corrosion and surface technologies lab

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Corrosion and Surface Technologies Lab. R&D and services December 2019

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Page 1: Corrosion and Surface Technologies Lab

Corrosion and Surface Technologies Lab.R&D and servicesDecember 2019

Page 2: Corrosion and Surface Technologies Lab

The Israel Institute of Metals (IIM)

Research & Services

Industrial services under ISO 17020 and testing under ISO 17025

3 main research laboratories: Corrosion & Surface Technologies,

Foundry (Production technologies) and Metallurgical

Additive Manufacturing and TechMed R&D Centers

Founded to support quality and development in metal related

industries. Fully owned by the Technion Research and

Development foundation (TRDF).

Page 3: Corrosion and Surface Technologies Lab

Short-term activities

Advisory for the industry

Testing according to standards

Failure analysis

On-site inspection services

Medium/long-term activities

Applied research for the industry

National and multilateral funded R&D projects

Commercialization and industrialization

Supervision of undergraduate and graduate students

Dissemination and exploitation

Organization of events (creating an eco-system)

Page 4: Corrosion and Surface Technologies Lab

Innovations in surface technologies

• Advanced coatings.• Chemical and electrochemical finishing

technologies.• Unique testing equipment.• Special surface solutions for the medical

device sector.• Solutions for additive manufacturing.

Page 5: Corrosion and Surface Technologies Lab

Case studyDevelopment of an hydrophilic coating for Al6061

Page 6: Corrosion and Surface Technologies Lab

Case studyLaser hardening of tool steels using HPDL

Page 7: Corrosion and Surface Technologies Lab

Case studyPre-adhesion laser treatment for improved bonding

of composite materials

System:

Pulsed mode Nd:YAG laser Quanta – Ray PRO-290-10 Spectra-Physics.

Method:

Surface treatment to achieve strong and durable bonds, based on

Cleaning

Chemical activation

Morphological changes (texturizing/roughening)

Surface Ablation

Environmental Friendly Laser head

Lens

Adhere

nd

Page 8: Corrosion and Surface Technologies Lab

Case studyDifferent examples of short-term projects

Rapid Electrochemical Assessment of Paint (REAP)

Page 9: Corrosion and Surface Technologies Lab

Research & Development - Coatings

Zn-polymer coatings as potential for

Cd replacement

Ceramic coatings on

metals (MAO) Electrophoretic deposition of ceramic coatings

Ni-P with diamonds

Page 10: Corrosion and Surface Technologies Lab

Research & Development – Advanced polishing techniques

Magnetic-assisted EP

Electro-chemical

polishing (EP)

Page 11: Corrosion and Surface Technologies Lab

Research & Development – Advanced polishing techniques

Plasma EP (PEP)

PEP process (St.St.316L/316L VAR )

Cu-Al-Ni coin

Stainless Steel

Page 12: Corrosion and Surface Technologies Lab

Research & Development – Advanced polishing techniques

Local PEP (Jet-PEP)

LEU

Energiequelle

Page 13: Corrosion and Surface Technologies Lab

Research & Development – Advanced finishing techniques

Electro-discharge treatment

AMed (EBM) Ti-6Al-4V localized polishing

AMed (binder jetting) Si-SiC(CMC) drilling

AMed Ti-6Al-4V drilling

Page 14: Corrosion and Surface Technologies Lab

Research & Development – Advanced surface modificationPotentiostatic nano etching of St.St. 316L (for improved osseointegration of medical implants)

Page 15: Corrosion and Surface Technologies Lab

Testing & Characterization

ASTM B117:

Standard Practice for

Operating Salt Spray

(Fog) Apparatus

ASTM F-746 Standard Test

Method for Pitting or Crevice

Corrosion of Metallic

Surgical Implant Materials

(Co-Cr)

ASTM F-2129: cyclic

polarization of nitinol stents

Nyquist plot:

electrochemical

Impedance Spectroscopy

(EIS) of biodegradable

alloys for medical use

Page 16: Corrosion and Surface Technologies Lab

Testing & Characterization

Welding evaluation: chemical resistance of Al5052 tubes in

sulfamic acid solution

Galvanic corrosion

General corrosion

Laboratory-scale simulation of laser

cooling system (corrosion resistance)

Performance of inhibitors and coolant requirements according to ASTM 2570 “simulated service corrosion test”

Page 17: Corrosion and Surface Technologies Lab

Testing & Characterization

Stainless-steel “quick re-activation test” as substitution for salt spray test (SST)

Page 18: Corrosion and Surface Technologies Lab

Testing & Characterization

Critical pitting temperature (CPT) with smart heat liquid circulator (linear or exponential temperature profile with external control)

Page 19: Corrosion and Surface Technologies Lab

Testing & Characterization

SPECTRUMA GDA-750

Glow Discharge

Optical Emission

Spectroscopy

Page 20: Corrosion and Surface Technologies Lab

Other services (just some examples)

Page 21: Corrosion and Surface Technologies Lab

Case study: failure analysis

Page 22: Corrosion and Surface Technologies Lab

Case study: failure analysis

1

Anodic micro-site

Page 23: Corrosion and Surface Technologies Lab

On-site services

Page 24: Corrosion and Surface Technologies Lab

Different Topics

Development of 3D printed magnets

Synthesis of magnetic materials

Page 25: Corrosion and Surface Technologies Lab

Development of 3D printed nitinol (SMA/super-elastic)

Different Topics

NiTi4 Powder 15-45 μm

Raw material supplied to TLS by Memry

Bulk complies with ASTM F2063:

Standard Specification for Wrought

Nickel-Titanium Shape Memory Alloys

for Medical Devices and Surgical Implants

Page 26: Corrosion and Surface Technologies Lab

Development of 3D printed nitinol (SMA/super-elastic)

Different Topics

ASTM F2063

EDS of printed parts

Page 27: Corrosion and Surface Technologies Lab

Development of biodegradable metallic implants

Different Topics

Page 28: Corrosion and Surface Technologies Lab

Laser technologies

Different Topics

Page 29: Corrosion and Surface Technologies Lab
Page 30: Corrosion and Surface Technologies Lab

Some of our on-going projects:PartnersProject

TU Chemnitz, Leukhardt, BTEJet PEP – localized plasma electro-polishing

Kanfit 3DNitinol 3D

Ham-LetSt. St. 3D

Limat, AfekaSurface technologies for Ti-64

Prof. Osovski, ElbitAluminum 3D

ElbitNew concept for landing gear

IAIDevelopment of magnetic materials

GlikDevelopment of diamond based composite coatings

COST action “CRM-Extreme”Replacement of CRM

COST action “Certbond”Certification of adhesion bonding technologies

Page 31: Corrosion and Surface Technologies Lab

National funding opportunitiesתקופת מימוןתיאורתיאור המסלול

מחקרמועדי הגשה

הערותקניין ותמלוגים

:הכוונת ידע

נופר

קמין

ביצוע מחקר

מדעי לאור צרכי התעשייה

10-900-85

עד שנתיים

הגשה )(שנתית

2-3

פעמים בשנה

, ברשות הטכניון

זכות ראשונים למפעל

טכניון כאקדמיה

בדיקת התאמה פ"מכינת המולתיעוש

לאזור ₪ 100,000מימון עד 75%

ישולמו 40,000מתוכם , פיתוח אלמכון כייעוץ

מסלול

לתקופות

9קצרות עד חודשים

בדיקת ייתכנות , טוב לסקר שוק, הליך אישור מזורזללא תמלוגיםחופשי'וכו

:העברת ידע

מגנטון

תיעוש ידע מהאקדמיה

י "מימון לכלל התקציב ע66%

י "התשלום למכון המחקר ע, הרשות100%-התעשייה ולאחר השלמה ל

לשנתיים₪ ' מ3.4תקרה

עד שנתיים

הגשה )(שנתית

2-3

פעמים בשנה

הסכם תיעוש מראש

ייחתם בין הטכניון

ללא , ובין המפעל

תמלוגים לרשות החדשנות

(ט"להבדיל ממאגד מגנ)אין הכרה בציוד ייעודי

ת"מופ

, פ תעשייתי"מו)

(פ"לשעבר קרן המו

פיתוח

טכנולוגיות בתעשייה

מימון30-50%

לפחות20%-שותפות מכון ב10%+

אזורי פיתוח10%+

לרוב מאושר סכום סביב , ללא תקרהלשנה₪ ' מ1.2

עד שלוש

שנים

ממוצע )(שנתיים

הידע שייך חופשי

תמלוגים , לתעשייה

מול הרשות עד

סכום ההשקעה

במידת ההצלחה

מהגידול היחסי )

פטור * , (במכירות

לתעשייה מסורתית

70עם הכנסות עד

דולר בשנה ' מ

הקודמת להגשה

הגשות 3לרוב עד )

השנים 5-ב(האחרונות

500,000₪תבניות ייצוריות עד תקרה של

250,000₪ל עד תקרה של "מחורכישת ידע

הוצאות פיתוח מכונות ייצור

עד תקרה ( אב טיפוס)רכיבים לבניית מכונת ייצור 500,000₪של

25,000₪הדרכות לעובדים עד תקרה של

מתקציב התיק15%שיווק עד תקרה של

הידע של התעשייה או בהתאם להסכם אחר עם הטכניון, (תעשייה100%)מימון ישיר של מזמין הפעילות מימון ישיר

Page 32: Corrosion and Surface Technologies Lab

The team

Daniel SafranchikHead of the lab

Gennady KozyukinDeputy head of the lab

Alla PismennyResearch engineer

Victor LumelskyResearch engineer

Mila LevinResearch engineer

Dr. Sergey ElfimchevResearch engineer

Research assistants:Ohad ZandIdan Lerner

Yair Reichman

Page 33: Corrosion and Surface Technologies Lab

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“The best way to predict the future is to create it”

Peter Drucker