How the Aerospace Industry Uses Waterjet Cutting Machine

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  • Date:2021/04/20

Projects within the aerospace industry require complex technology and complete precision. Not only is that this sector is liable for producing aircraft engines, the aircraft themselves, and related parts; but also military solutions, scientific developments, and other components that structure much of our times.

 

As an industry with no margin for error, the aerospace department employs the accuracy and flexibility of waterjet cutting machines to make a variety of components — from jet engines and turbine blades to custom control panels, and more.

 

In fact, although the concept of a waterjet cutting machine could seem quite modern, the waterjet has had a range in aerospace since the 1970s.

 

The Need for Precision within the Aerospace Industry

 

The content of the aerospace industry is diverse and extensive, covering all areas from commercial aircraft to military solutions designed for national defense. In production, each component must be carefully machined to the very best possible quality, as even the slightest error or structural weakness could lead to disaster.

 

Machining parts for the aerospace industry is more complex than making other commodities. The traceability requirements are very strict, and the tolerance is even stricter. This means that the industry needs to be able to carry out a high level of complexity and production level of processing technology. Within the face of such high standards and manufacturing demands, the waterjet cutting machine entered the scene and caught in a frenzy of any competition.

 

The History of Waterjet within the Aerospace Industry

 

As early as the 1970s, aerospace companies started to use pure water cutting machines when manufacturing aircraft interior parts. Because the need for more precise solutions became apparent, the aerospace sector turned to abrasive waterjet cutting for a solution.

 

Today, almost every aerospace company within the industry uses waterjet technology to style the right components and machinery. In fact, you’d be hard-pressed to seek out a plane that has no waterjet-created parts.

 

What Waterjet Cutting Machine offers in Aerospace Production

 

So, how have waterjet cutting machines proven themselves to be precise, reliable, and powerful enough to satisfy the tight demands of aerospace production?

 

In large part, waterjet cutting machines are favored thanks to their adaptability. Not only can abrasive waterjets be adjusted to the precise needs of any given part; they will even be standardized for precise, uniform production on a large-scale basis. they're adaptable across projects, and across material types. Waterjets can effectively traverse a variety of drugs — including materials that will experience damage from other fabricating processes — such as:

 

Foam

Glass

Carbon fiber

Titanium

Rubber

Brass

Plastic

Alloys

Stainless Steel

Copper

Aluminum

 

The reason that waterjet cutting machines can cut numerous different materials is that they employ a cool-cutting process that leaves no heat-affected zones. Laser and other cutting processes are difficult to efficiently cut materials with high thermal conductivity such as steel and aluminum. Waterjet machines, on the opposite hand, eradicate any heat-affected zones that would cause microscopic cracks or structural weakness in components.

 

Waterjet cutting machines also work alongside control and automation technologies, to form production more standardized and easy. Considering the precision required in aerospace manufacturing, this is often an enormous benefit to companies within the industry. High-tech computer systems ensure parts are fully and punctiliously constructed, right right down to the littlest possible detail.

 

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