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SCK Oil-Free Slide Inclined Pin Holder for Loose Core

SCK Oil-Free Slide Inclined Pin Holder for Loose Core

Oil-Free Slide Inclined Pin Holder for Loose Core (SCK) supports block pin designs with stable, low-friction movement. Built for oil-free operation, it helps maintain smooth slide control while reducing wear and lubrication needs.

  • Inclined pin holder design supports reliable oil-free slide motion control for loose core blocks
  • SCK type construction improves durability and helps minimize friction-related wear
  • Engineered for block pin assemblies to maintain stable positioning during repeated motion
  • Suitable for precision industrial slide mechanisms where maintenance access is limited

Specifications

44 configurations available

W (Width) (mm)A (Loose core insert width) (mm)type
293-
294-
295-
296-
297-
298-
299-
2910-
343-
344-
345-
346-
347-
348-
349-
3410-
3411-
3412-
3413-
3414-
3415-
493-
494-
495-
496-
497-
498-
499-
4910-
4911-
4912-
4913-
4914-
4915-
4916-
4917-
4918-
4919-
4920-
4921-
4922-
4923-
4924-
4925-

Product Guide

🏭Application Scenarios+

This oil-free inclined pin holder is used in injection mold tooling where loose core blocks must translate reliably under repeated actuation. The SCK-style, inclined configuration suits slide mechanisms that use a block pin arrangement, helping maintain stable positioning while minimizing friction-related drag.

  • Automotive connector and latch molds: helps ensure smooth motion in compact slide cavities, supporting consistent part geometry across cycles without relying on frequent lubrication.
  • Consumer appliance housing/undercut molds: supports low-maintenance operation in inclined slide cores where cleaning and grease access are limited, improving repeatability for undercut features.
  • Precision industrial fixtures and enclosures: the reduced-friction oil-free motion helps protect wear surfaces in long-run production requiring tight slide alignment.

With its width options (W = 29/34/49 mm) and loose core insert width range (A = 3–25 mm), this variant is suited to match different loose core layouts while maintaining smooth inclined slide control.

🔧Material & Process Details+

The provided product metadata specifies sizing (W and A) for the SCK oil-free inclined pin holder, but it does not list the steel grade, hardness (HRC), or heat treatment state. As a result, the exact alloy (e.g., SKD61/H13, SKH51/M2) and any quench-and-temper, nitriding, or coating details cannot be stated from the current data.

For oil-free slide components, material selection typically targets low friction and adequate wear resistance to handle repetitive inclined motion without frequent lubrication. Engineers often balance hardness for wear resistance against toughness to avoid chipping under shock loads.

  • Confirm required wear/toughness for your cycle rate and expected pin loads using the supplier’s material certificate.
  • Verify surface treatment (if any) that supports oil-free motion in your temperature and resin environment.

If you share the actual material specification for this SKU, the hardness (HRC) and heat-treatment process can be documented precisely.

📐Sizing & Selection Guide+

Correct selection is driven by the holder Width and the loose core insert width it supports. This series offers W = 29, 34, or 49 mm, so choose the width that fits your slide core plate/insert envelope while maintaining proper clearance around the moving assembly.

  • Select W: match the holder’s width to the available space in the loose core slide path (template/stack-up). If multiple cavity blocks exist, ensure consistent W across mirrored sides.
    • Select A: the loose core insert width parameter is A = 3–25 mm. Choose A so the inclined pin holder interface aligns with your block pin/loose core insert geometry without binding during travel.

      • Fit and clearance: confirm assembly clearances for the inclined motion. For tight alignment, use your design’s target running clearance and account for mold steel machining tolerance and any wear allowance needed for oil-free operation.
      • Configurable vs fixed: W is fixed to the available options (29/34/49 mm), while A must fall within the supported range (3–25 mm) for the intended loose core insert.

Frequently Asked Questions

How do I choose the correct W (width) for an inclined pin holder supporting a loose core slide?+
Select W from the available options: 29, 34, or 49 mm. Use mold stack-up drawings to ensure the holder fits within the slide core plate and surrounding clearances for repeated inclined movement. If your tooling uses mirrored halves, keep W consistent on both sides to maintain balanced motion.
What is the supported range for the loose core insert width A for this SCK oil-free inclined pin holder?+
The loose core insert width parameter is A = 3–25 mm. Your block pin and loose core insert dimensions should be chosen so the interface geometry aligns across the full stroke without binding. If A is near the extremes of 3 mm or 25 mm, re-check running clearance and manufacturing tolerances.
Is this inclined pin holder compatible with oil-free slide mechanisms in long production runs?+
Yes—this SKU is specifically described as an oil-free slide inclined pin holder, designed to deliver low-friction movement for loose core block motion. That intent is to reduce lubrication needs while maintaining stable positioning under repeated actuation. For guaranteed performance, verify the actual material/treatment spec for wear life under your cycle rate and resin abrasiveness.
What dimensional checks should I perform to avoid binding in the inclined motion when using W and A together?+
After selecting W (29/34/49 mm) and A (3–25 mm), verify that the holder-to-pin and holder-to-core clearances accommodate the inclined travel. Check that your loose core insert thickness/width and the block pin assembly do not force misalignment at the ends of stroke. Include machining tolerances and any assembly tolerance stack-up in your clearance assessment.
Does the provided data include the steel grade and heat treatment for wear resistance?+
No. The supplied metadata lists only sizing parameters (W and A) and does not specify the steel grade, hardness (HRC), or heat treatment state (e.g., nitrided, quenched & tempered). To document wear resistance suitability with certainty, request the material certificate for series code 110200061710.

Need Custom Specifications?

Our engineering team can help with custom configurations, material selection, and volume pricing.