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원통형 제품 마킹에 산업용 나노초 고체 레이저 적용

Jul 26 , 2022

원통형 제품 마킹에 산업용 나노초 고체 레이저 적용

 

마킹은 국가 규정 또는 기업 자체의 요구에 따라 금속 또는 비금속 재료에 생산일자, 유효기간, 유효기간, 제품 번호, 제품 로고 및 기타 문자 및 그림 정보를 표시하는 과정으로 매우 중요합니다. 제품 추적 및 위조 방지를 위해. 특별한 의미.

 

그러나 실제 마킹 공정에서 마킹할 제품의 표면은 평면이 아니라 특정 호 또는 소형 가전 제품의 플라스틱 쉘, 원형 보온병 컵, 캔, 충전 헤드와 같은 전체 실린더입니다. 특정 테이퍼, 배터리 등의 전통적인 마킹 작업을 사용하면 이러한 특수한 모양의 표면에 고품질 마킹을 달성하기 어렵습니다.

자외선 레이저  | 녹색 레이저  | 자외선 레이저  | 자외선 dpss 레이저  | 나노초 레이저  | UV 레이저 소스  | 고체 레이저

The emergence of laser equipment has brought a subversive solution. The principle is to use a high-energy-density laser to locally irradiate the surface of the material to vaporize or change the color of the material, thereby leaving a permanent mark. The industrial-grade nanosecond solid-state laser developed by RFH can easily perform wrap-around 360° marking on any irregular material surface, and the effect is particularly good, with fine and clear patterns or numbers and clear boundaries.

 

 

High-quality marking results are entirely due to the excellent performance of this laser. Very high beam quality M2 < 1.2, the focused spot is smaller, the energy density is higher, and it can bring a better depth of focus, which is especially important when marking cylindrical objects. The higher the fault tolerance of the marking process, the marking efficiency of the special-shaped surface is greatly improved. The output 355nm UV laser can be absorbed by most materials, so there are many types of marking materials, including various metals, glass, plastics, composite materials, etc., with wide applicability and stronger versatility; pulse width less than 25ns , the time to act on the surface of the material is short, the absorbed laser energy is less, the heat generated is less, and it will not diffuse to the surrounding to damage other materials around, the overall heat-affected zone is small, and a better marking effect can be obtained. It is clearer and the resolution of the entire marking is higher, which fully reflects the high quality of the product.

 

 

Although the traditional marking method can meet many requirements, it has completely lagged behind laser marking in terms of processing efficiency, processing accuracy and applicability. Laser marking has moved from laboratory to civilian use. Decades of development have made laser marking It penetrates into all aspects of life and becomes an indispensable and important force in various economic fields such as food, medicine, agricultural products, 3C electronics, electrical appliances, auto parts, and stainless steel products. The use of RFH nanosecond solid-state lasers is a leader in laser marking equipment. Its diversification, multi-purpose, high efficiency and high quality can actually improve quality and efficiency for customers and help customers move towards new development steps.

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