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Chemical modification of barite for improving the performance of weighting materials for water-based drilling fluids
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作者 Li-Li Yang Ze-Yu Liu +3 位作者 Shi-bo Wang Xian-Bo He Guan-Cheng Jiang Jie Zhang 《Petroleum Science》 SCIE EI CAS CSCD 2024年第1期551-566,共16页
With increasing drilling depth and large dosage of weighting materials,drilling fluids with high solid content are characterized by poor stability,high viscosity,large water loss,and thick mud cake,easier leading to r... With increasing drilling depth and large dosage of weighting materials,drilling fluids with high solid content are characterized by poor stability,high viscosity,large water loss,and thick mud cake,easier leading to reservoir damage and wellbore instability.In this paper,micronized barite(MB)was modified(mMB)by grafting with hydrophilic polymer onto the surface through the free radical polymerization to displace conventional API barite partly.The suspension stability of water-based drilling fluids(WBDFs)weighted with API barite:mMB=2:1 in 600 g was significantly enhanced compared with that with API barite/WBDFs,exhibiting the static sag factor within 0.54 and the whole stability index of 2.The viscosity and yield point reached the minimum,with a reduction of more than 40%compared with API barite only at the same density.Through multi-stage filling and dense accumulation of weighting materials and clays,filtration loss was decreased,mud cake quality was improved,and simultaneously it had great reservoir protection performance,and the permeability recovery rate reached 87%.In addition,it also effectively improved the lubricity of WBDFs.The sticking coefficient of mud cake was reduced by 53.4%,and the friction coefficient was 0.2603.Therefore,mMB can serve as a versatile additive to control the density,rheology,filtration,and stability of WBDFs weighted with API barite,thus regulating comprehensive performance and achieving reservoir protection capacity.This work opened up a new path for the productive drilling of extremely deep and intricate wells by providing an efficient method for managing the performance of high-density WBDFs. 展开更多
关键词 Drilling fluids weighting materials Filtration control Reservoir protection Stability property
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Resistance of Cement-based Grouting Materials with Nano- SiO_(2) Emulsion to Chloride Ion Penetration
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作者 LI Shuiping CHENG Jian +2 位作者 WEI Chao YUAN Bin YU Chengxiao 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2025年第1期114-119,共6页
The chloride penetration resistance of cement-based grout materials was improved by nano-silica emulsion.Specimens of mixtures containing different nano-silica particles or emulsions were exposed in sodium chloride so... The chloride penetration resistance of cement-based grout materials was improved by nano-silica emulsion.Specimens of mixtures containing different nano-silica particles or emulsions were exposed in sodium chloride solutions of specific concentrations with different test ages.Hardened properties of the mixes were assessed in terms of weight loss and compressive strength.X-ray diffraction(XRD)and scanning electron microscopy(SEM)of mixes were performed to analysis the phase evolution and microstructure.The results demonstrated that the introduction of nano-SiO_(2) emulsion significantly decreased the compressive strength loss and calcium hydroxide(CH)crystal content of hydration production,and then enhanced the resistance of cement-based grouting materials to chloride ion penetration.This improvement derives from the filling and pozzolanic effects of nano-SiO_(2) particles,which were incorporated via an emulsion and attributed to a well dispersion in grouting matrix. 展开更多
关键词 grouting materials nano-SiO_(2)emulsion chloride ion penetration weight loss strength loss
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Effects of Functional Organic Materials on Fresh Weight,Quality,Single-melon Weight and SPAD Value of Watermelon
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作者 Kun CHEN Yuefeng ZHAO +5 位作者 Xiaoxue REN Mingda YANG Mingjun ZHAO Yumei WANG Xinhua HUANG Hao LIU 《Agricultural Biotechnology》 2024年第4期54-56,共3页
[Objectives]This study was conducted to explore a functional organic material formula suitable for watermelon cultivation with high quality,high yield and high efficiency.[Methods]Four treatments were set in the exper... [Objectives]This study was conducted to explore a functional organic material formula suitable for watermelon cultivation with high quality,high yield and high efficiency.[Methods]Four treatments were set in the experiment,namely four functional organic materials,garlic straw treatment(T_(1)),onion straw treatment(T_(2)),garlic straw+sheep manure treatment(T_(3))and onion straw+chicken manure treatment(T_(4)),to investigate the effects of different functional organic materials on fresh weight,quality,single-melon weight and SPAD value of watermelon.[Results]The effects of different functional organic materials on fresh weight,quality,single-melon weight and SPAD value of watermelon were quite different.The fresh weight,quality,single-melon weight and SPAD value of watermelon were higher in treatment T_(3)applying garlic straw and sheep manure and treatment T_(4)applying onion straw and chicken manure than in treatment T_(1)applying garlic straw and treatment T_(2)applying onion straw.Specifically,the fresh weight of whole plant was the highest in treatment T_(3),followed by treatment T_(4),and the values of the two treatments increased by 12.83%and 5.94%respectively compared with treatment T_(1);the weight of single melon was the highest in treatment T_(3),followed by treatment T_(4),and the values of the two treatments increased by 42.45%and 31.77%respectively compared with treatment T_(2);and the SPAD values of treatments T_(3)and T_(4)were significantly higher than those of treatments T_(1)and T_(2),and the value of treatment T_(3)was the largest.[Conclusions]This study provides theoretical support for the popularization and application of fertilization techniques combining organic fertilizers and reduced chemical fertilizers for watermelon. 展开更多
关键词 WATERMELON Organic materials Fresh weight QUALITY Single-melon weight SPAD value
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Optimum Weight Design of Functionally Graded Material Gears 被引量:7
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作者 JING Shikai ZHANG He +1 位作者 ZHOU Jingtao SONG Guohua 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2015年第6期1186-1193,共8页
Traditional gear weight optimization methods consider gear tooth number, module, face width or other dimension parameters of gear as design variables. However, due to the complicated form and geometric features peculi... Traditional gear weight optimization methods consider gear tooth number, module, face width or other dimension parameters of gear as design variables. However, due to the complicated form and geometric features peculiar to the gear, there will be large amounts of design parameters in gear design, and the influences of gear parameters changing on gear trains, transmission system and the whole equipment have to be taken into account, which increases the complexity of optimization problem. This paper puts forward to apply functionally graded materials(FGMs) to gears and then conduct the optimization. According to the force situation of gears, the material distribution form of FGM gears is determined. Then based on the performance parameters analysis of FGMs and the practical working demands for gears, a multi-objective optimization model is formed. Finally by using the goal driven optimization(GDO) method, the optimal material distribution is achieved, which makes gear weight and the maximum deformation be minimum and the maximum bending stress do not exceed the allowable stress. As an example, the applying of FGM to automotive transmission gear is conducted to illustrate the optimization design process and the result shows that under the condition of keeping the normal working performance of gear, the method achieves in greatly reducing the gear weight. This research proposes a FGM gears design method that is able to largely reduce the weight of gears by optimizing the microscopic material parameters instead of changing the macroscopic dimension parameters of gears, which reduces the complexity of gear weight optimization problem. 展开更多
关键词 GEARS optimum weight design functionally graded materials material distribution additive manufacturing
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Structure and Properties of Self-reinforced Material Made from Ultra-high Molecular Weight Polyethylene-montmorillonite Nanocomposite 被引量:3
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作者 WANGQing-zhao LIAOXian-ling LIUZong-lin 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2004年第4期504-510,共7页
High-strength and high-modulus ultra-high molecular weight polyethylene(UHMWPE), named self-reinforced material, was obtained by the elongation of UHMWPE-montmorillonite nanocomposite at melting temperature. According... High-strength and high-modulus ultra-high molecular weight polyethylene(UHMWPE), named self-reinforced material, was obtained by the elongation of UHMWPE-montmorillonite nanocomposite at melting temperature. According to the scanning electron microscope(SEM) analysis, a great deal of fibrillar texture formed in the direction of elongation, and the tensile fractured surface was similar to that of highly oriented fiber. The transmission electron microscope(TEM) and selective area electron diffraction(SAED) analyses reveal that the reinforced phase of the self-reinforced material is an extended chain crystal and its size is about 50_200 nm wide and several microns long, and the montmorillonite layers are broken up to pieces in the size from 100 to 10 nm. The broken layers which have a huge surface area interacting strongly with macromolecules reduces the entanglement density of UHMWPE and induces the chain orientation in flow field. It is supposed that the astriction of montmorillonite layers to polyethylene chains is not only end-tethered but also side-tethered. The differential scan calorimetry(DSC) analysis shows that there are two endothermal peaks for the self-reinforced material, of which the peak at a higher temperature(136.4 ℃) is ascribed to the melting of the reinforced phase. 展开更多
关键词 Ultra-high molecular weight polyethylene-montmorillonite nanocomposite ELONGATION Self-reinforced material Properties Structure
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Size effect of lattice material and minimum weight design 被引量:3
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作者 Jun Yan Wen-Bo Hu +1 位作者 Zhen-Hua Wang Zun-Yi Duan 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2014年第2期191-197,共7页
The size effects of microstructure of lattice materials on structural analysis and minimum weight design are studied with extented multiscale finite element method(EMsFEM) in the paper. With the same volume of base ... The size effects of microstructure of lattice materials on structural analysis and minimum weight design are studied with extented multiscale finite element method(EMsFEM) in the paper. With the same volume of base material and configuration, the structural displacement and maximum axial stress of micro-rod of lattice structures with different sizes of microstructure are analyzed and compared.It is pointed out that different from the traditional mathematical homogenization method, EMsFEM is suitable for analyzing the structures which is constituted with lattice materials and composed of quantities of finite-sized micro-rods.The minimum weight design of structures composed of lattice material is studied with downscaling calculation of EMsFEM under stress constraints of micro-rods. The optimal design results show that the weight of the structure increases with the decrease of the size of basic sub-unit cells. The paper presents a new approach for analysis and optimization of lattice materials in complex engineering constructions. 展开更多
关键词 Lattice material Light weight design Size ef-fect Extented multiscale finite element method
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WEIGHT FUNCTIONS FOR INTERFACE CRACKS IN DISSIMILAR ANISOTROPIC MATERIALS
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作者 马利锋 陈宜亨 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2004年第1期82-88,共7页
Bueckner's work conjugate integral customarily adopted for linear elastic materials is established for an interface crack in dissimilar anisotropic materials.The difficulties in separating Stroh's six complex ... Bueckner's work conjugate integral customarily adopted for linear elastic materials is established for an interface crack in dissimilar anisotropic materials.The difficulties in separating Stroh's six complex arguments involved in the integral for the dissimilar materials are overcome and thert the explicit function representations of the integral are given and studied in detail.It is found that the pseudo-orthogonal properties of the eigenfunction expansion form(EEF)for a crack presented previously in isotropic elastic cases,in isotopic bimaterial cases,and in orthotropic cases are also valid in the present dissimilar arbitrary anisotropic cases.The relation between Bueckner's work conjugate integral and the J-integral in these cases is obtained by introducing a complementary stress- displacement state.Finally,some useful path-independent integrals and weight functions are proposed for calculating the crack tip parameters such as the stress intensity factors. 展开更多
关键词 weight function Bueckner's work conjugate integral eigenfunction expansion form dissimilar materials interface crack
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SEMI-WEIGHT FUNCTION METHOD ON COMPUTATION OF STRESS INTENSITY FACTORS IN DISSIMILAR MATERIALS 被引量:2
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作者 马开平 柳春图 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI 2004年第11期1241-1248,共8页
Semi_weight function method is developed to solve the plane problem of two bonded dissimilar materials containing a crack along the bond. From equilibrium equation, stress and strain relationship, conditions of contin... Semi_weight function method is developed to solve the plane problem of two bonded dissimilar materials containing a crack along the bond. From equilibrium equation, stress and strain relationship, conditions of continuity across interface and free crack surface, the stress and displacement fields were obtained. The eigenvalue of these fields is lambda. Semi_weight functions were obtained as virtual displacement and stress fields with eigenvalue?_lambda. Integral expression of fracture parameters, K Ⅰ and K Ⅱ, were obtained from reciprocal work theorem with semi_weight functions and approximate displacement and stress values on any integral path around crack tip. The calculation results of applications show that the semi_weight function method is a simple, convenient and high precision calculation method. 展开更多
关键词 dissimilar material interface crack stress intensity factor semi-weight function method plane fracture problem
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Time Dependent Surface Heat Transfer in Light Weight Aggregate Cement Based Materials
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作者 Hung T. Nguyen Frank Melandso Stefan Jacobsen 《Engineering(科研)》 2010年第5期307-317,共11页
Surface temperature changes of building materials affect the calculation of heat flow and thus the energy use in heating and cooling. The surface heat transfer coefficient , limiting the heat flow between material sur... Surface temperature changes of building materials affect the calculation of heat flow and thus the energy use in heating and cooling. The surface heat transfer coefficient , limiting the heat flow between material surface and ambient air is normally taken as a constant. In this study we propose a time-dependent function . We estimate from unidirectional heat flow experiments with transient and steady-state conditions. Using temperature measurements and the conservation of energy at the surface including convective and irradiative boundary conditions, the value of was obtained both using Finite Difference and Taylor Polynomials methods. Numerical solutions of temperature distribution as function of time were improved with the obtained -functions compared to with constant . There were no clear difference between on different materials, and the final values observed were in the order of magnitude expected from the literature. 展开更多
关键词 HEAT Flow SURFACE HEAT Transfer COEFFICIENT Numerical Methods Light weight AGGREGATE CEMENTS Based materials
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Defence technology: Special issue on “composite materials in defence technology”
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作者 S.M.Sapuan 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2018年第4期267-267,共1页
In recent years,composite materials have been used in many industries such as in automotive,aerospace,telecommunication,marine,furniture,construction and defence.Body amour and tank spall liners are examples of the us... In recent years,composite materials have been used in many industries such as in automotive,aerospace,telecommunication,marine,furniture,construction and defence.Body amour and tank spall liners are examples of the use of composites in defence industry.Composites have many different attributes that are unique over conventional materials like metals,polymers and ceramics.Those attributes include light weight,high specific stiffness and strength properties,corrosion resistance,aesthetically pleasing and ease of fabrication.Advanced composites such as aramid and carbon fibre polymer composites,metal matrix composites,ceramic matrix composites,and nanocomposites are among material contenders in defence technology applications requiring excellent structural integrity.Composites are also used in some non-structural applications in selected components utilising the low cost advantage of glass fibre and natural fibre composites. 展开更多
关键词 composite materials LIGHT weight Advanced COMPOSITES
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Outdoor Corrosion Performance Study of Selected Construction Materials in Bonny Island
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作者 Chinedu Martin Ekuma Tolulope Charles Ogunyemi 《Open Journal of Applied Sciences》 CAS 2023年第1期76-88,共13页
Corrosion studies are important due to the enormous cost involved in the replacement of materials in all kinds of applications. The outdoor study on corrosion behavior of aluminum sheet, chequered aluminum plate and z... Corrosion studies are important due to the enormous cost involved in the replacement of materials in all kinds of applications. The outdoor study on corrosion behavior of aluminum sheet, chequered aluminum plate and zinc alloys roofing sheet commonly used as construction material within a highly industrial settlement were examined using the gravimetric technique. The outdoor corrosion of these alloys at different sites was observed via its exposure to atmospheric conditions, monitored and recorded for 12 months at an interval of 2 months. Results depicted a process spanning the initial and intermediate stages of corrosion. The samples of construction materials at Bonny island showed substantial weight losses and rate of corrosion which varied largely on percentage of atmospheric humidity, salt precipitations, industrial aerosols and corrosive gases present at the exposure site as well as the nature of the material and the presence of protective coating formed during corrosion process. The rapid rate of deterioration of these materials causes severe economic importance on the indigenes’ activities including the oil and gas industries and other construction companies on the island. Thus, there is urgent need for research concerned with methods to control or prevent excessive deterioration of metals in Bonny Island. 展开更多
关键词 CORROSION Outdoor Environment Construction materials weight Loss and Alloys
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Application of Composite Materials in the Fire Explosion Suppression System
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作者 REN Shah 《International Journal of Plant Engineering and Management》 2012年第1期17-23,共7页
In order to lighten the weight of the special vehicles and improve their mobility and flexibility, the weight of all subsystems of the whole vehicle must be reduced in the general planning. A fire explosion suppressio... In order to lighten the weight of the special vehicles and improve their mobility and flexibility, the weight of all subsystems of the whole vehicle must be reduced in the general planning. A fire explosion suppression system is an important subsystem for the self-protection of vehicle, protection of crews and safety of a vehicle. The performances of the special vehicles determine their survival ability and combat capability. The composite bottle is made of aluminum alloy with externally wrapped carbon fiber ; it has been proven by a large number of tests that the new type explosion suppression fire distinguisher made of such composite materials applied in the special vehicle has reliable performance, each of its technical indexes is higher or equal to that of a steel distinguisher, and the composites can also optimize the assembly structure of the bottle, and improve the reliability and corrosion resistance. Most important is that the composite materials can effectively lighten the weight of the fire explosion suppression system to reach the target of weight reduction of the subsystem in general planning. 展开更多
关键词 protection performance fire explosion suppression system composite materials explosion suppression fire distinguisher weight reduction of the subsystem
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ANN valuation model of material LCIA profile
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作者 陈维平 刘华 +2 位作者 赵海东 朱权利 李元元 《中国有色金属学会会刊:英文版》 CSCD 2005年第1期119-124,共6页
Weighting model is the only valuation model of life cycle impact assessment(LCIA) profile now. It simplifies evaluation function into linear function, and makes the determination of weighting factor complicated. There... Weighting model is the only valuation model of life cycle impact assessment(LCIA) profile now. It simplifies evaluation function into linear function, and makes the determination of weighting factor complicated. Therefore the valuation of LCIA profile is the most critical and controversial step in life cycle assessment(LCA). Development on valuation models, which are understood easily and accepted widely, is urgently needed in the field of LCA. The modeling approaches for the linear evaluation function were summed up. The modeling approaches for the nonlinear evaluation function were set up by function approximation theory, which include choosing preference products, forming preference data, establishing artificial neural network(ANN) and training ANN by preference data. By selecting 7 material products as preference product, experience was done with modeling approaches of the nonlinear evaluation function. The results show that the modeling approaches and valuation model of the nonlinear evaluation function are more practical than the weighting model. 展开更多
关键词 材料寿命循环评估 加权模型 函数逼近 人工神经网络
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灯光颜色对SPF鸡育雏质量的影响
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作者 张伟 于海波 +2 位作者 王园园 李昌文 夏长友 《畜牧与兽医》 北大核心 2025年第3期28-31,共4页
旨在通过探讨灯光颜色对SPF鸡育雏质量的影响,筛选出一种适合SPF鸡育雏期使用的灯光颜色。将360只0日龄SPF鸡随机均分为绿光组、白光组、红光组,每组3个重复,每个重复40只,分别放置在采用绿色、白色、红色LED灯管照明的饲养隔离器内,饲... 旨在通过探讨灯光颜色对SPF鸡育雏质量的影响,筛选出一种适合SPF鸡育雏期使用的灯光颜色。将360只0日龄SPF鸡随机均分为绿光组、白光组、红光组,每组3个重复,每个重复40只,分别放置在采用绿色、白色、红色LED灯管照明的饲养隔离器内,饲养至4周龄,在育雏期(0~4周龄)每周统计雏鸡存活率、增重、体重均匀度、料重比及胫骨长。结果:红光组4周的存活率显著高于其他2组(P<0.05);3组的累计4周增重情况差异不显著(P>0.05),其中红光组的增重最多;体重均匀度方面,红光组1~4周的体重均匀度均显著高于其他2组同期值(P<0.05);3组的料重比、胫骨长指标差异不显著(P<0.05);综合动物存活率、增重、体重均匀度、料重比、胫骨长这5个指标比较,红光组在存活率、增重及体重均匀度指标优于其他2组,料重比和胫骨长指标与其他2组差异不显著。综上,红光是较为理想的SPF雏鸡育雏期使用的灯光颜色。 展开更多
关键词 SPF鸡 育雏 灯光颜色 生长性能 料重比
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Ti_(2)AlNb合金研究进展及在航空发动机上应用可行性分析
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作者 裴会平 刘冬 +4 位作者 姚利盼 邵天敏 刘巧沐 刘亮亮 陈乾明 《材料工程》 北大核心 2025年第1期28-44,共17页
Ti_(2)AlNb合金优良的综合高温性能使其有望取代部分镍基合金,作为航空发动机关键结构材料实现发动机自身减重。针对未来高性能航空发动机轻量化设计需求,结合统计对比、对照实验、有限元仿真分析等方法,从材料特性、合金冷/热加工工艺... Ti_(2)AlNb合金优良的综合高温性能使其有望取代部分镍基合金,作为航空发动机关键结构材料实现发动机自身减重。针对未来高性能航空发动机轻量化设计需求,结合统计对比、对照实验、有限元仿真分析等方法,从材料特性、合金冷/热加工工艺性能、减重收益等方面分别进行分析,讨论该合金在航空发动机中应用的优势、潜力以及仍需解决的问题。分析结果表明,该合金在减重方面优势显著,且较好地实现了强度、韧性和塑性的综合匹配,无明显短板;具有可接受的冷、热加工性能,通过变形、铸造等方式均可制备工程可用的大规格零件;应用于机匣等静子件可在镍基高温合金基础上减重35.3%,应用于整体叶盘/轮盘等转子件可在镍基高温合金基础上减重37.3%。 展开更多
关键词 Ti_(2)AlNb 航空发动机 减重 材料特性 加工工艺
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马坑矿业磁性铁精粉运输仓储防黏料及堵料措施研究
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作者 曾衍寿 《现代矿业》 2025年第1期101-104,110,共5页
福建马坑矿业股份有限公司为了解决铁精粉在运输及仓储过程中存在的易黏料、堵料的问题,在铁精粉物理性质研究的基础上,找出了铁精粉运输及仓储中易黏料、堵料的原因,并针对性地提出了解决措施。通过优化带式输送机的转运溜槽结构、在... 福建马坑矿业股份有限公司为了解决铁精粉在运输及仓储过程中存在的易黏料、堵料的问题,在铁精粉物理性质研究的基础上,找出了铁精粉运输及仓储中易黏料、堵料的原因,并针对性地提出了解决措施。通过优化带式输送机的转运溜槽结构、在铁精粉接触面液压翻板上方铺贴超高分子量聚乙烯板、优化空气炮组安装位置、优化锥斗结构及内衬材料、使用空气炮(低压)清堵系统等措施,有效解决了铁精粉运输及仓储中的黏料、堵料问题,保证了生产的稳定顺行且经济效益显著。 展开更多
关键词 钢结构仓体 超高分子量聚乙烯板 气动助流清堵系统 黏料 堵料
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G-M低温制冷机的研究进展
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作者 陶杰 周志坡 +3 位作者 何韩军 朱良友 李奥 董文庆 《真空与低温》 2025年第1期88-97,共10页
为满足高温超导、低温物理等领域不断发展的需求,大冷量、轻量化、极低温G-M(Gifford-McMahon)制冷机正在不断进步。总结了蓄冷材料及优化回热器结构对G-M制冷机性能的提升,归纳了液氦、液氢及液氮温区G-M制冷机的最新进展,旨在为相关... 为满足高温超导、低温物理等领域不断发展的需求,大冷量、轻量化、极低温G-M(Gifford-McMahon)制冷机正在不断进步。总结了蓄冷材料及优化回热器结构对G-M制冷机性能的提升,归纳了液氦、液氢及液氮温区G-M制冷机的最新进展,旨在为相关研究者开发优化G-M低温制冷机提供参考。 展开更多
关键词 G-M低温制冷机 蓄冷材料 回热器 轻量化 大冷量 极低温
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Investigation of Loss Weight and Densification of SiC-Al_2O_3-Y_2O_3 Ceramic Composite on Sintering 被引量:1
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作者 张宁 茹红强 +3 位作者 才庆魁 裘荣鹏 邱关明 孙旭东 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第S1期132-136,共5页
α-SiC, Al_2O_3 and Y_2O_3 powders were all used as raw materials. The SiC-Al_2O_3-Y_2O_3 ceramic composites were made by pressureless liquid phase sintering technology. The effects of sintering temperature, loss weig... α-SiC, Al_2O_3 and Y_2O_3 powders were all used as raw materials. The SiC-Al_2O_3-Y_2O_3 ceramic composites were made by pressureless liquid phase sintering technology. The effects of sintering temperature, loss weight and coordination number on sintering densification were studied. The reason for producing loss weight on sintering was analysed. The results show that the primary reason for producing loss weight on sintering in SiC-Al_2O_3-Y_2O_3 ceramic composite was that chemical reactions between SiC and Al_2O_3 are happened during sintering, and given out volatile gases. If sintering temperature is excessively lower, grain size would be finer, and coordination number would be higher, well then material would be on no sintering densification. If sintering temperature is excessively higher, grains would grow up, though small coordination number would benefit to make pore eliminate and shrink, but coarse microstructure would also block gliding and resetting of grains, together affected by expansion stress from volatile gas, the material densification would instead go down. Only under the sintering process of 1850 ℃ for 30 min, material densification is better, and the mechanical property of ceramic composites is also improved. 展开更多
关键词 inorganic non-metal materials SiC-Al_2O_3-Y_2O_3 sintering loss weight DENSIFICATION sintering temperature
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RHEOLOGICAL BEHAVIOR OF POLYMER MELTS (Ⅱ) MULTIPLE ENTANGLEMENT MODEL FOR PREDICTING THE DEPENDENCE OF VISCOELASTIC BEHAVIOR ON DEFORMATION STATE AND PRIMARY MOLECULAR WEIGHTS AND THEIR DISTRIBUTION
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作者 宋名实 吴丝竹 杨金才 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 1996年第2期34-49,共16页
In accordance with the memory function of Gaussian chain constraints in entangled polymermelts a set of material functions related to a certain"test flow"are formulated from the O-W-Ftype constitutive equati... In accordance with the memory function of Gaussian chain constraints in entangled polymermelts a set of material functions related to a certain"test flow"are formulated from the O-W-Ftype constitutive equation by the appropriate selection of the Cauchy-Green and Finger tensors.Thedependences of these material functions on the strain rate and the dependences of the linearviscoelastic functions on the primary molecular weight distribution and the entanglement sites sequencedistribution on polymer chain are derived from a multiple-entanglement model and a couple of mech-anisms of relaxation for the loop and terminal entanglement sites.When the primary polymer chainsare modelled with the Lansing-Kraemer molecular distribution function,a set of new relationshipsamong linear viscoelastic functions(η<sub>0</sub>,ψ<sub>10</sub><sup>0</sup>,η<sub>ext</sub><sup>0</sup> and τ<sub>1</sub>)and the molecular weights and their distributionare formulated.These functions and relationships are verified with experimental data. 展开更多
关键词 RHEOLOGICAL behavior CONSTITUTIVE equation material function molecular weight
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Manufacturing of Ultra-high Molecular Weight Polyethylene Fiber Reinforced Tape and the Loss of Strength
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作者 胡祖明 刘兆峰 《Journal of China Textile University(English Edition)》 EI CAS 1999年第4期92-94,共3页
Due to the low density and excellent mechanical proper-ties,high performance fiber reinforced materials have aconsiderable application in the area of high technologyand dally usage.In this paper,the Ultra-high Molecu-... Due to the low density and excellent mechanical proper-ties,high performance fiber reinforced materials have aconsiderable application in the area of high technologyand dally usage.In this paper,the Ultra-high Molecu-lar Weight Polyethylene(UHMWPE)fiber reinforcedPE tape prepared with the method of powder impregnat-ion was studied.The effect of impregnate length and thetensile force of the yarn on the fiber content as well as on the strength and modulus of the tape were discussed.Calculation shows that the strength and the modulus ofthe ULMWPE fiber can keep about 85% after it undergothe process. 展开更多
关键词 Ultra - high molecular weight POLYETHYLENE fiber REINFORCED material TAPE IMPREGNATION
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