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Structural adhesives for bonding optics to metals: a study of opto-mechanical stability

机译:用于将光学粘合到金属的结构粘合剂:光学稳定性研究

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With so many new adhesives available, characteristics affecting performance are not always well-defined. The user often selects an adhesive based on a single property and later finds his application compromised. This is an effort to study relevant properties of several different structural-type adhesives. The bonding geometry will utilize three types of glass (fused silica, BK-7, and Pyrex) bonded to metal mounts. The mounting geometry will include five different design approaches. These designs will investigate: face bonding, counter-bored mounts, edge bonding, and a flexure mount. The three metals selected (aluminum, titanium, and invar) are not only common to the industry but often used for matching the Coefficient of Expansion to the optical glass. Each optical flat will have its reflective surface used as a reference for angular stability. The adhesives selected will compare more traditional epoxies with one-part Ultraviolet Light (UV) cured products. The obvious advantage of the UV-cured adhesives is the instant cure on-demand. Several adhesives have been selected for differing properties including: viscosity, cure temperature, CTE, modulus of elasticity, out-gassing, and shrinkage upon cure. Discussion will compare each adhesive, its properties, and ease of use. Angular stability will be monitored as a function of: pre vs. post cure, accelerated life testing, thermal exposure, and vibration/shock exposure. Some discussion will be included on the Wavefront Distortion and Stress Birefringence.
机译:使用这么多的新粘合剂可用,影响性能的特点并不总是定义。用户通常根据单个属性选择粘合剂,后来发现他的申请受到损害。这是研究几种不同结构型粘合剂的相关性质的努力。粘合几何形状将利用与金属安装座粘合的三种类型的玻璃(熔融二氧化硅,BK-7和PEREX)。安装几何形状将包括五种不同的设计方法。这些设计将研究:面部粘合,钻孔架,边缘键合和挠性贴装。选择的三种金属(铝,钛和INVAR)不仅是行业的共同,而且通常用于将膨胀系数与光学玻璃匹配。每个光学平板将具有其反射表面,用作角度稳定性的参考。选择的粘合剂将比较更多的传统环氧树脂,紫外线紫外线(UV)固化产物。 UV固化粘合剂的明显优点是即时治愈的需求。已经选择了几种粘合剂,用于不同的性能,包括:粘度,固化温度,CTE,弹性模量,外出气泡和固化时收缩。讨论将比较每个粘合剂,其性质和易用性。将被监测角度稳定性:pre与后固化,加速寿命测试,热曝光和振动/冲击曝光。一些讨论将包括在波前畸变和压力双折射上。

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