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Full Nuts Zinc Plated [UNF]


Full  Nuts  Zinc  Plated  [UNF]
  • These hexagon nuts are bright zinc plated for increased corrosion resistance.
  • The hexagonal shape is designed to be driven by a wrench (spanner) and provides excellent torque when done so.

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When out of stock, any availability times are estimates and dependent upon supplier stock. Items without a lead time have no confirmed status and may take up to 12 weeks to arrive.
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1/4 UNF Full Nuts Zinc Plated (Pack of 200) [BS 1768 Grade 1]


Product Code: HXUNF14-N-Z

HX Fixings

£4.68
Ex VAT: £3.90
3 Days

5/16 UNF Full Nuts Zinc Plated (Pack of 200) [BS 1768 Grade 1]


Product Code: HXUNF516-N-Z

HX Fixings

£4.70
Ex VAT: £3.92
3 Days

3/8 UNF Full Nuts Zinc Plated (Pack of 200) [BS 1768 Grade 1]


Product Code: HXUNF38-N-Z

HX Fixings

£6.80
Ex VAT: £5.67
3 Days

7/16 UNF Full Nuts Zinc Plated (Pack of 100) [BS 1768 Grade 1]


Product Code: HXUNF716-N-Z

HX Fixings

£6.92
Ex VAT: £5.77
3 Days

1/2 UNF Full Nuts Zinc Plated (Pack of 100) [BS 1768 Grade 1]


Product Code: HXUNF12-N-Z

HX Fixings

£6.12
Ex VAT: £5.10
3 Days

5/8 UNF Full Nuts Zinc Plated (Pack of 100) [BS 1768 Grade 2]


Product Code: HXUNF58-N-Z

HX Fixings

£14.51
Ex VAT: £12.09
3 Days

3/4 UNF Full Nuts Zinc Plated (Pack of 50) [BS 1768 Grade 2]


Product Code: HXUNF34-N-Z

HX Fixings

£13.10
Ex VAT: £10.92
3 Days
  • These hexagon nuts are bright zinc plated for increased corrosion resistance.
  • The hexagonal shape is designed to be driven by a wrench (spanner) and provides excellent torque when done so.

Zinc coatings prevent oxidation of the protected metal to create a longer lasting finish. It does this by forming a barrier and by acting as a sacrificial anode if this barrier is damaged. Zinc oxide is a fine white dust that (in contrast to iron oxide) does not trigger a breakdown of the substrates surface integrity as it is formed. The zinc oxide, if left intact, can act as a barrier to further oxidation, in a way similar to the protection afforded to aluminum and stainless steels by their oxide layers.