MC Nylon Gears for Heavy-Load Industrial Applications:
Cast Polyamide Gear Drives, Large-Module Plastic Gears and Anti-Static MC Nylon
MC nylon — monomer cast polyamide 6, manufactured by casting liquid caprolactam directly into a mould rather than injection moulding pre-polymerised pellets — produces a plastic gear blank with a degree of crystallinity 5–15% higher than injection moulded PA6, significantly lower residual stress, and a much larger achievable part size than injection moulding permits. These properties make MC nylon the material of choice for large-diameter, heavy-load plastic gears (OD above 200 mm, face width above 50 mm) in industrial drives where the economics of a metal gear are unfavourable (corrosion maintenance cost, noise in populated industrial facilities, chemical media compatibility) but where injection moulded plastic gears are too small or not stiff enough for the application. Korea Ever-Power machines MC nylon gears from cast billets for applications spanning crane bridge drives, concrete mixer auxiliary gears, paper mill drive auxiliary components, and chemical plant metering drives.
OD 100–800mm · High Crystallinity · Heavy-Load
Crane · Paper Mill · Chemical Plant · Mixer · Mining
MC Nylon vs Injection Moulded Nylon — Why Cast Polyamide Outperforms at Large Size
The distinction between MC nylon (monomer cast polyamide 6) and injection moulded PA6 is not merely one of manufacturing method — it produces fundamentally different material properties that are significant for heavy-load gear applications. The casting process (where liquid caprolactam monomer polymerises in situ in the mould at atmospheric pressure and 150–170°C) produces a much more uniform crystalline structure than injection moulding (where the same polymer is injected under high pressure into a cold mould, producing a skin-core structure with a highly oriented amorphous skin and a less crystalline core). The MC nylon’s higher and more uniform crystallinity translates to a 15–25% higher tensile strength (85 MPa vs 70 MPa for injection moulded PA6), a 20–30% higher flexural modulus (3.2 GPa vs 2.6 GPa), and significantly lower residual stress throughout the billet. This lower residual stress is critical for large gears — an injection moulded PA6 gear above 150 mm OD can warp measurably during the weeks after demoulding as the frozen-in injection moulding stresses gradually relax, invalidating the tooth profile accuracy achieved by the injection mould. An MC nylon gear machined from a properly annealed cast billet has negligible residual stress — the machined dimensions are stable from machining to installation and throughout the service life.
Korea Ever-Power’s MC nylon gears for heavy-load industrial applications are manufactured from in-house cast billets — Korea Ever-Power operates its own MC nylon casting facility, casting billets in standard OD sizes (150, 200, 300, 400, 500, 600, 700, 800 mm OD) and heights up to 400 mm, in natural, oil-filled, and anti-static grades. The casting process includes a post-casting annealing cycle (holding the cast billet at 100°C for 2–4 hours, depending on billet diameter, to complete the polymerisation and relieve any thermal gradients from the exothermic polymerisation reaction) that is the critical quality step — inadequately annealed billets contain residual polymerisation shrinkage stress that can cause the billet to crack during or after machining. Korea Ever-Power’s quality protocol requires a hardness check (Rockwell HRR hardness at 5 positions on the billet cross-section, confirming uniform hardness without variation that would indicate incomplete polymerisation zones) and a weight check (confirming the billet density is within ±0.02 g/cm³ of the target value, indicating complete polymerisation) before any billet is released to the machining department.
The oil-filled MC nylon variant is the most important specialty grade for heavy-load industrial gear applications where re-lubrication is impractical. The internal oil content (8% by weight of mineral oil, incorporated into the polymer during the casting polymerisation) is released at the gear tooth surface as a thin boundary film under the contact pressure of the gear mesh — this in-situ oil film reduces the boundary friction coefficient from 0.32 (dry unfilled MC nylon against steel) to 0.20 (oil-filled MC nylon against steel), reducing the gear mesh heat generation and extending the tooth wear life. The oil-filled grade is particularly valuable in applications where the gear tooth surface temperature under load approaches the PA6 glass transition zone (above 80°C) — the lower friction coefficient of the oil-filled grade reduces the frictional heat generation per mesh cycle, keeping the tooth surface temperature below the critical threshold where surface softening and accelerated wear would begin. Korea Ever-Power specifies oil-filled MC nylon as the standard grade for all crane bridge drive gears and paper mill drive auxiliary gears — the two applications where the combination of intermittent heavy load (crane) or continuous moderate load (paper mill) with limited lubrication access makes the self-lubricating grade the most practical and economical long-term choice.

MC Nylon Heavy-Load Gear Application Specifications
Crane Bridge and Hoist Auxiliary Drives
Oil-filled MC nylon, M8–M12, OD 300–600 mm, face width 60–120 mm, bore 40–120 mm, slow speed (10–50 RPM output), intermittent duty (crane hoist cycles). Crane bridge and overhead crane auxiliary drives (the secondary reduction stages between the main gearbox and the wheel axle, or the auxiliary drives for the festoon cable reel and the limit switch gear train) are a high-volume application for MC nylon gears in steel manufacturing plants, paper mills, and warehouse distribution centres — environments where the crane operates in a humid, corrosive, or dusty atmosphere that would require frequent painting and maintenance of equivalent steel gears. The oil-filled MC nylon gear in an overhead crane auxiliary drive requires no lubrication maintenance (the internal oil provides the boundary film for the lifetime of the gear tooth), tolerates the corrosive atmosphere without surface degradation, and reduces the gear mesh noise in the crane hall by 10–15 dB(A) compared to equivalent steel gears — a meaningful contribution to the overall noise level in a manned crane operation area. Korea Ever-Power crane bridge MC nylon gears are machined with a hub bore to H7 tolerance for press or clearance fit onto the drive shaft, and with a keyway to DIN 6885 standard for the key engagement with the shaft flat — the keyway is machined in the same CNC turning setup as the bore, ensuring concentricity of the keyway to the bore axis within 0.05 mm TIR.
Oil-filled MC · M8–M12 · 300–600mm · no lube maintenance
Mining and Chemical Plant Drives (Anti-Static)
Anti-static MC nylon (AS grade, surface resistivity ≤ 10⁶ Ω), M6–M12, OD 200–500 mm, surface resistivity measured and certified per EN 13463-1 (non-electrical equipment for potentially explosive atmospheres). Mining (coal, grain, flour, wood dust) and chemical plant (flammable solvent vapour) drives require that any electrical charge accumulated on the rotating gear tooth surface from the gear mesh friction is dissipated to ground before it reaches the discharge threshold — the minimum ignition energy of coal dust in air is approximately 30 mJ, and a PVC or standard nylon gear at 100 RPM can accumulate 50–100 mJ of charge over several rotations without a discharge path. The anti-static MC nylon gear (with conductive carbon black compounded into the casting) has surface resistivity below 10⁶ Ω — any charge accumulated at the tooth surface drains to ground through the conductive gear body and the shaft bearing before reaching the ignition threshold. Korea Ever-Power anti-static MC nylon gears are supplied with an individual surface resistivity measurement certificate (measured on the gear OD and tooth surface after machining) confirming compliance with the ≤ 10⁶ Ω requirement for ATEX/IECEx Zone 2 and Zone 21 (combustible dust) drive applications.
AS-grade · ≤10⁶Ω · ATEX Zone 21 · certified
Paper Mill Spreader and Felt Roll Drives
Natural or oil-filled MC nylon, M5–M8, OD 150–350 mm, face width 50–80 mm, chemical resistance to paper mill white water (pH 4.5–8.5, 40–70°C), continuous duty at 30–200 RPM. Paper mill drives — the felt roll drives, spreader bar drives, calender auxiliary drives, and coater metering drives — operate in one of the most chemically aggressive environments in heavy industry: white water (the aqueous medium that carries the paper fibres on the paper machine) contains acidic or alkaline pH, mineral fillers (clay, calcium carbonate, TiO₂), fibre fragments, and biocide chemicals that cause rapid corrosion of unprotected steel gear surfaces and require regular maintenance of painted or galvanised steel alternative components. MC nylon gears in paper mill drives eliminate the corrosion maintenance entirely — the PA6 polymer is chemically resistant to white water across the pH range of 4.5–8.5 and to the biocide chemicals (glutaraldehyde, isothiazolinone-based) used in the paper machine white water circuit. Korea Ever-Power paper mill MC nylon gears are supplied with a chemical resistance confirmation for the customer’s specific white water chemistry if provided — the standard MC nylon grade resists all white water chemicals at the concentrations used in standard paper machine water treatment.
Natural MC · pH 4.5–8.5 · white water resistant


Frequently Asked Questions — MC Nylon Heavy-Load Gears
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Éditeur : Cxm