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Yassine Malajati

from Staten Island, NY
Age ~46

Yassine Malajati Phones & Addresses

  • 74 Farrell Ct, Staten Island, NY 10306
  • Beachwood, OH
  • Revere, MA

Resumes

Resumes

Yassine Malajati Photo 1

Research Scientist

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Location:
Cleveland, OH
Industry:
Chemicals
Work:
The Lubrizol Corporation
Materials Research Scientist

École De Technologie Supérieure (Éts) Feb 2011 - Aug 2011
Research Fellow - Chair of Protective Materials and Equipment

Insa Lyon Oct 2008 - Sep 2009
Research and Teaching Assistant

Institute of Chemistry of Clermont-Ferrand Oct 2005 - Sep 2008
Research Associate

Group of Polymer Materials & Biomaterials Oct 2004 - Jul 2005
Research Intern
Education:
Baldwin Wallace University 2015 - 2017
Master of Business Administration, Masters, Marketing, Business Management
Université Blaise Pascal (Clermont - Ii) - Clermont - Ferrand 2009
Doctorates, Doctor of Philosophy, Materials Science, Chemistry
Université Claude Bernard Lyon 1 2005
Masters
Université Claude Bernard Lyon 1 2004
Bachelors, Materials Science
Université Hassan Ii Aïn Chock De Casablanca 2002
Bachelor of Applied Science, Bachelors, Chemistry
Université Hassan Ii Casablanca
Skills:
Research and Development
Problem Solving
Project Management
Polymers
Advanced Materials
Plastics
Coatings
Materials Science
Chemistry
Analytical Chemistry
Applied Sciences
Spectroscopy
Management
Failure Analysis
Competitive Analysis
Polymer Additives
Formulation
Epoxy
Acrylic
Composites
Tpu
Technical Textiles
Polyurethane
Life Sciences
Characterization
Microsoft Office
Microsoft Project
Data Analysis
Research
Ftir
Materials
Languages:
English
French
Arabic
Yassine Malajati Photo 2

Yassine Malajati

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Publications

Us Patents

Fibrous Nanoparticle-Filled Poly (Methyl Methacrylate) Composites And Methods Of Fabrication

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US Patent:
20220267570, Aug 25, 2022
Filed:
Feb 19, 2021
Appl. No.:
17/180165
Inventors:
- Dhahran, SA
Yassine Malajati - Beachwood OH, US
Enrico Bovero - Dhahran, SA
Mohamed Bouhrara - El Jadida, MA
Abdullatif Jazzar - Khobar, SA
Hussain Tuwailib - Alqatif, SA
Assignee:
SAUDI ARABIAN OIL COMPANY - Dhahran
International Classification:
C08K 9/06
C08L 33/12
B29C 39/10
B29C 39/36
C08F 2/06
C08F 20/14
C08K 7/10
Abstract:
Nanocomposite compositions and methods for preparing nanocomposite compositions films are provided. The nanocomposite compositions include dendritic fibrous nanoparticles that have a diameter ranging from 50 to 500 nm, and a polymer matrix comprising poly(methyl methacrylate) (PMMA), where the dendritic fibrous nanoparticles have a hydrophobic coating and are dispersed within the PMMA matrix. Methods of preparing nanocomposite compositions may include introducing dendritic fibrous nanoparticles into a mixture with a poly(methyl methacrylate) and an organic solvent to form a composite solution. Methods further include casting the mixture onto a glass sheet within a mold, evaporating the organic solvent to form the nanocomposite film, and separating the nanocomposite film from the glass sheet.

Dendritic Fibrous Materials-Based Poly(Methyl Methacrylate) And Methods Of Preparation

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US Patent:
20220267571, Aug 25, 2022
Filed:
Feb 19, 2021
Appl. No.:
17/180211
Inventors:
- Dhahran, SA
Haleema Alamri - Thuwal, SA
Yassine Malajati - Beachwood OH, US
Enrico Bovero - Dhahran, SA
Mohamed Bouhrara - El Jadida, MA
Hussain Tuwailib - Alqatif, SA
Assignee:
SAUDI ARABIAN OIL COMPANY - Dhahran
International Classification:
C08K 9/06
C08K 3/36
C08J 5/18
Abstract:
Nanocomposite compositions and methods for preparing nanocomposite compositions films are provided. The nanocomposite compositions include dendritic fibrous nanoparticles that have a diameter ranging from 50 to 500 nm, and a polymer matrix comprising poly(methyl methacrylate) (PMMA), where dendritic fibrous nanoparticles are dispersed within the polymer matrix, and where the PMMA is bound to the surface of the dendritic fibrous nanoparticles. Methods of preparing nanocomposite compositions and nanocomposite films including the nanocomposite compositions may include introducing dendritic fibrous nanoparticles into a mixture with a poly(methyl methacrylate) in a solution to form a composite solution.

Fabric Jacket To Prevent Nonmetallic Equipment From Extreme Heat, External Damage And Fire

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US Patent:
20220235896, Jul 28, 2022
Filed:
Jan 22, 2021
Appl. No.:
17/155971
Inventors:
- Dhahran, SA
Christian Canto Maya - Dhahran, SA
Yassine MalaJati - Beachwood OH, US
International Classification:
F16L 59/02
F16L 59/14
Abstract:
A protective fabric jacket for placement on an object to be protected from excessive heat includes a first layer; a second layer; and an intermediate spacer fabric layer that is disposed between the first layer and the second layer. The first and second layers are attached to the intermediate spacer fabric layer to form a layered structure. The intermediate spacer fabric layer comprises a flexible honeycomb or octagonal shaped spacer fabric that has a plurality of cells defined therein. The protective fabric jacket also includes a settable material that disposed within the cells and includes a cementitious mixture and one or more organic polymers and is settable to a hardened material.

Scratch Resistant Transparent Articles And Methods Of Making The Same

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US Patent:
20210213652, Jul 15, 2021
Filed:
Jan 31, 2020
Appl. No.:
16/778380
Inventors:
- Dhahran, SA
Enrico Bovero - Dhahran, SA
Yassine Malajati - Beachwood OH, US
Haleema Alamri - Thuwal, SA
Abdullatif Jazzar - Khobar, SA
Hussain Baqer Tuwailib - Alqatif, SA
Assignee:
Saudi Arabian Oil Company - Dhahran
International Classification:
B29C 39/00
B29C 43/00
B29B 7/90
C08K 9/06
B29K 105/16
B29K 509/02
Abstract:
Transparent articles and methods of producing transparent articles are provided. The transparent article includes hydrophobic nanoparticles dispersed within poly(methyl methacrylate). The method of producing transparent articles includes pouring a transparent article precursor into a mold, the transparent article precursor comprising nanoparticles, a solvent, and a polymer, and the mold comprising a flat surface. The method also includes placing the mold into a container having an adjustable opening and allowing the solvent to evaporate from the transparent article precursor, thereby forming the transparent article over the flat surface of the mold. The method further includes flattening the transparent article, in which flattening the transparent article includes positioning a flat article on a first side of the transparent article, and compressing the transparent article between the flat surface and the flat article.
Yassine Malajati from Staten Island, NY, age ~46 Get Report