CN-224212950-U - Float high temperature vaporization device
Abstract
The utility model discloses a floating color high-temperature vaporization device which comprises a fixed frame, wherein a connecting mechanism is arranged on the fixed frame and comprises a plurality of bearing seats, spray rollers, fixed pipes and an air inlet pipe, the bearing seats are respectively arranged on the fixed frame, the spray pipes are rotationally communicated in the bearing seats, the fixed pipes are communicated on the bearing seats, one end of the air inlet pipe is connected to external air inlet equipment, and the other end of the air inlet pipe is slidably connected in the fixed pipes.
Inventors
- MAO JIANFENG
- WANG LANFENG
- NI JIANHUA
Assignees
- 南通吉达纺织品有限公司
Dates
- Publication Date
- 20260508
- Application Date
- 20250609
Claims (8)
- 1. The floating color high-temperature vaporization device comprises a fixing frame (1) and is characterized in that a connecting mechanism is arranged on the fixing frame (1), the connecting mechanism comprises a plurality of bearing seats (2), spray rollers (3), fixing pipes (4) and air inlet pipes (5), the bearing seats (2) are arranged, the bearing seats (2) are respectively arranged on the fixing frame (1), the spray pipes are rotationally communicated in the bearing seats (2), the fixing pipes (4) are communicated on the bearing seats (2), one end of each air inlet pipe (5) is connected to external air inlet equipment, the other end of each air inlet pipe (5) is slidably connected in the corresponding fixing pipe (4), a sealing ring (6) is arranged at the lower end of each air inlet pipe (5), each sealing ring (6) is inserted into each fixing pipe (4), a fixing rod (7) is slidably arranged on the side wall of each fixing pipe (4), an annular groove (8) is formed in the side wall of each air inlet pipe (5), and each annular groove (7) is provided with a transverse groove (9).
- 2. The floating color high-temperature vaporization device according to claim 1, wherein each transverse frame (9) is respectively provided with a tension spring (18), and a plurality of tension springs (18) are respectively connected to the side wall of the fixed tube (4).
- 3. The device of claim 2, wherein a plurality of pushing springs (19) are respectively arranged on two sides of each transverse frame (9), and the pushing springs (19) are respectively abutted against the side wall of the air inlet pipe (5).
- 4. A floating color high temperature vaporization device according to claim 3, characterized in that a pushing ring (10) is rotatably arranged on the fixed pipe (4), a shifting block (11) is arranged on the fixed pipe (4), the pushing ring (10) is slidably connected to the shifting block (11), and the lower ends of the pushing ring (10) are abutted against a plurality of transverse frames (9).
- 5. A high-temperature vaporizer for color flooding according to claim 4, wherein said fixed tube (4) is rotatably provided with a release sleeve (12), said release sleeve (12) abutting against a plurality of said transverse frames (9).
- 6. The device for vaporizing floating color at high temperature according to claim 5, wherein the fixed frame (1) is rotatably provided with a follower plate (13), and each follower plate (13) is rotatably provided with a press roller (14).
- 7. A device for vaporizing a high temperature color float according to claim 6, wherein each of the follower plates (13) is provided with a spring (20), and the other end of the spring (20) is connected to the fixing frame (1).
- 8. The floating color high-temperature vaporization device according to claim 7, wherein a speed reducer (15) is arranged on the fixing frame (1), the spray roller (3) is connected to the speed reducer (15), a motor (16) is arranged on the fixing frame (1), a belt (17) is meshed with the extending end of the motor (16), and the belt (17) is meshed with the speed reducer (15).
Description
Float high temperature vaporization device Technical Field The utility model relates to the technical field of float high-temperature vaporization, in particular to a float high-temperature vaporization device. Background In the field of modern industrial production and scientific research, the floating color high-temperature vaporization technology is used as an important material treatment and surface modification method, and is widely applied to high-technology industrial chains such as semiconductor manufacture, precise optical element production, special material coating, surface treatment of advanced ceramic products and the like due to the unique physical and chemical characteristics and treatment effects. The technology can realize the precise regulation and control of the microstructure of the material surface and the formation of a special functional layer by controlling the vapor migration and deposition process of specific substances in a high-temperature environment, and endow products with excellent optical, electrical or physical properties. However, the high-temperature floating color vaporization devices in the market currently face serious technical defects of unreasonable design of a system connected with an external steam source in the practical application process. The traditional device adopts the steam leading-in system of fixed, single interface more, and connection structure is complicated and standardization level is low, leads to in the preparation in-process before equipment starts, and operating personnel need spend a large amount of time and energy and carry out loaded down with trivial details connection work, including steps such as adjustment interface position many times, confirm sealing state repeatedly and preheat balance etc.. The inconvenient connection not only prolongs the production preparation time and reduces the equipment use efficiency, but also increases the misoperation and the safety risk, and particularly when high-temperature and high-pressure steam is processed, the problem that the poor sealing of the interface can cause steam leakage, abnormal temperature fluctuation or unstable pressure and the like, and the consistency and the repeatability of the processing quality are seriously affected. More importantly, the difficulty in connection significantly limits the flexible application of the equipment under various process conditions, so that process parameter adjustment and steam source switching become extremely difficult, and finally the product quality and production efficiency are affected. From the aspects of technical realization and application scene, the steam connection system of the existing float high-temperature vaporization device has four remarkable defects. Firstly, in the aspect of interface standardization, the traditional device adopts a non-standardized special interface design, and the compatibility with a main stream steam system is lacked, so that a user is strictly limited when selecting a steam source, and the user has to rely on matched products or customized switching devices provided by specific suppliers, and the phenomenon of 'supplier locking' not only increases the use cost of equipment, but also limits the degree of freedom of flexibly selecting the best quality steam source according to actual requirements by the user, thereby being unfavorable for process optimization and cost control. Second, the interfaces of existing devices typically employ complex multi-step connection mechanisms in terms of connection operations. Disclosure of utility model Aiming at the problems in the prior art, the utility model provides a floating color high-temperature vaporization device to solve the technical problems in the background art. Technical proposal In order to achieve the purpose, the utility model provides the technical scheme that the floating color high-temperature vaporization device comprises a fixing frame, wherein a connecting mechanism is arranged on the fixing frame and comprises a plurality of bearing seats, spray rollers, fixing pipes and an air inlet pipe, the bearing seats are respectively arranged on the fixing frame, the spray pipes are rotationally communicated in the bearing seats, the fixing pipes are communicated on the bearing seats, one end of the air inlet pipe is connected to external air inlet equipment, the other end of the air inlet pipe is slidingly connected in the fixing pipes, a sealing ring is arranged at the lower end of the air inlet pipe, the sealing ring is inserted into the fixing pipes, fixing rods are slidingly arranged on the side walls of the fixing pipes, annular grooves are formed in the side walls of the air inlet pipe, the fixing rods are inserted into the annular grooves, and transverse frames are arranged on each two fixing rods. The utility model is further characterized in that each transverse frame is respectively provided with a tension spring, and a plurality of tension springs are