One of the most frustrating things for an angler is losing a fish due to hook failure.

Why can hooks break and bend?

And is there a method or technique that can be made to reduce the incidence of hook failure?

Apart from metal defects, the two main reasons for hook failure are due to excessive stress and stress corrosion cracking1(in plain language; Erosion)

In order to understand these terms and their importance, it is important to first understand how hooks are made.

In the hook formation process the metal wire will be formed using

As a result, the crystal structure of the Whatsapp Mobile Number List metal changes to become stronger.

Once the hook is formed, it is then heated ( annealing ), and cooled rapidly ( quenching ).

It then undergoes a further forging process to strengthen it and make it more resistant to pressure.

hook making process

Forging is a controlled heating technique used after the hook is cooled to make the hook stiffer by reducing the hardness of the alloy.

The purpose of reducing hardness is to make the metal not or less brittle ( brittle )

Accurate control of time and temperature during the forging process is essential to achieve the desired physical properties.

Low forging temperatures may only release internal stress reducing brittleness

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A Higher Forging Temperature Tends to Reduce Singapore Lead More of the Hardness of the Metal. Sacrificing Some Other Characteristics and Tensile Strength. To Increase Elasticity (Elastic and Flexible).

The Result is a Hook That is Not Brittle (Not Easily Broken)

Each Manufacturer Will Set Optimal. Criteria to Determine the Characteristics of the Hook and Strictly. Control the Production Process in Order to Achieve the Set Results Consistently.

If the Process Control is Not Tight Enough, Then the Hook Can Open. Easily or Be Too Brittle and Break Under Pressure.

These Hooks Are Coated After Cooling and These Hooks May Also Be Chemically Sharpened.

Sometimes, the Hook Can Become Weak if It is Cooled. Too Quickly or Too Much Heat is Applied During. The Forging Process or During the Coating Process.

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