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Gluing Interface Qualification Test results and Gluing Process Development of the EUCLID Near-Infrared Spectro-Photometer Optical Assembly

机译:EUCLID近红外分光光度计光学组件的涂胶接口资格测试结果和涂胶工艺开发

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The Near Infrared Spectro-Photometer Optical assembly (NIOA) of EUCLID satellite requires high precision large lens holders with different lens materials, shapes and diameters. The aspherical lenses are glued into their separate CTE matched lens holder. The gluing of the lenses in their holder with 2K epoxy is selected as bonding process to minimize the stress in the lenses to achieve the required surface form error (SFE) performance (32nm) and lens position stability (±10um) due to glue shrinkage. Adhesive shrinkage stress occurs during the glue curing at room temperature and operation in cryogenic temperatures, which might overstress the lens, cause performance loss, lens breakage or failure of the gluing interface. The selection of the suitable glue and required bonding parameters, design and qualification of the gluing interface, development and verification of the gluing process was a great challenge because of the low TRL and heritage of the bonding technology. The different material combinations (CaF2 to SS316L, LF5G15 and S-FTM16 to Titanium, SUPRASIL3001 to Invar M93), large diameter (168mm) and thin edge of the lenses, cryogenic non-operational temperature (100K) and high performance accuracy of the lenses were the main design driver of the development. The different coefficients of thermal expansion (CTE) between lens and lens holder produce large local mechanical stress. As hygroscopic crystal calcium fluoride (CaF2) is very sensitive to moisture therfore an additional surface treatment of the gluing area is necessary. Extensive tests e.g glue handling and single lap shear tests are performed to select the suitable adhesive. Interface connection tests are performed to verify the feasibility of selected design (double pad design), injection channel, the roughness and treatment of the metal and lens interfaces, glue thickness, glue pad diameter and the gluing process. CTE and dynamic measurements of the glue, thermal cycling, damp-heat, connection shear and tension tests with all material combinations at RT and 100K are carried out to qualify the gluing interface. The gluing interface of the glued lenses in their mounts is also qualified with thermal cycling, 3D coordinate measurements before and after environmental tests, Polarimetry and vibration test of the lens assemblies. A multi-function double pad gluing tool and lens mounting tool is designed, manufactured and verified to meet the lens positioning and alignment performance of the lens in the holder which provides the possibility to glue lenses, filters, mirrors with different diameters, shapes and thickness with ±10μm accuracy in plane, out of plane and ±10 arcsec in tip/tilt with respect to the lens holder interface. The paper presents the glue interface qualification results, the qualification/verification methods, the developed ground support equipment and the gluing process of the EUCLID high precision large cryogenic lens mounts. Test results achieved in the test campaign demonstrate the suitability of the selected adhesive, glue pad design, interface parameters and the processes for the precise gluing of the lenses in lens holders for all lenses. The qualification models of the NIOA are successfully glued and qualified. The developed process can also be used for other glass materials e.g. MaF2 and optical black coated metallic surfaces.
机译:EUCLID卫星的近红外分光光度计光学组件(NIOA)需要具有不同透镜材料,形状和直径的高精度大型透镜支架。非球面镜片粘贴到其单独的CTE匹配镜片支架中。选择使用2K环氧树脂在其支架中粘合镜片,以最大程度地降低镜片中的应力,以达到所需的表面形成误差(SFE)性能(32nm)和由于胶水收缩而导致的镜片位置稳定性(±10um)。胶粘剂收缩应力发生在室温下的胶水固化过程中以及在低温条件下运行时,这可能会给镜片造成过大的应力,导致性能下降,镜片断裂或粘合界面失效。由于低的TRL和传统的粘合技术,选择合适的胶水和所需的粘合参数,粘合界面的设计和鉴定,粘合过程的开发和验证是一个巨大的挑战。不同的材料组合(从CaF2到SS316L,从LF5G15和S-FTM16到钛,从SUPRASIL3001到Invar M93),镜片的大直径(168mm)和薄边缘,低温非工作温度(100K)和镜片的高性能精度是开发的主要设计驱动力。镜头和镜头座之间的热膨胀系数(CTE)不同,会产生较大的局部机械应力。由于吸湿性晶体氟化钙(CaF2)对水分非常敏感,因此需要对粘合区域进行额外的表面处理。进行广泛的测试,例如胶水处理和单搭接剪切测试,以选择合适的粘合剂。进行接口连接测试,以验证所选设计(双垫设计),注入通道,金属和透镜接口的粗糙度和处理,胶水厚度,胶垫直径和上胶工艺的可行性。对所有材料组合在RT和100K下进行胶水的CTE和动态测量,热循环,湿热,连接剪切和拉伸测试,以验证胶合界面。胶合透镜在其安装座中的粘合界面还具有热循环,环境测试前后的3D坐标测量,透镜组件的偏振和振动测试的资格。设计,制造和验证了多功能双垫粘合工具和镜片安装工具,以满足镜片在支架中的镜片定位和对准性能,从而可以粘合不同直径,形状和厚度的镜片,滤光镜,反射镜相对于镜座接口,平面内,平面外精度为±10μm,笔尖/倾斜度为±10 arcsec。本文介绍了EUCLID高精度大尺寸低温透镜安装座的胶合界面鉴定结果,鉴定/检验方法,已开发的地面支撑设备以及粘合过程。在测试活动中获得的测试结果证明了所选胶粘剂的适用性,胶垫设计,界面参数以及用于在所有镜片的镜片支架中精确粘合镜片的工艺。 NIOA的资格模型已成功粘合并合格。所开发的方法还可以用于其他玻璃材料,例如玻璃。 MaF2和光学黑涂层金属表面。

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