简体中文

The wide application of laser plastic welding technology in the field of automobile manufacturing

338
2024-09-26 13:52:28
查看翻译

With the rapid development of society, people's demands for energy conservation, emission reduction, and safety in automobiles are increasing. Automobile manufacturers are seeking lightweight manufacturing processes for automobiles, changing traditional component packaging processes, and so on. Laser plastic welding technology has emerged, and below is a brief sharing of the application of plastic laser welding technology in the field of automotive manufacturing.


Diagram of Automotive Plastic Parts Products



A plastic finished product on a car may be made of multiple materials or components. To combine the various components, mechanical fasteners, adhesives, and welding processes can be used for processing. Among these three joining methods, mechanical fasteners can quickly connect the two components, but the leak proof function of the joint is poor, and local stress can easily cause separation between polymer materials; Adhesive can form seams with excellent leak proof function, but it is difficult to handle and has a slow curing speed. At the same time, when using adhesive bonding, there are high requirements for joint preparation procedures and surface cleanliness; The welding process has a better effect, producing adhesive and stable seams, with mechanical properties similar to the parent material, and a variety of welding forms. Different welding processes can be used according to different materials, sizes, and applications.

A plastic finished product on a car may be made of multiple materials or components. To combine the various components, mechanical fasteners, adhesives, and welding processes can be used for processing. Among these three joining methods, mechanical fasteners can quickly connect the two components, but the leak proof function of the joint is poor, and local stress can easily cause separation between polymer materials; Adhesive can form seams with excellent leak proof function, but it is difficult to handle and has a slow curing speed. At the same time, when using adhesive bonding, there are high requirements for joint preparation procedures and surface cleanliness; The welding process has a better effect, producing adhesive and stable seams, with mechanical properties similar to the parent material, and a variety of welding forms. Different welding processes can be used according to different materials, sizes, and applications.

Welding of plastic components
The so-called welding of plastic components refers to the use of heating to melt the surfaces of two thermoplastic components simultaneously, and to combine the two components into one under external force.

What are the welding processes for plastic parts
Plastic welding processes can be divided into two categories: one is mechanical mobile welding processes, including ultrasonic welding, friction welding, and vibration welding; The second is the external heating welding process, including hot plate welding, hot gas welding, and implant welding. According to different heating methods, it can also be divided into heating tool welding, induction welding, ultrasonic welding, high-frequency welding, hot plate welding, laser welding, vibration friction welding, infrared welding, hot pile welding, and hot air welding.

Plastic parts can be seen everywhere on the exterior, interior, functional, and structural components of modern vehicles. Replacing traditional metal materials with plastic has achieved a very outstanding weight reduction effect, which is of great significance for saving energy and reducing greenhouse gas emissions.

Replacing metal with plastic intake manifolds in automobiles can reduce mass by 40% to 60%, with a clear surface and low flow resistance, which can improve engine performance and play a positive role in improving combustion efficiency, reducing fuel consumption, and reducing vibration and noise. According to statistics, there are currently dozens of types of plastics used in automobiles, including polypropylene, polyethylene, polyurethane, polyvinyl chloride, ABS, nylon, and thermosetting composite materials. The average amount of plastic used per car accounts for 5% to 10% of the car's weight, and the requirements for lightweight, safety, and decorative features have also driven the progress of plastic laser welding technology in the automotive field.

At present, plastic laser welding technology has been successfully applied in the manufacturing industry of automotive bumpers, instrument panels and dashboards, brake lights, airbags, car toolboxes, car door panels, and other engine related components. With many traditional metal components starting to be replaced with plastics, such as intake manifolds, instrument pointers, radiator reinforcements, fuel tanks, and filters, there is a particularly good opportunity for the application and discussion of new technologies in the field of plastic welding. Low energy consumption, high-efficiency, non-toxic, and pollution-free welding equipment will become the trend of technological progress in automotive welding lines in the future.

Source: Yangtze River Delta Laser Alliance

相关推荐
  • Tongkuai and KDPOF launch their first 980 nm multi gigabit automotive interconnection system

    Tongkuai Optoelectronic Devices, a global leader in vertical cavity laser emitters (VCSEL) and laser diodes (PD) solutions based in Germany, and a Spanish expert in high-speed optical network solutions, KDPOF, showcased the first 980 nm multi gigabit interconnect system for automotive systems at last week's ECOC.Both companies are committed to achieving the most advanced optical data communication...

    2023-10-17
    查看翻译
  • NLIGHT releases new fiber laser products

    Recently, nLIGHT launched a new series of ProcessGUARD fiber lasers, which innovatively integrates process monitoring systems with fiber lasers and is committed to providing quality "protection" for applications such as cutting, welding, and additive manufacturing.New ConceptThe nLIGHT ProcessGUARD series fiber laser integrates a photodiode based plasma process monitoring system into the nLIGHT Co...

    2024-11-07
    查看翻译
  • Researchers use liquid metal and laser ablation to create stretchable micro antennas

    Researchers have developed a new method of making micro stretchable antenna with water gel and liquid metal. These antennas can be used for wearable and flexible wireless electronic devices to provide links between devices and external systems for power transmission, data processing, and communication.Using our new manufacturing method, we have demonstrated that the length of liquid metal antennas...

    2023-09-19
    查看翻译
  • Oxford University Tokamak Energy Company develops laser technology for fusion power plants

    Tokamak Energy is currently developing a new laser measurement technology for controlling extreme conditions inside fusion power plants.The laser based dispersion interferometer system is being tested at the company's headquarters in Oxford and will be installed on its world record breaking fusion machine ST40 later this year.Clean, safe, and renewable nuclear fusion power generation occurs inside...

    2024-03-14
    查看翻译
  • Implementing and studying non Hermitian topological physics using mode-locked lasers

    A mode-locked laser is an advanced laser that can generate very short optical pulses with durations ranging from femtoseconds to picoseconds. These lasers are widely used for studying ultrafast and nonlinear optical phenomena, but they have also been proven to be applicable to various technological applications.Researchers at the California Institute of Technology have recently been exploring the ...

    2024-03-27
    查看翻译