简介:Thispaperpresentsadirectmethodtofindtheinternalfaces.Itusesfoursetsofinformation:1getthecoordinatesofeachpointonthe3Dcompositeobjects;2basedonthe3Dcoordinatestocalculatealltheplaneequationoftwoobjects;3calculatealltheintersectinglinesofthetwoobjectsandexcludetheintersectinglineswhicharenotwithinthescopeoftheplane;4findingtheinternalface,theremainingintersectinglinesformedtheplaneistheinternalfaceofthetwoobjects.Weproposedanewalgorithmforfindinginternalfaces.Thisalgorithmcouldbeadaptedtoanyregularcompositeobjects.Thealgorithmworkswellforfindinginternalfaces.
简介:摘要3D打印技术也叫“快速成型技术”,它是根据计算机的数据将物品逐层打印出来的技术。这项原本运用在工业上的技术,在日渐完善下逐步向各个领域扩张延伸。近年来,越来越多的东西被打印出来建筑可以打印,电路可以打印,时装可以打印,美食可以打印,甚至人体器官的打印也在被挑战开发。因此,3D打印技术为我们揭开了一个全新的未来世界,全民DIY将会成为生活的主旋律,这是一项足以引发工业革命的技术。
简介:Inthepresentwork,theLEDchipwasirradiatedbyusing59.6MeVNionsinaterminalchamberoftheSector-focusedcyclotron(SFC)intheNationalLabortaryofHeavy-ionAcceleratorsinLanzhou.The63MeVNionspenetratedthroughagoldfoilandscatteredinalargearea.Theenergyofionwasreducedto59.6MeVafterscatteringofthegoldfoil.TheLEDwasprovidedbytheSemiconductorLightingCenterinInstituteofSemiconductorinBeijing.TheluminencesoftheLEDbefore/afterirradiationweretestedthroughaintegratingsphereinSemiconductorLightingCenterinInstituteofSemiconductorinBeijing.Theluminancewastestedunderacurrentof350mA.Fig.1showstherelationshipbetweentheluminencesandtheirradiationfluences.Theirradiationledto
简介:摘要目的提高妊娠期急性脂肪肝(AFLP)早期诊断、治疗及预后。方法对最近5年我院AFLP的3例病人的症状、实验室检查结果、临床诊断以及母婴结局进行回顾性分析。结果发病的妊娠年龄分别是19、20、27岁。双胎妊娠1例,占33.3%。发病时孕周分别是31+5、35+6、40+2周,均为妊娠晚期发病。主要症状有恶心、呕吐,主要实验室检查指标异常,3例均有WBC、TBIL、ALT或AST、Cr升高,3例凝血功能均明显异常,2例PLT降低,3例ALB低下。主要并发症为1例急性肾衰竭、2例低血糖、1例产后出血、1例消化性溃疡。3例均痊愈出院,新生儿存活。结论AFLP起病急,病情凶险,是与母儿病死率及发病率相关的极其严重的妊娠晚期合并症,定期产前检查、早期诊断、迅速终止妊娠,以及积极治疗是治愈AFLP最好的方法。
简介:文章针对中国电信CDMA2000lxEV—DO网络的室内优化工程,探讨了多种数据分析及故障定位方法,并提出了基于不同场景的室内室外站点协同优化的解决方案,达到了增强室内覆盖深度及关键指标性能,提升用户感知度的目的。
简介:TheprogressofresearchgoingoninGroupofEnergyMaterials(GEM),MaterialResearchCenter,in2014isinthefollowingthreeaspects.1.FacilitydevelopmentInordertopushforwardourstudyonfusionreactormaterials,weupgradedtheirradiationterminal(128#)ofthesectorfocusedcyclotron(SFC)atHIRFL,bydevelopinganewspecimenstagespecificforirradiationwithlow-fluencescatteredions.Sofartheterminaliscapableofirradiationtobothverylowfluences(106ions/cm2)andveryhighfluences(typically1016ions/cm2)forvariousmaterials.SpecimentemperaturecanbereadilycontrolledusingtheL-N2coolingstageorthethehigh-Tstage(upto600oC).Ourrecentinvestigationwithtransmissionelectronmicroscopy(TEM)ofthedefectsproducedbyhigh-energyNeionsinsteelspecimensprovidesaclearevidencethatdefectswereproduceduniformlyalongthedepthinthespecimen,indicatingthattheenergydegraderoftheterminalworkseffectivelytodispersetheionenergyinawiderange.AphotooftheterminaltogetherwithaSRIMestimateofdepthprofilesofdamageinan8%Crreducedactivationferritic/martensiticsteel(RAFMS)isshowninFig.1.