Spiral driver suitable for efficient aquatic plant cleaning and self-cleaning
A self-cleaning, driving machine technology, applied in ship propulsion, ship parts, ships, etc., can solve the problems of difficult cleaning of aquatic plants and troublesome cleaning methods
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Embodiment 1
[0028] A screw drive machine suitable for efficient cleaning of aquatic plants and self-cleaning, such as Figure 1-10 As shown, it includes a supporting square plate 1, a rotating drive shaft 2, a propeller body 3, an aquatic weed cleaning mechanism 4, a buffer cutting mechanism 5, a driving mechanism 6, and an aquatic weed push-off mechanism 7. The supporting square plate 1 is rotatably connected with a rotary drive The shaft 2 is fixedly connected to the propeller body 3 at one end of the rotating drive shaft 2 away from the supporting square plate 1, and the aquatic weed cleaning mechanism 4 is arranged on the rotating driving shaft 2. The aquatic weed cleaning mechanism 4 is used to clean the entangled aquatic plants. On the aquatic plant cleaning mechanism 4, the buffer cutting mechanism 5 is used to generate buffer when cutting the wound aquatic plants. The driving mechanism 6 is slidably connected to the supporting square plate 1, and the aquatic plant push-off mechanis...
Embodiment 2
[0037] On the basis of Example 1, such as Figure 10 As shown, a propeller cleaning mechanism 8 is also included, and the propeller cleaning mechanism 8 is arranged on the support square plate 1. The propeller cleaning mechanism 8 is used to clean up the residual aquatic plants on the propeller body 3. The propeller cleaning mechanism 8 includes a support bar 81 and a scraper. The strip body 82, the support strip 81 is fixedly connected to the top surface of the support square plate 1, and the scraper body 82 is fixedly connected to the end of the support strip 81 away from the support square plate 1, the scraper body 82 is closely attached to the propeller body 3, and the scraper body 82 is used for scraping off the remaining aquatic weeds on the propeller body 3 .
[0038] When the propeller body 3 rotates, the scraper body 82 scrapes off the residual aquatic plants on the propeller body 3 to prevent residual aquatic plants from sticking to the propeller body 3 .
Embodiment 3
[0040] On the basis of Example 2, such as Figure 10 As shown, a scraper cleaning mechanism 9 is also included. The scraper cleaning mechanism 9 is arranged on the propeller cleaning mechanism 8. The scraper cleaning mechanism 9 is used to clean the scraper body 82. The scraper cleaning mechanism 9 includes a guide frame 91 , guide rod 92, scraper 93, fourth compression spring 94 and push bar 95, guide frame 91 is affixed to one side of support bar 81, and guide rod 92 is slidably connected on the guide frame 91, away from the guide rod 92 of guide frame 91 The bottom end is fixed with a scraper 93. The scraper 93 is used to scrape off the sticky aquatic plants on the scraper body 82. The scraper 93 is closely attached to the scraper body 82. The scraper 93 is in contact with the propeller body 3. The scraper 93 is in contact with the guide frame. Between 91, the fourth compression spring 94 is connected, and the guide frame 91 is rotatably connected with a push bar 95, which ...
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