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Stainless Steel Flat Baffle Boards with Partition

Stainless Steel Flat Baffle Boards with Partition

Stainless Steel flat baffle boards with partition provide a flat blade style divider for stable internal flow control. The partition design supports organized passage while an optional tapered screw plug helps simplify installation.

  • Flat board baffle geometry with partition for organized flow paths
  • Stainless steel construction supports corrosion resistance in production environments
  • Partition plate options include one-sided or two-sided layouts
  • Designed for use in baffle board assemblies requiring controlled distribution

Specifications

8 configurations available

Partition PlateA (Width) (mm)F (Partition part position) (mm)L (L dimension) (mm)S (Hole center position) (mm)type
One-sided1840 ~ 590100 ~ 60030 ~ 560-
One-sided2040 ~ 590100 ~ 60030 ~ 560-
One-sided2450 ~ 590100 ~ 60040 ~ 560-
One-sided3050 ~ 590100 ~ 60040 ~ 560-
Two-sided1840 ~ 590100 ~ 60030 ~ 560-
Two-sided2040 ~ 590100 ~ 60030 ~ 560-
Two-sided2450 ~ 590100 ~ 60040 ~ 560-
Two-sided3050 ~ 590100 ~ 60040 ~ 560-

Product Guide

🏭Application Scenarios+

These stainless flat baffle boards with partition are used inside injection molds to stabilize cooling-gas or cooling-water distribution across the mold interior. The flat blade geometry and built-in divider help keep flow organized, reducing uneven temperature gradients that can affect part quality.

  • Automotive connector and housing molds: Employ one-sided or two-sided partition layouts to balance flow between adjacent regions, supporting consistent thermal control for thin-walled inserts and bosses.
  • Medical device housings: Stainless construction helps resist corrosion from cleaning cycles and promotes reliable long-term performance in precision tooling where dimensional stability matters.
  • High-run consumer electronics parts: Use the partition plate to improve flow stability in baffle board assemblies, especially when multiple flow passages must be distributed predictably.

The optional tapered screw plug simplifies mounting during assembly, which can reduce downtime when installing or replacing baffle components.

🔧Material & Process Details+

This product uses stainless steel to provide corrosion resistance for mold interior cooling/flow conditioning hardware. In typical baffle board use, the material’s resistance to oxidation and chemical exposure supports stable operation through repeated cleaning and production cycles.

  • Heat treatment: The provided specifications do not list a specific grade or hardness value, so no exact HRC or heat-treatment state (e.g., quenched & tempered, nitrided) is stated here.
  • Wear vs. toughness trade-off: Stainless steels generally balance wear resistance and toughness for interior mold components that experience flow-related contact and handling during assembly.
  • Material comparison: Compared with carbon-steel baffle boards, stainless versions are typically selected when corrosion resistance is critical; compared with hard tool steels, the stainless choice prioritizes environmental durability over maximum abrasive wear performance.

For exact grade, hardness, and heat-treatment parameters, refer to the specific part’s material documentation tied to series code 110200124260.

📐Sizing & Selection Guide+

Select dimensions by matching the baffle board to the internal cooling/flow channel layout in your mold cavity or manifold assembly. The fixed and variable parameters in this series define the overall fit and the location of the mounting/flow features.

  • Choose partition type: Select one-sided or two-sided partition plate based on how many organized passage regions you need (single vs. dual distribution).
  • Match width (A): Use A = 18, 20, 24, or 30 mm to fit the baffle assembly spacing and channel width.
  • Set length (L): Confirm L = 100 to 600 mm matches the mold interior span where baffle coverage is required.
  • Align partition position (F): Position the divider using F = 40–590 mm (one-sided/two-sided variants as applicable) to align with your intended flow path split.
  • Align hole center (S): Choose S = 30–560 mm or 40–560 mm depending on the available range for the selected configuration, ensuring the hole center matches the assembly’s screw/fastener geometry.

Tolerance and exact hole fit are not specified in the provided data; therefore, confirm clearance/fit against your mold plate machining tolerances and fastener requirements during final design.

Frequently Asked Questions

How do I choose one-sided vs. two-sided partition plate for balanced flow in a mold interior cooling assembly?+

Select one-sided when you need a single organized passage region, such as stabilizing distribution across one side of a cavity. Choose two-sided when the assembly requires dual-region control and improved flow symmetry. Match the partition configuration to how your manifold and channel layout split the flow.

What dimension ranges are available for the baffle board width, length, and partition position on series 110200124260?+

For this series, width A is available at 18, 20, 24, or 30 mm. The fixed length L is 100 to 600 mm. Partition part position F is specified as 40–590 mm (or 50–590 mm depending on configuration), so you should align F to the intended flow split location.

How should I select the hole center position (S) so the tapered screw plug aligns with the mold assembly?+

Choose hole center position S within the provided ranges: 30–560 mm or 40–560 mm depending on the variant. Use your mold’s fastener pitch and plate geometry to ensure the screw plug sits on the correct axis. Since tolerances are not specified here, validate clearance in the final CAD stack-up.

Does the stainless steel material provide the corrosion resistance needed for repeated mold cleaning cycles?+

The series description specifies stainless steel construction, which is selected for corrosion resistance in production environments. This is particularly relevant for molds exposed to frequent cleaning or humid/chemical shop conditions. The provided data does not include a specific stainless grade or hardness value, so confirm material documentation if you need compliance for specific environments.

What should I verify about fit and tolerances when installing partition baffle boards into a cooling/heating assembly?+

Verify that your selected A, L, F, and S match the actual assembly envelope and the manifold/baffle spacing. Because tolerance values are not included in the provided specifications, confirm fit against your machining tolerances for the supporting mold plates and fastener holes. Perform a CAD interference check around the hole center alignment and the tapered screw plug feature.

Need Custom Specifications?

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