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May 04, · Hello @9jazeez, I recommend uninstall CFD Ultimate then try installing CFD Ultimate instead. Following the steps below: Conduct a Clean Uninstall of the previous installation & use the Microsoft Troubleshooter Tool to complete it. Reboot the computer, make sure apps are not auto running in the background. 2 days ago · Autodesk Licensing Service – (subscription and maint. licensing ///, hybrid sleep/hibernate, student named accounts, cert) 64MB daytona speeder x. daytona speeder에서 새롭게 탄생한 미들 킥 타입의 「daytona x」가 라인업에 합류.차원 높은 스피드감을 계승하여, 매끄럽고 쉬운 스윙감을 추구한 프리미엄 모델을 패션잡지 등,수많은 잡지사에서 편집장을 맡아온 잭 타카하시氏, .
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Therefore, this article aims to engineer an inline-measurement system of the surface temperature of square hollow profiles immediately after leaving the die. First, two objective quality criteria to define the thermal melt homogeneity, named weighted melt temperature and radial temperature, are introduced. After that, experimental investigations are carried out for two different types of polyolefin polymers with the variation of several process parameters such as the screw speed and the die temperature.
In order not to distort the product, the developed construction is based on a contactless measurement system using infrared pyrometers to measure the average surface temperature on each side of the profile.
Afterall, rules of behavior are derived from the process and correlations between the investigated process parameters and the melt quality as well as the surface temperature are identified. He achieved the degree Master of Science in and has been working as a research assistant at the chair of Kunststofftechnik Paderborn at Paderborn University since April His research topic is the development of simulation based assistant systems for extrusion processes.
In this paper, the tensile properties of indoor and outdoor post-consumer recycled PCR polycarbonates PC have been compared with virgin PC at various aging conditions. Strength at breakage was found to decrease as the aging stress or aging time with the same aging condition was increased. His group is responsible for the product reliability for the micro mobility devices Bikes, Scooters, stations etc.
He has successfully launched several generations of Nest Thermostats which have a very high customer satisfaction and helped the design team to adapt recycled polycarbonates in different consumer devices. Rashed has more than 15 years of industry experience in reliability engineering, failure analysis, and materials development recycled plastics, Pb free solder, piezoelectric, and magnetoelectric materials. He has also authored 2 US patents.
The complex viscosity of planar star-branched polymers has been derived from general rigid bead-rod theory, but only for singly-beaded arms. Here, we explore the respective roles of branch functionality, arm length and non-planar arrangements, analytically from general rigid bead-rod theory.
For non-planar, we include polyhedral, both regular and irregular. Further, for all structures, we compare with and without the central bead. Giacomin in the Polymers Research Group. Our group studies theoretical rheology, specifically the effect of macromolecular branching on rheological properties. I have 4 published papers and 2 additional conference proceedings.
In this study, the effect of an amide-based slip additive was evaluated on injection moulded HDPE specimens, subjected to three loop of mechanical recycling streams. The results were compared with control HDPE no additives on each recycling loop. In fact, rHDPE plus additive maintained its ductility strain at break compared to control rHDPE, which became more brittle, something attributed to cross-linking.
Finally, the inclusion of additive improved the aesthetics of the recyclate. He was responsible to drive the execution to develop core competencies, acquiring business and devising short, midterm and long-term strategies for growth. Homsi has been has built high performance teams responsible for many innovations. Rheological testing of new material formulations can require significant quantities, specifically when considering the development of new chemistries at the laboratory scale.
In order to minimize the quantity of material required for evaluation, we are developing approaches suitable for characterization of high solids content formulations using micro-capillary rheometry. The goal of this investigation is to design and produce a micro-capillary rheometer capable of characterizing basic rheological properties, such as viscosity and shear-thinning behavior, while requiring the least amount of sample possible.
In our current design, we implement a micro-dispensing approach combined with calibrated force transducers. With this approach we can further elucidate an understanding of the differences between typical capillary rheometry and behavior at reduced dimension flow fields.
Issues such as pressure relaxation and free volume compaction can therefore be studied through readily modified geometries and testing rates. Additionally, this framework will facilitate the study of a variety of flow geometries applicable to a wide range of applications including precision dispensing of adhesives and sealants, and direct ink write additive manufacturing.
In this work we examine the influence of talc and a polymeric carbodiimide on the hydrolytic degradation resistance of a commercially available Poly L-Lactic acid PLLA. Results indicate that the presence of talc as the sole ingredient in the formulation increases the crystallization rate and this translates to an increase in the degree of crystallinity of compression molded plaques and a modest improvement in hydrolytic degradation resistance as compared to unfilled PLLA.
In spite of this, compounds containing CDI exhibited much greater hydrolytic degradation resistance than PLA with the effect being more pronounced with increasing CDI concentration. However, compounds containing both talc and CDI showed an improved hydrolysis resistance as compared to compounds containing only CDI implying that talc’s role in reducing the rate of hydrolysis is caused by the hydrophobic characteristic of the material.
It is envisioned that this work will help pave the way for the usage of PLA in durable applications where long-term resistance to humidity is anticipated.
Mulch films modify soil conditions thus improving crop output, hence are widely used across the world. Traditional PE polyethylene films do not degrade and must be disposed of afterwards. Biodegradable mulch films BMFs provide a much better alternative and are meant to be tilled with the soil after harvest. But most BMFs degrade slowly and accumulate in soil, harming the soil productivity.
In this investigation we evaluate the effect of gliding arc plasma treatment on the behavior of a commercially available biodegradable mulch film based on polybutylene adipate co-terephthalate PBAT and polylactic acid PLA. Following plasma treatment an initial increase in the hydrophilicity of the films is observed and this is attributed to an increase in oxygen containing species on the surface. Moreover, hydrophobic recovery is slow as indicated by contact angle measurements taken over a day time.
Thermal analysis results indicate no significant difference indicating that treatment is confined primarily to the surface. A treated film showed enhanced disintegration as compared to an untreated film following 65 days of composting in an aerated static pile compost. These results indicate that plasma treatment may aid the biodegradation of plastic mulch films and therefore eliminate their accumulation in soil. This conference paper presents the investigations, results and findings from the research project „Tool-integrated assistance system for production control of highly complex and demanding component specifications“ acronym in German WASABI.
The project investigates the possible use of sensor technology in combination with machine learning methods for the prediction of quality-determining component features on large-format plastic products. Furthermore, the information obtained will be used to propose target-oriented recommendations for action based on the predicted feature characteristics.
An outer skin component bumper from the automotive sector was defined as the reference product for the investigations into the prediction possibilities of demanding component specifications. The injection molding tool required for production was designed as part of the project work and equipped with a variety of different sensor types including pressure, melt contact, displacement measurement. The recording of the measurement signals is realized by a self-developed hardware system concept.
The aim of the research is to predict various quality-determining characteristics from the fields of geometry including total lengh and surface including sink marks. In the course of the project, extensive tests were carried out to generate a meaningful database. Through analysis and evaluation, it was possible to define the positions and number of sensors that provide a high level of information.
Ultimately, three different approaches of machine learning methods could be learned for the prediction of component qualities and the prediction of corrective actions. These structures could be verified in laboratory environment by appropriate test data sets. The importance of utilizing recycled materials to manufacture plastic products has been a topic of great interest due to the environmental repercussions.
Processing issues arise from the usage of these resins due to the variation in their molecular weight and rheology. In this work, pressure-controlled injection molding is evaluated and compared against conventional velocity-controlled injection molding. The effects of injection velocity, mold temperature, and pressure on part shrinkage and mechanical properties of injection molded parts fabricated with post-consumer film-grade polyethylene were evaluated.
The experimental results show that the different processing techniques significantly affect the mechanical properties and part shrinkage for both materials. Additionally, different levels of injection pressure and velocity significantly affect the shrinkage of the plastic parts.
Moreover, it was seen that parts fabricated using pressure-controlled injection molding had preferable overall quality. Microporous ultra-high molecular weight polyethylene UHMWPE parts were produced by microcellular injection molding MIM technology, which enabled higher production efficiency and lower part cost compared to the traditional powder sintering method. The microstructure could be tuned by adjusting the shot size to produce either sandwiched solid-skin — porous-core — solid-skin parts or open porous parts.
This research investigated the effect of the addition of Orotic Acid OA on the crystallization kinetics of Poly-lactic Acid PLA in quiescent and non-quiescent conditions. A differential scanning calorimetry DSC study was used to investigate and understand the effect of the addition of orotic acid on HP PLA under quiescent conditions. Two concentrations of orotic acid, 0.
It was observed that the 0. A small amount 0. About the Speaker John P. Rossin College of Engineering and Applied Science since and prior to that been an Associate Dean responsible for research, graduate studies, and engineering college operations since On two separate occasions, the latest taking place from through , Dr.
In that capacity he was responsible for the operation, coordination, financial management, advancement, and oversight of all engineering related activities at the University. He holds Bachelor of Science and Master of Science degrees in mechanical and aerospace engineering from the University of Delaware, and completed his doctoral studies in mechanical engineering at Delaware in His graduate studies were supported by a prestigious and nationally competitive DoD Fellowship awarded through the Office of Naval Research.
Coulter has 32 years of teaching and research experience at Lehigh, as well as several years of industrial experience with Lord Corporation, a multi-national company specializing in materials and devices for vibration and acoustic control. His accomplishments at Lehigh have been recognized through continuous federal, state, and industrial research support as well as numerous awards for teaching and research including a prestigious NSF National Young Investigator i. A new type of nanocellulose crystal CNC has been gaining interest for its unique morphology combined with its as-produced carboxylate functionality: electrosterically stabilized nanocrystalline cellulose ENCC.
Polymers, in comparison, save weight and costs and are suitable for use in corrosive and chemically aggressive environments. However, for many applications the comparatively low thermal conductivity of polymers is a disadvantage. To overcome this, polymers are usually mixed with high amounts of fillers, which transport the heat through the pipe wall.
But the use of high filler ratios influences the mechanical properties of the pipe significantly. The aim of this paper is to develop a concept for a pipe extrusion die which aligns the filler particles in radial direction, so that the anisotropic material properties of the compound can be utilized and thus the amount of filler can be reduced. Consequently, the flexible material properties can be maintained as far as possible.
Several die concepts are presented and their influence on the thermal and mechanical properties of the pipe are compared. About the Speaker Education — Bachelor of Science, University of Duisburg-Essen Mechanical Engineering, Bachelor thesis: Creation of a calculation model for automatic generation and dimensioning of a granulate hopper with integrated granulate bed pre-heating for enhancing energy efficiency in plastics extrusion.
Close Curtis Covelli, Jr. This research used a Branson Mini II vibration welder traditionally used for welding plastics. The effects of weld pressure, amplitude, and weld time were varied to determine their effects on lap-shear weld strength. Strength testing was performed with a universal testing machine. The morphology of the weld zone was also analyzed to gain insight into the welding mechanics.
The highest strength of pine samples was 8. It was observed that bamboo pulp board weld strength was primarily dependent on weld pressure. Also, pulpboard seemed to weld in a similar fashion to wood. About the Speaker Education Present Ph. The quality of the manufactured parts is largely dependent on intelligent process parameter selection based on the viscoelastic and flow properties of the polymer resin.
Viscoelastic properties such as the complex viscosity, storage modulus, loss modulus, and loss tangent are used to determine the critical transition events such as gelation during curing. An understanding of the changes in viscoelastic properties as a function of processing temperature and degree of cure provides insight to establish a suitable processing range for compression forming of prepreg systems.
However, tracking viscoelastic properties as a function of cure during the forming process is a challenging task. In this current work, we have investigated the effect of sample size and adhesive type on the rheological properties of a commercially available carbon fiber prepreg material.
Specifically, determining the linear viscoelastic region LVE as a function of sample configuration and different adhesive chemistries were explored. The results suggest that the square-shaped sample geometries coupled with cyanoacrylate based adhesive are optimum for conducting rheological characterization on the carbon fiber prepreg system. Michael J. He is currently involved with research on additive manufacturing of semicrystalline polymers, thermoset composite processing, rheology of polymer blends for 3D printing, and environmental implications of 3D printed parts.
Arit received the International Research Experience for Students fellowship from the College of Engineering at VT to conduct collaborative research at the University of Nottingham.
He was one of the recipients of the prestigious Peebles Award at the 44th Annual Meeting of the Adhesion Society. Close Natalie Duprez Ph. These films were degraded in water at 90 degC for varying amounts of time. Puncture testing, optical microscopy, FTIR, and TGA were performed to probe the degradation of the material and verify that it was producing the products that were expected from the reaction.
The rate of degradation was strongly dependent on the concentration of CaO, with significantly faster degradation at higher concentrations. About the Speaker Natalie is a second-year Ph. Close Arun Ghosh, Ph. The resultant materials exhibit high ductility and elasticity, with a maximum tensile strength of These mechanical properties are profoundly higher than those of neat recycled LDPE.
The melt-rheological characteristics such as complex viscosity and storage modulus of the materials are analyzed to evaluate the thermal recyclability and thermoplastic nature of the materials.
His current research focuses on polymer compounding and recycling. He obtained his Ph. His academic and research expertise includes plastic recycling, biopolymer and bio-composites, natural fiber composites, proteins and allied materials, polymer nanocomposites, polymer adhesion and coating technology, and rubber technology.
He has published over 30 research articles in peer-reviewed journals as a key author and prepared numerous technical reports for various industries. Vanillin was reacted with 4-aminophenol to generate a diphenol with an imine The synthesis of PSs is done by means of polycondensation of dibasic phenols with sulfur-containing aryl halides by the mechanism of nucleophilic substitution.
The lignin based diphenol replaces traditionally used bisphenols a xenoestrogen and is the site for recycling the polymer. The polymerization is studied under various conditions temperature, time, monomer ratio for best properties and product purity. The stability of the imine bond was studied under the reaction conditions for reactant stability. Vitasta works with Dr.
Srikanth Pilla on biobased polymers and chemical recycling. These high-performance LDPE’s expand blown film capabilities by increasing output and improving performance in applications such as agricultural, greenhouse, collation shrink, lamination films, and storage container liners. Converters have demonstrated these resins provide a more stable blown film bubble especially with larger-sized bubbles, thereby reducing waste, providing a more consistent product, as well as the ability to downgauge to achieve sustainability initiatives.
His current focus is on gas phase and high pressure technologies to create unique polyethylene resins with improved performance for advantaged products. Over his career Andrew has led and contributed to projects across the fields of electronic materials, catalysis, coatings, chemical feedstocks, sustainability, and polyethylene resin developments. Andrew graduated with a B. Fused deposition modeling FDMTM , also referred to as fused filament fabrication FFF is an additive manufacturing technique in which extruded material is deposited into roads and layers to form complex products.
This paper provides a physics-based model for predicting and controlling the effect of compressibility in material extrusion including elasticity in the driven filament and compression of the melt in the hot end. The model is validated with a test part embodying a full factorial design of experiments with three print speeds. About the Speaker David O.
He has been both an engineer and manager in industry. He is now teaching and researching in the areas of plastics product design, machine design, and manufacturing processes. In this work, a reaction model is considered for degradation of PLA. The model is utilized in predicting the progress and mechanism of the PLA degradation. The predictions were analyzed and compared to reported literature.
A reaction scheme is selected from literature to describe thermal degradation of Polylactic Acid. Rate laws and rate constants for the various reactions were either taken from literature, estimated or proposed. Material balance on the reacting species were done to developed a mathematical model for the degradation process. The predictions of themodel were compared to experimental data available in reported literature.
Polylactides are highly sensitive to heat that limits their area of applicability. Also, heat may be utilized for quick degradation of PLA if so desired. Among several reasons for poor thermal stability, some are it’s zipper like depolymerization, and, intermolecular and intramolecular transesterification resulting in formation of the monomer, oligomeric lactides, lactic acid and acrylic acids.
The reaction scheme is able to show generation of these degradation products. The mathematical model in this work is able to predict concentration vs. Concentrations of lactic acid and acrylic acid increases sharply in the beginning and then their generation slows down after about 15 days.
The model also predicts reduction in molecular weight of PLA with time, and also transesterification rate. The model gives deeper insight into the degradation mechanism, experiments for which are costly and difficult.
The model predictions are in agreement with experimental literature data to certain extent. A new mathematical model is developed in this work that successfully predicts the expected concentration profiles of various degradation end products.
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