RESEARCH & DEVELOPMENT

At Apollo, product & process research and development of aluminium plate fin heat exchangers and other accessories plays a critical role to ensure the latest technology and methods are used to provide a solution to our customers.

Policies

We are committed to design, manufacture & supply compact Aluminum heat exchangers through continual improvement in implementation of quality management systems, achieve total customer satisfaction & continuously increasing our customer base.

Certified ISO 9001:2008
for Quality Management
Systems

Laboratory testing to
meet requisite quality
standards.

Experienced and trained
quality inspectors.

Sourcing tested materials
from reputed and well
established
manufacturer/suppliers.

To remain abreast of
changing trends in
technology globally.

To continuously upgrade
our own standards and
benchmarks.

Separate team of Engineers for R & D
activities for new material development,
product development and validation.

Separate team of Engineers for R & D
activities for new material development,
product development and validation.

Separate team of Engineers for R & D
activities for new material development,
product development and validation.

The Aluminium Plate Fin Heat Exchanger core is made by alternate layers of highly efficient & compact fins on the hot and cold fluid side. These core components are vacuum brazed together to form the core. The flow pattern of the heat exchanger is cross flow type. The high heat transfer area per unit volume make this design very compact.

FLOW PATTERN IN PFHE
CORE OF PFHE
PFHE COMPONENTS

TYPES OF FINS

More than 100 types of fin
configurations available for optimum design

Plain Fin

Wavy Fin

Offset Fin

Plain Fin

SPECIFICATIONS

Max. Operating Temperature : 180°C
Max. Operating Pressure : 25 Bar

MATERIALS

AA 3003, AA 4004,
AA 6063, AA 5052

Salient Features Of Aluminium Plate Fin Heat Exchangers:

1
Robust Construction
2
High Reliability
3
High Heat Transfer Area per unit Volume
4
Low weight per unit volume
5
Low operational cost
6
Low-pressure drop across the cooler