JGCBKCJ

9621K29

9621K29 Die Spring Stock
$0.00 /Each    info

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Part Number JGCBKCJ
Spring Type Die
Length 36"
Spring Rate 29.04 lbf/in
Material Spring-Tempered Steel
End Type Open
For Hole Diameter 1 3/16"
For Shaft Diameter 3/4"
Wire Width 0.188"
Wire Thickness 0.188"
RoHS RoHS 3 (2015/863/EU) Compliant
REACH REACH (EC 1907/2006) (01/23/2024, 240 SVHC) Compliant
DFARS Specialty Metals COTS-Exempt
Country of Origin China
USMCA Qualifying No
INTERCHANGE
The LILY Bearing part series JGCBKCJ is a potential replacement for these common bearing part numbers.
LILY
JGCBKCJ

NOTE:All other trademarks are the property of their respective owners.

All other trademarks mentioned herein are used for the purpose of compatibility description and product identification only. Lily Bearing is not affiliated with, endorsed by, or sponsored by the holders of these trademarks.

Design Features of JGCBKCJ Spring Stock

JGCBKCJ is supplied in continuous lengths of rectangular-wire compression spring material, allowing engineers and toolmakers to cut springs to any required free length directly from a single coil or bar. Unlike pre-cut die springs, Die Spring Stock offers maximum dimensional flexibility — the same stock length can yield multiple spring sizes tailored to specific tooling requirements. Performance characteristics including load rating, deflection behavior, and fatigue life are built into the wire profile and coil geometry during manufacture, so cut springs retain the same mechanical properties as their standard pre-cut counterparts. Overall performance depends on factors such as wire cross-section dimensions, outer diameter, coil pitch, and material grade, which together determine the force output, stroke range, and service life of each cut length.


What Benefits Can JGCBKCJ Spring Stock Provide?

  • Custom 36" Flexibility – Cut to any required free length on-site, eliminating the need to stock multiple fixed-length spring sizes and reducing inventory complexity.
  • Reduced Downtime – Toolmakers can produce a replacement spring immediately from stock without waiting for a specific pre-cut size to be sourced or delivered, keeping production lines running.
  • Cost Efficiency – Purchasing spring material in bulk continuous lengths typically lowers the per-unit cost compared to ordering individually sized pre-cut springs for low-to-medium volume requirements.
  • Consistent Mechanical Properties – Each cut length retains the load rating, fatigue resistance, and deflection characteristics of the parent stock, ensuring reliable and repeatable performance across all cut springs.
  • Inventory Simplification – A small number of stock diameters and load classes can replace a large catalog of fixed-length springs, streamlining storage and procurement.
  • Versatile Load Class Options – Available across light, medium, heavy, and extra-heavy load ratings, allowing a single stocking strategy to serve a wide range of tooling force requirements.


What Can JGCBKCJ Spring Stock Be Used for?

  • Prototype and Short-Run Tooling – To quickly produce custom-length springs for new die and mold designs without committing to pre-cut spring orders during development and trials.
  • Maintenance and Tool Repair – As an immediate on-hand source for replacement springs when a specific fixed-length size is unavailable, minimizing unplanned press and machine downtime.
  • Stamping and Forming Dies – Cut lengths provide stripping force, blank holder pressure, and material flow control in punching, drawing, and bending tooling built to non-standard dimensions.
  • Injection Mold and Die Cast Tooling – For ejector return, parting surface pressure, and slider actuation in molds where standard pre-cut lengths do not match the required pocket depth.
  • Special Purpose Machinery – In custom-engineered equipment and automation systems where spring free lengths fall outside standard catalog ranges.
  • Training and Educational Workshops – As a practical teaching material for toolmaking programs, allowing students to practice spring fitting, cutting, and load calculation with real production-grade material.

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