Titanium and titanium alloy scrap material recovery processing line
By constructing a titanium and titanium alloy scrap recycling and processing line, and utilizing technologies such as ultrasonic cleaning, spiral rotary high-pressure spraying, and hot air circulation drying, the problem of low recycling efficiency of titanium and titanium alloy scrap has been solved, achieving high-quality recycling and resource conservation.
Patent Information
- Application Number
- CN202520196510.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-08
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-02-08
AI Technical Summary
Existing technologies have low recycling efficiency for titanium and titanium alloy scrap, resulting in resource waste and difficulty in effectively removing high-density scrap, oxide scrap, and high-density inclusions.
The titanium and titanium alloy scrap recycling line, consisting of equipment such as crushers, cleaning devices, destoners, and color sorters, achieves efficient sorting and cleaning of scrap through processes such as ultrasonic cleaning, spiral rotary high-pressure spray cleaning, hot air circulation drying, and color sorting.
It improves the recycling quality of titanium and titanium alloy scrap, removes high-density and high-specific-weight impurities, realizes the secondary utilization of titanium scrap, saves resources, and reduces enterprise expenses.
Smart Images

Figure CN223875772U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to metal recovery technical field especially relates to a titanium and titanium alloy scrap recovery processing line. BACKGROUND
[0002] At present, the development prospect of titanium industry in China is good, and turning processing is needed in the process of titanium and titanium alloy product processing to meet the product processing requirements, but there are still many recyclable materials in the turned chips, and if discarded directly, it will cause waste. Therefore, titanium and titanium alloy scrap needs to be recycled to save titanium resources.
[0003] Titanium and titanium alloy scrap refers to the mechanical processing scrap produced in the production process of titanium and titanium alloy, such as turning chips, planing and milling chips, and sawdust. About 2000 tons of titanium and titanium alloy scrap is produced in China every year, and the recycling space of titanium and titanium alloy scrap is very large. In the actual recycling process, titanium and titanium alloy scrap needs to be sorted to improve the quality of sorted titanium and titanium alloy scrap, so as to remove high specific gravity scrap, oxidized scrap or high density inclusions such as tungsten-containing metal. CONTENT OF THE UTILITY MODEL
[0004] The utility model aims at the deficiency of prior art and provides a titanium and titanium alloy scrap recovery processing line.
[0005] The utility model is realized by adopting the following technical scheme:
[0006] A titanium and titanium alloy scrap recovery processing line, comprising a crusher, a cleaning device, a stone removing machine, a color sorter, a distributor and an electric control system; the crusher, the cleaning device, the stone removing machine, the color sorter and the distributor are connected with the electric control system for control;
[0007] The cleaning device comprises an ultrasonic cleaner, a high-pressure drum cleaner and a drum dryer, and the crusher is connected with the ultrasonic cleaner, the high-pressure drum cleaner, the drum dryer, the stone removing machine, the color sorter and the distributor in sequence.
[0008] Further, a vibrating feeder, a storage bin A and a Z-type elevator are arranged between the crusher and the ultrasonic cleaner, the crusher is connected with the vibrating feeder, the vibrating feeder is connected with the storage bin A, the storage bin A is connected with the Z-type elevator, and the Z-type elevator is connected with the ultrasonic cleaner; a vibrating screen separator is arranged at the lower end of the storage bin A.
[0009] Further, one end of the drum dryer is connected with the high-pressure drum cleaner, the other end of the drum dryer is connected with a storage bin B, the storage bin B is connected with the stone removing machine, the stone removing machine is connected with the distributor, and the drum dryer is provided with a spiral paddle.
[0010] Further, the stone removing machine is connected with the color sorter, the stone removing machine is connected with the color sorter through the Z-type elevator, and the color sorter is connected with the material distributing machine through the Z-type elevator.
[0011] Further, the material distributing machine comprises a material distributing bin, the material distributing bin is provided with a vibrating feeder, and the material distributing bin is also provided with a discharge port, a sampling unit and a conveying trolley are arranged at the lower end of the discharge port.
[0012] Compared with the prior art, the titanium scrap recycling device has the following beneficial technical effects:
[0013] The titanium scrap is cleaned by the ultrasonic cleaning machine, and the titanium scrap is cleaned by the high-pressure drum cleaning machine in the mode of high-pressure spraying combined with spiral rotation, so that the titanium scrap is cleaned twice, and the standard of titanium scrap recycling is met.
[0014] The ultrasonic cleaning machine generates a large number of energy bubbles in water and on the surface of the titanium scrap, the oil stains on the surface of the titanium scrap are separated by the energy bubbles, and the effect of cleaning the oil stains is achieved.
[0015] The titanium ingot, titanium plate and titanium scrap generated in the machining process are crushed, screened, ultrasonically cleaned, dried, color-selected and distributed for recycling, titanium and titanium alloy scrap recycling is realized, the titanium and titanium alloy scrap recycling quality is improved, waste is prevented, and expenses are saved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 The utility model discloses a structure schematic diagram.
[0017] REFERENCE NUMERALS
[0018] 1, crusher;2, vibrating feeder;3, vibrating screening machine;4, conveying trolley;5, electric control system;6, Z-type elevator;7, storage bin A;8, ultrasonic cleaning machine;9, high-pressure drum cleaning machine;10, drum dryer;11, material distributing machine;12, storage bin B;13, stone removing machine;14, color sorter. DETAILED DESCRIPTION
[0019] To enable those skilled in the art to better understand the technical solutions of this utility model, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of this utility model.
[0020] like Figure 1 As shown, a titanium and titanium alloy scrap recycling line includes a crusher 1, a washing device, a destoner 13, a color sorter 14, a cloth feeder 11, and an electrical control system 5; the crusher 1, the washing device, the destoner 13, the color sorter 14, and the cloth feeder 11 are all connected to the electrical control system 5 for control.
[0021] The cleaning device includes an ultrasonic cleaner 8, a high-pressure drum cleaner 9, and a drum dryer 10. The crusher 1 is connected in sequence to the ultrasonic cleaner 8, the high-pressure drum cleaner 9, the drum dryer 10, the destoner 13, the color sorter 14, and the cloth feeder 11.
[0022] The ultrasonic cleaner 8 generates a large number of energy bubbles in the water and on the surface of the titanium scrap. The energy bubbles separate the oil stains on the surface of the titanium scrap, thereby achieving the function of cleaning the oil stains.
[0023] A vibrating feeder 2, a storage silo A7, and a Z-type elevator 6 are provided between the crusher 1 and the ultrasonic cleaner 8. The crusher 1 is connected to the vibrating feeder 2, the vibrating feeder 2 is connected to the storage silo A7, the storage silo A7 is connected to the Z-type elevator 6, and the Z-type elevator 6 is connected to the ultrasonic cleaner 8. A vibrating screen 3 is provided at the lower end of the storage silo A7.
[0024] One end of the drum dryer 10 is connected to the high-pressure drum washer 9, and the other end of the drum dryer 10 is connected to the storage silo B12. The storage silo B12 is connected to the destoner 13, and the destoner 13 is connected to the cloth spreader 11. The drum dryer 10 is equipped with spiral blades.
[0025] The drum dryer 10 adopts an advanced hot air circulation system. Combined with the rotation of the drum, the drum dryer 10 is designed with a special spiral blade, which can fully disperse the cleaned titanium scrap. The drum dryer 10 is designed with a special hot air circulation system, which can fully dry the titanium scrap.
[0026] A color sorter 14 is also connected between the destoner 13 and the cloth feeder 11. The destoner 13 is connected to the color sorter 14 through the Z-type elevator 6, and the color sorter 14 is connected to the cloth feeder 11 through the Z-type elevator 6.
[0027] The stone removing machine 13 is a special device for removing the impurities such as the waste material and the stone mixed in the titanium scrap material by using the principle of the material specific gravity.
[0028] The color selecting machine 14 is a special device for removing the impurities by using the color difference between the waste material in the titanium scrap material and the recyclable scrap material. The oxidized impurities in the titanium scrap material can be removed by the color selecting machine 14, and the removal rate can reach more than 98%.
[0029] The distributing machine 11 comprises a distributing bin, the distributing bin is provided with a vibrating feeder, and the distributing bin is further provided with a discharge port, a sampling unit at the lower end of the discharge port and a conveying trolley 4.
[0030] The distributing bin can uniformly distribute the titanium scrap material which has reached the standard after treatment, so that the content of the material in each barrel is relatively uniform.
Claims
1. A titanium and titanium alloy turnings reclamation line characterized by, Including crusher (1), cleaning device, stone remover (13), color sorter (14), cloth machine (11) and electric control system (5), the crusher (1), cleaning device, stone remover (13), color sorter (14), cloth machine (11) are all connected with electric control system (5) control connection; The cleaning device includes ultrasonic cleaner (8), high pressure cylinder cleaning machine (9) and cylinder dryer (10), the crusher (1) is sequentially connected with the ultrasonic cleaner (8), high pressure cylinder cleaning machine (9), cylinder dryer (10), stone remover (13), color sorter (14), cloth machine (11).
2. The titanium and titanium alloy scrap recycling line of claim 1, wherein, The crusher (1) is provided with vibration feeder (2), storage bin A (7) and Z type elevator (6) between the ultrasonic cleaner (8), the crusher (1) is connected with the vibration feeder (2), the vibration feeder (2) is connected with the storage bin A (7), the storage bin A (7) is connected with the Z type elevator (6), the Z type elevator (6) is connected with the ultrasonic cleaner (8), the lower end of the storage bin A (7) is provided with vibration screening machine (3).
3. The titanium and titanium alloy scrap recycling line of claim 2, wherein, One end of the cylinder dryer (10) is connected with the high pressure cylinder cleaning machine (9), the other end of the cylinder dryer (10) is connected with storage bin B (12), the storage bin B (12) is connected with stone remover (13), the stone remover (13) is connected with the cloth machine (11), the cylinder dryer (10) is provided with spiral paddle.
4. The titanium and titanium alloy scrap recycling line of claim 3, wherein, The stone remover (13) and cloth machine (11) are also connected with color sorter (14), the stone remover (13) is connected with the color sorter (14) through Z type elevator (6), the color sorter (14) is connected with the cloth machine (11) through Z type elevator (6).
5. The titanium and titanium alloy scrap recycling line of claim 4, wherein, The cloth machine (11) includes cloth bin, the cloth bin is provided with vibration feeder, the cloth bin is also provided with discharge port, the lower end of the discharge port is provided with sampling unit and transport trolley (4).