Reviews and Recommendations of Industrial Materials

In industrial applications, there are tons of different materials that can be used. Many materials have been used for years, but there are also new materials discovered along with technological advance. The following is a review regarding recommendations for the best materials that can also be found at Korindo.

Plastic

This material is the most common and mainstream material used, however, every time it always experiences significant developments. Plastic extrusions are widely used in industrial applications. Plastic has very salty properties so it is made for many purposes, from cutlery to the building industry.

Thermoset and thermoplastic are the two main types of plastic. The difference between the two is that thermoset hardens when heated and cannot be shaped, while thermoplastic can be heated and shaped several times. Whichever type you use, it all depends on your needs.

Polyethylene Terephthalate or PET is included as a thermoplastic for making bottles or food containers with shatter-resistant and lightweight properties. Then, Polycarbonate or PC is a type of thermoset which is widely used to make bulletproof or lenses because of its long-lasting and strong properties.

Plastic is one of the most widely chosen industrial materials because it is easy and cheap, has properties that are easy to shape, strong and durable.

Titanium

Titanium has been widely used as a material in many industrial fields, including the medical, aerospace, chemical and automotive industries. This material is well known among manufacturers because of its strong level of durability, far from corrosion, most importantly it can withstand extreme temperatures.

Titanium is often used as a material for making sports equipment, such as bicycles, golf clubs, and even jewelry. This material is easy to anodize to get the desired color so it is often chosen for piercing art. This type of metal is widely used for end user products, including cell phones, laptops or sunglasses.

Composite Metal Foam

Composite metal foam can be made into many things, including:

  • Made from a light but strong material as a core material for making vehicles or even airplanes
  • Good for making protective equipment because the material can reduce the effects of impact
  • Liquid and gas filtration
  • Helps to treat cancer
  • Material for thermal insulation

Making composite metal foam is by combining other materials with metal foam. All of this can be obtained by chemical or physical binding processes. As a type of composite metal foam material that is generally made by combining silicon carbide and aluminum.

When compared to conventional metal, this foam will be much more profitable. This is because it is lighter, stronger, and of course durable. This is what makes it the most abundant and allows it to be used as a metal industrial material with many functions and purposes.

Carbon Concrete

Carbon concrete is a new industrial material made by binding carbon dioxide gas with the concrete mixture. This step produces an industrial material that can be used in many types of industry and is of course environmentally friendly and safe.

The process of capturing carbon dioxide gas that enters the concrete mixture will produce a material that is much stronger and more durable compared to ordinary materials. This is what makes it very suitable for use as a multi-storey building material that requires a strong structure.

Based on reviews from Korindo, this industrial material can be very useful in many industrial sectors. This material is very suitable for constructing factory buildings that require large amounts of strength, thereby facilitating the performance of the industrial sector.

The carbon gas injected also means that this industry has contributed to a significant reduction in carbon emissions produced by industrial activities. This choice will enable both the industrial sector and nature conservation to work side by side and support each other.

Cellulose Nanofiber

Industrial materials from cellulose nanofibers are included in the class of nanomaterials that are currently being developed with many types and potential application purposes and are widely useful. This material is an ultra-fine fiber produced from cellulose, which is a polymer that is produced naturally and is abundant in the world.

There are many properties that will be very beneficial for industrial development obtained from these nanofibers, including high stiffness and strength, low density, very easily decomposed naturally and organically, and most importantly, they can be easily renewed.

All the advantages possessed by cellulose nanofiber industrial materials have been widely researched and developed so that they can be applied in many types of industry, including in the construction sector, the automotive equipment manufacturing sector, and the packaging industry.

There are many challenges that need to be faced by every industry that wants to implement the use of nanofiber materials and experience real benefits. One of the challenges is the extraction process from plant biomass into cellulose nanofiber. This is a process that takes a long time and costs a lot of money. Not only that, cellulose nanofibers generally undergoes a mixing process with other types of vegetable materials, which increases the level of difficulty in application and cannot be done by everyone.

Platinum-Gold Alloy

Choosing an industrial material in the form of a platinum-gold alloy allows you to enjoy two material benefits at once. Everyone knows that Platinum is very hard and wear-resistant so it lasts a long time, on the other hand, many people appreciate gold because it shines and is also classy. Another advantage is that this metal material can also be applied like other types of metal so there is no special treatment and it makes it easier.

When platinum-gold alloys are used to make jewelry, generally the alloy will be mixed with other types of metal with the aim of producing a unique and attractive appearance. This material is also widely used in dental or general practitioner practices. An example of its application is when a platinum-gold alloy is chosen as a material for making sturdy and beautiful hip joints.

All the materials mentioned have their respective advantages and disadvantages which can answer many industrial challenges according to needs. This is what needs to be done so that we can continue to explore and find ways for better industrial development in the future of our children and grandchildren. You can also find other interesting reviews regarding industrial materials at Korindo, hopefully they are useful.