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M2 to M10 Machine Screws - ODM Factory Direct Manufacturer

I’m a specialist supplier offering M2 to M10 machine screws designed for reliability in electronics, machinery, and construction. As an ODM Factory, we adapt to your needs—lengths, head types (Pan/Torx/Socket), metric pitches, threading tolerance, and finish. Whether you need stainless steel, carbon steel, or coated variants, we can tailor material and finish to meet your environment and corrosion resistance requirements. Our factory runs tight QA and traceability, with rapid prototyping and mass production. ODM capability lets you scale branding, lot sizes, and packaging to fit your supply chain. Direct factory pricing helps you cut costs, while our technical support ensures you select the right fasteners for your assembly. We keep short lead times, samples for approval, and flexible MOQs. Let's align on drawings and BOM so I can deliver the exact M2 to M10 machine screws you require, on time, every time.

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M2 to M10 machine screws Trusted by Pros Leads the Global Market

Global procurement for M2 to M10 machine screws spans electronics, automation, and machinery. Pros demand precision, consistent material quality, and reliable supply. A large, Dongguan-based manufacturer serves international buyers with standardized metric threads, hardened steel and stainless options, and protective finishes. The ability to deliver tight tolerances, batch traceability, and scalable packaging supports both large projects and just-in-time inventories. When selecting a supplier, look for consistent quality, documented process controls, sample programs, and flexible logistics. Ask about material grades, heat treatment, finishes, tolerances, and packaging options. A dependable partner provides transparent lead times, global shipping coverage, and reliable after-sales service. With the right collaboration, M2–M10 screws help reduce risk, shorten time-to-market, and achieve cost efficiency at scale.

{ M2 to M10 machine screws Trusted by Pros Leads the Global Market}
Size Length (mm) Thread Pitch (mm) Material Finish Head Type Standard Torque Range (N·m) Typical Applications
M2 6 0.40 Stainless Steel A2-70 Passivated Hex Socket Cap ISO 4762 0.25–0.40 Electronics enclosures; small mechanical assemblies
M2 8 0.40 Stainless Steel A2-70 Passivated Hex Socket Cap ISO 4762 0.25–0.50 Sensor housings
M3 8 0.50 Stainless Steel A2-70 Passivated Hex Socket Cap ISO 4762 0.50–0.90 Precision equipment
M3 12 0.50 Stainless Steel A2-70 Passivated Hex Socket Cap ISO 4762 0.60–1.00 Controller enclosures
M4 8 0.70 Alloy Steel, Zinc Plated Zinc Plated Hex Socket Cap ISO 4762 1.60–3.20 Automotive components
M4 12 0.70 Alloy Steel, Zinc Plated Zinc Plated Hex Socket Cap ISO 4762 2.00–4.00 Machine housings
M5 10 0.80 Stainless Steel A2-70 Passivated Hex Socket Cap ISO 4762 2.50–5.00 Mechanical assemblies
M5 14 0.80 Stainless Steel A2-70 Passivated Hex Socket Cap ISO 4762 3.00–6.00 Machinery components
M6 12 1.00 Alloy Steel, Zinc Plated Zinc Plated Hex Socket Cap ISO 4762 6.00–9.00 Structural assemblies
M6 20 1.00 Alloy Steel, Zinc Plated Zinc Plated Hex Socket Cap ISO 4762 8.00–12.00 Heavy machinery
M8 12 1.25 Stainless Steel A4-70 Passivated Hex Socket Cap ISO 4762 18.00–28.00 Industrial equipment
M8 20 1.25 Stainless Steel A2-70 Passivated Hex Socket Cap ISO 4762 15.00–28.00 Heavy-duty assemblies
M10 12 1.50 Alloy Steel, Zinc Plated Zinc Plated Hex Socket Cap ISO 4762 40.00–60.00 Auto chassis components
M10 20 1.50 Stainless Steel A4-80 Passivated Hex Socket Cap ISO 4762 45.00–75.00 High-stress assemblies

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M2 to M10 machine screws Factory Your Trusted OEM Partner

Screw Size Distribution (M2 to M10) by Quarter

This chart illustrates the distribution of fastener sizes across seven categories—M2, M3, M4, M5, M6, M8 and M10—over two recent quarters (Q1 and Q2). Each group corresponds to one screw size, and within each group there are two bars: the left bar represents Q1 demand and the right bar represents Q2 demand. The values, shown here in thousands of units for scale, highlight baseline patterns and quarter-over-quarter changes that are relevant for procurement, production planning, and inventory management in an OEM environment.

From the data, M3 and M4 show the highest baseline demand in Q1, indicating these sizes are the most commonly used in standard assemblies. M2 remains robust, reflecting widespread use in lighter-duty applications. The larger sizes, M8 and M10, register lower volumes overall but exhibit more noticeable growth between quarters, suggesting rising adoption in specialized components or higher-tolerance applications. Overall, Q2 projects a moderate uplift across most sizes: M2 increases from 120k to 150k units, M3 from 200k to 210k, M5 from 150k to 170k, M6 from 90k to 110k, M8 from 60k to 80k, and M10 from 40k to 60k, while M4 dips slightly from 180k to 170k.

This kind of size-focused visualization supports better decision-making: it helps align machining capacity, procurement schedules, and safety stock with expected demand patterns. While the current data are illustrative for demonstration purposes, in real-world applications you would enrich the chart with additional dimensions such as customer, region, lead time, and seasonality to enable deeper forecasting, scenario planning, and risk assessment. Extending to additional quarters or integrating a moving average could further smooth volatility and provide clearer guidance for manufacturing planning cycles.

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