A device and method for corrosion-resistant and wear-resistant treatment of the surface of waterproof flax spindles.
By designing a combined structure for corrosion-resistant and wear-resistant treatment devices, the problem of easy damage to flax waterproof spindles during movement was solved, and corrosion-resistant treatment was achieved immediately after wear resistance, thus improving processing efficiency and stability.
Patent Information
- Application Number
- CN202311811569.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-27
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2043-12-27
AI Technical Summary
Existing corrosion-resistant and wear-resistant treatment devices for the surface of waterproof flax spindles are prone to accidental damage during movement, making it impossible to quickly perform wear-resistant treatment followed by corrosion-resistant treatment, thus reducing processing efficiency.
A device comprising a corrosion-resistant mechanism and a wear-resistant mechanism was designed. Through the combination of a limiting component, a transmission component, a moving component, a spraying component, a changing component, a fixing component, a cleaning component, and a sandblasting component, a flax waterproof spindle was made to undergo corrosion-resistant treatment immediately after wear-resistant treatment.
This improved the efficiency of corrosion and wear-resistant treatment on the surface of waterproof flax spindles, ensured the stability and integrity of the processing, avoided accidental damage, and improved processing efficiency.
Smart Images

Figure CN117773789B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of flax spindle processing technology, and specifically relates to a device and method for treating the surface of waterproof flax spindles with corrosion resistance and wear resistance. Background Technology
[0002] The corrosion and wear resistant treatment device for the surface of waterproof flax spindles is a specialized device for treating the surface of waterproof flax spindles with corrosion and wear resistance. This device typically employs chemical corrosion prevention methods and high-temperature treatment processes. By coating corrosion resistant agents and abrasion-resistant materials, a coating with excellent corrosion and wear resistance is formed to improve the service life and performance of the waterproof flax spindles.
[0003] Existing corrosion-resistant and wear-resistant treatment devices and methods for flax waterproof spindles have the following drawbacks: When processing flax waterproof spindles for corrosion-resistant and wear-resistant treatment, it is necessary to move the sandblasted and wear-resistant treated flax waterproof spindles into the corrosion-resistant spraying equipment. The moving process is not only time-consuming, but also can cause unpredictable accidental damage to the flax waterproof spindles during the moving process. It is impossible to quickly perform corrosion-resistant treatment directly after wear-resistant treatment on the flax waterproof spindles, which reduces the processing efficiency of flax waterproof spindles. Summary of the Invention
[0004] The purpose of this invention is to address the existing corrosion-resistant and wear-resistant treatment device and method for the surface of waterproof flax spindles. Its advantages are: it has a structure that allows for rapid corrosion-resistant treatment after wear-resistant treatment of waterproof flax spindles, and can quickly perform wear-resistant treatment followed by corrosion-resistant treatment, thereby improving the processing efficiency of waterproof flax spindles.
[0005] The above-mentioned technical objective of the present invention is achieved through the following technical solution: a corrosion-resistant and wear-resistant treatment device for the surface of waterproof flax spindles, comprising a corrosion-resistant mechanism and a wear-resistant mechanism, wherein the wear-resistant mechanism is bolted to the bottom of the corrosion-resistant mechanism, the corrosion-resistant mechanism includes a limiting component, a transmission component, a moving component, and a spraying component, wherein the transmission component is bolted to the limiting component, the moving component is bolted to the front side of the limiting component, and the spraying component is bolted to the rear side of the moving component, the wear-resistant mechanism includes a changing component, a fixing component, a cleaning component, and a sandblasting component, wherein the changing component is bolted to the bottom of the limiting component, the fixing component is bolted to the front side of the changing component, the cleaning component is bolted to the front side of the changing component, the rear side of the cleaning component is close to the front side of the fixing component, and the sandblasting component is bolted to the top of the changing component.
[0006] By adopting the above technical solution, and by setting up a corrosion-resistant mechanism and a wear-resistant mechanism, the wear-resistant mechanism can perform Namo-ji treatment on the flax waterproof spindle, and the corrosion-resistant mechanism can perform corrosion-resistant treatment on the flax waterproof spindle immediately after the wear-resistant mechanism completes the wear-resistant treatment on the flax waterproof spindle.
[0007] The present invention is further configured such that: the limiting component includes a storage tank, a limiting sleeve and a tank door, the limiting sleeve is bolted to the front side of the storage tank, and the tank door is slidably connected to the right side of the storage tank.
[0008] By adopting the above technical solution and setting a limiting component, the storage tank can provide processing space for the corrosion and wear resistant treatment of the flax waterproof spindles. The limiting sleeve can limit the movement of the moving components, and the tank door can allow the user to open and close the storage tank so as to facilitate the user to place and take out the flax waterproof spindles.
[0009] The present invention is further configured such that: the transmission assembly includes a servo motor, a transmission rod, and a limiting plate; the servo motor is bolted to the top of the storage tank; the transmission rod is rotatably connected to the top of the storage tank; the top of the transmission rod is bolted to the output end of the bottom of the servo motor; and the limiting plate is bolted to the bottom of the transmission rod.
[0010] By adopting the above technical solution and setting up a transmission component, the servo motor can rotate the transmission rod after being powered on and started. The transmission rod can rotate the limit plate when it rotates. The limit plate can cooperate with the fixing component to limit the flax waterproof spindle.
[0011] The invention is further configured such that: the moving component includes a drive motor, a conveying screw seat, and a conveying plate; the drive motor is bolted to the top of the limiting sleeve; the conveying screw seat is rotatably connected to the bottom of the inner side of the limiting sleeve; the top of the conveying screw seat is bolted to the output end of the bottom of the drive motor; the conveying plate is threadedly connected to the surface of the conveying screw seat; and the rear side of the conveying plate penetrates the front side of the storage tank and is slidably connected to the storage tank.
[0012] By adopting the above technical solution, and by setting up a moving component, the drive motor can rotate the conveyor screw seat after being powered on and started. The conveyor screw seat can drive the conveyor plate to move up and down when it rotates. The conveyor plate can drive the spraying component to move up and down when it moves up and down, so that the spraying component can spray the surface of the flax waterproof spindle evenly.
[0013] The present invention is further configured such that: the spraying assembly includes a transmission telescopic tube, a pressurized liquid pump and a spraying ring, the transmission telescopic tube is connected to the rear side of the top of the storage tank, the bottom of the transmission telescopic tube passes through the storage tank and is connected to the pressurized liquid pump, the front side of the pressurized liquid pump is connected to the spraying ring, and the front side of the spraying ring is bolted to the rear side of the conveyor plate.
[0014] By adopting the above technical solution, by setting up a spraying component, the transmission telescopic pipe can be connected to an external corrosion-resistant coating conveying device, and the corrosion-resistant coating can be conveyed to a pressurized liquid pump. After being powered on and started, the pressurized liquid pump can pressurize and convey the corrosion-resistant coating into the spraying ring. The spraying ring is an existing spraying device composed of a ring pipe and a nozzle structure, which can spray corrosion-resistant coating onto the surface of flax waterproof spindles.
[0015] The present invention is further configured such that: the transformation component includes a support plate, a transformation hydraulic rod, and a transformation fixing seat; the support plate is bolted to the bottom of the storage tank; the transformation hydraulic rod is bolted to the rear side of the bottom of the support plate; and the transformation fixing seat is bolted to the output end of the top of the transformation hydraulic rod.
[0016] By adopting the above technical solution, the carrier plate can support the transformation hydraulic rod by setting the transformation component. After being powered on and started, the transformation hydraulic rod can be driven up and down. When the transformation hydraulic rod moves up and down, it can drive the sandblasting component, thereby changing the position of the sandblasting component.
[0017] The present invention is further configured such that: the fixing component includes a fixing sleeve, a limiting sleeve, and a fixing hydraulic rod, the fixing hydraulic rod is bolted to the bottom of the bearing plate, the limiting sleeve is bolted to the output end of the top of the fixing hydraulic rod, and the fixing sleeve is rotatably connected to the inner side of the limiting sleeve.
[0018] By adopting the above technical solution, by setting a fixing component, the fixing sleeve can limit the flax waterproof spindle and cooperate with the limiting plate to fix the flax waterproof spindle. The limiting sleeve can limit the rotation of the fixing sleeve. The fixing hydraulic rod can drive the limiting sleeve and the fixing sleeve to move the flax waterproof spindle upward after being energized and started.
[0019] The present invention is further configured such that: the cleaning assembly includes an electromagnet, a scraping rotating rod, and a limiting hydraulic rod, the limiting hydraulic rod being bolted to the front side of the bottom of the support plate, the scraping rotating rod being bolted to the output end of the top of the limiting hydraulic rod, and the electromagnet being bolted to the inner side of the scraping rotating rod.
[0020] By adopting the above technical solution and setting up a cleaning component, the electromagnet can adsorb iron sand on the surface of the flax waterproof spindle after being energized and started, further improving the cleaning ability of the scraping rod on the flax waterproof spindle. The scraping rod can scrape off the iron sand remaining on the surface of the flax waterproof spindle, thereby preventing iron sand from remaining on the surface of the flax waterproof spindle and affecting the effect of corrosion resistance treatment. The limiting hydraulic rod can move the scraping rod and the electromagnet to the surface of the flax waterproof spindle after being energized and started, which facilitates a comprehensive cleaning of the surface of the flax waterproof spindle.
[0021] The present invention is further configured such that: the sandblasting assembly includes a sandblasting can body, a sandblasting head, and a sealing cover; the sandblasting can body is bolted to the top of the changing fixing base; the sandblasting head is connected to the inner side of the sandblasting can body; the sealing cover is bolted to the surface of the servo motor; and the surface of the sealing cover is in contact with the top of the inner side of the sandblasting can body.
[0022] By adopting the above technical solution, and by setting up a sandblasting assembly, the sandblasting tank body is an existing sandblasting equipment with its own liquid conveying and pressurization structure. After connecting an external iron sand polishing liquid conveying device, the iron sand polishing liquid can be conveyed to the sandblasting head. The sandblasting head can spray the iron sand polishing liquid onto the surface of the flax waterproof spindle, and perform wear-resistant treatment on the surface of the flax waterproof spindle. The sealing cap can fit snugly with the sandblasting tank body, so that the sandblasting tank body forms a sealed state, preventing iron sand from accidentally seeping out. Moreover, the sandblasting tank body can be moved downward with the change of hydraulic rod, so that the flax waterproof spindle is exposed within the spraying range of the spraying ring.
[0023] A method for treating the surface of waterproof flax spindles with corrosion and wear resistance includes the following steps:
[0024] S1. Corrosion-resistant spraying process: First, open the tank door and place the flax waterproof spindle to be processed into the wear-resistant mechanism for locking. Then, power on and start the wear-resistant mechanism, which will push the flax waterproof spindle upwards, locking it with the bottom of the top limit plate. Then, close the tank door and connect the external transmission telescopic tube to the corrosion-resistant coating supply equipment. Then, power on and start the corrosion-resistant mechanism, which will drive the transmission rod to rotate and rotate the limit plate. The limit plate will then drive the flax waterproof spindle to rotate. After that, the pressurized liquid pump will pressurize the corrosion-resistant coating and spray it onto the surface of the flax waterproof spindle from the spraying ring. The transmission motor will also rotate the conveyor screw seat, which will drive the conveyor plate to gradually move the spraying ring from top to bottom until the surface of the flax waterproof spindle is coated with the corrosion-resistant coating.
[0025] S2. Abrasion-resistant sandblasting: First, place the flax waterproof spindle inside the fixing sleeve. Then, energize and start the abrasion-resistant mechanism. The fixing hydraulic rod will drive the limiting sleeve to push the fixing sleeve upward until the top of the sandblasting can body is in contact with the corrosion-resistant mechanism. Then, change the hydraulic rod to move the sandblasting can body upward until the top of the sandblasting can body is engaged with the sealing cover. Then, connect the iron sand grinding fluid delivery device to the outside of the sandblasting can body. After the corrosion-resistant mechanism is energized and started, it will drive the flax waterproof spindle to rotate. Then, the sandblasting can body will draw the iron sand grinding fluid. Once delivered to the sandblasting head, the iron sand abrasive liquid is pressurized by the sandblasting tank body and sandblasts the surface of the flax waterproof spindle until the surface of the flax waterproof spindle is processed to the required wear-resistant effect. Then, the limiting hydraulic rod will push the scraping rod upward, and the scraping rod will scrape off the iron sand on the surface of the flax waterproof spindle. The electromagnet will attract the iron sand until the surface of the flax waterproof spindle is completely cleaned. Then, the hydraulic rod will be changed to lower the sandblasting tank body, exposing the flax waterproof spindle to the spraying range of the corrosion-resistant mechanism.
[0026] In summary, the present invention has the following beneficial effects:
[0027] 1. By setting up a corrosion-resistant mechanism, the limiting component can support and limit the transmission component and the wear-resistant mechanism. The transmission component can limit the top of the flax waterproof spindle and drive the flax waterproof spindle to rotate. The moving component can drive the spraying component to move up and down, so that the spraying component can spray the flax waterproof spindle completely. The spraying component can spray the surface of the flax waterproof spindle with a corrosion-resistant coating. The corrosion-resistant treatment can be carried out immediately after the wear-resistant treatment of the flax waterproof spindle, which greatly improves the efficiency of corrosion-resistant and wear-resistant treatment of the flax spindle surface.
[0028] 2. By setting up a wear-resistant mechanism, the position of the sandblasting component can be changed, thereby changing the processing state of the sandblasting component on the flax waterproof spindle and the machining state of the corrosion-resistant mechanism on the flax waterproof spindle for corrosion resistance treatment. The fixing component can limit the flax waterproof spindle and the corrosion-resistant mechanism, increasing the stability of the flax waterproof spindle during processing. The cleaning component can scrape and clean the iron filings remaining on the surface of the flax waterproof spindle. The sandblasting component can spray iron sand polishing fluid on the surface of the flax waterproof spindle, thereby performing wear-resistant treatment on the surface of the flax waterproof spindle. After the wear-resistant treatment of the flax waterproof spindle is completed, the corrosion-resistant mechanism can immediately perform corrosion-resistant treatment on the flax waterproof spindle, which greatly improves the efficiency of corrosion and wear resistance treatment of the flax waterproof spindle. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the overall structure of the present invention;
[0030] Figure 2 This is a schematic diagram of the limiting component structure of the present invention;
[0031] Figure 3 This is a schematic diagram of the transmission component structure of the present invention;
[0032] Figure 4 This is a schematic diagram showing the connection between the moving component and the spraying component of the present invention;
[0033] Figure 5 This is a schematic diagram of the moving component structure of the present invention;
[0034] Figure 6 This is a schematic diagram of the spraying assembly structure of the present invention;
[0035] Figure 7 This is a schematic diagram of the wear-resistant mechanism structure of the present invention;
[0036] Figure 8 This is a schematic diagram of the transformation component, fixing component, and cleaning component of the present invention;
[0037] Figure 9 This is a schematic diagram of the sandblasting assembly structure of the present invention;
[0038] Figure 10 This is a schematic diagram illustrating the method of using the present invention.
[0039] Reference numerals: 1. Corrosion-resistant mechanism; 101. Limiting component; 1011. Storage tank; 1012. Limiting sleeve; 1013. Tank door; 102. Transmission component; 1021. Servo motor; 1022. Transmission rod; 1023. Limiting plate; 103. Moving component; 1031. Transmission motor; 1032. Conveying screw seat; 1033. Conveying plate; 104. Spraying component; 1041. Transmission telescopic pipe; 1042. Pressurized liquid pump; 1043. Spraying ring; 2. Wear-resistant mechanism; 201. Transformation assembly; 2011. Bearing plate; 2012. Transformation hydraulic rod; 2013. Transformation fixing seat; 202. Fixing assembly; 2021. Fixing sleeve; 2022. Limiting sleeve; 2023. Fixing hydraulic rod; 203. Cleaning assembly; 2031. Electromagnet; 2032. Scraping rotating rod; 2033. Limiting hydraulic rod; 204. Sandblasting assembly; 2041. Sandblasting tank body; 2042. Sandblasting head; 2043. Sealing cover. Detailed Implementation
[0040] The present invention will be further described in detail below with reference to the accompanying drawings.
[0041] Example 1:
[0042] refer to Figure 1-6A corrosion-resistant and wear-resistant treatment device for the surface of a waterproof flax spindle includes a corrosion-resistant mechanism 1. The corrosion-resistant mechanism 1 includes a limiting component 101, a transmission component 102, a moving component 103, and a spraying component 104. The transmission component 102 is bolted to the limiting component 101, the moving component 103 is bolted to the front side of the limiting component 101, and the spraying component 104 is bolted to the rear side of the moving component 103. By setting the corrosion-resistant mechanism 1, the limiting component 101 can support and limit the transmission component 102 and the wear-resistant mechanism 102. The transmission component 102 can limit the top of the waterproof flax spindle and drive the waterproof flax spindle to rotate. The moving component 103 can drive the spraying component 104 to move up and down, so that the spraying component 104 can spray the waterproof flax spindle completely. The spraying component 104 can spray a corrosion-resistant coating on the surface of the waterproof flax spindle. The corrosion-resistant treatment can be performed immediately after the wear-resistant treatment of the waterproof flax spindle, which greatly improves the efficiency of corrosion-resistant and wear-resistant treatment of the surface of the flax spindle.
[0043] like Figure 2 As shown, the limiting component 101 includes a storage tank 1011, a limiting sleeve 1012, and a tank door 1013. The limiting sleeve 1012 is fastened to the front side of the storage tank 1011, and the tank door 1013 is slidably connected to the right side of the storage tank 1011. By setting the limiting component 101, the storage tank 1011 can provide processing space for the corrosion-resistant and wear-resistant treatment of the flax waterproof spindles. The limiting sleeve 1012 can limit the movement of the moving component 103. The tank door 1013 allows the user to open and close the storage tank 1011 so that the user can place and take out the flax waterproof spindles.
[0044] like Figure 3 As shown, the transmission assembly 102 includes a servo motor 1021, a transmission rod 1022, and a limiting plate 1023. The servo motor 1021 is bolted to the top of the storage tank 1011, the transmission rod 1022 is rotatably connected to the top of the storage tank 1011, the top of the transmission rod 1022 is bolted to the output end at the bottom of the servo motor 1021, and the limiting plate 1023 is bolted to the bottom of the transmission rod 1022. By setting the transmission assembly 102, the servo motor 1021 can rotate the transmission rod 1022 after being powered on and started. The transmission rod 1022 can rotate the limiting plate 1023 when rotating. The limiting plate 1023 can cooperate with the fixing assembly 202 to limit the waterproof flax spindle.
[0045] like Figure 5As shown, the moving component 103 includes a drive motor 1031, a conveying screw seat 1032, and a conveying plate 1033. The drive motor 1031 is bolted to the top of the limiting sleeve 1012. The conveying screw seat 1032 is rotatably connected to the bottom of the inner side of the limiting sleeve 1012. The top of the conveying screw seat 1032 is bolted to the output end of the bottom of the drive motor 1031. The conveying plate 1033 is threadedly connected to the surface of the conveying screw seat 1032. The rear side of the conveying plate 1033 penetrates the front side of the storage tank 1011 and is slidably connected to the storage tank 1011. By setting the moving component 103, the drive motor 1031 can rotate the conveying screw seat 1032 after being powered on and started. When the conveying screw seat 1032 rotates, it can drive the conveying plate 1033 to move up and down. When the conveying plate 1033 moves up and down, it can drive the spraying component 104 to move up and down, so that the spraying component 104 can spray the surface of the flax waterproof spindle evenly.
[0046] like Figure 6 As shown, the spraying assembly 104 includes a transmission telescopic pipe 1041, a pressurized pump 1042, and a spray ring 1043. The transmission telescopic pipe 1041 is connected to the rear side of the top of the storage tank 1011. The bottom of the transmission telescopic pipe 1041 passes through the storage tank 1011 and is connected to the pressurized pump 1042. The front side of the pressurized pump 1042 is connected to the spray ring 1043. The front side of the spray ring 1043 is bolted to the rear side of the conveyor plate 1033. By setting the spraying assembly 104, the transmission telescopic pipe 1041 can be connected to an external corrosion-resistant coating conveying device and convey the corrosion-resistant coating to the pressurized pump 1042. After being powered on and started, the pressurized pump 1042 can pressurize the corrosion-resistant coating and convey it into the spray ring 1043. The spray ring 1043 is an existing spraying device composed of a ring pipe and a nozzle structure, which can spray corrosion-resistant coating onto the surface of flax waterproof spindles.
[0047] Brief description of the usage process: First, open the tank door 1013, place the flax waterproof spindle to be processed into the wear-resistant mechanism 2 for locking, then power on and start the wear-resistant mechanism 2. The wear-resistant mechanism 2 will push the flax waterproof spindle upward, locking it against the bottom of the top limit plate 1023. Then close the tank door 1013, connect the external corrosion-resistant coating to the transmission telescopic tube 1041 to the equipment, then power on and start the corrosion-resistant mechanism 1. The servo motor 1021 will drive the transmission rod 1. Rotate 022 and the limit plate 1023 will rotate, which will drive the flax waterproof spindle to rotate. Then, the pressurized liquid pump 1042 will pressurize the corrosion-resistant coating and spray it from the spray ring 1043 onto the surface of the flax waterproof spindle. The drive motor 1031 will rotate the conveyor screw seat 1032, which will drive the conveyor plate 1033 to gradually move the spray ring 1043 from top to bottom until the surface of the flax waterproof spindle is coated with the corrosion-resistant coating.
[0048] Example 2:
[0049] refer to Figure 7-9 A corrosion-resistant and wear-resistant treatment device for the surface of waterproof flax spindles includes a wear-resistant mechanism 2, which is bolted to the bottom of a corrosion-resistant mechanism 1. The wear-resistant mechanism 2 includes a changing component 201, a fixing component 202, a cleaning component 203, and a sandblasting component 204. The changing component 201 is bolted to the bottom of a limiting component 101, the fixing component 202 is bolted to the front of the changing component 201, the cleaning component 203 is bolted to the front of the changing component 201, with the rear of the cleaning component 203 close to the front of the fixing component 202, and the sandblasting component 204 is bolted to the top of the changing component 201. By setting the wear-resistant mechanism 2, the changing component 201 can change the position of the sandblasting component 204, thereby changing the... The process involves changing the sandblasting component 204 to process the flax waterproof spindle, and the corrosion-resistant mechanism 1 to perform corrosion-resistant treatment on the flax waterproof spindle. The fixing component 202 can limit the flax waterproof spindle and the corrosion-resistant mechanism 1, increasing the stability of the flax waterproof spindle during processing. The cleaning component 203 can scrape and clean the iron filings remaining on the surface of the flax waterproof spindle. The sandblasting component 204 can spray iron sand polishing fluid onto the surface of the flax waterproof spindle, thereby performing wear-resistant treatment on the surface of the flax waterproof spindle. After the wear-resistant treatment of the flax waterproof spindle is completed, the corrosion-resistant mechanism 1 can immediately perform corrosion-resistant treatment on the flax waterproof spindle, greatly improving the efficiency of corrosion and wear-resistant treatment of the flax waterproof spindle.
[0050] like Figure 8As shown, the conversion assembly 201 includes a support plate 2011, a conversion hydraulic rod 2012, and a conversion fixing seat 2013. The support plate 2011 is bolted to the bottom of the storage tank 1011, the conversion hydraulic rod 2012 is bolted to the rear side of the bottom of the support plate 2011, and the conversion fixing seat 2013 is bolted to the output end of the top of the conversion hydraulic rod 2012. By setting the conversion assembly 201, the support plate 2011 can support the conversion hydraulic rod 2012. After being powered on and started, the conversion hydraulic rod 2012 can be driven up and down. When the conversion hydraulic rod 2012 moves up and down, it can drive the sandblasting assembly 204, thereby changing the position of the sandblasting assembly 204.
[0051] like Figure 8 As shown, the fixing component 202 includes a fixing sleeve 2021, a limiting sleeve 2022, and a fixing hydraulic rod 2023. The fixing hydraulic rod 2023 is bolted to the bottom of the support plate 2011, and the limiting sleeve 2022 is bolted to the output end of the top of the fixing hydraulic rod 2023. The fixing sleeve 2021 is rotatably connected to the inner side of the limiting sleeve 2022. By setting the fixing component 202, the fixing sleeve 2021 can limit the flax waterproof spindle and cooperate with the limiting plate 1023 to fix the flax waterproof spindle. The limiting sleeve 2022 can limit the rotation of the fixing sleeve 2021. After being energized and started, the fixing hydraulic rod 2023 can drive the limiting sleeve 2022 and the fixing sleeve 2021 to move the flax waterproof spindle upward.
[0052] like Figure 8 As shown, the cleaning component 203 includes an electromagnet 2031, a scraping rotating rod 2032, and a limiting hydraulic rod 2033. The limiting hydraulic rod 2033 is bolted to the front side of the bottom of the support plate 2011, the scraping rotating rod 2032 is bolted to the output end of the top of the limiting hydraulic rod 2033, and the electromagnet 2031 is bolted to the inner side of the scraping rotating rod 2032. By setting the cleaning component 203, the electromagnet 2031 can adsorb iron sand on the surface of the flax waterproof spindle after being energized and started, further improving the cleaning ability of the scraping rotating rod 2032 on the flax waterproof spindle. The scraping rotating rod 2032 can scrape off the iron sand remaining on the surface of the flax waterproof spindle, thereby preventing iron sand from remaining on the surface of the flax waterproof spindle and affecting the effect of corrosion resistance treatment. The limiting hydraulic rod 2033 can move the scraping rotating rod 2032 and the electromagnet 2031 to the surface of the flax waterproof spindle after being energized and started, facilitating a comprehensive cleaning of the surface of the flax waterproof spindle.
[0053] like Figure 9As shown, the sandblasting assembly 204 includes a sandblasting tank body 2041, a sandblasting head 2042, and a sealing cover 2043. The sandblasting tank body 2041 is bolted to the top of the conversion mounting base 2013. The sandblasting head 2042 is connected to the inside of the sandblasting tank body 2041. The sealing cover 2043 is bolted to the surface of the servo motor 1021, and the surface of the sealing cover 2043 contacts the top of the inside of the sandblasting tank body 2041. By setting the sandblasting assembly 204, the sandblasting tank body 2041 is an existing sandblasting device with its own liquid delivery and pressurization structure, which can... After connecting the external iron sand polishing fluid conveying equipment, the iron sand polishing fluid is conveyed to the sandblasting head 2042. The sandblasting head 2042 can spray the iron sand polishing fluid onto the surface of the flax waterproof spindle to perform wear-resistant treatment on the surface of the flax waterproof spindle. The sealing cap 2043 can fit with the sandblasting can body 2041 to form a sealed state, preventing iron sand from accidentally seeping out. It can also allow the sandblasting can body 2041 to move downward with the change hydraulic rod 2012, so that the flax waterproof spindle is exposed within the spraying range of the spraying ring 1043.
[0054] Brief description of the usage process: First, place the flax waterproof spindle inside the fixing sleeve 2021. Then, energize and start the wear-resistant mechanism 2. The fixing hydraulic rod 2023 will drive the limiting sleeve 2022 to push the fixing sleeve 2021 upward until the top of the sandblasting can body 2041 is connected to the corrosion-resistant mechanism 1. Then, change the hydraulic rod 2012 to drive the sandblasting can body 2041 upward until the top of the sandblasting can body 2041 is engaged with the sealing cover 2043. Then, connect the iron sand grinding fluid delivery device to the outside of the sandblasting can body 2041. After the corrosion-resistant mechanism 1 is energized and started, it will drive the flax waterproof spindle to rotate. Then, the sandblasting can body 2041 will deliver iron sand grinding fluid. The sandblasting fluid is pumped to the sandblasting head 2042. The sandblasting fluid is pressurized by the sandblasting tank body 2041 to sandblast the surface of the flax waterproof spindle until the surface of the flax waterproof spindle is processed to the required wear-resistant effect. Then, the limiting hydraulic rod 2033 pushes the scraping rotating rod 2032 upward, and the scraping rotating rod 2032 scrapes off the iron sand on the surface of the flax waterproof spindle. The electromagnet 2031 attracts the iron sand until the surface of the flax waterproof spindle is completely cleaned. Then, the hydraulic rod 2012 is changed to lower the sandblasting tank body 2041, exposing the flax waterproof spindle to the spraying range of the corrosion-resistant mechanism 1.
[0055] like Figure 10 As shown, the specific steps of applying the above-mentioned method for corrosion-resistant and wear-resistant treatment of the surface of flax waterproof spindles are as follows:
[0056] S1. Corrosion-resistant spray coating process: First, open the tank door 1013, place the flax waterproof spindle to be processed into the wear-resistant mechanism 2 for locking, then power on and start the wear-resistant mechanism 2. The wear-resistant mechanism 2 will push the flax waterproof spindle upward, locking it against the bottom of the top limit plate 1023. Then close the tank door 1013, connect the external corrosion-resistant coating to the transmission telescopic pipe 1041 to the equipment, then power on and start the corrosion-resistant mechanism 1. The servo motor 1021 will drive the transmission... The rod 1022 rotates, which in turn rotates the limiting plate 1023. The limiting plate 1023 then drives the flax waterproof spindle to rotate. Subsequently, the pressurized liquid pump 1042 pressurizes the corrosion-resistant coating and sprays it from the spraying ring 1043 onto the surface of the flax waterproof spindle. The drive motor 1031 rotates the conveying screw seat 1032, which in turn drives the conveying plate 1033 to gradually move the spraying ring 1043 from top to bottom until the surface of the flax waterproof spindle is coated with the corrosion-resistant coating.
[0057] S2. Wear-resistant sandblasting: First, place the flax waterproof spindle inside the fixing sleeve 2021. Then, energize and start the wear-resistant mechanism 2. The fixing hydraulic rod 2023 will drive the limiting sleeve 2022 to push the fixing sleeve 2021 upward until the top of the sandblasting can body 2041 is connected to the corrosion-resistant mechanism 1. Then, change the hydraulic rod 2012 to drive the sandblasting can body 2041 upward until the top of the sandblasting can body 2041 is engaged with the sealing cover 2043. Then, connect the sandblasting can body 2041 to the iron sand grinding fluid conveying equipment. After the corrosion-resistant mechanism 1 is energized and started, it will drive the flax waterproof spindle to rotate. Then the sandblasting can body 2041 will... The iron sand polishing fluid is pumped to the sandblasting head 2042. The iron sand polishing fluid is then pressurized by the sandblasting tank body 2041 to sandblast the surface of the flax waterproof spindle until the surface of the flax waterproof spindle is processed to the required wear-resistant effect. Then, the limiting hydraulic rod 2033 pushes the scraping rotating rod 2032 upward, and the scraping rotating rod 2032 scrapes off the iron sand on the surface of the flax waterproof spindle. The electromagnet 2031 attracts the iron sand until the surface of the flax waterproof spindle is completely cleaned. Then, the hydraulic rod 2012 is changed to lower the sandblasting tank body 2041, exposing the flax waterproof spindle to the spraying range of the corrosion-resistant mechanism 1.
[0058] This specific embodiment is merely an explanation of the present invention and is not intended to limit the invention. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but such modifications are protected by patent law as long as they are within the scope of the claims of the present invention.
Claims
1. A corrosion-resistant and wear-resistant treatment device for the surface of waterproof flax spindles, comprising a corrosion-resistant mechanism (1) and a wear-resistant mechanism (2), characterized in that: The wear-resistant mechanism (2) is bolted to the bottom of the corrosion-resistant mechanism (1). The corrosion-resistant mechanism (1) includes a limiting component (101), a transmission component (102), a moving component (103), and a spraying component (104). The transmission component (102) is bolted to the limiting component (101), the moving component (103) is bolted to the front of the limiting component (101), and the spraying component (104) is bolted to the rear of the moving component (103). The wear-resistant mechanism (2) includes a changing component (…). 201), a fixing component (202), a cleaning component (203), and a sandblasting component (204), wherein the changing component (201) is bolted to the bottom of the limiting component (101), the fixing component (202) is bolted to the front side of the changing component (201), the cleaning component (203) is bolted to the front side of the changing component (201), the rear side of the cleaning component (203) is close to the front side of the fixing component (202), and the sandblasting component (204) is bolted to the top of the changing component (201); The limiting assembly (101) includes a storage tank (1011), a limiting sleeve (1012), and a tank door (1013). The limiting sleeve (1012) is bolted to the front side of the storage tank (1011), and the tank door (1013) is slidably connected to the right side of the storage tank (1011). The transmission assembly (102) includes a servo motor (1021), a transmission rod (1022), and a limiting plate (1023). The servo motor (1021) is bolted to the top of the storage tank (1011). The transmission rod (1022) is rotatably connected to the top of the storage tank (1011). The top of the transmission rod (1022) is bolted to the output end of the bottom of the servo motor (1021). The limiting plate (1023) is bolted to the bottom of the transmission rod (1022). The moving component (103) includes a drive motor (1031), a conveying screw seat (1032), and a conveying plate (1033). The drive motor (1031) is bolted to the top of the limiting sleeve (1012). The conveying screw seat (1032) is rotatably connected to the bottom of the inner side of the limiting sleeve (1012). The top of the conveying screw seat (1032) is bolted to the output end of the bottom of the drive motor (1031). The conveying plate (1033) is threaded to the surface of the conveying screw seat (1032). The rear side of the conveying plate (1033) penetrates the front side of the storage tank (1011) and is slidably connected to the storage tank (1011). The spraying assembly (104) includes a transmission telescopic tube (1041), a pressurized liquid pump (1042), and a spray ring (1043). The transmission telescopic tube (1041) is connected to the rear side of the top of the storage tank (1011). The bottom of the transmission telescopic tube (1041) passes through the storage tank (1011) and is connected to the pressurized liquid pump (1042). The front side of the pressurized liquid pump (1042) is connected to the spray ring (1043). The front side of the spray ring (1043) is bolted to the rear side of the conveyor plate (1033). The conversion assembly (201) includes a support plate (2011), a conversion hydraulic rod (2012), and a conversion fixing seat (2013). The support plate (2011) is bolted to the bottom of the storage tank (1011), the conversion hydraulic rod (2012) is bolted to the rear side of the bottom of the support plate (2011), and the conversion fixing seat (2013) is bolted to the output end of the top of the conversion hydraulic rod (2012). The fixing component (202) includes a fixing sleeve (2021), a limiting sleeve (2022), and a fixing hydraulic rod (2023). The fixing hydraulic rod (2023) is bolted to the bottom of the bearing plate (2011), the limiting sleeve (2022) is bolted to the output end of the top of the fixing hydraulic rod (2023), and the fixing sleeve (2021) is rotatably connected to the inner side of the limiting sleeve (2022). The sandblasting assembly (204) includes a sandblasting can body (2041), a sandblasting head (2042), and a sealing cover (2043). The sandblasting can body (2041) is bolted to the top of the conversion mounting base (2013). The sandblasting head (2042) is connected to the inside of the sandblasting can body (2041). The sealing cover (2043) is bolted to the surface of the servo motor (1021). The surface of the sealing cover (2043) is in contact with the top of the inside of the sandblasting can body (2041).
2. The device for corrosion-resistant and wear-resistant treatment of the surface of waterproof flax spindles according to claim 1, characterized in that: The cleaning assembly (203) includes an electromagnet (2031), a scraping rod (2032), and a limiting hydraulic rod (2033). The limiting hydraulic rod (2033) is bolted to the front side of the bottom of the support plate (2011). The scraping rod (2032) is bolted to the output end of the top of the limiting hydraulic rod (2033). The electromagnet (2031) is bolted to the inside of the scraping rod (2032).
3. A method for treating the surface of a waterproof flax spindle with corrosion and wear resistance, characterized in that: The method for treating the surface of waterproof flax spindles with corrosion and wear resistance, based on the apparatus for treating the surface of waterproof flax spindles with corrosion and wear resistance according to claim 1 or 2, includes the following steps: S1. Corrosion-resistant spray coating process: First, open the tank door (1013), put the flax waterproof spindle to be processed into the wear-resistant mechanism (2) for locking, then power on and start the wear-resistant mechanism (2), the wear-resistant mechanism (2) will push the flax waterproof spindle upward, so that the flax waterproof spindle is locked with the bottom of the top limit plate (1023), then close the tank door (1013), then connect the external corrosion-resistant coating to the transmission telescopic tube (1041) to the equipment, then power on and start the corrosion-resistant mechanism (1), the servo motor (1021) will drive the transmission rod (1022) Rotate and the limiting plate (1023) rotates. The limiting plate (1023) will drive the flax waterproof spindle to rotate. Then the pressurized liquid pump (1042) will pressurize the corrosion-resistant coating and spray it from the spray ring (1043) onto the surface of the flax waterproof spindle. The drive motor (1031) will rotate the conveying screw seat (1032). The conveying screw seat (1032) will drive the conveying plate (1033) to move the spray ring (1043) from top to bottom until the surface of the flax waterproof spindle is coated with corrosion-resistant coating. S2. Wear-resistant sandblasting: First, place the flax waterproof spindle in the fixed sleeve (2021), then power on and start the wear-resistant mechanism (2). The fixed hydraulic rod (2023) will drive the limit sleeve (2022) to push the fixed sleeve (2021) upward until the top of the sandblasting tank body (2041) is connected to the corrosion-resistant mechanism (1). Then, change the hydraulic rod (2012) to drive the sandblasting tank body (2041) to move upward until the top of the sandblasting tank body (2041) is connected to the sealing cover (2043). Then connect the sandblasting tank body (2041) to the iron sand grinding fluid conveying equipment. The corrosion-resistant mechanism (1) will drive the flax waterproof spindle to rotate after being powered on and started. Then the sandblasting tank body (2041) will rotate. 41) The iron sand polishing fluid will be pumped to the sandblasting head (2042). The iron sand polishing fluid will be pressurized by the sandblasting tank body (2041) to sandblast the surface of the flax waterproof spindle until the surface of the flax waterproof spindle is processed to the required wear-resistant effect. Then the limiting hydraulic rod (2033) will push the scraping rotating rod (2032) upward. The scraping rotating rod (2032) will scrape off the iron sand on the surface of the flax waterproof spindle. The electromagnet (2031) will attract the iron sand until the surface of the flax waterproof spindle is completely cleaned. Then the hydraulic rod (2012) will be changed to lower the sandblasting tank body (2041) and expose the flax waterproof spindle to the spraying range of the corrosion-resistant mechanism (1).
Citation Information
Patent Citations
Surface anti-corrosion treatment device and method for special-shaped alloy part of hard turning machine
CN116000826A