Hyster

HY 2039198

$2.89 off

HY 2039198

Hyster HY 2039198 Pin for ISS Assemblies

Regular price $37.60
Sale price $37.60 Regular price $40.49
In stock

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Electric Lift Truck Parts Hyster pins

Compatibility

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Model -

Reference Diagrams

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Product Description

Genuine Hyster HY 2039198 Pin for electric lift trucks. Precision-machined, alloy steel construction for ISS carriage/towing assemblies. Validated for use in Hyster OEM applications. No cross-reference or superseded part numbers available; original specification maintained.

Specifications

Material
Material SpecificationAlloy steel, induction hardened
Steel GradeMinimum SAE 5140 or equivalent
Part Numbers
OEM Part NumberHY 2039198
Manufacturer Part NumberHY 2039198

Frequently Asked Questions

Q: What is the HY 2039198 pin used for in Hyster electric lift trucks?
A: The HY 2039198 is a genuine Hyster precision-machined pin designed for ISS carriage and towing assemblies in electric lift trucks. It provides structural connection and load transfer in these critical assemblies.

Q: What material and hardness specification does the HY 2039198 meet?
A: The HY 2039198 is manufactured from alloy steel with induction hardening. The steel grade meets or exceeds SAE 5140 or equivalent specification, providing high strength and wear resistance for demanding carriage and towing applications.

Q: Which Hyster models or assembly types does the HY 2039198 fit?
A: The HY 2039198 is validated for Hyster OEM ISS carriage and towing assemblies in electric lift truck applications. Consult your equipment parts manual or serial documentation to confirm this part matches your specific truck configuration and model year.

Q: Are there cross-reference part numbers or superseded alternatives for the HY 2039198?
A: No cross-reference or superseded part numbers are available for the HY 2039198. The original specification is maintained. The OEM part number HY 2039198 and manufacturer part number HY 2039198 are the definitive identifiers.

Q: Why is induction hardening important for this pin?
A: Induction hardening creates a wear-resistant surface layer while maintaining toughness in the core. This process extends service life by resisting surface fatigue, galling, and wear at connection points under repeated stress in carriage and towing operations.