixedly mounted on the other side of the cleaning frame (11); a water pump (25) is arranged at the lower end of the cleaning frame (11); an output end of the water pump (25) is fixedly connected to one side of the atomizing nozzle (24); a water supply tank (8) is arranged on one side of the water pump (25); an output end of the water supply tank (8) is fixedly connected to an input end of the water pump (25).