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Compact Air Jet Coolers for Molds

Compact Air Jet Coolers for Molds

Compact Air Jet Coolers for Molds use high-speed air jets to dissipate heat quickly, supporting stable process temperatures during injection molding. This compact cooling solution helps improve throughput while maintaining consistent mold performance.

  • High-speed air jet cooling for rapid heat removal and stable temperature control
  • Engineered for efficient heat dissipation across different mold areas
  • Supports shorter molding cycles while helping maintain consistent part quality
  • Compact design for practical integration in production molding facilities

Specifications

3 configurations available

L (L dimension) (mm)type
92-
170-
84-

Product Guide

🏭Application Scenarios+

Compact air jet cooling is used in injection molding tooling where fast, localized heat removal is needed to stabilize cycle-to-cycle temperatures. The compact design makes it suitable for tight mold layouts, such as automotive connector and electrical housing molds, where maintaining uniform cavity temperature helps reduce warpage and improves dimensional consistency.

  • High-speed jet cooling targets hot spots near the gate and high-flow regions to support repeatable molding conditions.
  • In small to medium die-cast and injection assemblies (e.g., electronic housings), the focused cooling helps reduce dwell time and supports tighter process windows.
  • For production environments that prioritize throughput, this variant’s compact footprint helps integrate cooling without major rework to existing mold bases.

By dissipating heat quickly with air jets, this component helps support shorter molding cycles while maintaining consistent mold performance across different mold areas.

🔧Material & Process Details+

The provided specifications list only the product’s dimension L values; no steel grade, hardness (HRC), or heat-treatment state is specified in the input data. As a result, the exact material chemistry (e.g., SKD61/H13 equivalent) and any quench-and-temper/nitriding parameters cannot be stated reliably here.

For air-jet cooler components, engineers typically ensure corrosion resistance and dimensional stability under repeated thermal cycling; however, those properties depend on the actual manufacturing material and process chosen for the specific SKU.

  • Heat treatment: not specified in the provided dataset.
  • Hardness and wear trade-offs: not specified—air jets primarily demand stable geometry and surface integrity rather than heavy sliding wear.
  • Material comparison: not available because no alternative materials are listed.

If you share the part drawing or material certification for series 110200186650, the steel grade, target HRC, and heat treatment can be documented accurately.

📐Sizing & Selection Guide+

Selection is based on matching the cooler geometry to the mold’s layout and the required cooling coverage. The only provided sizing parameter is L (L dimension), mm, with available values: 84, 92, and 170.

  • Choose L to match the installation depth/space inside the mold block and to position the jet outlet relative to the cavity surface.
  • Align with hot-spot locations: use the longest L (170 mm) when the jet needs reach across a larger mold area; choose 84–92 mm for compact cavities or localized cooling.
  • Account for practical fit: verify clearances around the cooler body, hose/air supply routing (if applicable in your design), and any fixture features in the mold base.

No tolerance band or additional adjustable parameters are included in the input data. When integrating into a cavity/core, confirm the drawing for the exact mounting dimensions and any required allowance to ensure stable positioning during assembly.

Frequently Asked Questions

Which L length options are available for series 110200186650, and how should I pick between 84, 92, and 170 mm?+

The available L (L dimension) values for this series are 84 mm, 92 mm, and 170 mm. Pick the shorter lengths for compact molds or localized hot spots, and use 170 mm when the cooler needs greater reach within the mold space.

Does this compact air jet cooler support localized cooling near gates and hot spots in injection molding?+

Yes. The design intent is high-speed air jet cooling for rapid heat removal, which is commonly used to stabilize temperature where thermal peaks occur (such as near the gate or high-flow regions).

Because the component is compact, it is also easier to position in constrained mold layouts.

Is there any specified steel grade, hardness (HRC), or heat-treatment state for 110200186650?+

Not in the provided product data. The dataset lists only the L dimension values (84/92/170 mm) and does not include material grade, HRC hardness, or heat treatment details.

To document performance properties (wear resistance, toughness, corrosion handling), request the material certification or part drawing for this SKU.

What tolerance considerations apply when integrating this cooler into my cavity/core assembly?+

The input data does not provide tolerance ranges for the mounting interfaces. Since only the L dimension is specified, you should verify exact installation geometry in the official drawing.

During assembly, maintain required clearances for the air path and ensure the jet outlet position is consistent with your cooling target.

Can this component reduce cycle time while maintaining part quality in production?+

The product description states that it supports shorter molding cycles and helps maintain consistent part quality by stabilizing process temperatures through high-speed air jets.

This is most effective when your mold design has defined hot spots and you can place the jet outlet to target them.

Need Custom Specifications?

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