FREE WHITE PAPER

Heading

Date
This is some text inside of a div block.
FREE WHITE PAPER

Heading 1

Heading 2

Heading 3

Heading 4

Heading 5
Heading 6

Lorem ipsum dolor sit amet, consectetur adipiscing elit, sed do eiusmod tempor incididunt ut labore et dolore magna aliqua. Ut enim ad minim veniam, quis nostrud exercitation ullamco laboris nisi ut aliquip ex ea commodo consequat. Duis aute irure dolor in reprehenderit in voluptate velit esse cillum dolore eu fugiat nulla pariatur.

Block quote

Ordered list

  1. Item 1
  2. Item 2
  3. Item 3

Unordered list

  • Item A
  • Item B
  • Item C

Text link

Bold text

Emphasis

Superscript

Subscript

Heading 1

Heading 2

Heading 3

Heading 4

Heading 5
Heading 6

Lorem ipsum dolor sit amet, consectetur adipiscing elit, sed do eiusmod tempor incididunt ut labore et dolore magna aliqua. Ut enim ad minim veniam, quis nostrud exercitation ullamco laboris nisi ut aliquip ex ea commodo consequat. Duis aute irure dolor in reprehenderit in voluptate velit esse cillum dolore eu fugiat nulla pariatur.

Block quote

Ordered list

  1. Item 1
  2. Item 2
  3. Item 3

Unordered list

  • Item A
  • Item B
  • Item C

Text link

Bold text

Emphasis

Superscript

Subscript

Download Resource
Thank you! Your submission has been received!
Oops! Something went wrong while submitting the form.

A deep dive into DMLS 3D printing with industrial CT

Edited by
Date
August 1, 2022
Introduction to DMLS

DMLS, or direct metal laser sintering, is a 3D printing process that builds metal parts by melting metal powder with a laser. It's similar to selective laser sintering, a polymer 3D printing process. DMLS printers allow engineers to create parts with complex geometries that would be difficult to cast or machine, but designing for DMLS is tricky, and these machines can introduce critical flaws that lead to part failure.

Industrial X-ray CT scanners are ideally suited to 3D printing workflows; they can quickly inspect both internal and external features and validate designs for production. Here we check for some common DMLS issues with a Lumafield Neptune CT scanner.

Explore this scan in Voyager by creating a free account.

Trapped powder

Powder-bed 3D printing processes like DMLS and SLS require post-processing to remove unfused powder from printed parts. In many cases, this post-processing requires painstaking manual work, and an invisible pocket of trapped powder could make a part unsuitable for its intended application.

Here, we notice a small amount of leftover powder that was not cleared during post-processing. In a production environment, this part might be returned for additional processing to remove the remaining powder, then re-scanned to ensure quality.

Dimensional accuracy

Thermal 3D printing processes can introduce warping and other problems with dimensional accuracy, especially on fine internal features that can't be inspected visually. In this case, our internal channel varies from its 1mm nominal diameter by as much as 13%.

Pores and voids

Like casting and molding, thermal 3D printing processes can leave invisible pores and voids inside parts, increasing the probability of mechanical failure. Our CT scan confirms that this part is largely solid, but these 2D slices show a pore in the upper half of the bracket, close to where the channel starts.

Other Articles in the Series
  • Main page: Inspect 3D printed parts with industrial CT
  • Fused Deposition Modeling (FDM)
  • Selective Laser Sintering (SLS)
  • Stereolithography (SLA)
  • Multi Jet Fusion (MJF)
Resource
Article

A deep dive into DMLS 3D printing with industrial CT

August 1, 2022
Resource

A deep dive into DMLS 3D printing with industrial CT

Introduction to DMLS

DMLS, or direct metal laser sintering, is a 3D printing process that builds metal parts by melting metal powder with a laser. It's similar to selective laser sintering, a polymer 3D printing process. DMLS printers allow engineers to create parts with complex geometries that would be difficult to cast or machine, but designing for DMLS is tricky, and these machines can introduce critical flaws that lead to part failure.

Industrial X-ray CT scanners are ideally suited to 3D printing workflows; they can quickly inspect both internal and external features and validate designs for production. Here we check for some common DMLS issues with a Lumafield Neptune CT scanner.

Explore this scan in Voyager by creating a free account.

Trapped powder

Powder-bed 3D printing processes like DMLS and SLS require post-processing to remove unfused powder from printed parts. In many cases, this post-processing requires painstaking manual work, and an invisible pocket of trapped powder could make a part unsuitable for its intended application.

Here, we notice a small amount of leftover powder that was not cleared during post-processing. In a production environment, this part might be returned for additional processing to remove the remaining powder, then re-scanned to ensure quality.

Dimensional accuracy

Thermal 3D printing processes can introduce warping and other problems with dimensional accuracy, especially on fine internal features that can't be inspected visually. In this case, our internal channel varies from its 1mm nominal diameter by as much as 13%.

Pores and voids

Like casting and molding, thermal 3D printing processes can leave invisible pores and voids inside parts, increasing the probability of mechanical failure. Our CT scan confirms that this part is largely solid, but these 2D slices show a pore in the upper half of the bracket, close to where the channel starts.

Other Articles in the Series
  • Main page: Inspect 3D printed parts with industrial CT
  • Fused Deposition Modeling (FDM)
  • Selective Laser Sintering (SLS)
  • Stereolithography (SLA)
  • Multi Jet Fusion (MJF)
Voyager Inspection Workflows
Introduction to Voyager
Introduction to Neptune
Introduction to Industrial CT
Advancing Automotive Inspection: Industrial CT for Better Outcomes
Introducing Neptune Performance and Triton Performance
Manufacturers Know Quality Costs Money. Most Don't Know How Much.
The Real Cost of a Product Recall and How to Prevent One
What Industrial CT Scanning Does for Manufacturing Quality
Next-Generation Drones: Protecting Performance with Industrial CT
Explore more posts
メインコンテンツへスキップ
World Cup Scan of the Month >
プラットフォーム
分野別ソリューション
すべての業界
バッテリー
医療機器
消費財
スポーツ用品
自動車
航空宇宙/防衛
農業と食品
電子機器
用途別アプリケーション
各種資料
技術資料
ケーススタディ
オンラインセミナー
Blog
Insights from lumafield
Go/No-Go
Manufacturing podcast
First Article
Editorial Publication
企業情報
会社概要
採用情報
プレスリリース
Events
Voyager を起動
お問い合わせはこちら
メニュー
製品業界
業界
すべての業界
電子機器
医療機器
自動車
消費財
バッテリー
農業と食品
航空宇宙/防衛
スポーツ用品
[アプリケーション]
リソース
リソース
ホワイトペーパー
101
オンラインセミナー
最初の記事
Go/No-Go Podcast
First Article
会社
会社
について
採用情報
プレス
Events
セールスに問い合わせる
ボイジャーを起動
© 2000 Lumafield. All Rights Reserved.
世界の”ものづくり”を変える。
分野別ソリューション
バッテリー
医療機器
消費財
スポーツ用品
自動車
航空宇宙/防衛
農業と食品
電子機器
すべての業界
用途別アプリケーション
リバースエンジニアリング
ファースト・アーティクル・インスペクション (FAI)
品質保証と品質管理
寸法測定
故障解析
材料特性評価
欠陥検出
競合ベンチマークと分析
組み立て検証
設計検証と妥当性の確認
サプライヤー適格性評価
非破壊検査 (NDT)
すべてのアプリケーション
製品
ネプチューントリトンボイジャーアトラス
各種資料
学習コンテンツメディア技術資料ウェビナーオンラインセミナー初回CTスキャン分析ガイドケーススタディCT入門エンジニアブログ
企業情報
ログイン会社概要採用情報プレスリリースブログお問い合わせ

ニュースレターに登録する

info@lumafield.com
プライバシー情報セキュリティ導入サービス契約
© 2000 ルマフィールド。全著作権所有。