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Stainless Steel Square Nut

Overview:

The square shape of these nuts offers unique advantages in specific applications. The larger surface area of the square faces provides better grip and distribution of force when tightened, reducing the risk of damage to the workpiece.


Specifications

Dimension Table

Why AYA

Product Description

Product Name  Stainless Steel Square Nut
Material  Made from 304 stainless steel, these nuts have good chemical resistance and may be mildly magnetic. They are also known as A2/A4 stainless steel.
Shape Type  Square
Application  Large flat sides make them easy to grip with a wrench and keep them from rotating in channels and square holes.
Standard  Nuts that meet ASME B18.2.2 or DIN 562 specifications comply with these dimensional standards.

Product Description

1. Corrosion Resistance: Made from high-quality stainless steel, these square nuts resist rust and corrosion, making them ideal for use in harsh environments, including marine and outdoor applications.

 

2. Enhanced Grip: The square shape provides a larger contact area, which improves the grip and prevents the nut from slipping when being tightened or loosened. This is particularly beneficial in applications requiring secure fastening.

 

3. Load Distribution: The flat sides of the square nut distribute the load more evenly when tightened against a surface. This reduces the risk of damage to the workpiece and ensures a more secure fit.

 

4. Ease of Use: Square nuts are easier to hold in place with a wrench or pliers, especially in confined spaces where a hex nut might be difficult to manipulate.

 

5. Versatility: These nuts are suitable for a wide range of applications, including woodworking, furniture assembly, automotive, and construction. Their unique shape makes them a preferred choice in situations where a standard hex nut may not be practical.

 

6. High Strength: The robust construction of AYAINOX square nuts ensures they can withstand significant stress and torque, providing reliable performance in demanding conditions.


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  • Nominal
    Size
    Basic Major Diameter of Thread Width Across Flats, F Width Across Corners Thickness, H Bearing Surface Runout to hread Ais, FIM
    Square, G Hex, G1
    Basic Min. Max. Min. Max. Min. Max. Min. Max.
    0 0.060 5/32 0.150 0.156 0.206 0.221 0.171 0.180 0.043 0.050 0.005
    1 0.073 5/32 0.150 0.156 0.206 0.221 0.171 0.180 0.043 0.050 0.005
    2 0.086 3/16 0.180 0.188 0.247 0.265 0.205 0.217 0.057 0.066 0.006
    3 0.099 3/16 0.180 0.188 0.247 0.265 0.205 0.217 0.057 0.066 0.006
    4 0.112 1/4 0.241 0.250 0.331 0.354 0.275 0.289 0.087 0.098 0.009
    5 0.125 5/16 0.302 0.312 0.415 0.442 0.344 0.361 0.102 0.114 0.011
    6 0.138 5/16 0.302 0.312 0.415 0.442 0.344 0.361 0.102 0.114 0.011
    8 0.164 11/32 0.332 0.344 0.456 0.486 0.378 0.397 0.117 0.130 0.012
    10 0.190 3/8 0.362 0.375 0.497 0.530 0.413 0.433 0.117 0.130 0.013
    12 0.216 7/16 0.423 0.438 0.581 0.691 0.482 0.505 0.148 0.161 0.015
    1/4 0.250 7/16 0.423 0.438 0.581 0.691 0.482 0.505 0.178 0.193 0.015
    5/16 0.312 9/16 0.545 0.562 0.748 0.795 0.621 0.650 0.208 0.225 0.020
    3/8 0.375 5/8 0.607 0.625 0.833 0.884 0.692 0.722 0.239 0.257 0.021

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