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Einstellbares Drehmomentscharnier 55×43 mm | PA6 & Zink Optionen

PRODUKTPARAMETER

Hersteller: HSP
Model: HG11-091-4
Preis pro Einheit: Aktuellen Preis erhalten
MOQ: 1 Stück
Lieferzeit: Auf Lager (Versand innerhalb von 24 Stunden) / 20-25 Tage für Sonderanfertigungen
Anpassung: OEM / ODM-Unterstützung

Beschreibung
FAQs
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Beschreibung

Adjustable Torque Hinge (55.2 × 42.7 mm) available in PA6 or zinc alloy, delivering smooth, controlled opening with adjustable torque. PA6 version offers 0.1–1.5 N·m, while zinc alloy provides 0.1–1.0 N·m. Designed for stable hold and precise positioning, it suits industrial maintenance doors, telecom cabinets, medical panels, advertising frames, and secure enclosures. Durable, compact, and easy to integrate.

Maßzeichnung

Einstellbares Drehmomentscharnier HG11-091-4
ModelMaterialOberflächenbehandlungTorque Range
HG11-091-4-1-1PA6Schwarz0.1 N·m – 1.5 N·m
HG11-091-4-1-2PA6Weiß0.1 N·m – 1.5 N·m
HG11-091-4-2-1ZDCBlack Electrophoresis Coating0.1 N·m – 1.0 N·m
HG11-091-4-2-2ZDCSandblasted Nickel Plating0.1 N·m – 1.0 N·m

FAQ

What torque range does each material offer?

The PA6 version provides 0.1–1.5 N·m, while the zinc alloy version offers 0.1–1.0 N·m. Therefore, you can select the material based on load requirements and operating conditions.

Can I adjust the torque after installation?

Yes, you can adjust the torque within the specified range. As a result, the hinge adapts to different panel weights and ensures controlled, stable movement.

How do I choose between PA6 and zinc alloy?

Choose PA6 for lightweight applications and corrosion resistance. In contrast, select zinc alloy for higher strength and improved durability in more demanding environments.

Für welche Anwendungen ist dieses Scharnier geeignet?

It fits industrial maintenance doors, telecom cabinets, medical panels, advertising frames, and secure enclosures. In addition, it works well in compact equipment requiring precise positioning.

How does this hinge improve operation and maintenance?

It enables smooth opening and stable positioning. As a result, users gain easier access to internal components, reduce handling effort, and improve overall efficiency and safety.

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