查询词典 subdivision chain
- 与 subdivision chain 相关的网络例句 [注:此内容来源于网络,仅供参考]
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Three new fringe subdivision methods are first proposed opposing to the restrictions of the traditional subdivision methods. They are fringe subdivision method based on self correlation coefficient, fringe subdivision method based on gene algorithm and fringe subdivision method based on Fourier-transform.
本文针对传统软件细分方法的局限性,首次提出了三种新的条纹细分方法:基于自相关系数的条纹细分法、基于遗传算法的条纹细分方法和基于傅立叶变换的条纹细分方法。
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By the use of Circling cluster and Envlopment theory and flat surface sit-mark transformation theory, the chain wheel tooth equation of roller chain at high speed to match conjugage engagement is deduced.Establishing chain speed equation of roller chain at high speed,based on the analysis of the speed curves between roller chain at high speed and common roller chain,good drive of roller chain at high speed is verificated theoretically.By a example that move distance from transverse vibration between roller chain at high speed and common roller chain is contrasted,the accuracy of those theories that the paper brings up and higher functions of roller chain at high speed is proved.Finally, Establishing conjugage engagement line equation of roller chain at high speed and analyzing the complete engagement zone, the chain wheel tooth curve equation is studied at a higher degree. At the same time,the lack's place of the research result is pointed out.
依据高速滚子链设计要求与H_y-V_0齿形链的研究,阐述了滚子链传动实现准共轭啮合理论可能性;利用圆族包络法结合平面坐标变换理论推导出了满足共轭啮合的高速滚子链的链轮齿廓曲线;建立起高速滚子链链速方程,通过对高速滚子链与普通滚子链链速曲线的对比分析,从理论上验证了高速滚子链具有良好的传动性能;最后,建立起高速滚子链共轭啮合线方程,对其整个啮合区间进行了分析,进一步研究了链轮齿廓曲线方程,确定了主要参数的设计方法的问题,并同时指出了不足之处。
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Zhejiang permanent Machinery Group of China is the sole approved by the State Economic and Trade Commission of the Chinese chain export base, the company under the seven plants, Seiko produced "CHJC","permanent" licensing standards and chain of more than 10,000 kinds of non-standard specifications (specifications Precision sleeve roller chain, the chain plate, flat-top chain, silent chain, Shu Songlian, the Agricultural Machinery chain, chain oil, metallurgical use chain, motorcycle chain, speed chain, sprocket, coupling ......).
浙江恒久机械集团是中国唯一经国家经贸委批准的中国链条出口基地,集团公司下属七个分厂,精工制作"CHJC"、"恒久"牌标准和非标准链条10000多种规格(各种规格的精密套筒滚子链、板式链、平顶链、齿形链、输送链、农机链、石油链、冶金用链、摩托车链、倍速链、链轮、联轴器。。。。。。)。
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Zhejiang permanent Machinery Group of China is the sole approved by the State Economic and Trade Commission of the Chinese chain export base, the company under the seven plants, Seiko system "CHJC","Hang the" licensing standards and chain of more than 10,000 kinds of non-standard specifications (various The precise specifications sleeve roller chain, the chain plate, flat-top chain, silent chain, Shu Songlian, the Agricultural Machinery chain, chain oil, metallurgical use chain, motorcycle chain, speed chain, sprocket, coupling .....).
浙江恒久机械集团是中国唯一经国家经贸委批准的中国链条出口基地,集团公司下属七个分厂,精工制"CHJC"、"恒入"牌标准和非标准链条10000多种规格(各种规格的精密套筒滚子链、板式链、平顶链、齿形链、输送链、农机链、石油链、冶金用链、摩托车链、倍速链、链轮、联轴器。。。。。。)。
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With reference to the experience of specific practice on strategic alliance in typical domestic and overseas port like New Jersey Port in New York, port of Kaohsiung, Keelung and Taizhong, major ports in Yangtze River Delta, the possible modes of Rizhao Port strategic alliance were proposed. Based on the previous analysis, specific design on the supply chain management system of Rizhao Port viewing from strategic alliance was given in this dissertation, which mainly covered two aspects. On the one hand, based on the overall review of common design process, structure design and selection of partnership of supply chain management, and with consideration of the development trend of Rizhao Port, the double-sector style supply chain structure mode of Rizhao Port was put forward based on strategic alliance. On the other hand, in order to make it more clear on the specific process and contents of this kind of supply chain structure, the specific implementation of five supply chain for Rizhao Port in which capital was taken as the hub were proposed, named as, the coal supply chain based on norm regular ship transport mode, the ironstone supply chain based on cost optimization, the crude oil transport supply chain with the aim of extending petrifaction industrial chain, the timber transport supply chain based on circulating economy concept, and the farming transport supply chain based on futures theory.
在前文分析的基础上,论文重点论述了基于战略战略联盟的日照港口供应链管理的总体框架构建和具体规划设计两方面:一方面,在对供应链管理一般构建流程、结构设计、供需均衡及合作伙伴选择等方面进行全面总结基础上,并结合日照港口的发展趋势,推出了基于纵向战略联盟的日照港口集团式双扇形供应链结构模型;另一方面,为进一步理清日照港口双扇形供应链结构中相关供应链的具体流程及内容,特提出了以资本为纽带日照港口五大供应链的具体设计,即基于准班轮运输模式的日照港煤炭供应链,基于成本最优化日照港口铁矿石供应链,以延伸石化产业链为目标的日照港原油运输供应链,基于循环经济理念的日照港木材运输供应链,基于期货理论的农业定单式日照港农业运输供应链。
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The whole industrial chain and branch chains of circular economy have been planned for Zhenhai chemical park. The branch chains consist of ethane chain, C_1 chain, HC1 chain, H_2chain, NH3 chain and S chain. The concept of equivalent pollutant emission, E, has beenproposed and a reference line based on equivalent pollutant emission has been given and applied to the primary appraisal for Zhenhai chemical park. The whole chain and branch chemical industry chains have been also planned for ZJC group company, which include the industrial chain containing fluorine, the industrial chain of basic chemicals and the industrial chain of petroleum chemical industry.
本文对镇海化学工业区的工业链构建进行了可行性分析;完成了园区工业链的整体规划设计,和包括乙烯工业链、碳一工业链、HCl工业链、H_2工业链、NH_3工业链、S元素工业链在内的6条分链的设计;提出了污染排放当量E_t~′的概念,并将其应用到园区工业链招商的初评,制定了入园参考线;本文在对ZJC集团公司发展现状分析的基础上,根据其物质流和能量流的分析,进行了工业链的总体设计,并对氟化工产业、基础化工产业(包括以合成氨为代表的煤化工、以氯碱生产为代表的盐化工以及硫酸、电石等产业)和石油精细化工产业完成了分链设计,进行了分链的分析,提出了建议。
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The main content reads as follows: Chapter 1 gives a survey on the three methods by which regular geometric modeling can be rended, including parametric curves/surfaces modeling method, algebraic curves/surfaces modeling method and subdivision. Moreover we introduce in greater detail about two means for subdivision which fit into two class: geometric subdivision and algebraic subdivision.
全文主要内容如下:第一章首先对CAGD中构造&规则几何形体&的三类造型方法:参数曲线、曲面造型方法,代数曲线、曲面造型方法及细分法——曲线、曲面的离散化造型方法,作了较系统的综述,并对两类主要的细分法——几何方法与代数方法,作了较详细的介绍。
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Adaptive subdivision is performed only in the areas facing to the viewpoint in the pre-process. And in the each adaptive subdivision, we choose the normal angle of the adjacent faces as the control error to detect whether the approximation is sufficient. Sharp edges are automatically tagged according to the given thresholdθand subdivision masks are designed based on different sharp degrees.
在预处理过程中,只选取面向视点的网格作为能够被进一步自适应细分的网格;在自适应细分过程中,用相邻面片的法向夹角作为控制误差来反映细分的逼近程度是否足够;并根据预设的阈值θ自动标记网格中的尖锐特征边,重新设计尖锐特征处的权值掩模。
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This paper presents an IFMC CAD model that consits of a geometry model and a material model, in which the geometry space acts as a base space and the material space acts as a bundle space. In this CAD model, the geometry model is based on the non-manifold model. In addition, a half-face data sturucture, which is derived from the half-edge data structure with the non-manifold feature of IFMC taken into account, is adopted to represent the geometry and topology information of the component. For the material model of IFMC, this paper focuses on the FGM component representation firstly and present a simplex-subdivision based CAD data exchange format, in which the material information is represented as a (n-1) simplex and material distributing feature is represented by the interpolation on the simplex-subdivision. Based on those, a part-building orientation optimization algorithm and an adaptive slicing algorithm for FGM component are presented in the paper. For the IFMC material model, the IFMC material information representation is divided into a meso-scale and a macro-scale representation. In the meso-scale, a concept named parameterized periodic functional meso-structure is presented as a unique form to represent the FGM (the homogeneous materials are regarded as a special FGM), the composite and the functional meso-structure material. The model of PMS is a three-tuple that contains the space state informatation, the material parameter and the material meso-scale distribution feature. The macro-scale material information representation is similar to the FGM components by interpolation of the control parameter of the periodical functional meso-structure based on the simplex-subdivision. Through an example of manufacturing-oriented IFMC CAD data processing, it is proved that the IFMC CAD model and the material information representation and process method proposed in this paper can provide a reliable data support for IFMC digital concurrent design and manufacturing.
本文将理想材料零件CAD模型建立在以几何空间为底空间、以材料空间为丛空间的结构上,使用非流形几何模型作为理想材料零件几何拓扑模型的基础,并在半边数据结构基础上,针对理想材料零件的非流形特征局限内部边界上的特点,给出了一个半面数据结构来表述零件的几何拓扑信息;对于理想材料零件的材料模型,本文先从功能梯度材料零件的信息表述与CAD数据交换和处理入手,将材料信息表述为(n-1)维单纯形,然后通过对三维几何区域的单纯剖分,以插值的方式表述零件材料分布特征;在此基础上,根据功能梯度材料零件分层制造中对CAD数据处理的要求,给出了综合考虑零件几何特征与材料特征的生长方向优化算法和自适应切片算法;而对于文中所定义的理想材料零件,本文将其材料信息表述分解到细观和宏观两个尺度进行,首先给出了细观尺度上参数化的周期性功能细结构概念,以此来统一表述功能梯度材料(单质材料作为特殊的功能梯度材料看待)、复合材料和功能细结构材料;把周期性功能细结构模型化为一个包含空间状态信息、材料构成参数和材料细观分布特征参数的三元组,以表达零件的细观材料特征;对于零件宏观的材料变化特征,则同样在几何区域单纯剖分的基础上,通过对细观尺度上周期性功能细结构控制参数的插值来完成;通过理想材料零件CAD数据处理的算例,验证了本文中理想材料零件CAD模型及材料信息表述与处理方法完全可以为理想材料零件的数字化制造提供可靠的数据支持。
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This paper presents an IFMC CAD model that consits of a geometry model and a material model, in which the geometry space acts as a base space and the material space acts as a bundle space. In this CAD model, the geometry model is based on the non-manifold model. In addition, a half-face data sturucture, which is derived from the half-edge data structure with the non-manifold feature of IFMC taken into account, is adopted to represent the geometry and topology information of the component.For the material model of IFMC, this paper focuses on the FGM component representation firstly and present a simplex-subdivision based CAD data exchange format, in which the material information is represented as a (n-1) simplex and material .distributing feature is represented by the interpolation on the simplex-subdivision. Based on those, a part-building orientation optimization algorithm and an adaptive slicing algorithm for FGM component are presented in the paper.For the IFMC material model, the IFMC material information representation is divided into a meso-scale and a macro-scale representation. In the meso-scale, a concept named parameterized periodic functional meso-structure is presented as a unique form to represent the FGM (the homogeneous materials are regarded as a special FGM), the composite and the functional meso-structure material. The model of PMS is a three-tuple that contains the space stateinformatation, the material parameter and the material meso-scale distribution feature. The macro-scale material information representation is similar to the FGM components by interpolation of the control parameter of the periodical functional meso-structure based on the simplex-subdivision.Through an example of manufacturing-oriented IFMC CAD data processing, it is proved that the IFMC CAD model and the material information representation and process method proposed in this paper can provide a reliable data support for IFMC digital concurrent design and manufacturing.
本文将理想材料零件CAD模型建立在以几何空间为底空间、以材料空间为丛空间的结构上,使用非流形几何模型作为理想材料零件几何拓扑模型的基础,并在半边数据结构基础上,针对理想材料零件的非流形特征局限内部边界上的特点,给出了一个半面数据结构来表述零件的几何拓扑信息;对于理想材料零件的材料模型,本文先从功能梯度材料零件的信息表述与CAD数据交换和处理入手,将材料信息表述为(n-1)维单纯形,然后通过对三维几何区域的单纯剖分,以插值的方式表述零件材料分布特征;在此基础上,根据功能梯度材料零件分层制造中对CAD数据处理的要求,给出了综合考虑零件几何特征与材料特征的生长方向优化算法和自适应切片算法;而对于文中所定义的理想材料零件,本文将其材料信息表述分解到细观和宏观两个尺度进行,首先给出了细观尺度上参数化的周期性功能细结构概念,以此来统一表述功能梯度材料(单质材料作为特殊的功能梯度材料看待)、复合材料和功能细结构材料;把周期性功能细结构模型化为一个包含空间状态信息、材料构成参数和材料细观分布特征参数的三元组,以表达零件的细观材料特征;对于零件宏观的材料变化特征,则同样在几何区域单纯剖分的基础上,通过对细观尺度上周期性功能细结构控制参数的插值来完成;通过理想材料零件CAD数据处理的算例,验证了本文中理想材料零件CAD模型及材料信息表述与处理方法完全可以为理想材料零件的数字化制造提供可靠的数据支持。
- 相关中文对照歌词
- Chain Of Fools
- Chain Of Fools
- Chain Of Fools
- Off The Chain
- My Chain
- Sewing Up Crap
- Chain Hang Low
- Chain Gang
- Chain Of Fools
- Break Every Chain
- 推荐网络例句
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It has to be computed by the host for the actual clock rate.
主控制器可以用来计算实际的时钟速率。
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Let's see what you got.
让我看看你的东西
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I combined 2 recipes, 100% Whole Wheat with Olive Oil and 100% Whole Wheat with Flaxseed.
我合并2食谱,100%和100%橄榄油与亚麻籽全麦全麦。