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Smart laser pipe cutting machines make pipe cutting easier.

2020.07.08

1. Introduction to Intelligent Laser Pipe Cutting Machines: Intelligent laser pipe cutting machines are ideal for mass production of various customized pipe types. They can directly cut long pipes and output them, thereby boosting work efficiency and saving labor time. 2. Working Principle of Intelligent Laser Pipe Cutting Machines: 1. Simply manually place the pipes into the feed channel; the motor will automatically begin sequentially sorting and arranging the pipes, neatly dispensing them one by one before transporting them to the cutting waiting area.

Custom Laser Equipment: How to Assess the Quality of Laser Tube Cutting Machines

2020.07.01

Compared with manual and semi‑automatic cutting methods, laser tube cutting machines can significantly improve both the cutting efficiency and the quality of sheet metal, while also reducing the physical workload of operators. So how can you determine the quality of a laser tube cutting machine? In China, some small and medium-sized enterprises—and even certain large corporations—still rely on manual and semi‑automatic cutting processes. Therefore, when purchasing a laser tube cutting machine, consumers must pay particular attention to both the machine’s quality and its cutting performance. Next, a custom laser equipment manufacturer will show you how to assess the quality of a laser tube cutting machine.

Custom Laser Equipment: How Much of an Impact Does a Laser Welding Machine Have on the Human Body?

2020.06.22

Laser welding machines are typically categorized into heat‑conduction welding and deep‑penetration welding. In the former, heat is conducted throughout the workpiece, with melting occurring only at the weld surface. The material inside the workpiece remains largely unpenetrated, and vaporization is minimal. This method is primarily used for low‑speed welding of thin‑walled materials. In contrast, deep‑penetration welding not only fully penetrates the material but also causes it to vaporize, generating large amounts of plasma. Due to the high heat input, keyhole formation occurs at the leading edge of the molten pool.

A Brief Discussion on Laser Equipment Upgrade Design

2020.06.15

Laser Equipment Upgrade Design: When laser welding different materials, the precise positioning of the laser beam plays a crucial role in determining the final weld quality—this is especially true for butt joints compared to lap joints. For example, when welding hardened steel gears onto low-carbon steel drums, properly controlling the laser beam’s position can help produce a weld characterized primarily by low‑carbon constituents that exhibit excellent crack resistance. In certain applications, the geometry of the workpiece to be welded may require a specific angle of laser beam deflection. As long as the deflection angle between the beam axis and the joint plane remains within 100 degrees, the workpiece’s absorption of laser energy will not be adversely affected.

Laser Equipment Upgrade: Applications of Laser Cutting Machines in the Kitchenware Industry

2020.06.09

Laser equipment upgrade manufacturers have found that laser cutting machines offer distinct advantages over traditional sheet‑metal cutting methods. They feature fast cutting speeds and high production efficiency; deliver excellent cut quality with narrow kerfs; exhibit strong material compatibility and no tool wear; and can quickly and precisely cut and form both simple and complex parts. With a high degree of automation, simple operation, low labor intensity, and zero pollution, laser cutting also boasts low production costs and strong economic returns—plus, the technology enjoys a long effective service life.

Laser Equipment Retrofit: How to Adjust the Optical Path of a Laser Cutting Machine

2020.06.04

Laser Equipment Modification: How to Adjust the Laser Cutting Machine’s Optical Path – Adjusting the First Beam: Use masking tape to affix it over the alignment target hole on Reflector A. Manually jog the laser (please note that the power should not be set too high at this stage) and make fine adjustments to the base of the laser. Adjust Reflector A and the laser tube holder so that the beam shines directly into the center of the target hole, ensuring that the beam is not obstructed.
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