banner (1)

set screw m5 - Wholesale Manufacturers Guide

I stock high quality set screw m5 that I supply for Wholesale needs and for Manufacturers who push productivity. These grub screws come in stainless steel or zinc plated finishes, with precise M5 threads and smooth chamfered ends for easy seating. I offer multiple drive options and lengths, so you can fit them to your equipment without delays. For bulk orders, Wholesale pricing kicks in and I can arrange fast, reliable shipping straight to your plant. I work directly with Manufacturers to tailor finishes, materials, and tolerances to your spec sheet, from plain carbon steel to corrosion resistant alloys. The set screw m5 I provide are heat treated for strength and coated to resist corrosion, which helps your assemblies stay tight in vibration. If you need samples or test data, I can pull together certificates and performance reports. Tell me your application and I’ll match the right size, finish and lead time to keep your production line running.

Hot Selling Product

set screw m5 Dominates Delivers Unmatched Quality

Global production demands precise, reliable clamp components. The set screw M5 delivers unmatched quality through precise threading and tight dimensional control, ensuring clean engagement in every joint. Material options—from stainless steel to alloy steel—offer the right balance of strength and corrosion resistance, while finishes such as black oxide or zinc plating extend life in harsh environments. When these parts meet DIN and ISO standards, they become interchangeable across machines and industries. Global buyers should favor suppliers with rigorous QA, batch traceability, and clear test data. Look for documented hardness, tensile tests, and material certifications. Consistent lead times, flexible packaging, and responsive design support help avoid line stoppages and speed integration. An M5 set screw built to standard specifications delivers durable clamping, reducing rework and downtime in robotics, electronics, automotive, and packaging applications.

{ set screw m5 Dominates Delivers Unmatched Quality}
Variant Thread Length (mm) Material Finish Standard/Spec Tensile Strength (MPa) Hardness (HRC) Max Torque (N·m) Application Notes
M5 x 6 – Socket Set Screw – A2-70 M5 x 0.8 6 Stainless Steel A2-70 Plain DIN 916; ISO 3506 700 28 0.8 Light-load alignment and clamping
M5 x 8 – Socket Set Screw – A2-70 M5 x 0.8 8 Stainless Steel A2-70 Satin DIN 916 700 28 1.2 Encoder housings, general fixtures
M5 x 10 – Socket Set Screw – C45 Steel M5 x 0.8 10 Carbon Steel C45 Zinc Plated DIN 916 570 44 1.6 General-purpose clamps in machinery
M5 x 12 – Socket Set Screw – A4-80 M5 x 0.8 12 Stainless Steel A4-80 Polished DIN 916; ISO 3506 800 31 2.0 Corrosion-resistant fixtures in damp environments
M5 x 15 – Socket Set Screw – C45 Zinc-Plated M5 x 0.8 15 Carbon Steel C45 Zinc Plated DIN 916 550 45 2.5 Heavy-duty clamping in outdoor or damp settings
M5 x 20 – Socket Set Screw – A2-70 M5 x 0.8 20 Stainless Steel A2-70 Plain DIN 916; ISO 3506 700 32 3.0 Industrial fixtures with extended engagement

Related Products

banner (2)

set screw m5 Dominates Delivers Unmatched Quality

Data Dimension: Surface Finish Quality Score by Processing Type

Surface Finish Quality Score by Processing Type Comparative bar chart showing scores for Polished, Ground, Coated, and Anodized finishes. Polished Ground Coated Anodized Quality Score (0-100)
The dataset presented here examines how different surface finishing processes influence the surface finish quality score of a generic fastener component. The defined data dimension is the Surface Finish Quality Score, evaluated across four processing types: Polished, Ground, Coated, and Anodized. Each bar represents a single finish, with scores scaled from 0 to 100. The scores reflect a composite assessment that considers surface smoothness, dimensional consistency, visual appearance, and resistance to minor surface defects observed during controlled sampling. In the chart, Coated finishes achieve the highest score (98), followed by Polished (92), Anodized (89), and Ground (85). This ordering indicates a strong association between applied coating strategies and perceived quality, likely due to tighter surface control and enhanced barrier properties that reduce defect exposure. The relatively large gap between Coated and Ground suggests substantial room for improvement when selecting non-coated processes, though cost, manufacturability, and long-term durability should also inform decision-making. From an operational perspective, these results imply that, for components where surface quality directly affects friction, wear resistance, or fit, a coated finish may offer notable benefits that justify its added processing step. Polished finishes also deliver high scores but may require more rigorous handling and inspection to sustain low defect rates. Ground and Anodized finishes show comparatively lower scores in this sample, which could reflect broader variability in process controls or the inherent trade-offs of these methods. The data’s limitations include a small number of finishes, potential measurement bias, and the absence of long-term performance data. To strengthen insight, future work should expand the finish types, incorporate batch-level variability, and integrate durability testing. Overall, the visualization demonstrates how quantitative measures can guide finish selection, enabling data-driven improvements in quality and manufacturing efficiency for precision fasteners.

Top Selling Products