Laser marking has numerous advantages over conventional marking technologies. Laser marking is the best method if we want to mark our material with a long life. Nearly all materials can be marked with laser technology. The quality is impeccable, it doesn't wear off like paint or other old processes, it doesn't tear off and get wet like a label. It provides users with a mark that lasts for years.
In recent years, several industries have undergone continuous changes, among which perhaps the biggest change was the automotive industry and its suppliers. The rules of traceability are becoming stricter, so the best solution is to replace outdated technologies and switch to lasers. If you want a secure marking that lasts for many years, which guarantees its traceability, then laser engraving is the best possible choice.
Traceability has a number of advantages:
-Reduces the possibility of counterfeiting, as original products can be traced back to their place of origin.
-Manufacturing processes become simpler. With direct part marking, real-time tracking systems transmit process data at every stage of the manufacturing process, enabling supply chain optimization and reduced lead times.
A large supplier system created by a globally standardized architecture requires real-time visibility so that issues can be resolved quickly before products go to market.
It can be used to clean and remove certain surfaces. fiberersx laser cleaners are precision tools. They easily In the automotive industry, several cars have been recalled by manufacturers in recent years due to minor and major problems. Usually, the cause of the problem was a malfunctioning component. In order to be able to check which part was faulty, this is where the innovative laser-based marking technology comes into play. It increases the safety of the product and improves the efficiency of their traceability.clean workpieces and tools from the hardest rusts, oxides, deposits, oils and paints, etc.
Documenting the origin and history of the part is essential to ensure that recalls are carried out quickly and cost-effectively. If the documentation was not completed in full, it may be necessary to recall several cars, which increases the costs. So, laser marking helps to meet strict requirements related to product safety, process reliability, traceability and quality assurance.
During the use of the vehicles, the parts are exposed to many vicissitudes, so it is important to mention that the marking must be able to withstand the temperature, it must not be able to be erased, it must also withstand the test against light, but what should also be mentioned is the tolerance against lubricants.
Laser marking is timeless even as traditional technologies such as ink marking are temporary and outdated. The use of lasers also provides users with additional benefits, for example, the costs associated with continuous consumables can be eliminated, and parts can be marked without damage. Laser marking on circuit boards (PCBs) becomes resistant even to soldering.
It is used in many industries including:
Laser technology is already present in many industries, perhaps marking technology has been introduced to various industries for the longest time. Marking technology is not only important for the automotive industry, but the medical industry is also a requirement for the food industry. Traceability is equally important in all industries.
Laser surface painting offers a versatile and efficient solution for creating durable and high-quality markings on a wide range of acid-resistant materials as well as stainless steel materials.
With the help of developers, we continuously improve ourselves and our tools. In this way, we were able to create unique laser painting at the price of trials. We can display very unique and special colors and patterns on materials that respond well to the heat of the laser.
The color change occurs due to the oxidation and rearrangement of the surface molecules of the metal. Laser energy changes the surface oxide layer, creating different thicknesses and structures that interact with light to produce the desired colors.
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