Hyper-Dispersant Modifier Prepared and Applied in Polyethylene Composites

2013 ◽  
Vol 750-752 ◽  
pp. 2026-2030
Author(s):  
Shao Hui Wang

A new hyper-dispersant with Silicon radicals as anchoring group and poly (butyl acrylate) as solvatable chain was synthesized and its effect on the properties of PE/Talc composites was investigated in this paper. Fourier transmission infrared spectroscopy (FT-IR) results show that the modifier react on the Talc powders surface and the modified Talc powders particles. The impact strength of PE/Talc composites increased about 32.5% compared with that of PE/Talc (filled with same non-modified fraction) respectively. Based on surface analysis by scanning electron microscope (SEM), the Talc powders particles buried well in PE matrix when Talc powders was coated with the new modifier.

2019 ◽  
Vol 11 (21) ◽  
pp. 6054
Author(s):  
Anna Keskisaari ◽  
Timo Kärki ◽  
Tommi Vuorinen

This study examines the mechanical properties of thermoplastic polymer composites manufactured by utilizing different side-stream materials as fillers. Two composites were manufactured from side-stream materials from the construction industry, two were manufactured from side-stream materials from the paper industry, and one was manufactured from side-stream materials from a coating factory. The matrix polymer used in the composites originated from recycling facility. The side-stream materials were used as fillers. One composite was manufactured as a reference by using wood-fiber as the filler. The tensile properties and impact strength were tested. The materials were also observed with a scanning electron microscope. Compared to the reference material, tensile strength and modulus decreased in all cases except for the sludge from the paper industry. The sludge also improved the impact strength remarkably, as the impact strength with the stone wool and stone dust from the construction industry remained the same, while the values were weakened for the others. Scanning electron microscope images showed that powder coating waste from the coating factory increased porosity and, thus, decreased the density of the material.


Author(s):  
هاشم شاهی مالمیر ◽  
سیدمهدی کلانتر ◽  
الهام ساسانی ◽  
مرتضی اسگری ◽  
محمد مجدی زاده ◽  
...  

مقدمه: دوکسوروبیسین، از متداول ترین داروهای مورد استفاده در شیمی‌درمانی سرطان با عوارض جانبی بسیار همراه بوده و این حقیقت استفاده از آن را با محدودیت هایی مواجه می سازد. در مطالعه حاضر با تکیه بر دانش نانوحامل های دارویی، فرمولاسیون‌های متعددی از فرم نیوزومه‌ شده این دارو سنتز شده و بهینه‌سازی های سطحی در خصوص فرمولاسیون منتخب نهایی اعمال گردید. روش بررسی: پژوهش حاضر یک مطالعه تجربی است. سامانه های نیوزومی با فرمولاسیون‌های متعدد و استفاده از توئین-60 و کلسترول به روش هیدراتاسیون فیلم نازک سنتز شدند. داروی دوکسوروبیسین به طور غیرفعال درون نیوزوم ها بارگذاری شد.  سپس بهینه سازی ها بر اساس انتخاب تجربی دو فرمول از 6 فرمول ساخته شده، و بررسی اثر افزودن تویین20، پلیمر DSPE-mPEG (2000) و فسفولیپید کاتیونی DOTAP (به ترتیب) صورت پذیرفت. سپس شاخصه های فیزیکوشیمیایی نانوسامانه از منظر بازده درون‌گیری، پروفایل رهایش دارو در شرایط مشابه سلول‌های سالم و سرطانی، قطر هیدرودینامیک،Poly Dispersity Index ، پتانسیل زتا، مورفولوژی و طیف Infrared Spectroscopy (IR) تعیین گردید. به منظور رسم گراف ها و بیان داده ها به ترتیب از نرم افزارهای Origin و Excel استفاده شد. نتایج: فرمول نیوزوم بهینه شده نهایی نیوزومی دارای قطر nm59/92، انکپسولاسیون 43/0 ± 8/91%، پتانسیل زتا mV5/3- و شاخص پراکندگی 196/0 می باشد. حداکثر رهایش دارو از نانوسامانه  تحت شرایط سلول‌های سالم و سرطانی (C° 37، 4/7=pH و C° 42، 4/5=pH) بعد از گذشت 48 ساعت، به ترتیب؛ 3/62% و 5/76% بوده است. بررسی های Field Emission Scanning Electron Microscope و IR نشان از مورفولوژی کروی و عدم وجود برهم کنش شیمیایی میان نانوسامانه و دارو بوده است. نتیجه‌گیری: نتایج این مطالعه نیمه ‌هدفمند ‌بودن این حامل دارویی را اثبات می کند. هم چنین نشان می هد، نیوزوم  بدون ایجاد تغییر در ماهیت شیمیایی دارو و با تخصصی نمودن دارو‌رسانی، اثربخشی و کیفیت‌زندگی بیمار را افزایش و عوارض جانبی را کاهش می دهد.


2021 ◽  
Author(s):  
Ahmed ZITI ◽  
Bouchaib HARTITI ◽  
Amine BELAFHAILI ◽  
Hicham LABRIM ◽  
Salah FADILI ◽  
...  

Abstract Quaternary semiconductor Cu2NiSnS4 thin film was made by the sol-gel method associated to dip-coating technique on ordinary glass substrates. In this paper, we have studied the impact of dip-coating cycle at different cycles: 4, 5 and 6 on the structural, compositional, morphological, optical and electrical characteristics. CNTS thin films have been analyzed by various characterization techniques including: X-ray diffractometer (XRD), Raman measurements, scanning electron microscope (SEM), energy dispersive X-ray spectroscope (EDS), UV-visible spectroscopy and four-point probe method. XRD spectra demonstrated the formation of cubic Cu2NiSnS4 with privileged orientation at (111) plane. Crystallite size of cubic CNTS thin films increase with from 6.30 to 9.52 with dip-coating cycle augmented. Raman scattering confirmed the existence of CNTS thin films by Raman vibrational mode positioned at 332 cm− 1. EDS investigations showed near-stoichiometry of CNTS sample deposited at 5 cycles. Scanning electron microscope showed uniform surface morphologies without any crack. UV-visible spectroscopy indicated that the optical absorption values are larger than 104 cm− 1, Estimated band gap energy of CNTS absorber layers decrease from 1.64 to 1.5 eV with dip-coating cycle increased. The electrical conductivity of CNTS thin films increase from 0.19 to 4.16 (Ω cm)-1. These characteristics are suitable for solar cells applications.


2010 ◽  
Vol 96 ◽  
pp. 237-240
Author(s):  
Fang Li ◽  
Xue Qin

The polyaniline(PANI) nanoparticles were synthesized with alcohol solvent at first. The microstructure of PANI nanoparticles were characterized by scanning electron microscope (SEM), Fourier transfer infrared spectroscopy (FTIR). The electrochemical performances of the samples were tested. The results showed that the diameters of PANI nanoparticles were 50-200nm. As the supercapacitor materials, PANI nanoparticles were suitable for the green energy materials.


2021 ◽  
Vol 19 (01) ◽  
Author(s):  
Vera Ilhani

Pada penelitian ini dilakukan tentang pembuatan poliuretan berbasis Metilen difenil diisosianat (MDI) dan minyak jarak pagar  dengan menggunakan etil asetat, dibutiltin dilaurat, metal laurat, nano tio2 , pentaeritritol, dan aquades sebagai pengisi tambahan yang bertujuan untuk meningkatkan sifat mekanik poliuretan. Tujuan penelitian ini adalah untuk menentukan pengaruh massa MDI dan minyak jarak pada pembuatan poliuretan dengan memvarisikan bahan utamanya. Karakteristik analisa stabilitas termal menggunakan alat TGA (Thermo Gravimetric Analyzer) menunjukkan keandalan termal yang sangat baik memiliki stabilitas termal, kapasitas penyimpanan panas laten yang tinggi, dan stabilitas siklus termal yang unggul dengan ketahanan termal hingga 403.65C°C. Pada analisa gugus fungsi menggunakan FT-IR spektroskopis gugus N-H pada daerah separan 132.24 cm-1,  pada daerah serapan 3620.39 cm-1 merupakan gugus O-H dan daerah serapan 1541.12 cm-1  merupakan gugus C=C (MDI). Sedangkan analisa struktur morfologi menggunakan alat SEM (Scanning Electron Microscope) pada sampel PU sampel A memiliki permukaan halus dan menandakan partikel padat sebagai penstabil yang baik (emulsi pickering) dibangdingkan dengan sampel B yang menunjukkan beberapa bentuk agregat yang menggumpal dan berpori-pori besar, serta permukaan yang lebih halus.Kata kunci : Poliuratan, MDI, Minyak Jarak, PCM


Teras Jurnal ◽  
2020 ◽  
Vol 10 (2) ◽  
pp. 235
Author(s):  
Muhammad Nurjati Hidayat

<p align="center"><strong>Abstrak</strong></p><p> </p><p class="11daftarpustaka">Pada umumnya, tanah longsor terjadi dengan skala yang kecil dan dampak yang dihasilkan tidak parah sebagaimana letusan gunung berapi, gempa atau tsunami. Namun, perhatian terhadap bencana ini seringkali diabaikan oleh masyarakat dan perencanaan pembangunan kota. Ada beberapa faktor yang perlu diperhatikan dalam meneliti tanah longor, salah satunya adalah mineral tanah. Dalam studi ini, sampel tanah diambil dari Lombok Utara akibat dari gempa Lombok 2018. Penelitian ini dilakukan dengan mengelompokkan tanah berdasarkan USCS dan AASTHO, kemudian dilanjutkan dengan analisis mineralogi menggunakan XRD (X-Ray Diffraction) dan SEM (Scanning Electron Microscope). Berdasarkan klasifikasi USCS, tanah termasuk kategori pasir berlanau dan campuran lanau (SM); dan lempung anorganik dengan plastisitas rendah sampai sedang, lempung berkerikil, lempung berpasir, lempung berlanau, lempung kurus (lean clays). Pada klasifikasi AASHTOO, hasilnya adalah tanah berlanau (A-4); kerikil dan pasir yang berlanau atau berlempung (A-2-4); dan pasir halus (A-3). Berdasarkan hasil mineralogi menggunakan XRD dan SEM, material utama pada sampel tanah adalah Albite Calcian, Microline and Kuarsa.</p><p class="11daftarpustaka"> </p><p class="11daftarpustaka">Kata kunci: <em>longsor,</em><em> mineralogi, XRD, SEM</em><em></em></p><p align="center"><strong> </strong></p><p align="center"><strong> </strong></p><p align="center"><strong>Abstract</strong></p><p class="11daftarpustaka"> </p><p class="11daftarpustaka">Landslides generally occur on a small scale and the impact is not as severe as volcanic eruptions, earthquakes, or tsunamis. However, attention to these disasters is often ignored by the community and city development planning. In assessing the factors causing landslides there are many factors that need to be considered, one of which is soil minerals. The samples of soil in this study were taken from North Lombok as a result of the 2018 earthquake. This research is conducted by classifying the soil based on USCS and AASHTO, then proceed with mineralogical analysis using XRD (X-Ray Diffraction) and SEM (Scanning Electron Microscope). Based on USCS classification, the result of the analysis shows that soil samples have a classification of silty sand, and silt mixtures (SM); and inorganic clays or low to medium plasticity, gravelly clays, sandy clays, silty clays, lean clays (CL). For AASHTO classification, the result shows the sample belong to silty soil (A-4), silty or clayey gravel sand (A-2-4) and fine sand (A-3). Based on the results of mineralogical analysis using XRD and SEM, it is known that the dominant minerals making up the soil in the sample are Albite Calcian, Microline and Quartz</p><p class="11daftarpustaka"> </p><p class="11daftarpustaka">Keywords: <em>landslide, mineralogy, XRD, SEM</em><em></em></p><em></em><em></em>


2020 ◽  
Vol 5 (2) ◽  
pp. 88-104
Author(s):  
Ph. V. Sapozhnikov ◽  
A. I. Salimon ◽  
A. M. Korsunsky ◽  
O. Yu. Kalinina ◽  
F. S. Senatov ◽  
...  

The topic of interactions between plastic and natural communities is now more relevant than ever before. Gradual accumulation of artificial polymer products and their fragments in the natural environment has reached a level at which it is already impossible to ignore the affect of these materials on living organisms. First and foremost, microorganism colonies inhabiting different biotopes, both aquatic and terrestrial, have been affected. These species are at the front-end of interaction with plastic, including those present in marine ecosystems. Nevertheless, in order to understand these processes, it is necessary to take into account several aspects of such interactions: the impact of different types of plastic on microbial community through the release of their decomposed products into the environment, the forms of plastic usage by microorganisms themselves, including mechanisms for surface colonization, as well as possible biodegradation processes of polymers due to the actions of microorganisms. At the same time, types of plastic may differ not only in mechanical strength, but also in their resistance to biodegradation caused by microorganisms. Experiments with surface colonization of types of plastic, which are different in composition and mechanical strength, provide a wide range of results that are not just relevant for understanding modern natural processes involving plastic: these results are also important for application in certain areas of technology development (for example, when creating composite materials). In particular, researches into the forms and mechanisms of sustainable colonization of particularly strong polymers by diatoms from natural communities are of great interest. Due to the fouling of surface of particularly strong synthetic polymers by diatoms, it is possible to form a single diatom-polymeric composite with general properties being already substantially different from those of the polymer itself. For example, when a polymer is fouled with diatoms that are firmly held on its surface due to physiological mechanisms that ensure their reliable fixation, total surface area of the composite increases by 2–3 orders of magnitude compared with this of bare polymer. Such composites and their properties are formed due to mechanisms of substrate colonization used by diatoms from natural marine cenoses – during the transfer of these mechanisms to a new material being prospective for diatom settlement. The practical applications of these composites lie in the sphere of heat and sound insulation, as well as in the field of creating prosthetic tissues for bone operations. In our experiments, we tracked the sequence of development of a stable composite when diatoms colonized the surface of samples of a particularly strong synthetic polymer being resistant to corrosion. In this case, the sample population process took place on the basis of colonies formed in accumulative cultures from the natural marine environment. Samples of ultra-high molecular weight polyethylene (UHMWPE) with a smooth and porous surface structure (with an open cell, bulk porosity up to 80 %) were colonized by diatoms Karayevia amoena (Hust.) Bukht., 2006, Halamphora coffeaeformis (C. Agardh) Levkov, 2009, and Halamphora cymbifera (W. Greg.) Levkov, 2009. These laboratory experiments lasted for three weeks. Accumulative microphyte cultures, on the basis of which the experiments were conducted, were obtained from the Baltic Sea (Baltiysk area, Russia) and the Arabian Sea (Mumbai area, India). The types and stages of development of colonial settlements on various elements of the frontal surface microrelief and in the underlying caverns were studied using a scanning electron microscope on samples subjected to stepwise thermal drying. Individual cells of K. amoena, H. coffeaeformis, and H. cymbifera, their chain-like aggregates, and outstretched colonial settlements occupied varying in degree non-homogeneous microrelief surface elements, forming structures with a thickness of 1–2 layers with an average settlement height of 1–1.3 single specimen height. K. amoena cells were tightly fixed to the polymer substrate using the pore apparatus of the flap of the frustule. Observations using scanning electron microscope revealed shell imprints on the substrate, which were signs of a polymer substrate introduction into hypotheca areoles. The spread mechanisms of diatoms of three mentioned species on various elements of UHMWPE surface were explored, as well as the formation of the characteristic elements of colonial settlements, including for K. amoena – consecutively in the form of “pots” and spheres, by means of interaction with polymer surface and its extension with the increase in the number of tightly attached cells in the colonial settlement.


2021 ◽  
Vol 14 (1) ◽  
pp. 27-32
Author(s):  
Dedi Komarudin

The manufacture of tools such as machetes in Banten is still widely practiced, machetes are produced from a conventional forging process using a hammer by a blacksmith. Working as a blacksmith in the Banten area, especially in the village of the new village of lightning, was passed down from generation to generation as a traditional blacksmith, but over time the machetes produced by traditional blacksmiths began to be replaced by modern ones machete. The traditional golok of Kampung Baru Village, Petir, consists of two types, the regular machete and the sulangkar golok. The material commonly used by blacksmiths to make machetes is a vehicle spring sheet that is no longer used, while for making machetes, a blacksmith usually combines other materials during forging. The purpose of this study was to determine the differences in the mechanical and micro properties of the two types of golok, Banten cultural heritage. The research was carried out from the start of the search for the material, the manufacturing and forging processes and carried out testing. The results of the hardness test show that the value of the spring material is 423.1 HBW, SS 400 steel material 134.18 HBW, combination material or Sulangkar 735.15 HBW then the data results from the tensile test on steel material SS 400, Spring, Combination or Sulangkar are 442.52 MPa, 1334,60 MPa, 522.81 MPa. The results of the data from the impact test on Spring material, SS 400 steel, Combination or Sulangkar, namely 162 J, 34 J, 88 J. The results of automatic microscope testing and Scanning Electron Microscope (SEM) show the surface of the spring, SS 400 steel and combination materials.


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