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横滨与美孚合作推出新型无内胎轮胎气密层胶料加工技术
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《中国石油和化工》 2004年第9期48-48,共1页
据海外媒体报道,日本横滨橡胶公司最近获得一项无内胎轮胎气密层胶料加工技术的专利权。这项新技术最初是由横滨橡胶公司开发成功的,后与埃克森一美孚化学公司合作进行了改进。
关键词 日本横滨橡胶公司 内胎轮胎气密胶料 低透气性塑料 加工工艺 埃克森-美孚化学公司
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输送轮耐磨层穿透力模拟及仿真研究 被引量:1
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作者 吴朝润 王召巴 陈友兴 《核电子学与探测技术》 CAS CSCD 北大核心 2013年第3期392-394,共3页
输送轮在日常生活中相当普遍,一般是环状构造,包含两部分:内胎层和耐磨层,耐磨层粘合于内胎层。在使用过程中如果耐磨层和内胎层脱粘,可能造成设备损坏,还可能导致人员受伤,所以要对其进行粘接质量研究。论文对耐磨层进行仿真和模拟,判... 输送轮在日常生活中相当普遍,一般是环状构造,包含两部分:内胎层和耐磨层,耐磨层粘合于内胎层。在使用过程中如果耐磨层和内胎层脱粘,可能造成设备损坏,还可能导致人员受伤,所以要对其进行粘接质量研究。论文对耐磨层进行仿真和模拟,判断超声的穿透力用来辅助实际测量。 展开更多
关键词 耐磨 内胎层 高斯声束 高斯叠加
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Roles of the Nanog protein in murine F9 embryonal carcinoma cells and their endoderm-differentiated counterparts
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作者 Yanmei Chen Zhongwei Du Zhen Yao 《Cell Research》 SCIE CAS CSCD 2006年第7期641-650,共10页
Nanog is a recently discovered homeodomain transcription factor that sustains the pluripotency of embryonic stem (ES) cells and blocks their differentiation into endoderm. The murine F9 embryonal carcinoma cell line... Nanog is a recently discovered homeodomain transcription factor that sustains the pluripotency of embryonic stem (ES) cells and blocks their differentiation into endoderm. The murine F9 embryonal carcinoma cell line is a well-documented model system for endoderm cell lineage differentiation. Here, we examined the function of Nanog in F9 cell endoderm differentiation. Over-expression of Nanog returns the F9 cells to the early status of ES cells and represses the differentiation of primitive endoderm and parietal endoderm in F9 cells, whereas it has no effect on the differentiation of visceral endoderm. In contrast, the expression of C-terminal domain-truncated Nanog spontaneously promotes endoderm differentiation in F9 cells. These data suggest that Nanog is required to sustain the proper undifferentiated status of F9 cells, and the C-terminal domain of Nanog transduces the most effects in repressing primitive endoderm and parietal endoderm differentiation in F9 cells. 展开更多
关键词 NANOG F9 embryonal carcinoma cells ENDODERM differentiation
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