History of changes to: Advancing Gear Oil Insights - tribofilm and subsurface correlation focusing on ashless versus organometallic chemistries
Date Action Change(s) User
Nov. 27, 2023, 2:11 p.m. Added 35 {"external_links": []}
Nov. 20, 2023, 2:02 p.m. Added 35 {"external_links": []}
Nov. 13, 2023, 1:32 p.m. Added 35 {"external_links": []}
Nov. 6, 2023, 1:30 p.m. Added 35 {"external_links": []}
Aug. 14, 2023, 1:30 p.m. Added 35 {"external_links": []}
Aug. 7, 2023, 1:31 p.m. Added 35 {"external_links": []}
July 31, 2023, 1:33 p.m. Added 35 {"external_links": []}
July 24, 2023, 1:34 p.m. Added 35 {"external_links": []}
July 17, 2023, 1:33 p.m. Added 35 {"external_links": []}
July 10, 2023, 1:25 p.m. Added 35 {"external_links": []}
July 3, 2023, 1:25 p.m. Added 35 {"external_links": []}
June 26, 2023, 1:25 p.m. Added 35 {"external_links": []}
June 19, 2023, 1:26 p.m. Added 35 {"external_links": []}
June 12, 2023, 1:28 p.m. Added 35 {"external_links": []}
June 5, 2023, 1:32 p.m. Added 35 {"external_links": []}
May 29, 2023, 1:27 p.m. Added 35 {"external_links": []}
May 22, 2023, 1:28 p.m. Added 35 {"external_links": []}
May 15, 2023, 1:30 p.m. Added 35 {"external_links": []}
May 8, 2023, 1:36 p.m. Added 35 {"external_links": []}
May 1, 2023, 1:27 p.m. Added 35 {"external_links": []}
April 24, 2023, 1:33 p.m. Added 35 {"external_links": []}
April 17, 2023, 1:29 p.m. Added 35 {"external_links": []}
April 10, 2023, 1:25 p.m. Added 35 {"external_links": []}
April 3, 2023, 1:25 p.m. Added 35 {"external_links": []}
Jan. 28, 2023, 11:08 a.m. Created 43 [{"model": "core.projectfund", "pk": 22958, "fields": {"project": 139, "organisation": 2, "amount": 0, "start_date": "2019-09-30", "end_date": "2023-09-29", "raw_data": 36819}}]
Jan. 28, 2023, 10:51 a.m. Added 35 {"external_links": []}
April 11, 2022, 3:44 a.m. Created 43 [{"model": "core.projectfund", "pk": 15055, "fields": {"project": 139, "organisation": 2, "amount": 0, "start_date": "2019-09-30", "end_date": "2023-09-29", "raw_data": 295}}]
April 11, 2022, 3:44 a.m. Created 41 [{"model": "core.projectorganisation", "pk": 57125, "fields": {"project": 139, "organisation": 570, "role": "STUDENT_PP_ORG"}}]
April 11, 2022, 3:44 a.m. Created 41 [{"model": "core.projectorganisation", "pk": 57124, "fields": {"project": 139, "organisation": 2207, "role": "LEAD_ORG"}}]
April 11, 2022, 3:44 a.m. Created 40 [{"model": "core.projectperson", "pk": 35173, "fields": {"project": 139, "person": 498, "role": "STUDENT_PER"}}]
April 11, 2022, 3:44 a.m. Created 40 [{"model": "core.projectperson", "pk": 35172, "fields": {"project": 139, "person": 499, "role": "SUPER_PER"}}]
April 11, 2022, 1:46 a.m. Updated 35 {"title": ["", "Advancing Gear Oil Insights - tribofilm and subsurface correlation focusing on ashless versus organometallic chemistries"], "description": ["", "\nHigh performance industrial gear oils range in application and severity of operation across mining and manufacturing through to energy efficient wind turbines where in service reliability and longevity are key to product performance. Here the gear oil has to provide extremely high levels of surface protection to rolling and sliding contacts over a range of environmental operating conditions. Understanding the surface and sub-surface impact of the additive systems in-use is a key requirement to underpin long term product development of new gear oil systems. Research plays a key role in advancing our understanding of the role that new and existing additive technologies and combinations play in severe loading contact conditions and their impact on the initiation of surface and subsurface metallurgical defects. \n \nThis PhD project will be run through the Centre for Doctoral Training in Advanced Materials Systems and presents a 4 year PhD opportunity within the International Centre for Advanced Materials (BP-ICAM) at Manchester University. Working alongside a major, global branded lubricant supplier as an industrially sponsored study the student will be charged with investigating the surface mode of action for a range of additive combinations to critique the impact of metallic and ashless (metal free) additive technologies within a range of product platforms and to understand the surface role of the additives in the formation and resilience of the tribofilm. The deliverable will be the ability to predict the surface behaviour and activity in varying tribological contact conditions and relate this performance to the sub-surface metallurgical condition under different lubricants and test conditions. \n \nThis project will be interdisciplinary in nature allowing the candidate to develop their skills within a broad research area. Whilst some chemical knowledge is desirable knowledge of mechanical engineering and a willingness to learn and engage in interdisciplinary research will be essential. This would include; tribology, mechanical engineering and testing, metallurgy, surface science, surface and sub-surface analysis and x-ray imaging.\n\n"], "extra_text": ["", "\n\n\n\n"], "status": ["", "Active"]}
April 11, 2022, 1:46 a.m. Added 35 {"external_links": [251]}
April 11, 2022, 1:46 a.m. Created 35 [{"model": "core.project", "pk": 139, "fields": {"owner": null, "is_locked": false, "coped_id": "5a7564ad-0fee-4d77-87c6-d4fe7433b704", "title": "", "description": "", "extra_text": "", "status": "", "start": null, "end": null, "raw_data": 280, "created": "2022-04-11T01:28:58.304Z", "modified": "2022-04-11T01:28:58.304Z", "external_links": []}}]