A.) Attach the Front Press Base (#3) to the Upper Frame (#6). Secure it with one Axle (#24), two Spacers (#79), and two M10 Aircraft Nuts (#81). Do not over tighten the Nuts.

B.) Insert the axle on the Right Butterfly (#4) through the hole on the Front Press Base from the bottom. Slide a Lock Ring (#60) onto the axle. Align the holes and secure it with one M6 x 1 ¼” Allen Bolt (#61) and M6 Aircraft Nut (#73). Repeat the same step to install the Left Butterfly (#5).

C.) Attach the Swivel Pulley Bracket Frame (#16) to the back of the Vertical Frame (#2). Secure it with one M10 x 3 ½” Allen Bolt (#70), two Ø ¾” Washers (#77), and one M10 Aircraft Nut (#81).

D.) Attach a Swivel Pulley Bracket (#17) to each end of Swivel Pulley Bracket Frame. Secure each Bracket with one M10 x 2 ½” Allen Bolt (#64), two Ø ¾” Washers (#77), and one M10 Aircraft Nut (#81).

E.) Attach the Backrest Board (#56) to the Vertical Frame (#2). Secure it with two M8 x 2 ½” Allen Bolts (#68) and Ø 5/8” Washers (#78).

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Impex PHE1000 manual

PHE1000 specifications

The Impex PHE1000 is a versatile and powerful piece of equipment designed for a range of industrial applications. Known for its robustness and efficiency, the PHE1000 stands out as a leading choice in process heat exchangers. This unit integrates advanced technology and engineering excellence to deliver superior performance while maintaining energy efficiency.

One of the key features of the Impex PHE1000 is its compact design. This system maximizes heat transfer in a smaller footprint, making it ideal for facilities where space is at a premium. With its modular construction, users can easily scale the system according to their specific needs without compromising on performance.

The PHE1000 employs a plate heat exchanger design, which enhances its heat transfer capabilities. The plates create a large surface area for heat exchange, promoting efficient thermal transfer between fluids. This design not only improves efficiency but also reduces energy consumption, translating to lower operational costs.

Durability is another hallmark of the Impex PHE1000. Constructed from high-quality materials, such as stainless steel, it can withstand high pressures and temperatures, ensuring longevity even in the most demanding environments. The heat exchanger’s robust design minimizes maintenance needs, allowing for more uptime in production processes.

In terms of technologies, the PHE1000 incorporates a state-of-the-art flow configuration, allowing for optimal fluid dynamics. This ensures uniform flow distribution across the heat exchanger’s plates, which enhances heat transfer efficiency and reduces the risk of hot spots that can lead to damage or inefficiencies.

Safety features are also paramount with the Impex PHE1000. The unit is equipped with pressure relief valves and is designed to operate safely under a wide range of operating conditions. Its construction meets international standards, ensuring compliance with safety regulations.

In summary, the Impex PHE1000 is engineered for performance, efficiency, and safety. Its advanced plate heat exchanger technology, compact design, and durable construction make it suitable for various industries, including chemical processing, food and beverage, and HVAC applications. The PHE1000 not only meets the current industrial needs but also anticipates future demands, making it a reliable investment for any organization seeking to enhance their process efficiency and reliability.