US2024367759A1PendingUtilityA1

Water walking device and system

Assignee: ZENG BINHUAPriority: Jul 15, 2024Filed: Jul 15, 2024Published: Nov 7, 2024
Est. expiryJul 15, 2044(~18 yrs left)· nominal 20-yr term from priority
Inventors:Binhua Zeng
B63B 34/52B63B 34/56
35
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Claims

Abstract

A water walking device includes a floating device, a water manifold, a pushing plate and a first limiting device. The floating device is provided with a wearing slot, and the wearing slot is configured to allow a user to put a foot in. The water manifold is connected to a bottom of the floating device. The pushing plate is connected to the water manifold and is rotated between an opened position and a closed position. The first limiting device is arranged on one side of the pushing plate facing the water manifold or on one side of the water manifold facing the pushing plate; and when the pushing plate is rotated to the closed position, the first limiting device limits an angle between the water manifold and the pushing plate to form a gap between the water manifold and the pushing plate.

Claims

exact text as granted — not AI-modified
1 . A water walking device, comprising:
 a floating device ( 100 ), wherein the floating device ( 100 ) is provided with a wearing slot ( 101 ), and the wearing slot ( 101 ) is configured to allow a user to put a foot in;   a water manifold ( 200 ), wherein the water manifold ( 200 ) is connected to a bottom of the floating device ( 100 );   a pushing plate ( 300 ), wherein the pushing plate ( 300 ) is connected to the water manifold ( 200 ) and is rotated between an opened position and a closed position; and   a first limiting device ( 400 ), wherein the first limiting device ( 400 ) is arranged on one side of the pushing plate ( 300 ) facing the water manifold ( 200 ) or on one side of the water manifold ( 200 ) facing the pushing plate ( 300 ); and when the pushing plate ( 300 ) is rotated to the closed position, the first limiting device ( 400 ) limits an angle between the water manifold ( 200 ) and the pushing plate ( 300 ) to form a gap between the water manifold ( 200 ) and the pushing plate ( 300 ).   
     
     
         2 . The water walking device according to  claim 1 , wherein the first limiting device ( 400 ) is a first capsule that is inflated to swell, and the first capsule is provided with an inflation nozzle ( 411 ). 
     
     
         3 . The water walking device according to  claim 1 , further comprising a second limiting device, wherein when the pushing plate ( 300 ) is rotated to the opened position, the second limiting device hinders the pushing plate ( 300 ) from being rotated in a direction facing away from the closed position. 
     
     
         4 . The water walking device according to  claim 3 , wherein the second limiting device is a limiting rope ( 510 ); one end of the limiting rope ( 510 ) is connected to a rear side of the water manifold ( 200 ), and the other end of the limiting rope ( 510 ) is connected to the pushing plate ( 300 ); and
 when the pushing plate ( 300 ) is rotated to the opened position, the limiting rope ( 510 ) is tightened to hinder the pushing plate ( 300 ) from being rotated in the direction facing away from the closed position.   
     
     
         5 . The water walking device according to  claim 3 , wherein the second limiting device is a limiting convex block ( 520 ); the limiting convex block ( 520 ) is arranged at a position, close to the pushing plate ( 300 ), on a front side of the water manifold ( 200 ); and when the pushing plate ( 300 ) is rotated to the opened position, the limiting convex block ( 520 ) is abutted with a surface of the pushing plate ( 300 ) to hinder the pushing plate ( 300 ) from being rotated in the direction facing away from the closed position. 
     
     
         6 . The water walking device according to  claim 5 , wherein a smooth curved surface ( 521 ) is arranged on one side of the limiting convex block ( 520 ) away from the pushing plate ( 300 ); an abutment plane ( 522 ) is arranged on one side of the limiting convex block ( 520 ) close to the pushing plate ( 300 ); and when the pushing plate ( 300 ) is rotated to the opened position, the abutment plane ( 522 ) is abutted with a surface of the pushing plate ( 300 ). 
     
     
         7 . The water walking device according to  claim 1 , wherein the pushing plate ( 300 ) is obliquely connected to a side surface of the water manifold ( 200 ); an upper end of the pushing plate ( 300 ) is connected to a middle part of the water manifold ( 200 ); and the upper end of the pushing plate ( 300 ) extends towards a lower side and front side of the water manifold ( 200 ). 
     
     
         8 . The water walking device according to  claim 1 , wherein a mounting slot ( 102 ) is provided at the bottom of the floating device ( 100 ); and an upper end of the water manifold ( 200 ) is inserted into the mounting slot ( 102 ). 
     
     
         9 . The water walking device according to  claim 1 , further comprising a hinge ( 600 ), wherein one end of the hinge ( 600 ) is connected to a side surface of the water manifold ( 200 ), and the other end of the hinge ( 600 ) is connected to a surface of the pushing plate ( 300 ), so as to allow the pushing plate ( 300 ) to be rotated relative to the water manifold ( 200 ). 
     
     
         10 . The water walking device according to  claim 1 , wherein the floating device ( 100 ) comprises a second capsule ( 110 ) that is inflated to swell, and a connecting plate ( 120 ); the connecting plate ( 120 ) is connected to a bottom of the second capsule ( 110 ); and the second capsule ( 110 ) forms the wearing slot ( 101 ) and an air chamber ( 103 ) after being inflated to swell. 
     
     
         11 . A water walking system, comprising two water walking devices configured to be worn on the two feet of a user, wherein each water walking device comprises:
 a floating device ( 100 ), wherein the floating device ( 100 ) is provided with a wearing slot ( 101 ), and the wearing slot ( 101 ) is configured to allow a user to put a foot in;   a water manifold ( 200 ), wherein the water manifold ( 200 ) is connected to a bottom of the floating device ( 100 );   a pushing plate ( 300 ), wherein the pushing plate ( 300 ) is connected to the water manifold ( 200 ) and is rotated between an opened position and a closed position; and   a first limiting device ( 400 ), wherein the first limiting device ( 400 ) is arranged on one side of the pushing plate ( 300 ) facing the water manifold ( 200 ) or on one side of the water manifold ( 200 ) facing the pushing plate ( 300 ); and when the pushing plate ( 300 ) is rotated to the closed position, the first limiting device ( 400 ) limits an angle between the water manifold ( 200 ) and the pushing plate ( 300 ) to form a gap between the water manifold ( 200 ) and the pushing plate ( 300 ).   
     
     
         12 . The water walking system according to  claim 11 , wherein the first limiting device ( 400 ) is a first capsule that is inflated to swell, and the first capsule is provided with an inflation nozzle ( 411 ). 
     
     
         13 . The water walking system according to  claim 11 , further comprising a second limiting device, wherein when the pushing plate ( 300 ) is rotated to the opened position, the second limiting device hinders the pushing plate ( 300 ) from being rotated in a direction facing away from the closed position. 
     
     
         14 . The water walking system according to  claim 13 , wherein the second limiting device is a limiting rope ( 510 ); one end of the limiting rope ( 510 ) is connected to a rear side of the water manifold ( 200 ), and the other end of the limiting rope ( 510 ) is connected to the pushing plate ( 300 ); and
 when the pushing plate ( 300 ) is rotated to the opened position, the limiting rope ( 510 ) is tightened to hinder the pushing plate ( 300 ) from being rotated in the direction facing away from the closed position.   
     
     
         15 . The water walking system according to  claim 13 , wherein the second limiting device is a limiting convex block ( 520 ); the limiting convex block ( 520 ) is arranged at a position, close to the pushing plate ( 300 ), on a front side of the water manifold ( 200 ); and when the pushing plate ( 300 ) is rotated to the opened position, the limiting convex block ( 520 ) is abutted with a surface of the pushing plate ( 300 ) to hinder the pushing plate ( 300 ) from being rotated in the direction facing away from the closed position. 
     
     
         16 . The water walking system according to  claim 15 , wherein a smooth curved surface ( 521 ) is arranged on one side of the limiting convex block ( 520 ) away from the pushing plate ( 300 ); an abutment plane ( 522 ) is arranged on one side of the limiting convex block ( 520 ) close to the pushing plate ( 300 ); and when the pushing plate ( 300 ) is rotated to the opened position, the abutment plane ( 522 ) is abutted with a surface of the pushing plate ( 300 ). 
     
     
         17 . The water walking system according to  claim 11 , wherein the pushing plate ( 300 ) is obliquely connected to a side surface of the water manifold ( 200 ); an upper end of the pushing plate ( 300 ) is connected to a middle part of the water manifold ( 200 ); and the upper end of the pushing plate ( 300 ) extends towards a lower side and front side of the water manifold ( 200 ). 
     
     
         18 . The water walking system according to  claim 11 , wherein a mounting slot ( 102 ) is provided at the bottom of the floating device ( 100 ); and an upper end of the water manifold ( 200 ) is inserted into the mounting slot ( 102 ). 
     
     
         19 . The water walking system according to  claim 11 , further comprising a hinge ( 600 ), wherein one end of the hinge ( 600 ) is connected to a side surface of the water manifold ( 200 ), and the other end of the hinge ( 600 ) is connected to a surface of the pushing plate ( 300 ), so as to allow the pushing plate ( 300 ) to be rotated relative to the water manifold ( 200 ). 
     
     
         20 . The water walking system according to  claim 11 , wherein the floating device ( 100 ) comprises a second capsule ( 110 ) that is inflated to swell, and a connecting plate ( 120 ); the connecting plate ( 120 ) is connected to a bottom of the second capsule ( 110 ); and the second capsule ( 110 ) forms the wearing slot ( 101 ) and an air chamber ( 103 ) after being inflated to swell.

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