28
WP 2: Zero-drift contact temperature sensors to 1350 ºC Partners NPL: Claire Elliott, Declan Tucker, (Adam Greenen), Jonathan Pearce AFRC: Aurik Andreu, Sarah-Louise Keegan BRML: Marius Neagu (Andreea-Diana Morosanu) CCPI Europe: Peter Cowley, Trevor Ford PTB: Frank Edler, Sebastian Haupt UCAM: Michele Scervini March 2017 [email protected]

WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

  • Upload
    others

  • View
    2

  • Download
    0

Embed Size (px)

Citation preview

Page 1: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

WP 2: Zero-drift contact temperature sensors to 1350 ºCPartnersNPL: Claire Elliott, Declan Tucker, (Adam Greenen), Jonathan PearceAFRC: Aurik Andreu, Sarah-Louise KeeganBRML: Marius Neagu (Andreea-Diana Morosanu)CCPI Europe: Peter Cowley, Trevor FordPTB: Frank Edler, Sebastian HauptUCAM: Michele Scervini March 2017

[email protected]

Page 2: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Overview

Aim 1: develop integrated thermocouples

[email protected]

Page 3: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Overview

Aim 1: develop integrated thermocouples

Aim 2: test for up to 6 months at AFRC and ICPE-CA

[email protected]

Page 4: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Overview

Aim 1: develop integrated thermocouples

Aim 2: test for up to 6 months at AFRC and ICPE-CA

Aim 3: evaluate ultra-stable MIMS thermocouples

[email protected]

Page 5: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Overview

Aim 1: develop integrated thermocouples

Aim 2: test for up to 6 months at AFRC and ICPE-CA

Aim 3: evaluate ultra-stable MIMS thermocouples

Aim 4: test for up to 6 months at Bodycote (UK & Romania)

[email protected]

Page 6: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Overview

Aim 1: develop integrated thermocouples

Aim 2: test for up to 6 months at AFRC and ICPE-CA

Aim 3: evaluate ultra-stable MIMS thermocouples

Aim 4: test for up to 6 months at Bodycote (UK & Romania)

[email protected]

Page 7: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Ultra-stable MIMS thermocouples

[email protected]

2-layer sheath design

Double wall

Double wall

Mineral insulation & thermocouple wires

Page 8: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Ultra-stable MIMS thermocouples

[email protected]

2-layer sheath design

Cyclic testing and lab test comparison

Page 9: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Ultra-stable MIMS thermocouples

[email protected]

2-layer sheath design

Cyclic testing and lab test comparison

Test for up to 6 months at

Bodycote (UK & Romania)

& 5 cycles at AFRC

Page 10: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Ultra-stable MIMS thermocouples

[email protected]

2-layer sheath design

Cyclic testing and lab test comparison

Test for up to 6 months at

Bodycote (UK & Romania)

& 5 cycles at AFRC

Further details at 11.30

Page 11: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Aim 1: Build and test an alumina thermocouple design, with an integrated

reference ingot

[email protected]

Integrated thermocouples

Page 12: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Aim 1: Build and test an alumina thermocouple design, with an integrated

reference ingot

[email protected]

Integrated thermocouples

Page 13: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Aim 1: Build and test an alumina thermocouple design, with an integrated

reference ingot – without changing the external size

[email protected]

Integrated thermocouples

Page 14: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Aim 1: Build and test an alumina thermocouple design, with an integrated

reference ingot – without changing the external size

[email protected]

Integrated thermocouples

Page 15: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Aim 1: Build and test an alumina thermocouple design, with an integrated

reference ingot – without changing the external size

[email protected]

Integrated thermocouples

Page 16: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Aim 1: Build and test an alumina thermocouple design, with an integrated

reference ingot – without changing the external size

Lab testing

with Cu (1084 ºC) and,

Co-C (1324 ºC) ingots

[email protected]

Integrated thermocouples

Page 17: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

[email protected]

Integrated thermocouples

Page 18: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

[email protected]

Integrated thermocouples

Page 19: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Aim 1: Build and test an alumina thermocouple design, with an integrated

reference ingot – without changing the external size

Lab testing

Aim 2: Test for up to 6 months at

ICPE-CA (Romania) and AFRC (here!)

[email protected]

Integrated thermocouples

Page 20: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

ICPE-CA (Romania)

Through BRML

[email protected]

Integrated thermocouples

Page 21: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

ICPE-CA (Romania)

Through BRML

[email protected]

Integrated thermocouples

Page 22: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

AFRC

[email protected]

Integrated thermocouples

Page 23: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

AFRC

[email protected]

Integrated thermocouples

Page 24: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Ultra-stable MIMS thermocouples, manufactured, tested and set up at AFRC

Aiming to test for up to 6 months at Bodycote (UK & Romania)

[email protected]

Summary

Page 25: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Ultra-stable MIMS thermocouples, manufactured, tested and set up at AFRC

Aiming to test for up to 6 months at Bodycote (UK & Romania)

Developed integrated thermocouples, within 7 mm OD sheath

and started industrial trials

[email protected]

Summary

Page 26: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Ultra-stable MIMS thermocouples, manufactured, tested and set up at AFRC

Aiming to test for up to 6 months at Bodycote (UK & Romania)

Developed integrated thermocouples, within 7 mm OD sheath

and started industrial trials

Thank you for your attention

[email protected]

Summary

Page 28: WP 2: Zero-drift contact temperature sensors to 1350 ºC · Aiming to test for up to 6 months at Bodycote (UK & Romania) Developed integrated thermocouples, within 7 mm OD sheath

Brief introduction

Reference Temperatures – “fixed-points” on the ITS-90

[email protected]