Artificial Fishing Bait With Knock Zone And Steel Ball Chamber
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Solution Overview
Problem
Conventional artificial baits for fishing perches struggle to consistently attract fish due to limited noise production, especially at slower drag speeds, making it difficult to hook perches effectively.
Innovation Solution
The artificial bait features a movable sheet with a knock zone that touches the body to create initial noise, and a hollow accommodation chamber with multiple steel balls that collide to produce additional noise as the sheet swings, enhancing attraction.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Device complexity
If the movable sheet touches the body only once at the beginning, then the structure is simple, but the noise production is limited and insufficient to attract perches effectively
Solution Approach 1:
The movable sheet is segmented into multiple functional zones: a knock zone for initial contact noise, and multiple steel balls arranged in a hollow accommodation chamber for repetitive collision noise. This segmentation allows different parts to perform different noise-generation functions, resolving the contradiction between structural simplicity and sustained noise production.
Solution Approach 2:
The steel balls in the hollow accommodation chamber are designed to collide repeatedly with each other during the swinging motion, creating continuous noise production. This continuous collision action ensures that noise is generated throughout the entire dragging process, not just at the beginning, thereby maintaining attraction effectiveness.
2Ease of operation
If the drag speed is slow, then the fishing operation is gentle and safe, but the noise frequency and attraction effectiveness are reduced
Solution Approach 1:
The steel balls in the hollow accommodation chamber are designed to vibrate and collide with each other during the swinging motion. This mechanical vibration generates high-frequency noise even at slow drag speeds, because the balls collide multiple times per swing cycle. This resolves the contradiction by decoupling noise frequency from drag speed through the vibration mechanism.
Solution Approach 2:
The steel balls perform periodic collision cycles during each swing of the movable sheet. Even when the overall drag speed is slow, the periodic nature of the ball collisions creates repeated noise pulses, maintaining effective attraction. The periodic action ensures that noise is generated at regular intervals regardless of the slow overall motion speed.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This design significantly increases noise production, attracting fish more effectively by combining initial contact noises with repetitive steel ball collisions, thereby improving catch rates.
Implementation Method 1
the knock zone of the movable sheet touches the head of the body to make first noise
Implementation Method 2
the multiple steel balls of the hollow accommodation chamber hit with one another to make second or more noises
Data Source
AI summary
An artificial bait for fishing contains a body and a movable sheet. The body includes a head, a loop element, and a fishhook connected on and end of the body opposite to the head. The movable sheet is connected with the body and swings back and forth with respect to the body. The movable sheet is formed in a polygon shape, and the movable sheet includes a fixing orifice defined on a bottom thereof to connect with the loop element, a groove formed on a center thereof and configured to receive a fishing line, a knock zone defined between the fixing orifice and the groove and configured to making noises when the knock zone touches the head of the body, and a hollow accommodate chamber located adjacent to the groove and formed in a capsule shape to accommodate multiple steel balls.


