Skip to content

Screws · ISO 4026 / ISO 4029 / DIN 913-916 · Application guide

What Are Socket Set Screws Used For?

What Are Socket Set Screws Used For? application image

Socket Set Screws are used primarily for threaded assemblies where the head drive and seating style matter. This page lists the industries and assemblies where they are specified, the selection criteria that matter for each application, installation practice, and the cases where a different fastener type is the correct choice. Parts are supplied to ISO 4026 / ISO 4029 / DIN 913-916. Stocked across roughly M1.6 to M48, they cover general to heavy-duty work.

Typical Applications for Socket Set Screws

The most common settings where these are specified:

  • Appliances & consumer goods: high-volume assembly with power tools and consistent seating.
  • Machine guarding & panels: removable access covers that are opened for service.
  • General machine building: fastening covers, brackets, motors and sub-assemblies on production equipment.
  • Maintenance & repair (MRO): a stocked size for servicing existing plant where the original fastener spec must be matched.
  • Fabrication & metalwork: bench and on-site assembly of steel frames, enclosures and weldments.

How to Specify Socket Set Screws for Your Application

  • Size: Match the nominal size to the mating thread or hole. This product spans M1.6–M48; check the full table below for the exact dimensions of each size.
  • Drive & head: Pick the drive (socket, cross, slot) and head style for the tool access and seating surface; a recessed drive resists cam-out under power tools.
  • Environment: For damp, coastal or chemical exposure prefer A4/316 stainless or a suitable coating; indoors, plated steel or A2 is usually sufficient.
  • Standard: This product is supplied to ISO 4026 / ISO 4029 / DIN 913-916. Quoting the standard on your order guarantees interchangeable dimensions between suppliers.

Installation & Assembly Practice

  • Match the driver exactly to the recess (PH ≠ PZ; hex key sizes per ISO 2936) and keep the tool axial — side load is the main cause of stripped drives.
  • In tapped holes, engage a thread length of at least 1× the nominal diameter in steel, 2× in aluminum.
  • Set power tools to a torque that seats the head without embedding it into the mating surface.

Common Selection Mistakes with Socket Set Screws

  • Under-sizing the drive for the installation torque — a small recess at high torque strips before the screw is seated.
  • Using a countersunk head in thin sheet where the countersink removes most of the load-bearing material.
  • Specifying stainless in high-strength duty: A2-70 is roughly class 7 steel, not a 10.9 substitute.

Where Socket Set Screws Are Not the Right Choice

Not for high-preload structural joints (use a property-class bolt and nut), and not in thin sheet where a self-drilling or self-tapping type suits better.

Technical Drawing

Customize the parameters below — every spec field is editable, and the drawing redraws to match the values you choose. Changing the size will snap the other fields to that size's standard values; you can then override any individual value.

Sends the selected values to the quote form below.

Request a Quote

Set the size and options in the drawing above, then send the exact configuration straight to this form.

Request a Quotation

Specification
Business Information

Dimensions & Specifications (ISO 4026 / ISO 4029 / DIN 913-916)

SizePitch (mm)Hex socket s (mm)Engagement depth t min (mm)Point diameter dp (mm)End typeReference standard
M1.60.350.70.70.8Flat pointISO 4026 / DIN 913-916
M1.60.350.70.70.8Cone pointISO 4027 / DIN 913-916
M1.60.350.70.70.8Dog pointISO 4028 / DIN 913-916
M1.60.350.70.70.8Cup pointISO 4029 / DIN 913-916
M20.40.90.91.0Flat pointISO 4026 / DIN 913-916
M20.40.90.91.0Cone pointISO 4027 / DIN 913-916
M20.40.90.91.0Dog pointISO 4028 / DIN 913-916
M20.40.90.91.0Cup pointISO 4029 / DIN 913-916
M2.50.451.31.11.5Flat pointISO 4026 / DIN 913-916
M2.50.451.31.11.5Cone pointISO 4027 / DIN 913-916
M2.50.451.31.11.5Dog pointISO 4028 / DIN 913-916
M2.50.451.31.11.5Cup pointISO 4029 / DIN 913-916
M30.51.51.42.0Flat pointISO 4026 / DIN 913-916
M30.51.51.42.0Cone pointISO 4027 / DIN 913-916
M30.51.51.42.0Dog pointISO 4028 / DIN 913-916
M30.51.51.42.0Cup pointISO 4029 / DIN 913-916
M40.72.02.02.5Flat pointISO 4026 / DIN 913-916
M40.72.02.02.5Cone pointISO 4027 / DIN 913-916
M40.72.02.02.5Dog pointISO 4028 / DIN 913-916
M40.72.02.02.5Cup pointISO 4029 / DIN 913-916
M50.82.52.53.5Flat pointISO 4026 / DIN 913-916
M50.82.52.53.5Cone pointISO 4027 / DIN 913-916
M50.82.52.53.5Dog pointISO 4028 / DIN 913-916
M50.82.52.53.5Cup pointISO 4029 / DIN 913-916
M61.03.03.04.0Flat pointISO 4026 / DIN 913-916
M61.03.03.04.0Cone pointISO 4027 / DIN 913-916
M61.03.03.04.0Dog pointISO 4028 / DIN 913-916
M61.03.03.04.0Cup pointISO 4029 / DIN 913-916
M81.254.04.05.5Flat pointISO 4026 / DIN 913-916
M81.254.04.05.5Cone pointISO 4027 / DIN 913-916
M81.254.04.05.5Dog pointISO 4028 / DIN 913-916
M81.254.04.05.5Cup pointISO 4029 / DIN 913-916
M101.55.05.07.0Flat pointISO 4026 / DIN 913-916
M101.55.05.07.0Cone pointISO 4027 / DIN 913-916
M101.55.05.07.0Dog pointISO 4028 / DIN 913-916
M101.55.05.07.0Cup pointISO 4029 / DIN 913-916
M121.756.06.08.5Flat pointISO 4026 / DIN 913-916
M121.756.06.08.5Cone pointISO 4027 / DIN 913-916
M121.756.06.08.5Dog pointISO 4028 / DIN 913-916
M121.756.06.08.5Cup pointISO 4029 / DIN 913-916
M162.08.08.012.0Flat pointISO 4026 / DIN 913-916
M162.08.08.012.0Cone pointISO 4027 / DIN 913-916
M162.08.08.012.0Dog pointISO 4028 / DIN 913-916
M162.08.08.012.0Cup pointISO 4029 / DIN 913-916
M202.510.010.015.0Flat pointISO 4026 / DIN 913-916
M202.510.010.015.0Cone pointISO 4027 / DIN 913-916
M202.510.010.015.0Dog pointISO 4028 / DIN 913-916
M202.510.010.015.0Cup pointISO 4029 / DIN 913-916
M243.012.012.018.0Flat pointISO 4026 / DIN 913-916
M243.012.012.018.0Cone pointISO 4027 / DIN 913-916
M243.012.012.018.0Dog pointISO 4028 / DIN 913-916
M243.012.012.018.0Cup pointISO 4029 / DIN 913-916
M303.514.015.022.0Flat pointISO 4026 / DIN 913-916
M303.514.015.022.0Cone pointISO 4027 / DIN 913-916
M303.514.015.022.0Dog pointISO 4028 / DIN 913-916
M303.514.015.022.0Cup pointISO 4029 / DIN 913-916
M364.017.019.027.0Flat pointISO 4026 / DIN 913-916
M364.017.019.027.0Cone pointISO 4027 / DIN 913-916
M364.017.019.027.0Dog pointISO 4028 / DIN 913-916
M364.017.019.027.0Cup pointISO 4029 / DIN 913-916
M454.519.024.034.0Flat pointISO 4026 / DIN 913-916
M454.519.024.034.0Cone pointISO 4027 / DIN 913-916
M454.519.024.034.0Dog pointISO 4028 / DIN 913-916
M454.519.024.034.0Cup pointISO 4029 / DIN 913-916
M485.022.028.036.0Flat pointISO 4026 / DIN 913-916
M485.022.028.036.0Cone pointISO 4027 / DIN 913-916
M485.022.028.036.0Dog pointISO 4028 / DIN 913-916
M485.022.028.036.0Cup pointISO 4029 / DIN 913-916

Frequently Asked Questions

What material should Socket Set Screws be for outdoor use?

For damp, coastal or chemical environments specify A4 (316) stainless or a suitably coated steel. For indoor or dry use, A2 (304) stainless or zinc-plated steel is normally adequate.

Are Socket Set Screws made to a recognized standard?

Yes — they are manufactured to ISO 4026 / ISO 4029 / DIN 913-916, so dimensions are interchangeable between suppliers when you quote the standard on your order.

What are Socket Set Screws used for?

Threaded assemblies where the head drive and seating style matter. They are supplied to ISO 4026 / ISO 4029 / DIN 913-916.

Which industries use Socket Set Screws?

They are commonly specified in fabrication & metalwork, electronics & enclosures and appliances & consumer goods, among other sectors.

Can I get a quote for Socket Set Screws in the size and material I need?

Yes. Use the technical drawing and quote form on this page to set the size and options, then send the exact configuration to our team for pricing and lead time.