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Molecular Dynamics-Based Simulation of Polyethylene Pipe Degradation in High Temperature and High Pressure Conditions
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作者 Guowei Feng Qing Li +5 位作者 Yang Wang Nan Lin Sixi Zha Hang Dong Ping Chen Minjun Zheng 《Fluid Dynamics & Materials Processing》 EI 2024年第9期2139-2161,共23页
High-density polyethylene(HDPE)pipes have gradually become the first choice for gas networks because of their excellent characteristics.As the use of pipes increases,there will unavoidably be a significant amount of w... High-density polyethylene(HDPE)pipes have gradually become the first choice for gas networks because of their excellent characteristics.As the use of pipes increases,there will unavoidably be a significant amount of waste generated when the pipes cease their operation life,which,if improperly handled,might result in major environmental contamination issues.In this study,the thermal degradation of polyethylene materials is simulated for different pressures(10,50,100,and 150 MPa)and temperatures(2300,2500,2700,and 2900 K)in the framework of Reactive Force Field(ReaxFF)molecular dynamics simulation.The main gas products,density,energy,and the mean square displacement with temperature and pressure are also calculated.The findings indicate that raising the temperature leads to an increase in the production of gas products,while changing the pressure has an impact on the direction in which the products are generated;the faster the temperature drops,the less dense the air;both temperature and pressure increase impact the system’s energy conversion or distribution mechanism,changing the system’s potential energy as well as its total energy;the rate at which molecules diffuse increases with temperature,and decreases with pressure.The results of this investigation provide a theoretical basis for the development of the pyrolytic treatment of polyethylene waste materials. 展开更多
关键词 ReaxFF MD high-density polyethylene DEGRADATION TEMPERATURE PRESSURE
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Fracture Characterization of High-Density Polyethylene Materials Using the Energetic Criterias 被引量:1
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作者 M.N.D.Cherief M.Elmeguenni M.Benguediab 《Computers, Materials & Continua》 SCIE EI 2016年第3期187-201,共15页
Impact behavior of polymers has received considerable attention in recent years,and much work based on fracture mechanic approaches has been carried out.In this paper,fracture behavior in large deformation of a high d... Impact behavior of polymers has received considerable attention in recent years,and much work based on fracture mechanic approaches has been carried out.In this paper,fracture behavior in large deformation of a high density polyethylene(HDPE)materials was investigated through experimental impact testing on single edge notched specimen(SENB)and by using theoretical and analytical fracture criteria concepts.Moreover,a review of the main fracture criteria is given in order to characterize the toughness of this polymer in the both cases(static and dynamic).The fractured specimens obtained from the Charpy impact test were characterized with respect to their fracture surfaces.Characteristic zones of the fracture surface can be assigned to different stages and mechanisms of the fracture process.Finally,for a better understanding of fracture and damage mechanisms and to provide the best estimation of fracture toughness in impact,an experimental approach based on microscopic observations(SEM)was used. 展开更多
关键词 IMPACT Fracture toughness high-density polyethylene Brittle fracture Ductile fracture
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Micromechanical analysis on tensile properties prediction of discontinuous randomized zalacca fibre/high-density polyethylene composites under critical fibre length 被引量:1
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作者 Dody Ariawan Eko Surojo +3 位作者 Joko Triyono Ibrahim Fadli Purbayanto Agil Fitri Pamungkas Aditya Rio Prabowo 《Theoretical & Applied Mechanics Letters》 CAS CSCD 2020年第1期57-65,共9页
In this research,the tensile properties'performance of compression moulded discontinuous randomized zalacca fibre/high-density polyethylene under critical fibre length was analysed by means of experimental method ... In this research,the tensile properties'performance of compression moulded discontinuous randomized zalacca fibre/high-density polyethylene under critical fibre length was analysed by means of experimental method and micromechanical models.These investigations were used to verify the tensile properties models toward the effect of fibre length and volume fraction on the composites.The experimental results showed that the tensile properties of composites had significantly increased due to the enhancement of fibre length.On the contrary,a decline in the tensile properties was observed with the increase of volume fraction.A comparison was made between the available experimental results and the performances of Tsai-Pagano,Christensen and Cox-Krechel models in their prediction of composites elastic modulus.The results showed that the consideration of fibre's elastic anisotropy in the Cox-Krenchel model had yielded a good prediction of the composites modulus,nevertheless the models could not accurately predict the composites modulus for fibre length study. 展开更多
关键词 Zalacca fibre Micromechanical analysis high-density polyethylene Critical fibre length Tensile properties
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Characterization and Comparison of Rheological Properties of Agro Fiber Filled High-Density Polyethylene Bio-Composites 被引量:1
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作者 Anselm O. Ogah Joseph N. Afiukwa A. A. Nduji 《Open Journal of Polymer Chemistry》 2014年第1期12-19,共8页
The rheological behavior of composites made with high-density polyethylene (HDPE) and different agro fiber by-products such as corncob (CCF), Rice hull (RHF), Flax shives (FSF) and Walnut shell (WSF) flour of 60 - 100... The rheological behavior of composites made with high-density polyethylene (HDPE) and different agro fiber by-products such as corncob (CCF), Rice hull (RHF), Flax shives (FSF) and Walnut shell (WSF) flour of 60 - 100 mesh were studied. The experimental results were obtained from samples containing 65 vol.% agro fiber and 3 wt.% lubricant. Particle sizes distribution of the agro fibers was in the range of 0.295 mm to ?0.125 mm. SEM showed evidence of complete matrix/fiber impregnation or wetting. The melt rheological data in terms of complex viscosity (η*), storage modulus (G'), loss modulus (G"), and loss tangent (tanδ) were evaluated and compared for different samples. Due to higher probability of agglomeration formation in the samples containing 65 vol.% of agro fillers, the storage modulus, loss modulus and complex viscosity of these samples were high. The unique change in all the samples is due to the particle size distribution of the agro fibers. The storage and loss modulus increased with increasing shear rates for all the composites, except for Walnut shell composite which exhibited unusual decrease in storage modulus with increasing shear rate. Damping factor (tanδ) decreased with increasing shear rate for all the composites at 65 vol.% filler load although there were differences among the composites. Maximum torque tended to increase at the 65 vol.% agro fiber load for all composites. Corncob and Walnut shell composites gave higher torque and steady state torque values in comparison with Flax shives and Rice hull composites due to differences in particle sizes distribution of the agro fibers. 展开更多
关键词 MELT RHEOLOGY Agro Fiber BIO-COMPOSITES VISCOELASTICITY high-density polyethylene
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Accurate detection method of high-density polyethylene fi lm leakage location based on secondary electric potential difference
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作者 Jiang Fu-Yu Qiao Pei-Xuan +1 位作者 Gao Li-Kun Chen Hai-Jun 《Applied Geophysics》 SCIE CSCD 2022年第3期447-457,472,共12页
High-density polyethylene(HDPE)film leakage location detection is frequently accomplished using the double-electrode technique.The electric potential and potential difference are the main physical parameters in the do... High-density polyethylene(HDPE)film leakage location detection is frequently accomplished using the double-electrode technique.The electric potential and potential difference are the main physical parameters in the double-electrode approach.Due to the impact of the complex geoelectric environment,the electric potential and the electric potential difference are not sensitive enough to respond to minimal leakage.The tiny leaking area cannot be precisely located using the electric potential and electric potential difference.Using the COMSOL Multiphysics software,this study created a standard geoelectric model of the double-electrode method.We calculated a new parameter—the G parameter through secondary electric potential difference—based on the response characteristics of the electric potential and the electric potential difference while the HDPEfilm is leaking.The experiment demonstrates that the G parameter is more sensitive than the electric potential and electric potential difference for detecting the leaking area of HDPE film.The G parameter is more effective at detecting leakage than the electric potential and electric potential difference.The results of this study can be used to locate HDPEfilm leakage areas in a landfill. 展开更多
关键词 LANDFILL environmental geophysics high-density polyethylene film pollution prevention
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A New Selective Neural Network Ensemble Method Based on Error Vectorization and Its Application in High-density Polyethylene (HDPE) Cascade Reaction Process
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作者 朱群雄 赵乃伟 徐圆 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2012年第6期1142-1147,共6页
Chemical processes are complex, for which traditional neural network models usually can not lead to satisfactory accuracy. Selective neural network ensemble is an effective way to enhance the generalization accuracy o... Chemical processes are complex, for which traditional neural network models usually can not lead to satisfactory accuracy. Selective neural network ensemble is an effective way to enhance the generalization accuracy of networks, but there are some problems, e.g., lacking of unified definition of diversity among component neural networks and difficult to improve the accuracy by selecting if the diversities of available networks are small. In this study, the output errors of networks are vectorized, the diversity of networks is defined based on the error vectors, and the size of ensemble is analyzed. Then an error vectorization based selective neural network ensemble (EVSNE) is proposed, in which the error vector of each network can offset that of the other networks by training the component networks orderly. Thus the component networks have large diversity. Experiments and comparisons over standard data sets and actual chemical process data set for production of high-density polyethylene demonstrate that EVSNE performs better in generalization ability. 展开更多
关键词 high-density polyethylene modeling selective neural network ensemble diversity definition error vectorization
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Decorative Wood Fiber/High-Density Polyethylene Composite with Canvas or Polyester Fabric
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作者 Jialin Lv Rao Fu +4 位作者 Yinan Liu Xuelian Zhou Weihong Wang Pengbo Xie Tingwei Hu 《Journal of Renewable Materials》 SCIE EI 2020年第8期879-890,共12页
Wood-plastic composite is an environmentally friendly material,due to its use of recycled thermoplastics and plant fibers.However,its surface lacks attractive aesthetic qualities.In this paper,a method of decorating w... Wood-plastic composite is an environmentally friendly material,due to its use of recycled thermoplastics and plant fibers.However,its surface lacks attractive aesthetic qualities.In this paper,a method of decorating wood fiber/high-density polyethylene(WF/HDPE)without adding adhesive was explored.Canvas or polyester fabrics were selected as the surface decoration materials.The influence of hot-pressing temperature and WF/HDPE ratio on the adhesion was studied.The surface bonding strength,water resistance,and surface color were evaluated,and observation within the infrared spectrum and under scanning electron microscopy was used to analyze the bonding process.The results showed that the fabric and WF/HDPE substrate could be closely laminated together depending on the HDPE layer accumulated on the WF/HDPE surface.The molten HDPE matrix penetrates canvas more easily than polyester fabric,and the canvasveneered composite shows a greater bonding strength than does the polyester fabric-veneered composite.A higher proportion of the thermoplastic component in the substrate improved the bonding.When the hot-pressing temperature exceeded 160°C,the fabric-veneered WF/HDPE panels had greater water resistance,although the canvas fabric changed more obviously in terms of fiber shape and color,compared with the polyester fabric.For the canvas fabric,140°C–160°C was a suitable hot-pressing temperature,whereas 160°C–180°C was more suitable for polyester fabric.The proportion of the thermoplastic component in the composite should be not less than 30%to achieve adequate bonding strength. 展开更多
关键词 wood-plastic composites high-density polyethylene polyester fiber CANVAS surface decoration
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Studies on the Effects of Bentonite (Nanoclay) on the Mechanical Properties of High-Density Polyethylene
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作者 Jerome Anokwu 《Journal of Minerals and Materials Characterization and Engineering》 2019年第6期421-434,共14页
In this work, the effect of Bentonite (Nanoclay) on the mechanical and mor-phology properties of HDPE/Nanoclay composite pipe material was investi-gated. This led to the development of a composite material with improv... In this work, the effect of Bentonite (Nanoclay) on the mechanical and mor-phology properties of HDPE/Nanoclay composite pipe material was investi-gated. This led to the development of a composite material with improved me-chanical properties. The HDPE/nanoclay composites were produced using an injection moulding machine at 200?C and rotor speed of 50 rpm. The compati-bilizer used in this study was Polyethylene-graft-Maleic Anhydride. Different compositions of nanoclay reinforcements were prepared and added to HDPE resin. A particle size of 425 μm was used in proportions of 0%, 5%, 10%, 15%, and 20% on weight fraction basis. All the composites samples were characterized by Zwick Roell tensile testing machine and Scanning Election Microscopy (SEM). Experimental results obtained showed improvements in the tensile strength, and modulus at the expense of elongation. The maximum tensile strength and modulus was obtained at 10% filler composition. These enhanced properties are due to the homogenous dispersion of nanoclay in HDPE matrix, which is evident from the structure that was evaluated using SEM. 展开更多
关键词 high-density polyethylene BENTONITE TENSILE Strength MODULUS
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High-Density Polyethylene Based on Exfoliated Graphite Nanoplatelets/Nano-Magnesium Oxide: An Investigation of Thermal Properties and Morphology
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作者 A. I. Alateyah 《Materials Sciences and Applications》 2019年第3期159-169,共11页
In this study, high-density polyethylene (HDPE)/exfoliated graphite nanoplatelet (xGnP) composites reinforced with a 2 wt.% concentration of nano-magnesia (n-MgO) were fabricated using an injection moulding machine. T... In this study, high-density polyethylene (HDPE)/exfoliated graphite nanoplatelet (xGnP) composites reinforced with a 2 wt.% concentration of nano-magnesia (n-MgO) were fabricated using an injection moulding machine. The thermal properties and morphological structures of the composites were investigated. The XRD results showed the peaks of xGnP and n-MgO, where the intensity of the xGnP peaks became stronger with adding increasing amounts of xGnP into the polymermatrix. In terms of morphology, some agglomeration of particles was observed within the matrix, and the agglomeration decreased the thermal properties of the composites. The nanocomposites showed less thermal stability than the pristine polymer. The reduction in the onset temperature compared to that of neat HDPE was attributed to less adhesion between the fillers and the matrix. In addition, the crystallinity was reduced by the addition of fillers. 展开更多
关键词 high-density polyethylene EXFOLIATED GRAPHITE NANOPLATELETS Magnesium Oxide Nanoparticles TGA XRD SEM
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EFFECT OF PAN-MILLING STRESS ON CRYSTAL STRUCTURES OF HIGH DENSITY POLYETHYLENE 被引量:1
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作者 Hua Huang Polymer Research Institute, Sichuan University, Chengdu 610065, China School of chemistry and Chemical Technology,Shanghai Jiao Tong University ,Shanghai 200240,China 《Chinese Journal of Polymer Science》 SCIE CAS CSCD 2000年第4期363-367,共5页
A detailed study was performed on the crystal structures of pan-milled high-density polyethylene (HDPE) using differential scanning calorimetry (DSC) and X-ray diffraction. The crystallinity of HDPE first decreased sl... A detailed study was performed on the crystal structures of pan-milled high-density polyethylene (HDPE) using differential scanning calorimetry (DSC) and X-ray diffraction. The crystallinity of HDPE first decreased slightly, followed by a gradual increase with increasing milling times. Monoclinic crystals appeared after 4 cycles of milling. With increasing times of milling, the proportion of monoclinic crystals increased significantly while the proportion of orthorhombic crystals decreased gradually. With increasing times of milling, the crystallite size of orthorhombic form decreased greatly, while the size of monoclinic crystallites kept almost constant during milling. 展开更多
关键词 high-density polyethylene PAN-MILLING crystal structure
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Effect of substrates on crystallization of high density polyethylene
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作者 范毓润 林渊 阮绵照 《Journal of Central South University》 SCIE EI CAS 2008年第S1期67-71,共5页
The experimental observations about remarkable influence of the substrates on the isothermal crystallization rate of a high density polyethylene(HDPE) were presented.Two methods were used to characterize the crystalli... The experimental observations about remarkable influence of the substrates on the isothermal crystallization rate of a high density polyethylene(HDPE) were presented.Two methods were used to characterize the crystallization rate:the change of turbidity of the HDPE specimen and the changes of the complex viscosity and storage modulus measured by a rotational rheometer,which gave consistent results showing that the isothermal crystallization rate decreased in sequence as the specimen contacted with aluminum,brass and stainless steel plates,respectively.As to the dominant influence factor,the chemical composition of the substrates can be excluded via insulating the plate by an aluminum foil.Instead,we propose the plate's ability of removing the latent heat of crystallization from the specimen.Rheological measurement is sensitive to the crystallization process.The colloid like model proposed by BOUTAHAR et al for the crystallization of HDPE gives reasonable predictions of the crystallized fraction from the measured storage modulus. 展开更多
关键词 high-density polyethylene ISOTHERMAL CRYSTALLIZATION HEAT conduction
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Selection of Thickness of High Density Polyethylene Film for Mulching in Paddy Rice
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作者 Xiangchen Liu Li Qiao +4 位作者 Zhaocheng Lu Daqing Feng Ping Li Xuejun Fan Kun Xu 《American Journal of Plant Sciences》 2013年第7期1359-1365,共7页
In water deficit area, judicious use of water is essential for increasing area under crop production with limited water supply. Film Mulching has been advocated as an effective means for conserving soil moisture in ri... In water deficit area, judicious use of water is essential for increasing area under crop production with limited water supply. Film Mulching has been advocated as an effective means for conserving soil moisture in rice production. The effects of high density polyethylene (HDPE) film on increasing rice production, controlling weeds and residue amount of plastic were studied under five treatments, including 5, 10, 15 and 20 μm thickness as well as bare cultivation (CK). The results indicated that the HDPE film mulching mode had significant effects on weed control, soil temperature, soil moisture, photosynthetic rate, seedling biomass, yield and residues of plastic film. Combined with economic effect, it showed that the HDPE film of 10 μm is the best option for rice production. 展开更多
关键词 PADDY RICE WEED Soil high-density polyethylene Film Thickness
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Physical and Thermo-Oxidative Characterization of Asphalt Modified with High Density Polyethylene and Recycled Engine Oil
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作者 Hélder Manguene Antonino Squillace +1 位作者 Henriques Filimone Herminio Muiambo 《Journal of Materials Science and Chemical Engineering》 2022年第5期73-86,共14页
Modification of asphalt using polymers, oils and other additives has been an option to improve asphalt pavement performance and extend its lifespan. The present work aims to evaluate the influence of the addition of e... Modification of asphalt using polymers, oils and other additives has been an option to improve asphalt pavement performance and extend its lifespan. The present work aims to evaluate the influence of the addition of engine oil on the consistency and thermal properties of HDPE-modified asphalt. For this study, compositions containing asphalt, engine oil and high-density polyethylene (HDPE) were prepared, varying the concentration of engine oil by 2.5 wt%, 5 wt%, 7.5 wt% and 10 wt% and keeping the concentration of HDPE at 5 wt%. The samples were characterized by conventional tests of penetration, softening point and viscosity, aging in a Rotational Thin Film Oven (RTFO), Thermogravimetric Analysis (TGA). According to the results, the addition of HDPE to virgin asphalt causes an increase in the consistency of the virgin asphalt, which then decreases linearly as the engine oil is added into the matrix. Conventional tests showed improvements in the applicability of the asphalt in terms of resistance to cracks and permanent deformation. TGA showed a slight increase in stability for the modified asphalt samples at elevated temperatures. The RTFO showed mass gain and loss for samples with and without engine oil, respectively. 展开更多
关键词 ASPHALT Engine Oil high-density polyethylene Polymer Modified Asphalt
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基于聚乙烯瓶盖在不同浓度乙醇模拟液中油酸酰胺迁移规律的分析与研究
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作者 张智力 李瑞芬 +2 位作者 吕波 孙元浩 王君 《塑料工业》 CAS CSCD 北大核心 2024年第10期126-130,共5页
塑料瓶盖中爽滑剂(油酸酰胺)是消费者关注的热点。研究基于聚乙烯瓶盖中油酸酰胺含量,并对聚乙烯瓶盖中的油酸酰胺迁移量进行迁移规律分析。作者采用气相色谱-质谱联用仪(GC-MS)测定聚乙烯瓶盖在迁移时间为10 d时,不同实验温度、不同乙... 塑料瓶盖中爽滑剂(油酸酰胺)是消费者关注的热点。研究基于聚乙烯瓶盖中油酸酰胺含量,并对聚乙烯瓶盖中的油酸酰胺迁移量进行迁移规律分析。作者采用气相色谱-质谱联用仪(GC-MS)测定聚乙烯瓶盖在迁移时间为10 d时,不同实验温度、不同乙醇体积分数下,聚乙烯瓶盖在食品模拟液中油酸酰胺的迁移规律。结果表明,聚乙烯瓶盖在相同迁移时间、相同温度下,油酸酰胺在95%乙醇模拟液中迁移量最大,相同食品模拟液、迁移时间相同时,温度越高,油酸酰胺迁移量越大。迁移实验时间为10 d时,食品模拟液的乙醇体积分数越大或实验温度越高时,油酸酰胺的迁移量越大,因此乙醇体积分数大小和迁移温度对聚乙烯瓶盖中油酸酰胺的迁移规律有重要影响。 展开更多
关键词 气相色谱质-谱联用仪 聚乙烯瓶盖 迁移规律 油酸酰胺
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电感耦合等离子体发射光谱法测定药用高密度聚乙烯瓶中6种元素提取物
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作者 巫建新 覃洁 +2 位作者 魏劭恒 李遥 唐顺之 《云南化工》 CAS 2024年第11期106-108,共3页
(目的)建立电感耦合等离子体发射光谱法(ICP-OES)测定药用高密度聚乙烯瓶提取溶液中硼(B)、钡(Ba)、铜(Cu)、硅(Si)、锡(Sn)、锌(Zn)等6种元素含量的方法。(方法)药用高密度聚乙烯瓶经溶剂提取得到提取溶液,微波消解后采用ICP-OES进行... (目的)建立电感耦合等离子体发射光谱法(ICP-OES)测定药用高密度聚乙烯瓶提取溶液中硼(B)、钡(Ba)、铜(Cu)、硅(Si)、锡(Sn)、锌(Zn)等6种元素含量的方法。(方法)药用高密度聚乙烯瓶经溶剂提取得到提取溶液,微波消解后采用ICP-OES进行分析。(结果)6种元素含量的线性方程相关系数均大于0.99,方法检测限为0.004~0.143μg/g,方法定量限为0.013~0.433μg/g,重复性RSD 0.8%~1.4%,加标回收率80%~108%,药用高密度聚乙烯瓶的3种提取溶液中6种元素含量均未超过方法定量限。(结论)药用高密度聚乙烯瓶的6种元素浸出风险较低。 展开更多
关键词 ICP-OES 元素杂质 药用高密度聚乙烯瓶
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Multifunctional HDPE/Cu biocidal nanocomposites for MEX additive manufactured parts: Perspectives for the defense industry
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作者 Nectarios Vidakis Nikolaos Michailidis +7 位作者 Markos Petousis Nektarios K.Nasikas Vassilios Saltas Vassilis Papadakis Nikolaos Mountakis Apostolos Argyros Mariza Spiridaki Ioannis Valsamos 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第8期16-32,共17页
In this study, we investigated the performance improvement caused by the addition of copper(Cu)nanoparticles to high-density polyethylene(HDPE) matrix material. Composite materials, with filler percentages of 0.0, 2.0... In this study, we investigated the performance improvement caused by the addition of copper(Cu)nanoparticles to high-density polyethylene(HDPE) matrix material. Composite materials, with filler percentages of 0.0, 2.0, 4.0, 6.0, 8.0, and 10.0 wt% were synthesized through the material extrusion(MEX)3D printing technique. The synthesized nanocomposite filaments were utilized for the manufacturing of specimens suitable for the experimental procedure that followed. Hence, we were able to systematically investigate their tensile, flexural, impact, and microhardness properties through various mechanical tests that were conducted according to the corresponding standards. Broadband Dielectric Spectroscopy was used to investigate the electrical/dielectric properties of the composites. Moreover, by employing means of Raman spectroscopy and thermogravimetric analysis(TGA) we were also able to further investigate their vibrational, structural, and thermal properties. Concomitantly, means of scanning electron microscopy(SEM), as well as atomic force microscopy(AFM), were used for the examination of the morphological and structural characteristics of the synthesized specimens, while energy-dispersive Xray spectroscopy(EDS) was also performed in order to receive a more detailed picture on the structural characteristics of the various synthesized composites. The corresponding nanomaterials were also assessed for their antibacterial properties regarding Staphylococcus aureus(S. aureus) and Escherichia coli(E. coli) with the assistance of a method named screening agar well diffusion. The results showed that the mechanical properties of HDPE benefited from the utilization of Cu as a filler, as they showed a notable improvement. The specimen of HDPE/Cu 4.0 wt% was the one that presented the highest levels of reinforcement in four out of the seven tested mechanical properties(for example, it exhibited a 36.7%improvement in the flexural strength, compared to the pure matrix). At the same time, the nanocomposites were efficient against the S. aureus bacterium and less efficient against the E. coli bacterium.The use of such multi-functional, robust nanocomposites in MEX 3D printing is positively impacting applications in various fields, most notably in the defense and security sectors. The latter becomes increasingly important if one takes into account that most firearms encompass various polymeric parts that require robustness and improved mechanical properties, while at the same time keeping the risk of spreading various infectious microorganisms at a bare minimum. 展开更多
关键词 high-density polyethylene(HDPE) Copper(Cu) Material extrusion(MEX) Mechanical performance Electrical properties ANTIBACTERIAL Defense and security
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国产硫酸庆大霉素滴眼液中抑菌剂的使用现状分析
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作者 梅芊 张婷婷 +2 位作者 李倚天 李洁 刘英 《中国抗生素杂志》 CAS CSCD 北大核心 2024年第9期1019-1024,共6页
目的分析国产硫酸庆大霉素滴眼液中抑菌剂使用现状及存在的问题。方法采用新建的硫酸庆大霉素滴眼液中抑菌剂含量测定方法,结合抑菌剂影响因素试验、抑菌剂与包材的相容性对23批次国产硫酸庆大霉素滴眼液中的抑菌剂进行检测,分析该产品... 目的分析国产硫酸庆大霉素滴眼液中抑菌剂使用现状及存在的问题。方法采用新建的硫酸庆大霉素滴眼液中抑菌剂含量测定方法,结合抑菌剂影响因素试验、抑菌剂与包材的相容性对23批次国产硫酸庆大霉素滴眼液中的抑菌剂进行检测,分析该产品中抑菌剂使用的合理性。结果硫酸庆大霉素滴眼液中羟苯乙酯的含量随产品剩余效期减少而降低,产品使用的低密度聚乙烯滴眼剂瓶对抑菌剂羟苯乙酯存在吸附作用。结论目前国产硫酸庆大霉素滴眼液中抑菌剂羟苯乙酯的使用存在一定问题,建议企业重视处方中抑菌剂种类和含量的筛选以及抑菌剂稳定性的考察,并改进包装材料,以确保产品的安全有效。 展开更多
关键词 硫酸庆大霉素滴眼液 抑菌剂 低密度聚乙烯滴眼剂瓶 羟苯乙酯
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复方土槿皮酊与外用液体药用高密度聚乙烯瓶相容性研究
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作者 苏锐辉 江涛 +4 位作者 李高捷 陈晓坚 曾晨 侯艳冬 汤迎湛 《中国药业》 CAS 2024年第11期48-52,共5页
目的 探讨复方土槿皮酊与外用液体药用高密度聚乙烯瓶的相容性。方法 采用高效液相色谱法测定苯甲酸和水杨酸的含量,按2020年版《中国药典(四部)》通则0711第一法(毛细管柱法)测定乙醇体积分数。依据《药品包装材料与药物相容性试验指... 目的 探讨复方土槿皮酊与外用液体药用高密度聚乙烯瓶的相容性。方法 采用高效液相色谱法测定苯甲酸和水杨酸的含量,按2020年版《中国药典(四部)》通则0711第一法(毛细管柱法)测定乙醇体积分数。依据《药品包装材料与药物相容性试验指导原则》,通过加速试验[温度(40±2)℃、相对湿度(90±10)%条件下放置6个月],长期试验[温度(25±2)℃、相对湿度(60±10)%条件下放置12个月],加严条件的影响因素试验条件下[温度(25±2)℃、相对湿度(20±5)%(低湿)和温度(25±2)℃、相对湿度(90±10)%(高湿)条件下分别放置6个月],以及多次开启试验,考察高密度聚乙烯瓶包装的复方土槿皮酊实际使用过程中苯甲酸、水杨酸含量及乙醇体积分数的变化。结果 苯甲酸和水杨酸的进样量分别在0.102~1.812μg和0.050~0.906μg范围内与峰面积线性关系良好(R~2=0.999 9,n=5);精密度、稳定性、重复性试验结果的RSD均小于0.5%(n=6);平均加样回收率分别为99.34%和99.24%,RSD分别为0.72%和0.92%(n=6)。加速试验、长期试验及加严条件的影响因素试验(低湿和高湿)条件下,3批样品均为黄棕色至红棕色的澄清溶液,无沉淀、浑浊、变色,无微粒、块状物析出。在加速试验中,3批样品中苯甲酸和水杨酸平均含量及乙醇平均体积分数分别为120.95~121.27 mg/mL、60.30~61.45 mg/mL、78.49%~79.49%,RSD均小于2.0%(n=18);在长期试验中,分别为121.06~121.89 mg/mL、60.49~61.81 mg/mL、79.40%~79.70%,RSD均小于2.0%(n=18);在低湿加严条件的影响因素试验中,分别为121.64~122.89 mg/mL、60.55~61.88 mg/mL、79.23%~80.05%,RSD均小于2.0%(n=18);在高湿加严条件的影响因素试验中,分别为121.11~122.99 mg/mL、60.51~61.88 mg/mL、79.45%~80.41%,RSD均小于2.0%(n=18)。多次开启试验结果显示,3批样品中苯甲酸和水杨酸平均含量及乙醇平均体积分数分别为121.86~123.90 mg/mL、60.60~62.08 mg/mL、79.74%~80.57%,RSD均小于2.0%(n=9)。结论 所建立的高效液相色谱法结果准确、精密度和重复性均良好,可用于复方土槿皮酊中苯甲酸和水杨酸的含量测定。外用液体药用高密度聚乙烯瓶与复方土槿皮酊的相容性良好,可保证复方土槿皮酊的质量稳定。 展开更多
关键词 复方土槿皮酊 高密度聚乙烯瓶 相容性 苯甲酸 水杨酸 乙醇
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高密度聚乙烯瓶中抗氧剂降解产物的提取及在大豆油(供注射用)中的迁移研究
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作者 尧云峰 胡尚钊 +3 位作者 王璐 李慧敏 崔洪辉 付春旺 《广东化工》 CAS 2024年第18期36-38,25,共4页
目的:考察高密度聚乙烯瓶中抗氧剂降解产物与大豆油(供注射用)的相容性,评估高密度聚乙烯瓶中3种抗氧剂降解产物是否存在安全性风险。方法:建立气相色谱-质谱联用的检测方法,进行分析方法学验证,并采用该法测定降解产物在高密度聚乙烯... 目的:考察高密度聚乙烯瓶中抗氧剂降解产物与大豆油(供注射用)的相容性,评估高密度聚乙烯瓶中3种抗氧剂降解产物是否存在安全性风险。方法:建立气相色谱-质谱联用的检测方法,进行分析方法学验证,并采用该法测定降解产物在高密度聚乙烯瓶中的含量及在大豆油中的迁移量。结果:方法适用性良好,准确度高,稳定性强,方法学符合要求。应用该方法对三批大豆油(供注射用)进行检测,在加速试验(40℃±2℃、75%±5%、放置0、3、6个月)及长期试验(25℃±2℃、60%±10%、放置3、6、9、12个月)的试验条件下,均未检出DBP、DBB、DBHBA。结论:高密度聚乙烯瓶中抗氧剂降解产物未能迁移进入大豆油(供注射用),该包材与大豆油(供注射用)相容性良好,为其安全性风险评估提供了可行性依据。 展开更多
关键词 注射用大豆油 高密度聚乙烯瓶 相容性 气相色谱-质谱联用
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Thermo-mechanical,Wear and Fracture Behavior of High-density Polyethylene/Hydroxyapatite Nano Composite for Biomedical Applications:Effect of Accelerated Ageing 被引量:6
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作者 H.Fouad R.Elleithy Othman Y.Alothman 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2013年第6期573-581,共9页
The objective of this work is to demonstrate how the viscoelastic, thermal, rheological, hardness, wear resistance and fracture behavior of bioinert high-density polyethylene (HDPE) can be changed by the addition of... The objective of this work is to demonstrate how the viscoelastic, thermal, rheological, hardness, wear resistance and fracture behavior of bioinert high-density polyethylene (HDPE) can be changed by the addition of hydroxyapatite (HAP) nano particles. Also the effects of accelerated thermal ageing on the composite properties have been investigated. Different weight fractions of HAP nano particles up to 30 wt% have been incorporated in HDPE matrix by using melt blending in co-rotating intermeshing twin screw extruder. The fracture toughness results showed a remarkable decrease in proportion to the HAP content. The differential scanning calorimetry results indicated that the melting temperature and crystallinity were affected by the addition of HAP nano particles into the matrix. The complex viscosity increased as the percentage of HAP increased due to the restriction of the molecular mobility. The dynamic mechanical analysis results revealed that higher storage modulus (8.3 1011 Pa) could be obtained in the developed HDPE/HAP in 30 wt% compared to neat HDPE (5.1 1011 Pa). Finally, the hardness and wear resistance of HDPE were improved significantly due to the addition of HAP nano particles. The changes in the HDPE and its nano composite properties due to ageing showed that the HDPE and its nano composites crystallinity increased while the fracture toughness, hardness, wear resistance, storage and loss modulus decreased. 展开更多
关键词 high-density polyethylene (HDPE) Hydroxyapatite (HAP) HARDNESS Accelerated ageing Dynamic mechanical analysis(DMA) Differential scanning calorimetry (DSC) Fracture
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