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Total-heat Exchange Core

Short Description:

1.Counter flow air to air heat exchange ,cross flow air to air heat exchange
2.ABS Customized Mold Optimization Channel
3.Temperature environment :-40℃~60℃
4.Low pressure drop
5.Anti-bacterial and mildew materials
6.Professional selection and design software


Product Detail

Product Tags

1

Total-heat Exchange Core

High moisture vapor transmission rate Excellent Air Tightness Tear‑resistant & aging‑resistant.

ABS Frame

Ensures structural strength & tight sealing Long‑lasting, prevents air cross‑leakage.

Rectangular Channels

Optimized plate spacing, low flow‑path resistance Minimal pressure drop.

2

Specially-processed proprietary fibers

Full-heat Exchange | High Efficiency & Energy Saving

Custom Flame Retardant Grade

Special flame-retardant fiber paper, specially treated with flame retardant for both moisture permeability and flame-retardant performance.

Polymer Membrane

Customizable Polymer Membrane Enhanced structural stability, washable & high energy efficiency.

Modular & Flexible Assembly

Square full-heat exchanger with multi-module splicing Flexible assembly & wide compatibility.

High moisture permeability.

Excellent air tightness.

Tear resistance.

Aging resistance.

Mildew resistance.

3

Fibrous Nano‑Micropores

0.3μm

Permits only water vapor below 0.3μm to pass.

Molecular Diameter

- Water vapor (H2O): 0.288 μm

- Carbon dioxide (CO2): 0.324 μm

- Ammonia (NH3): 0.308 μm

- Methane (CH4): 0.324 μm

4

Optimized Rectangular Channels

Optimized plate spacing delivers low flow‑path resistance and minimal pressure drop

Honeycomb Structure

Dense channels may increase resistance Fine dense channels prone to dust buildup, hard to clean

Complex forming process, high maintenance costs.

Rectangular Channels

Reduced airflow turbulence, fewer internal supports Low flow‑path resistance & Low Airflow Resistance Resists dust buildup,Reliable system performance, low maintenance costs.

5

Non-standard Customization

Customizable to non‑standard customer specifications

Diamond-type、Square-type、Hexagonal-type.

6

Competitor Comparison

Comprehensive Strength Comparison | Core Competitiveness Analysis

High-efficiency Design >

Optimized flow path design boosts heat recovery efficiency and market competitiveness.

Standardized Models >

Standardized models cover mainstream air volumes, accelerating model selection and product development.

Customization Support >

Supports custom non-standard sizes & special air volumes to realize differentiated product design.

Full‑injection‑molded Frame >

Outstanding mildew‑proof & tear‑resistant performance, superior air tightness for lower after‑sales costs.

Low Maintenance Cost >

Stable structure, anti-dust & anti-scaling, minimizing maintenance workload.

Lightweight Design >

Convenient handling & integrated installation, improving assembly efficiency and reducing costs.

7

Total‑heat Exchange Core

—— Hexagonal‑type ——

Diamond-type、Square-type、Cross-flow.

Hexagonal-type、Hexagonal-type、Cross-counter flow.

Product Model: ERC-XXX-XXX

Heat Transfer Material: Paper core / Polymer membrane

Material Thickness: Customized on Demand

Fin Spacing: 2.0mm/2.3mm/2.5mm

Frame Material: Customized on Demand

Frame Thickness: Customized on Demand

Airflow Mode: Customized on Demand

Applicable Temperature: ≤60℃

Pressure Resistance: ≤500Pa

Protection Class: Customized on Demand

Overall Dimension: XXX*XXX*XXX

Air Volume: Customized on Demand

Professional Customization:OEM and ODM customization is supported.

Application Industries:Widely applied in air conditioning systems, fresh air ventilation systems, and environmental energy-saving fields.

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