Theme: Theme:Emerging trends in polymer science challenges

Asian Polymer 2021

Asian Polymer 2021

Conference Series LLC Ltd  is very proud and honored to announce the international conference on "12th Asia Pacific Conference on Polymer Science and Engineering" on October 25-26, 2021 at Webinar. During the Corona Virus Pandemic Quality and ethics experts share their views and respond to your questions from sponsor and site points of view. Register now to learn about risk assessment and finding pragmatic solutions to protecting your patients in your polymer science during the Corona virus crisis. In recent weeks, hundreds of events have been cancelled in an effort to prevent further spreading of coronavirus. With growing uncertainty and varying government efforts to contain the virus, contingency plans for your 2021 events are essential. Transitioning your physical event to an online event is the best way to safely and effectively engage your community. Learn more about your online event options, or chat with one of our event experts to find your online event solution.

The Asia Polymer Science Conference mainly focuses on the theme "new trends in polymer science challenges”.

Introduction to Polymer Science and Engineering

Polymer Science is all over, simply shop around your plastic bottle. The synthetic rubber tips about your phone’s ear buds. The nylon and polyester in your jacket or sneakers. The rubber within the tires on the family automotive. Currently take a glance within the mirror. Several proteins in your body area unit polymers, too. Take into account scleroprotein, the things your hair and nails area unit made up of. Even the DNA in your cells may be a chemical compound. By definition, polymer Science area unit massive molecules created by bonding a series of building blocks.

The word chemical compound comes from the Greek words for “many elements” every of these elements are scientists decision a chemical compound. Think about a chemical compound as a sequence, with every of its links a chemical compound. Those monomers are straightforward simply associate atom or 2 or 3or they could be sophisticated circinate structures containing a dozen or additional atoms. In a man-made chemical compound, every of the chain’s links can typically be clone of its neighbors. However in proteins, DNA and different natural polymers, links within the chain typically take issue from their neighbors.

Why to attend Asian Polymer Science and Engineering Conference:

Polymer Science that's planning to be the leading conference dedicated to matter science provides a foremost technical forum for sharing and learning to treat this analysis and advancements, in conjunction from all over on the world there will be displays on main topics by virtue and leading operational groups and panels. The most objective of the Polymer Science and Engineering conference is to focus on looking for relating to chemical compound Polymer science and engineering, often the foremost effective likelihood to satisfy many nice professionals, scientists from throughout the world. It Conducts shows, debates poster show unfold the data and acknowledgment on this occasion.

Broadly speaking acclaimed speakers, the foremost recent methods, strategies, and thus, the up to currently services within the matter Polymer science and engineering square measure signs of this conference

Asia Polymer Science and Engineering Conference 2021 Scientific Vision

  • Paper and Poster presentations and world-class Exhibitions.
  • Opportunities to gain a deeper understanding of the topic.
  • Intensifying Interactive knowledge.
  • Meet Academics and Industrial professionals to get inspired.
  • Great credits for the work in progress.
  • Valuable talks and symposiums from renowned speakers.
  • Meaningful sessions and accomplishments.

Conference Opportunities at Asian Polymer Science and Engineering Conference 2021:

For Researchers and Faculty Members:

  • Speaker Presentations
  • Poster Display
  • Symposium hosting (4-5 member team)
  • Workshop organizing

For Universities, Associations & Societies:

  • Association Partnering
  • Collaboration proposals
  • Academic Partnering
  • Group Participation

For Business Delegates:

  • Speaker Presentations
  • Symposium hosting
  • Book Launch event
  • Networking opportunities
  • Audience participation

For Product Manufacturers:

  • Exhibitor and Vendor Booths
  • Sponsorships opportunities
  • Product launch
  • Workshop organizing
  • Scientific Partnering
  • Marketing and Networking with clients

For Students and Research Scholars:

  • Poster Competition (Winner will get Best Poster Award)
  • Young Researcher Forum (YRF Award to the best presenter)
  • Student Attendee
  • Group Registrations

Asian Polymer Science and Engineering Conference Target Audience:

  • Polymer Science Technology Manufacturers
  • Chemical professionals
  • Environmentalists working on plastic reduction research
  • Quality control specialists
  • Polymer Science Chemists, Polymer Scientists, & Chemists
  • PhD Scholars
  • All plastic & textile manufacturers and providers
  • Polymer Science Chemistry Scientists and Researchers
  • Graduates and postgraduates in industrial plastic manufacturing
  • Business Development Managers
  • Distributors and Suppliers of Polymer Science Synthesizing Technologies
  • Professors, Researchers, and Faculty of Polymer Chemistry & Polymer Scienceand Engineering from Universities and Colleges
  • Directors, CEO’s of Chemical and Pharmaceutical Organizations
  • Scholars from Polymer Science Chemistry, Polymer Science and Engineering, Plastic research, and interrelated fields.
  • Delegates from all fields who are interested in the listening the proceedings of the Polymer Science and Engineering conference as well as looking to explore the venue
  • Researchers from Plastic Manufacturing Companies, Polymer Science and Engineering Companies, Synthetic Manufacturers, Resins & plastics, Textile manufacturing industries, Adhesives & Paints Suppliers & Chemical Associations and Societies.

 

1. Plastic process and Composite Materials:

Processing of plastic may be even as method of manufacturing semi-finished merchandise from the raw plastic materials. Plastics square measure organic polymer Science ang Engineering with high molecular mass; they contain different substances further. most typically plastics square measure derived from petrochemicals and conjointly partly different plastics square measure organic plastics. Polymer Science facet chains and backbone chemical structure is beneficial in classifying it. form of strategies accustomed method the plastic. we will decide that methodology to use depends upon the applying space of the plastic. a number of the necessary plastic process techniques square measure, Injection molding, Plasticextrusion, Blow molding, Thermo forming, compression molding, Calendering, Pultrusion, Vaccum forming and motion molding.

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2. Biochemical-Bio degradation of Polymers:

On the opposite hand, perishable Biopolymers may be digestible in aerobic condition to provide home compost or industrial compost. In aerobic degradation method, organic chemistry within the soil helps USA to convert the polymers as compost. Biopolymers digestible in anaerobic state may be used as biogas. within the means of anaerobic bio-degradation of polymers chemical exercise is applied. Basic method in chemical exercise is completed by selective dissolution from the mixed streams of waste. And chemical exercise also can use the de-polymerization to recycle the biopolymers. In Chemical exercise Biopolymers went through the numerous phases during which exercise is performed beside fossil-based counterpart.

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3. Polymeric Material Chemistry and Physics:

Polymeric physics deals with physical modeling of polymers. chemical compound material chemistry facilitates the chemical synthesis that permits the coming up with and study of recent materials. The synthesis is performed with helpful physical characteristics like magnetic, optical, chemical change and structural properties.

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4. 3D Printing Polymers:

Now a day, 3D printer provides the chance to the human to form something just about by taking any stuff from metal and ceramic to sugar. Earliest days of 3D printing is restricted to provide the merchandise with plastic and it provides risk to use any reasonably material within the 3D printing. largely used plastics within the 3D printing square measure Polylactic acid (PLA), nitrile hydrocarbon polyvinyl resin (ABS) and Polyvinyl Alcohol Plastic (PVA). These 3 sorts of plastics stimulate the evolution of 3D printing. additionally to those plastics on the opposite hand we will use the varied styles of plastics like polythene terephthalate (PET), Polycarbonate, Carbon fiber.

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5. Polymer style and Reaction:

Another attention-grabbing field associated with polymer Science is Polymers style and Reaction. during this field we tend to square measure exploitation several styles to know the reactions of the polymers. usually polymer Science tend to viscous. It usually imposes lower limits on their concentrations in diluents. so as to look at such reactions we tend to should have style. Reaction system style may be created by considering varied factors like product sequence, reactor configuration, reactor conditions, heat removal, mechanics, mass-transfer limitations, thermo dynamics constraints, method dynamics and reactor stability.

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6. Synthetic and inexperienced Polymers:

Polymers that created by the human square measure artificial and polymers that square measure created by its own with the assistance of geographical atmospheric condition square measure inexperienced polymers. normally artificial polymers square measure made of petro chemical oils below the analysis and provision of the engineers and scientists. we will take into account nylon, polythene, polyester and Teflon because the best examples for artificial polymers. inexperienced polymers also can referred as natural polymers. Few samples of natural polymers square measure silk, wool, proteins and polymer. Natural polymers square measure created naturally or they'll be derived by the living organism.

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7. Polymer theory and simulation:

Numerical simulation for molecule systems towards the understanding of underlying physical or physio-chemical mechanisms, modeling of compound structure and conformation, prophetic  algorithms of chemical change dynamics and chemical change mechanism, modeling and prediction of the performance of purposeful polymers, constituent and multiscale modeling approaches for chemical compound systems, scientific theory of polymers, AI, machine learning and data-driven modeling of polymers.

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8. Polymer process and performance:

Thermoforming, compression and transfer molding, motion molding, extrusion, injection molding, blow molding, plastic foam molding.

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9. Recycling and Waste Management of Biopolymers:

A survey declared that 14 July of Biopolymer usage is anticipated to grow within the year of 2023. That survey motivates USA to search out the strategies and ways in which to recycle and manage the Biopolymer waste. Once a biopolymer product is employed, it may be modified as any of the recycled product. Biopolymers may be perishable Biopolymers may be recycled and non-degradable biopolymers may be cluttered or land crammed. In rare cases, Biopolymers also can dissolved in water. though there square measure many choices to manage the biopolymer waste such exercise and digestion to create it as compost. Such exercise strategies have positive impact on setting and economy. Littering and land filling facilitate USA to manage the waste and on the opposite hand it's conjointly potential to recycle the biopolymers automatically and with chemicals.

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10. Polymer applications:

Polymers play an important job in human life. Indeed, our body is created of parcel of polymer Science, as an example Proteins, compounds, and so on. every kind of applications (from sensors to actuators, from medicine engineering to house engineering, and from macro scale right down to Nano scale) with chemical compound materials, proof of conception, structural/system style, performance verification and characterization.

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11. Biopolymers:

polymers of biological origin created by living organisms, enclosed polysaccharides, proteins, peptides, polyesters, polyamides, etc. polymers from renewable resources and perishable polymers.

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12. Polymer Degradation and Stabilization:

Polymer Degradation and Stability manages the corruption responses and their management that square measure a motivating distraction of specialists of the various and completely different components of current compound innovation.

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13. Polymer Electronics: Optics, Fiber and Lasers:

Normally Polymer Science square measure insulators for electricity however to alter their insulating capability semiconductive materials like silver are additional to the chemical formulation. it'll extend the conduction of the electricity. the explanations like compound is nice dielectric of warmth, it will type any form, have rarity, need low finishing price and solubility in organic solvents, created it appropriate for physical science.

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14. Polymers in fossil fuel Refinery:

In the fossil fuel business method chemical action is that the process of remodeling light-weight alkene gases into hydrocarbons of upper relative molecular mass and better measure. The alkene gases encompass alkene, gas and butylenes. Polymerization in oil refinery combines 2 or a lot of identical alkene gases molecules to make one molecule with same proportions of the substances as within the original. This polymerization is finished within the presence of catalyst and accomplished thermally at lower temperatures.

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15. Colloid and Polymer Science:

Colloid is a solution in which a tiny dispersed insoluble or soluble particle are suspended throughout another substance.  Mixture has 2 sections distributed and continuous section that arise by phase separation. If the mixture doesn't settle or take terribly while to settle it's thought of as qualified mixture. Chemical compound Science is transmitted from the sphere during which new materials like solids are designed and discovered. As like that, solid artificial polymers elastomers and plastics are thought of as primary materials to be ascertaining within the field of chemical compound Science.

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Polymer science is today a vibrant field. Its technological relevance is vast Polymeric materials exhibit a wealth of fascinating properties which are directly due to molecular behavior, i.e. the long chain nature of macromolecules yet fundamental scientific questions and technological challenges abound, motivating extensive research activity word wide

  • Polymers provide a low density structural alternative for some applications
  • Are relatively easy to process into numerous forms
  • Provide a high volume, often improved replacement for materials derived from living organisms.
  • Possess unique properties
  • They are often relatively inexpensive.

Why use polymers

  • Easy to process
  • Injection molding (thermoplastics)
  • Mold or reaction injection molding (thermosets)
  • Cheap
  • Lightweight
  • Tough
  • Flexible
  • Transparent (sometimes)
  • Insulating (generally)

Polymer Functionality

Vinyl Polymers, Polyethers, Polyarylenes, Polyesters, Polyamides, Polyureas, Polyurethanes, Polysiloxanes, Polycarbonates, Polysulfones, Polyimides, Polysulfides. The global specialty polymers market is expected to record a CAGR of over 7% during the forecast period of 2019–2024. The major factors driving the market studied are the increasing applications in the construction and electronic industries, commercialization of lightweight polymers for automotive and aerospace applications, and the increasing availability of feedstock derived from natural gas and crude oil processing.

Fluctuating operational costs to derive feedstock and technological obsolescence due to constantly changing end-user needs are expected to hinder the growth of the market studied. Emerging specialty polymer technologies in a myriad of industrial applications and prolific commercialization of engineered polymer and specialty film products are likely to act as opportunities to the market studied over the forecast period.

 

Asia-Pacific to Dominate the Market

  • Asia-Pacific is expected to display the fastest growth in the specialty polymers market over the forecast period. The expanding automotive and electrical industries in China and India, combined with infrastructural development, are expected to drive the specialty polymers market in the region. Moreover, economic growth and increasing per capita income are some of the major factors that are triggering the growth of the specialty polymers market in Asia-Pacific.
  • In Asia-Pacific, the market is dominated by China. As China is one of the emerging economies witnessing healthy economic growth, its government’s policies have been in line with the proposed objectives to implement economic reforms, thus ensuring healthy growth of the country during the forecast period.
  • Being the largest manufacturing country in the world, the country has become the largest producer of automobiles, the largest producer of paints & coatings, and the second-largest producer of semiconductors. In the year 2018, China produced 27,809,196 units of motor vehicles, and Japan produced 9,728,528 units, followed by India (5,174,645 units produced in the year 2018). Therefore, the automotive segment is growing at a high rate in the Asia-Pacific region, which is likley to propel the demand for specialty polymers market in the forecast period.
  • China is mainly focusing on increasing the production and sales of electric vehicles in the country. For this purpose, the country has planned to increase the production of electric vehicles (EVs) to 2 million a year by 2020 and 7 million a year by 2025. The target, if achieved, is expected to increase the share of electric vehicles to 20% of the total new car production for China, by 2025.
  • Specialty polymers are widely used in the automotive, electronics, and semiconductors industries. Hence, with robust growth in these industries, and government support, the demand for specialty polymers is projected to increase at a healthy pace during the forecast period.  

 

The term water-soluble polymer encompasses a wide range of synthetic, semisynthetic, and natural materials. Although they differ in molecular structure, these polymers share an important attribute: all are soluble in water, at least under some conditions. For the family as a whole, the range of applications is broad, but individual polymers generally have a smaller set of end uses.

Water treatment is the single most important end use for water-soluble polymers, especially synthetic materials such as polyacrylamide. In developed nations, the municipal, wastewater, and industrial water treatment markets are large and well-established; therefore, the outlook for consumption growth is moderate. In contrast, demand growth in China will be more robust, stimulated by the government's growing attention to water resources. 

Polyethylene is one of the key products. It had the global production of over 80 million tons in 2017. It is primarily used in the packaging sector, which includes containers and bottles, plastic bags, plastic films, and geomembranes. It finds use in various applications. Based on its molecular weight, there are different types of polymers of PE such as HDPE, LDPE, and LLDPE. For instance, low molecular weight polymers of PE find use in lubricants, medium molecular weight polymers are used as wax miscible with paraffin, and high molecular weight polymers are commonly used in the plastics industry.

 

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Conference Date October 25-26, 2021
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