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VCSEL IR FOR INDUSTRY APPLICATIONS

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  • 公司名称深圳市蓝谱里克科技有限公司
  • 品       牌
  • 型       号
  • 所  在  地深圳市
  • 厂商性质其他
  • 更新时间2025/2/28 11:41:57
  • 访问次数63
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深圳市蓝谱里克科技有限公司,成立于2004年,专注于UV紫外线发光光源的研发生产和销售,是一间LED UV产品生产商,一间脉冲紫外线产品生产商,中国UV LED一间和深圳市,公司拥有四十多项,包括六项发明和PCT国际,是中国UV 光源行业最多的生产商,蓝谱里克紫外线技术涵盖LED UV紫外线光源-脉冲UV紫外线光源-氙灯UV紫外线光源和微波UV紫外线光源, 是紫外线光源行业具备最多发光技术方式的生产商。 蓝谱里克强大的UV光源研发和设计能力,配合众多的自动化厂商和印刷设备厂商,涂装设备厂商,灌装流水线厂商,VOC处理方案商以及众多大学,研究所,提供从软件到硬件的解决方案,为研发机构提供的UV荧光不同光谱光源工具,为UV光固化行业提供技术融合,蓝谱里克的UV光源产品广泛应用于光电子行业的粘结固化,印刷行业的油墨干燥,家具涂装行业的油漆干燥,钢板涂覆行业的油漆干燥,液态灌装流水线的在线杀菌处理,医疗行业的皮肤病治疗,末端处理的尾气紫外线分解,水泥地坪漆的快速干燥等等领域。 蓝谱里克20年UV紫外线行业经验,积累了丰富的专业知识,愿携手各行UV应用同仁,共同创造新应用 开发新市场,提供新价值。
VCSEL systems can be used for drying and curing processes of surfaces, paints, coatings and thin films. As an example of a high speed drying application, a VCSEL line heating module has been successfu......
VCSEL IR FOR INDUSTRY APPLICATIONS 产品信息
Application

Drying and Curing

VCSEL systems can be used for drying and curing processes of surfaces, paints, coatings and thin films. As an example of a high speed drying application, a VCSEL line heating module has been successfully integrated into an offset printing system for in-line ink drying [3]. In another application, fast curing of coating layers on metal sheets has been successfully demonstrated.

 

Plastics and Composites

The power density of VCSEL heating modules is sufficient to melt plastic materials at high speed. Examples of related industrial processes are forming of plastic parts and joining of parts by plastics welding. Also treatment of thermally melting glues can be done on various surfaces with a high processing speed.

thermal treatment

needed in various composite manufacturing processes. As an example, in a fast carbon fiber placement process, heat is applied at the laying head to attach the fibers or tapes on the surface and thereby enabling a stable build-up of the composite layers (Fig. 6).

VCSEL heating modules offer an attractive alternative to the currently used gas flames, halogen lamps or fiber coupled lasers with complicated beam forming optics or scanners. Very compact source heads are possible, delivering high power density in configurable and controllable radiation profiles.

Simulation of fiber tape heating with a time-dependent 3D-model has been done with an IR module power of 400 W per cm heating width – resembling an area module like shown in Fig. 3 – with a rectangular heat input profile of 40 mm length and a carbon fiber tape of 6 mm width and 0.2 mm thickness.

The results (Fig. 6) are confirming the application potential. For a processing speed of 30 m/min, a maximum temperature of 300 °C is reached, which is already more than enough in this application.

For applications, where materials need to be structurally modified at high temperature, the high energy density delivered by the VCSEL heating technology enables new solutions.

 

High power VCSEL systems define a new generation of industrial heating systems, where thousands of individual micro-lasers irradiate each point on the work piece, combining the ease of use and the robustness of LEDs with the brightness and efficiency of lasers. Scalable systems are available based on standard building blocks, combining customization with economy of scale. Assembly technologies have been derived from the LED industry, which has since long eliminated weak links. Therefore high power VCSEL systems are set to become exceptionally robust and reliable. The systems can be tailored to the application with no or simple optics. They enable an unprecedented dynamic control of the spatial heating profile and thereby help to realize a truly “Digital Thermal Processing”, where flexible, automatically controlled processes are replacing experience-based machine settings and tedious ramp-up procedures.  VCSEL systems will be used in many applications which are not using lasers today but rely on lamps or ovens. The concepts presented in this article make the transition to solid state technology with full digital control, and thereby help to drive digitization of manufacturing technology.

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