Bionic bait capable of swimming and using method thereof
A bionic bait, convenient technology, applied in the direction of artificial fish bait, fishing, application, etc., can solve the problems of bionic bait damage, component deformation, open circuit, etc., and achieve the effect of increasing service life, saving power, and protecting deformation
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Embodiment 1
[0039] This embodiment is a bionic bait for convenient swimming, including a fish body 1, a fish tail 2, a hook fixing ring 3 and a wire fixing ring 4. The top of the fish body 1 is provided with a wire fixing ring 4, and the fish body body The bottom of 1 is provided with two hook fixing rings 3, the fish body 1 includes a tail shaft 16, one side of the fish tail 2 is fixedly connected with the tail shaft 16, the tail shaft 16 runs through the housing 14 and is fixedly connected with a magnetic motor 15, and the magnetic force One side of the motor 15 is fixedly connected with a fixed block 13, and the outside of the fixed block 13 is covered with a coil 12;
[0040] One side of the fixed block 13 is fixedly connected with an electromagnet 11, and one side of the electromagnet 11 is provided with two protective shells 9, and the outer sides of the two protective shells 9 are fixedly connected with the housing 14, and the protective shell 9 is provided with a pull Stretch spri...
Embodiment 2
[0046] This embodiment is a bionic bait for easy swimming, and the difference from Embodiment 1 is that the preparation process of the T-shaped elastomer 8 is different;
[0047] T-shaped elastomer 8 is prepared by the following steps:
[0048] S21: Add polyethylene glycol into a three-necked flask, heat to 55°C, add boron trifluoride ether, add 1,2-epoxychlorobutane dropwise, control the dropping rate to 1 drop / s, and mechanically The reaction was stirred for 2h to obtain Intermediate A;
[0049] S22: Dissolve alkali lignin in 1M NaOH solution to prepare alkali lignin solution, drop alkali lignin solution into intermediate A, control the dropping rate to 1 drop / s, react at 80°C for 4h, cool To room temperature, adjust the pH value to 7 with hydrochloric acid solution, centrifuge at 12000rpm for 20min, remove most of the unreacted alkali lignin, keep the supernatant, add absolute ethanol to the supernatant and let it stand, then under 12000rpm Centrifuge for 20 minutes to se...
Embodiment 3
[0052] This embodiment is a bionic bait for easy swimming, and the difference from Embodiment 1 is that the preparation process of the T-shaped elastomer 8 is different;
[0053] T-shaped elastomer 8 is prepared by the following steps:
[0054] S21: Add polyethylene glycol into a three-necked flask, heat to 65°C, add boron trifluoride ether, add 1,2-epoxychlorobutane dropwise, control the dropping rate to 2 drops / s, and mechanically The reaction was stirred for 3h to obtain Intermediate A;
[0055] S22: Dissolve alkali lignin in 1M NaOH solution to prepare alkali lignin solution, drop alkali lignin solution into intermediate A, control the dropping rate to 2 drops / s, react at 90°C for 4h, cool To room temperature, adjust the pH value to 7 with hydrochloric acid solution, centrifuge at 12000rpm for 20min, remove most of the unreacted alkali lignin, keep the supernatant, add absolute ethanol to the supernatant and let it stand, then under 12000rpm Centrifuge for 20 minutes to ...
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Abstract
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