Limitations Of Conventional Formworks For Complex Geometries

Limitations Of Conventional Formworks For Complex Geometries

Concrete remains one of the most widely used materials for modern construction. However, concrete casting is a process that relies on good-quality formworks that support the flawless fabrication of walls, slabs, beams, and more. 

With the soaring importance of formwork in construction, the variety of these forms has also become diverse.  Earlier, timber and metal forms were the most commonly found alternatives. However, with unique construction site requirements surfacing with every passing day, plastic forms have now become the most popular choice. 

Be it the durability, flexibility, or customisability, everything about these modular plastic forms remain fitting for modern construction site requirements. Especially for concrete formworks, the new-age alternatives are considered a far better choice than the conventional options. 

Modern-day designs of buildings and structures are also becoming increasingly complex in terms of their curvatures, geometric dimensions, etc. Conventional forms that primarily focused on concrete casting following a specific design are no longer suitable for aesthetically appealing new-age designs. 

This is why the latest plastic and aluminium forms find more importance in the construction field. The following remain a few limitations of the conventional formworks for which the new-age plastic forms are becoming more popular. 

Does Not Fit Economically

Modern construction sites look for cost-saving alternatives to make the humongous project bills a little more manageable. Any technological innovation that makes the operating costs lower thus remains welcome. This is where the role of conventional formworks turns out to be limited. 

The construction formworks that feature non-repetitive and not-so-flexible structures, such as the conventional forms, fail to offer the structural precision a geometrically complicated structure demands. Therefore, for every project with a different design, the projects need to deploy an entirely new concrete formwork setup which is often a costly option.  The labor costs also increase while using the traditional formwork as they are heavy, need to be moved, ripped and re-installed manually several times. The plastic forms can be used repeatedly for the more complex and geometric constructions, are also flexible and light weight to handle in case of frequent deployments.

Therefore, conventional formworks are not amongst the best and the most economic choices when it comes to formworks for geometrically intricate designs. 

Has Little to No Reuse Value

Another factor that does not contribute to the favour of the conventional formworks in modern construction sites remains the formwork materials. Generally, metals like iron or wood remain the most widely used materials for manufacturing conventional formworks. 

But, all of these materials lack a quality that makes the plastic alternatives more popular – reusability. Concrete formwork companies are now focusing more on the manufacturing of plastic formworks with modular setups so that the structures can be altered according to site-specific requirements.  Plastic formworks find wider applications for their flexibility and capacity to support complex structural designs which the conventional formworks fail to perform. 

NovaFormWorks is one of the most trusted names in the market for a wide range of plastic & aluminium formworks. Formwork in construction has become indispensable for faster construction with better finish and several other reasons. However, compared to conventional formworks, plastic & aluminium ones are becoming more popular as these are perfect for geometrically intricate designs. 

Additionally, construction companies can use these formworks for multiple projects with different structural designs as the formworks remain adjustable. Check the collection of durable and flexible formworks manufactured by NovaFormWorks to pick the best one for your construction site requirements. 

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