Attachment__3_-_Team_Project_Activities.doc

DOC document 33 KB Posted

Attached to
Pipeline Safety Research and Development Announcement Federal contract opportunity
Solicitation number
DTPH5616RA00001
Issued by
Department of Transportation Pipeline and Hazardous Material Safety Administration

About this file

Attachment 3 - Team Project Activities

View the file

Other files for this federal contract opportunity

On GovTribe

Work with this file on GovTribe

  • Download the original file
  • Contacts named in this file
  • Similar government files
  • Ask GovTribe AI about this file

Text version

DTPH5616RA00001

Full Proposal

ATTACHMENT #3

SAMPLE SAMPLE SAMPLE SAMPLE

TEAM PROJECT ACTIVITIES

1. Project Discussion with Industrial partners to seek additional input;

2. Kick-off Team meeting and modify the research program, if necessary;

3. Use analytical and finite element analysis to calculate residual stresses in a multi-layer pipeline coating systems. Identify critical coating material properties to the development of residual stresses. The residual stress calculation includes:

(a) Stress distribution along longitudinal direction of a coated pipe joint, particularly at the cutback;

(b) Stress distribution at the metal-coating interface and across the thickness direction;

4. Evaluate the existing residual stress measurement techniques- cantilever beam, instrumented ring, and others and select the most appropriate method for this research;

5. Make residual stress measurement Identify the impact of manufacturing parameters, such as processing temperatures and coating thickness on residual stresses.

The 3L polyolefin coating systems are:

I.

3L HDPE

1.FBE- 4 mil / adhesive-10 mil / HDPE-140 mil

2.FBE-10 mil / adhesive-10mil / HDPE-140 mil

II.

3L PP

1.FBE- 4 mil / adhesive-10 mil / PP-140 mil

2.FBE-10 mil / adhesive-10mil / PP-140 mil

6. Identify and measure the basic coating material properties to be used in the calculation of residual stresses;

7. Compare the calculated residual stress values with the experimental values and refine the analytical modeling to match with the experimental results on residual stresses;

8. Prepare Adhesion test panels.. The following surface preparations will be applied:

I- Anchor profile height– 3 mil, 2 mil, and 1.5 mil

II-

Anchor profile shape – angular and round

III-

Peak density – 60, 80, 100 peaks/inch

IV-

Chloride contamination, 20, 30, 40, 50 mg/m2, V- Dust level – Rating 1, 2, 3 in ISO standard 8502-3

VI-

With and without phosphoric acid wash

VII-

Chromate treatment

9. Determine the adhesion degradation rate by immersion of test panels in

(a) 3% salt solution at 60 C for one year;

(b) dry/wet cycling.

Identify the effect of various surface treatments on adhesion durability;

10. Prepare free films of single layer FBE , adhesive and multi-layer coating;

11. Immerse free films in 60 C 3% salt water to measure their ageing stability, weight and dimensional change vs. time. The total immersion time is one year;

12. Immerse residual stress samples in 3% salt water at 60C and measure the residual stress relaxation rate;

13. Establish the analytical modeling to predict the coating disbondment and identify the critical parameters to coating disbondment;

14. Attend DOT project review meeting;

15. Mid-term team meeting;

16. Final team meeting;

17. Prepare and submit Quarterly Status Reports and the Final Project Report; and

18. Publish papers and make presentation.

SAMPLE SAMPLE SAMPLE SAMPLE SAMPLE

File details come from the government source that posted it. Updated .