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    • 2. 发明申请
    • FLUORO-RUBBER COMPOSITION AND BLADDER FOR TIRE FABRICATION
    • 氟橡胶组合物和轮胎制造用刀片
    • US20130225758A1
    • 2013-08-29
    • US13817965
    • 2010-08-25
    • Masashi YanoDaisuke OtaShuichi Okutsu
    • Masashi YanoDaisuke OtaShuichi Okutsu
    • C08K3/04
    • C08K3/04B29D22/02B29D30/0654B29D2030/665C08K5/0025C08L27/12C08K5/14
    • A fluoro rubber composition which is able to make both a high tensile strength and a high elongation at break after vulcanization compatible with each other and from which favorable mechanical characteristics are obtained even in a high-temperature environment; and a bladder for tire fabrication, which is manufactured using the same are provided. The fluoro rubber composition includes a rubber component containing a fluoro rubber and carbon black, wherein in a dynamic viscoelasticity test of an unvulcanized rubber by a rubber process analyzer (RPA) (measurement temperature: 100° C., measurement frequency: 1 Hz), a difference δGA′ (G′(1%)−G′(100%)) between a shear modulus G′ (1%) at the time of a dynamic strain of 1% and a shear modulus G′ (100%) at the time of a dynamic strain of 100% is 120 kPa or more and not more than 3,000 kPa.
    • 能够使硫化后的拉伸强度高,断裂伸长率高的氟橡胶组合物,即使在高温环境下也能获得良好的机械特性, 并且提供了使用其制造的用于轮胎制造的气囊。 氟橡胶组合物包括含有氟橡胶和炭黑的橡胶组分,其中在橡胶过程分析仪(RPA)(测量温度:100℃,测量频率:1Hz)的未硫化橡胶的动态粘弹性试验中, 在1%的动态应变时的剪切模量G'(1%)和剪切模量G'(100%)之间的差ΔGA'(G'(1%)-G'(100%)) 100%的动态应变时间为120kPa以上且3000kPa以下。
    • 3. 发明申请
    • MICROSCOPE
    • 显微镜
    • US20130141562A1
    • 2013-06-06
    • US13817121
    • 2011-08-05
    • Masashi YanoHirofumi FujiiMichio YanagisawaYukio Tokuda
    • Masashi YanoHirofumi FujiiMichio YanagisawaYukio Tokuda
    • H04N7/18
    • G02B21/365G01N21/95607G02B21/0016
    • A microscope according to the present invention includes an imaging unit including a first illuminating unit, an imaging element, and a projection optical system, the first illuminating unit including a light source that illuminates a first object, the imaging element performing imaging of the first object, the projection optical system projecting an image of the first object onto the imaging element; a measuring unit configured to measure a second object for setting an imaging condition used when performing imaging of the second object at the imaging unit; and a controller configured to concurrently perform the imaging of the first object at the imaging unit and the measurement of the second object at the measuring unit.
    • 根据本发明的显微镜包括:成像单元,包括第一照明单元,成像元件和投影光学系统,所述第一照明单元包括照亮第一物体的光源,所述成像元件执行所述第一物体的成像 投影光学系统将第一物体的图像投影到成像元件上; 测量单元,被配置为测量第二物体,用于设置在所述成像单元处执行所述第二物体的成像时所使用的成像条件; 以及控制器,其被配置为在所述成像单元处同时执行所述第一对象的成像以及所述测量单元处的所述第二对象的测量。
    • 8. 发明申请
    • Server, VPN client, VPN system, and software
    • 服务器,VPN客户端,VPN系统和软件
    • US20060070115A1
    • 2006-03-30
    • US11047772
    • 2005-02-02
    • Mariko YamadaMasashi YanoMakoto Arai
    • Mariko YamadaMasashi YanoMakoto Arai
    • H04L9/32
    • H04L63/08H04L63/164
    • When forming an L2VPN, each VPN server is required to decrypt data received from a VPN client using the source VPN client key and encrypt the data using the destination VPN client key. The loads of the encrypting and decrypting processings are high, thereby the VPN server through-put is lowered. In order to solve the above problem, according to the present invention, the destination address of an IP packet sent from the VPN client is used as a multicast address, then data is encrypted according to the security association of the multicast address distributed from the VPN server. The encrypted IP packet is encapsulated with the IP address of the VPN server and sent to the VPN server. Receiving this IP packet, the VPN server determines the destination VPN client according to the multicast address of the encapsulated IP packet, then encapsulated with the IP address of the destination VPN client and sent to the VPN client.
    • 当形成L2VPN时,需要每个VPN服务器使用源VPN客户端密钥解密从VPN客户端接收的数据,并使用目的VPN客户端密钥对数据进行加密。 加密和解密处理的负载很高,从而降低了VPN服务器的吞吐量。 为了解决上述问题,根据本发明,将从VPN客户端发送的IP分组的目的地址用作多播地址,然后根据从VPN分发的组播地址的安全关联来加密数据 服务器。 加密的IP数据包用VPN服务器的IP地址封装并发送到VPN服务器。 接收到该IP报文后,VPN服务器根据封装的IP报文的组播地址确定目的VPN客户端,然后用目的VPN客户端的IP地址封装并发送给VPN客户端。