金属碎屑回收方向博士职位

PhD Studentship: NSF Swarf: A Novel Forging Processes for Closed Loop Recycling of Metallic Swarf

The University of Warwick · 英国 · Coventry

原帖优先:申请材料、截止时间与资格以原帖和学校官方说明为准。

AI 中文速览

研究内容
该项目的研究内容是开发一种新型的锻造工艺,用于回收金属碎屑
申请条件
原文未说明
待遇
GBP 21805.00 per year
申请方式
原文未说明
材料清单
  • 原文未说明

由 @cf/meta/llama-3.3-70b-instruct-fp8-fast 生成,博士岗判定置信度 100%。

结构化信息

截止
(Europe/London) 剩 48 天
学科
材料科学
合同类型
雇佣合同
原文薪资
GBP 21,805 / 年(税前)
税后月薪(估)
¥13,700;房租后 ¥5,400
估算假设
单身、无子女、雇佣合同的粗略估算,以学校 offer 为准;扣除率 18%;汇率日期 2026-10-01
原帖发布
本站收录
内容更新
导师
Dr. Carl Slater
来源
jobs.ac.uk(英国博士项目及学术招聘) · 最近核对 2026-10-07
判定依据(原文摘录)
  • is_phd
    PhD Studentship
  • english_ok
    For further enquiries regarding the position and the application procedure, please contact Dr. Carl Slater ( c.d.slater@warwick.ac.uk ) or Sumit Hasra ( sumit.hasra@warwick.ac.uk ).
原文

Start date – 1 st March 2027 (latest)

Project Description

Machining generates large quantities of swarf, with many components losing 60–90% of their material during the machining stage. This swarf is typically collected and discarded, where it becomes mixed with other grades and loses much of its inherent value.

The University of Warwick has recently secured a patent for a novel forging technique in which pre-compacted swarf is heated to just below the melting point of the material and then deformed. Done correctly, this fusion bonds the material together. The route allows waste swarf to be forged directly back into blanks before it is scrapped and mixed, enabling high-purity swarf to be reused with a minimal carbon footprint. The potential is twofold:

• Companies can buy less raw material, using these new blanks (initially) for non safety-critical components.

• High-value materials such as nickel superalloys and stainless steels can have their swarf forged into briquettes and fed into lower-value markets — for example, aerospace-grade swarf could be consolidated and used at a fraction of the price in rail or naval applications.

We are looking for a talented, motivated individual to establish the process window for this technique across several materials and to assess the extent to which the patented material properties are realised. To identify the optimal processing conditions, a range of forging dies will be designed to allow processing of different shapes (strains), at different temperatures and at different forging rates. The project runs alongside the commercialisation of the process, and will therefore also support the metallurgical assessment of commercial products and their consistency.

The PhD will be broken down roughly as follows:

• Developing a fundamental understanding of forging microstructures and forging types.

• Hands-on near-solidus forging (NSF) of swarf under a range of processing conditions.

• Microstructural and mechanical assessment of the forged components, and definition of the underlying mechanisms behind a good forging.

• Potential for complementary modelling to predict strain pathways for given component geometries.

As a PhD candidate you will join the Advanced Steel Research Team, working alongside leading academics, researchers, project engineers and fellow PhD candidates. The group takes a holistic approach to metallic materials, examining the fundamentals and how they influence full-scale production.

For further enquiries regarding the position and the application procedure, please contact Dr. Carl Slater ( c.d.slater@warwick.ac.uk ) or Sumit Hasra ( sumit.hasra@warwick.ac.uk ).

信息有误?提交纠错