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1.
To realize ultimately efficient signal processing, it is necessary to replace electrical signal processing circuits with optical ones. The optical micro-resonator, which localizes light at a certain spot, is an essential component in optical signal processing. Single-crystal calcium fluoride (CaF2) is the most suitable material for a highly efficient optical micro-resonator. The CaF2 resonator can only be manufactured by ultra-precision machining processes, because its crystal anisotropy does not allow the application of chemical etching. However, the optical micro-resonator's performance depends definitely on the surface integrity.This study investigated the relationship between surface quality after ultra-precision machining and crystal anisotropy. Firstly, crack initiation was investigated on the (1 0 0), (1 1 0), and (1 1 1) planes using the micro-Vickers hardness test. Secondly, brittle-ductile transition was investigated by orthogonal cutting tests. Finally, cutting performance of cylindrical turning was evaluated, which could be a suitable method for manufacturing the CaF2 resonator. The most difficult point in cylindrical turning of CaF2 is that the crystalline plane and cutting direction vary continuously. In order to manufacture the CaF2 optical micro-resonator more efficiently, analysis was conducted on crack initiation and surface quality of all crystallographic orientations from the perspective of slip system and cleavage.  相似文献   
2.
This work addresses the phenomenon of the development of a patterned surface relief on polymer films via different modes of environmental crazing. Commercial films of semicrystalline poly(tetrafluoroethylene) (PTFE) and amorphous glassy poly(ethylene terephthalate) (PET) were subjected to tensile drawing in the presence of physically active liquid environments (carbon tetrachloride or aliphatic alcohols). The structure parameters and wettability of the modified films were studied by AFM, SEM, profilometer measurements and contact angle measurements. Environmental intercrystallite crazing of PTFE is accompanied by the development of an unstable structure with a high free surface, which experiences marked strain recovery upon unloading. As a result of the relief formation, PTFE hydrophobicity is enhanced (the water contact angle increases by 25°). Classical environmental crazing of PET films is accompanied by the formation of an anisotropic surface relief which is an assembly of crazes oriented perpendicular to the direction of tensile drawing, thus leading to the phenomenon of anisotropic wetting. The proposed approach for structural surface modification makes it possible to use the advantages of surface instability and spontaneous self‐organization of the polymer towards the development of a unique surface microrelief. © 2020 Society of Chemical Industry  相似文献   
3.
Porous alumina with a highly textured microstructure was fabricated by pulse electric current sintering (PECS) using alumina platelets. Highly oriented porous alumina with a porosity of 3%–50% was obtained by a pressure-controlled method of PECS. The properties of the highly textured porous alumina were measured in two directions. The nitrogen gas permeance and thermal conductivity at room temperature were higher in the direction along the platelet length due to the higher continuity of pores and the connectivity of alumina platelets, respectively. The anisotropy of the thermal conductivity at room temperature was investigated and explained by the effect of grain size of platelets as well as morphology and orientation of pores. The bending strength was higher with the loading direction along the platelet thickness. The thermal shock strength was clearly different in the two directions. The difference in the thermal shock strength was investigated by the measurement of properties and thermal stress analysis.  相似文献   
4.
Abstract

The I-shaped cross-sectional beam of CFRP (CFRP I-beam) is usually manufactured by the continuous protrusion method. Carbon fibers can only be arranged in the longitudinal direction. The CFRP I-beam with arbitrary arrangement of carbon fiber was manufactured with applying the electro-activated deposition molding method. The carbon fiber fabric was immersed in the deposition solution and energized, epoxy resin precipitated around carbon fiber and impregnated. The resin-impregnated fabric was installed to the mold, and the CFRP I-beam was fabricated. The CFRP I-beam was subjected to three-point bending tests, and the relationship between load-deflection was simulated by finite-element analysis.  相似文献   
5.
Highly textured TiB2 ceramics were prepared by slip casting an aqueous suspension in a magnetic field of 9 T, followed by sintering using Field Assisted Sintering Technology (FAST). Particle size refinement by ball milling improved both the degree of texturing and densification of the material (RD > 98 %). The sintered material exhibited a Lotgering orientation factor of 0.90, with the c-axis of TiB2 oriented parallel to the magnetic field and FAST pressing direction. The texturing effect induced by the uniaxial pressing was negligible. The textured TiB2 material exhibited a significant anisotropy in mechanical properties; the values of hardness and indentation elastic modulus measured along directions transverse to the c-axis of TiB2 were 37 % and 13 % higher than the ones measured along the c-axis direction. Moreover, the specific wear rate of a surface of textured TiB2 parallel to the field was one order of magnitude lower than a surface perpendicular to the field.  相似文献   
6.
VTI介质的AVO理论与应用研究   总被引:3,自引:2,他引:1  
AVO(Amplitude Versus Offset)技术的研究已有30多年的发展历程,其中有起有落,近两年在国际上该技术的应用又日趋广泛,发展较快,在寻找隐蔽性和裂缝性油气藏方面,AVO具有其他方法不能替代的作用,本文通过对羊屋三维数据的处理,解释一体化的研究,发现VTI各向异性介质对动校正存在较大的时差影响,本次研究成功地应用VTI介质成像理论对该地区地震数据进行了时差校正,同时采用时频域球面发散和吸收补偿加地表一致性(炮点,接收点和炮检距项)反褶积较好的振幅和频率补偿结果,并实现了相对保持振幅的要求,通过此次处理,解释一体化研究,发现了一块具有第二类AVO特性的,在常规成像条件下无法识别的地质异常体。  相似文献   
7.
热压/热变形Nd2Fe14B/α-Fe纳米双相永磁体的研究   总被引:3,自引:0,他引:3  
为了制备各向异性块状Nd2Fe14B/α—Fe纳米双相永磁体,研究了热压/热变形工艺参数与样品微观组织结构、磁性能之间的关系。结果表明,饱和磁化强度Js随模压温度的升高而提高;而剩磁Jr、内禀矫顽力Hcj和最大磁能积(BH)max开始都随模压温度的升高而上升,但超过一定温度后反而降低;同时提高热压压力会使磁性能增加,而热变形温度对磁性能影响很小。热变形后样品垂直于压力方向的磁性能略高于平行于压力方向,呈现出轻微的各向异性。Nd2Fe14B/α—Fe纳米双相永磁材料在热压/热变形后没有产生晶粒的择优长大,在晶体学上仍然是各向同性的。  相似文献   
8.
反常声电光频谱分析器   总被引:4,自引:1,他引:3  
介绍了一种新型的反常声电光频谱分析器,它可以采用外加电压的办法改变器件的中心频率,扩大器件的频带宽度,并改善器件在频带宽度范围内的频率响应特性。用LiNbO3制作了一个60MHz的反常声电光频谱分析器件,测试结果表明,器件中心频率可以由50MHz变到70MHz,频带宽度由原来的26MHz扩大到37MHz。  相似文献   
9.
The proposed models for irreversible finite deformation of initially anisotropic solids are based on the hypothesis of the parameters of state, for which the authors have chosen a universal parameter (temperature) and a strain component, which is analogous to volume strains in an isotropic body and represents thermal strains of an unconstrained (stress-free) anisotropic solid. The application of this hypothesis allows the strain tensor to be resolved into a reversible and irreversible components. For irreversible processes of finite deformation of hardenable materials, the authors have proposed a deformation-type model, which makes it possible to describe a change in the type of anisotropy of initially anisotropic materials in the course of deformation. For the flow-theory-type model, the limiting state function, as given in the space of irreversible strains, allows for the experimentally observed plastic flow of anisotropic crystals under the action of hydrostatic pressure only.  相似文献   
10.
横向各向同性介质纵波非双曲线时差速度分析   总被引:3,自引:0,他引:3  
在各向异性介质中,纵波反射旅行时具有非双曲线时差特性,随排列长度的增大非双曲线现象更加明显。显然,常规双曲线时距曲线方程已经不能满足描述地震勘探中日益复杂的地球介质模型的需求。为此,在时距关系中增加含炮检距的四次项,并采用分式展开法表示该四次项,同时引入远偏移距收敛因子。改进后的时距关系表达式在形式上接近于常规地震波双曲线型时距关系,清楚地描述了横向各向同性介质中速度随炮检距的变化。实例表明,该算法提高了各向异性介质速度分析精度,改善了剖面叠加效果。  相似文献   
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