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摩擦损伤
相关语句
  friction impairment
     Groups of test is done in different technology condition by Uster tester, and influence of coning and twister technology on yarn evenness, slub, thin place and neps are analyzed. The result shows that the fundamental reasons of worse evenness from bobbin yarn to cheese are friction impairment and linear density change & twist redistribution because of tension function.
     用乌斯特条干测试仪在不同的工艺条件下进行了多组试验,分析了络筒、捻线工艺对纱线条干均匀度、粗节、细节、棉结的影响,指出:从管纱到筒纱条干恶化的根本原因是摩擦损伤以及由于张力作用导致的纱线线密度变化和捻回重新分布;
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  “摩擦损伤”译为未确定词的双语例句
     The nano diamond particle improve friction surface lubricate condition, mainly by the nano particle repair and inlay effection Nanometer particle deposition in the friction contact region, fills the friction damage spot promptly, has the repair function, simultaneously prevents the crack from further development, achieves the goal of prolong fatigue life.
     纳米金刚石微粒通过微粒修复作用和镶嵌作用,改善摩擦表面的润滑状态。 在摩擦过程中,纳米微粒沉积在摩擦接触区域,填补摩擦损伤部位,起到修复作用,同时阻止裂纹的进一步发展,延长了陶瓷球疲劳寿命。
短句来源
     The results show that the major failure mechanisms are three types: compressive frictionizing surface within crushed zone,shear predominated cone cracks and radial cracks resulting from dynamic tensile stress.
     结果表明:弹击损伤后复合材料断口中存在压缩摩擦损伤、高速剪切失效和动态拉伸断裂三种形貌;
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  相似匹配句对
     crostructure, Property and Ductility Injury of Drill Rod Welded by Friction Welding </td></tr> <tr><td class="text11Green">     <font color=red >摩擦</font>焊接钻杆组织、性能及其韧性<font color=red >损伤</font> </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-HKGJ200411015.html" target="_blank" onclick="record('摩擦损伤', '双语例句', 'http://xuewen.cnki.net/CJFD-HKGJ200411015.html')">短句来源</a></td></tr> <tr><td>     Duodenal injuries </td></tr> <tr><td class="text11Green">     十二指肠<font color=red >损伤</font> </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-CXWK200603037.html" target="_blank" onclick="record('摩擦损伤', '双语例句', 'http://xuewen.cnki.net/CJFD-CXWK200603037.html')">短句来源</a></td></tr> <tr><td>     The Friction Heat Induced Phase Transformation and Spalling Mechanism of Train Wheel Steel </td></tr> <tr><td class="text11Green">     车轮钢<font color=red >摩擦</font>热致相变及<font color=red >损伤</font>机理研究 </td></tr> <tr><td class="text11" align="right"></td></tr> <tr><td>     Radiation Brain Injury </td></tr> <tr><td class="text11Green">     放射性脑<font color=red >损伤</font> </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-QLZL200306043.html" target="_blank" onclick="record('摩擦损伤', '双语例句', 'http://xuewen.cnki.net/CJFD-QLZL200306043.html')">短句来源</a></td></tr> <tr><td>     Frictional Vibration </td></tr> <tr><td class="text11Green">     <font color=red >摩擦</font>振动(一) </td></tr> <tr><td class="text11" align="right"> <a href="http://xuewen.cnki.net/CJFD-RHMF198305014.html" target="_blank" onclick="record('摩擦损伤', '双语例句', 'http://xuewen.cnki.net/CJFD-RHMF198305014.html')">短句来源</a></td></tr> </TABLE> </td></tr><tr><td> <IMG src="images/userdefine.png" border="0"> <font color="blue" size="3"><b>查询“摩擦损伤”译词为用户自定义的双语例句<br><br></b></font>    我想查看译文中含有:<input type="text" id="custom" name="custom" onkeydown="if(event.keyCode=='13'){tjCustom('%u6469%u64e6%u635f%u4f24');return false;}">的双语例句 <input style="cursor:pointer;" type="button" name="Submit" value="提交" onclick="tjCustom('%u6469%u64e6%u635f%u4f24');"></td></tr></TABLE></TD></TR> </TABLE><TABLE class=main-table cellPadding=0 cellSpacing=6 align=center><TR><TD><IMG src="images/dian_ywlj.gif" alt="例句" name=word></TD></TR><TR><TD><font class="text6Green">没有找到相关例句</font></TD></TR></TABLE><TABLE class=main-table cellPadding=0 cellSpacing=6 align=center><TBODY><TR><TD><IMG src="images/04.gif"><BR><BR></TD></TR><TR><TD class="text6"><p class="wz wz-en"> The epidemiological survey and the pathologico-anatomic observation on subluxation of the ulnar nerve at the elbow had been accomplished. This studies demonstrated that the subluxation was related to developmental defect, including dysplasia of medial epicondyle of the humerus, relax of the posterior cubital triangular ligament and the mesentery of the ulnar nerve, with particular sex preference(P< 0.010).In this condition,the ulnar nerve is more vulnerable to insult, which could cause truamatic ulnar neuritis.If... </p><p class="wz wz-en-all">The epidemiological survey and the pathologico-anatomic observation on subluxation of the ulnar nerve at the elbow had been accomplished. This studies demonstrated that the subluxation was related to developmental defect, including dysplasia of medial epicondyle of the humerus, relax of the posterior cubital triangular ligament and the mesentery of the ulnar nerve, with particular sex preference(P< 0.010).In this condition,the ulnar nerve is more vulnerable to insult, which could cause truamatic ulnar neuritis.If the symptomic subluxation were fail to respond to the conservative therapy,anterior transposition of the ulnar nerve is the only alternative.</p></TD></TR><TR><TD class="text6"><p class="wz wz-zh">通过流行病学调查和病理解剖观察,提示尺神经滑脱可能与组织结构发育缺陷有关,如肱骨内上髁较小,肘管三角韧带及尺神经系膜松弛等。男女之间尺神经滑脱发生率有显著性差异。肘部尺神经滑脱并非少见,鉴于尺神经滑脱者发生肘部尺神经损害的危险性较一般人群高,一旦尺神经损害其所支配的已挛缩的手内在肌很难恢复,尺神经滑脱者是值得人们注意的肘部尺神经损害的易感人群。因尺神经滑脱者除上述结构缺陷外,更重要的是尺神经滑脱过程为重复累积性损伤,故尺神经前移以免尺神经在肱骨内上髁反复<font color=red >摩擦损伤</font>为首选的治疗方法。</p></TD></TR><TR><TD class="text6"><p class="wz wz-en"> Objective:To study the effect of FANGSHENG YIYONG RUNHUAJI,a bionic medical lubricant,on alleviation of frictional injury in throat-esophagus in diagnostic and therapeutic endoscopy.Methods:674 patients were radomized into 2 groups,350 in lubricant group including 58 for therapeutic purposes,324 in controlled group including 61 for therapeutic purposes.Two parameters,bloody mucus from throats or on the tip of endoscope when pulled out,and pains and/or feelings of foreign body in throat-esophagus after examination... </p><p class="wz wz-en-all">Objective:To study the effect of FANGSHENG YIYONG RUNHUAJI,a bionic medical lubricant,on alleviation of frictional injury in throat-esophagus in diagnostic and therapeutic endoscopy.Methods:674 patients were radomized into 2 groups,350 in lubricant group including 58 for therapeutic purposes,324 in controlled group including 61 for therapeutic purposes.Two parameters,bloody mucus from throats or on the tip of endoscope when pulled out,and pains and/or feelings of foreign body in throat-esophagus after examination or treatment,were employed for evaluation between the 2 groups.Results:Significantly decreased bloody mucus and pains and/or feelings of foreign body in throat—— esophagus were found in 43 patients including 35 with therapeutic endoscopy in lubricant group,compared with that in 65 cases including 48 with therapeutic endoscopy in controls (P<0.05).Pains and feelings of foreign body in throat-esophagus disappeared in 80%(28) of the 35 cases with therapeutic endoscopy in lubricant group in 1 day and in all the 35 cases in 3 days after endoscopic procedure,while the same feelings disapperaed in 10.4%(5)in 1 day and 29.1%(14) of the 48 cases in 3 days (P<0.01).Conclusions:Frictional injury may be found in patients with diagnostic or therapeutic gastroscope,especially in patients with therapeutic purposes who showed significantly more bloody mucus,severe pains and/or feelings of foreign bodies in throat-esophagus.Use of the bionic medical lubricant promises sigificantly decreased friction injury in diagnostic or therapeutic endoscopy.</p></TD></TR><TR><TD class="text6"><p class="wz wz-zh">目的 :研究仿生医用润滑剂在胃镜检查和治疗时减轻患者咽 -食道<font color=red >摩擦损伤</font>的作用。方法 :将接受胃镜检查和治疗的患者 (774例 )随机分为仿生医用润滑剂组 (35 0例 ,其中内镜治疗 5 8例 )和对照组 (32 4例 ,内镜治疗 6 1例 ) ,操作时将润滑剂涂于内镜或内镜套管插入部表面 ;以检查或治疗完毕内镜带出或患者吐出血性粘液 +咽 -食道疼痛及 /或异物感第 1、3天消失等指标评估两组之间的差异。结果 :润滑剂组粘液血迹 +咽-食道疼痛及 /或异物感者 43例 (内镜治疗者 35例 ) ;对照组 6 5例 (内镜治疗者 48例 )。润滑剂组发生率显著低于对照组 (P <0 .0 5 )。润滑剂组 36例内镜治疗患者咽 -食道疼痛及 /或异物感第 1天内消失者 2 8例(80 % ) ,3d内全部消失 (10 0 % ) ;对照组第 1、第 3天消失率分别为 10 .4% (5 / 48)和 2 9.1(14/ 48) ,组间比较差异显著 (P <0 .0 1)。结论 :胃镜诊断和治疗可导致<font color=red >摩擦损伤</font>。内镜治疗引起患者术后吐出粘液血迹和咽 -食道疼痛及 /或异物感要比单纯内镜检查...</p><p class="wz wz-zh-all">目的 :研究仿生医用润滑剂在胃镜检查和治疗时减轻患者咽 -食道<font color=red >摩擦损伤</font>的作用。方法 :将接受胃镜检查和治疗的患者 (774例 )随机分为仿生医用润滑剂组 (35 0例 ,其中内镜治疗 5 8例 )和对照组 (32 4例 ,内镜治疗 6 1例 ) ,操作时将润滑剂涂于内镜或内镜套管插入部表面 ;以检查或治疗完毕内镜带出或患者吐出血性粘液 +咽 -食道疼痛及 /或异物感第 1、3天消失等指标评估两组之间的差异。结果 :润滑剂组粘液血迹 +咽-食道疼痛及 /或异物感者 43例 (内镜治疗者 35例 ) ;对照组 6 5例 (内镜治疗者 48例 )。润滑剂组发生率显著低于对照组 (P <0 .0 5 )。润滑剂组 36例内镜治疗患者咽 -食道疼痛及 /或异物感第 1天内消失者 2 8例(80 % ) ,3d内全部消失 (10 0 % ) ;对照组第 1、第 3天消失率分别为 10 .4% (5 / 48)和 2 9.1(14/ 48) ,组间比较差异显著 (P <0 .0 1)。结论 :胃镜诊断和治疗可导致<font color=red >摩擦损伤</font>。内镜治疗引起患者术后吐出粘液血迹和咽 -食道疼痛及 /或异物感要比单纯内镜检查的发生率显著增多。仿生医用润滑剂应用后患者咽 -食道疼痛及 /或异物感、粘液血迹的发生率显著减少。</p></TD></TR><TR><TD class="text6"><p class="wz wz-en"> With the scanning electron microscopy and semi-thin section at 2 μm,the surface structure and the microstructure of the skin and the skin sense receptor of Calotes versicolor were observed.There is one thick and long hair on the cap-like skin receptor that is localized in the scale pit.The skin structure of the skin sense receptor is markedly differently from the normal skin.In the skin sense receptor area,the β-layer clearly becomes thin and the germinal layer is a layer consisting of some tall columnar cells.There... </p><p class="wz wz-en-all">With the scanning electron microscopy and semi-thin section at 2 μm,the surface structure and the microstructure of the skin and the skin sense receptor of Calotes versicolor were observed.There is one thick and long hair on the cap-like skin receptor that is localized in the scale pit.The skin structure of the skin sense receptor is markedly differently from the normal skin.In the skin sense receptor area,the β-layer clearly becomes thin and the germinal layer is a layer consisting of some tall columnar cells.There is a specified dermal body under the skin sense receptor epidermis.In the part of normal skin,the Oberhutchen together with β-layer form the netted pits of scale surface and β-layer becomes thick.These are in accordance with its function of protecting the skin from mechanical injury.</p></TD></TR><TR><TD class="text6"><p class="wz wz-zh">用扫描电镜和半薄切片技术对变色树蜥 (Calotes versicolor )的皮肤及皮肤感受器的表面结构和显微结构进行了观察 ,皮肤感受器是位于鳞片凹窝中的帽状突起 ,其上有粗长的感觉毛 .皮肤感受器皮肤与一般皮肤结构有明显区别 ,其表皮中 β-角质层极薄 ,生发层由 1层高柱状细胞构成 .表皮下有特殊的真皮小体结构 .一般表皮的角皮层和 β-角质层形成网窝状结构 ,且 β-角质层明显增厚 ,这与其具有防止机械<font color=red >摩擦损伤</font>皮肤的功能相一致</p></TD></TR><TR><TD> <script type="text/javascript">getWzSwitch();</script></TD></TR><TR><TD align=right><a href="dict_result.aspx?m=m&style=&searchword=%e6%91%a9%e6%93%a6%e6%8d%9f%e4%bc%a4&tjType=article" class="textlink9" )"><< 更多相关文摘</a>    </TD></TR></TBODY></TABLE><TABLE class=main-table cellPadding=0 cellSpacing=6 align=center><tr><td align=left class=text><img src="images/dot.gif" alt="图标索引" name=dot><strong> 相关查询</strong></td></tr><tr><td><div class="zztj"><ul><li><a href="h_7010000.html">损伤</a></li><li><a href="h_962326000.html">损伤(</a></li><li><a href="h_4120000.html">摩擦</a></li><li><a href="h_2727314000.html">髁损伤</a></li><li><a href="h_1228759000.html">摩擦钻床</a></li><li><a href="h_1228751000.html">摩擦减震器</a></li><li><a href="h_2729655000.html">岩石摩擦</a></li><li><a href="h_1228750000.html">摩擦裂隙</a></li><li><a href="h_1228760000.html">摩擦驱动</a></li><li><a href="h_1228769000.html">摩擦元件</a></li><li><a href="h_2723530000.html">摩擦调整剂</a></li><li><a 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