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1.
基于数字光处理技术的3D打印技术   总被引:4,自引:0,他引:4  
介绍了以数字光处理(digital light processing,DLP)技术发展出的3D打印技术并讨论了其光学系统对成型效果的影响.介绍了现有3D打印技术的种类、光固化快速成型技术以及DLP技术的原理.说明了以DLP技术为核心的3D打印系统的基本结构,具体说明了DLP技术如何运用于快速成型领域.内容包括数字微镜器件(digital micro-mirror device,DMD)的组成和驱动原理、DLP技术中使用的典型光学系统结构,以及它们在3D打印技术中起到的作用.接着,讨论了在3D打印应用中,DLP技术需要注意的问题.内容包括DLP系统适用的光波长、投影幅面的均匀性和成型精度.最后,总结了DLP技术在3D打印领域的优势及不足.  相似文献   
2.
可证明安全是指方案的安全性可以被证明.即该方案能够抵抗密码攻击。随机预言模型是可证明安全中的重要工具。近年来,椭圆曲线密码由于具有良好的性质,而引起了人们的普遍关注。利用椭圆曲线上的双线性对,设计一个签名方案,该方案在随机预言模型下是可证明安全的.并且效率也很高。  相似文献   
3.
High-performance polymers are an important class of materials that are used in challenging conditions, such as in aerospace applications. Until now, 3D printing based on stereolithography processes can not be performed due to a lack of suitable materials. There is report on new materials and printing compositions that enable 3D printing of objects having extremely high thermal resistance, with Tg of 283 °C and excellent mechanical properties. The printing is performed by a low-cost Digital Light Processing printer, and the formulation is based on a dual-cure mechanism, photo, and thermal process. The main components are a molecule that has both epoxy and acrylate groups, alkylated melamine that enables a high degree of crosslinking, and a soluble precursor of silica. The resulting objects are made of hybrid materials, in which the silicon is present in the polymeric backbone and partly as silica enforcement particles.  相似文献   
4.
Abstract— A novel green laser source, based on a monolithic cavity microchip laser platform, has been developed. The laser is designed to be a part of a miniature and efficient RGB light source for microdisplay‐based mobile projector devices. The use of highly efficient, periodically poled MgO‐doped lithium niobate as the non‐linear frequency doubler allows for a significant increase in the overall efficiency of the green microchip laser. Specifically, a 50–150‐mW green output with a wall‐plug efficiency exceeding 10% in the temperature range of greater than 40°C has been demonstrated. A compact package for this laser source with a volume less than 0.33 cm3 is discussed and results of performance tests are presented.  相似文献   
5.
AlN ceramics were successfully fabricated through a joint process of digital light processing (DLP) 3D printing technology and heat treatment at 1780 °C∼1845 °C. DLP is an addictive manufacturing process, enabling the near net shape fabrication. The AlN grains in this work developed well and there were small amounts of grain-boundary phases at the three-grain junctions. The particle size of AlN became larger and the densification increased with increasing sintering temperature. The pores of AlN ceramics also decreased, which led to the increase of thermal conductivity and flexural strength. The optimal thermal conductivity and flexural strength of AlN ceramic reached 155 W/(m·K) and 265 ± 20 MPa when sintered at 1845 °C.  相似文献   
6.
投影机的发展——LCD与DLP的技术分析   总被引:2,自引:0,他引:2  
随着多媒体技术在教育领域的广泛应用,作为教育工作者,充分了解投影设备的技术发展,对我们做好教学工作是很有必要的。本文就目前常用的两类投影机LCD和DLP的特性作了详细分析,以利于了解其性能,在购置时按照不同的需要进行选择。  相似文献   
7.
定义了一种多重签名机制 :责任性子群多重签名 (Accountable -SubgroupMultisignatures ,ASM )。ASM机制能够使已知的签名者G的任一子群S有效地签发消息M ,且签名可以向任一验证者证明S中每个签名者的身份。其中 ,第一个多重签名的安全形式化模型要包括密钥的产生 (在无可信任第三方的情况下 ) ;基于Schnorr数字签名的协议必须是可验证的和有效的 :每次签名只需三方通信 ;无论有多少个签名者 ,每个签名者的签名时间与单个Schnorr签名方案的时间相同 ;验证时间与单个Schnorr签名方案的验证时间相差无几 ;无论有多少个签名者 ,签名的长度与单个Schnorr签名方案的签名长度相同。ASM的安全的证明是基于Randomoracles和离散对数问题难度的  相似文献   
8.
超高压汞灯(UHP)是液晶投影仪和液晶背投电视的光源,具有光效高、寿命长、光谱好和接近理想的点光源等特点,在DLP,LCD,LCOS等各种液晶投影显示系统中应用广泛。从安全使用的角度介绍了UHP灯芯和灯碗结构特点和设计要求,对UHP灯光谱特征以及延长UHP灯使用寿命的关键措施进行了讨论,并强调了合理的电气工作条件的重要性。  相似文献   
9.
目前多媒体显示终端主要有前投影机、平板电视、背投电视及阴极射线管彩电等,根据各种产品的技术特点、发展现状和教学应用,进行了综合比较。  相似文献   
10.
Abstract— Cathode‐ray tubes (CRTs) have been the dominant display technology for years, having the best image performance and low cost. During the last several years, flat‐panel‐display technologies, such as liquid‐crystal displays (LCDs), began to replace the CRT mainly because of its favorable form factor. Today, the image performance of LCDs are equal to that of a CRT, and attractive flat‐display products have become so affordable that they have replaced the CRT from its dominating market position and have obtained the largest market share. In the past, the CRT set the standards for digital imaging technologies, but today, modern image capturing, storage, transport, signal processing, and printing technologies have improved to such high levels that they demand better display technologies and standards. At present, the LCD is at the forefront of this display‐technology evolution. This paper will focus on the latest image‐quality improvements in LCD technology and briefly touch alternatives such as plasma‐display panels (PDP) and microdisplay projection. Special attention will be given to the latest developments in wide‐color‐gamut technologies and methods to reproduce accurate colors within a display device.  相似文献   
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