<?xml version="1.0" encoding="utf-8" standalone="yes"?><rss version="2.0" xmlns:atom="http://www.w3.org/2005/Atom"><channel><title>Beam Shaping on Ruihang Dai</title><link>https://www.dairuihang.com/tags/beam-shaping/</link><description>Recent content in Beam Shaping on Ruihang Dai</description><generator>Hugo</generator><language>en</language><lastBuildDate>Wed, 01 Jul 2026 00:00:00 +0200</lastBuildDate><atom:link href="https://www.dairuihang.com/tags/beam-shaping/index.xml" rel="self" type="application/rss+xml"/><item><title>Laser Beam Shaping in PBF-LB/M</title><link>https://www.dairuihang.com/projects/laser-beam-shaping/</link><pubDate>Sat, 01 Jun 2024 00:00:00 +0200</pubDate><guid>https://www.dairuihang.com/projects/laser-beam-shaping/</guid><description>How ring-shaped, dual-spot, and inverse-designed beam profiles change melt pool behavior, microstructure, and productivity.</description></item><item><title>Investigating microstructural anisotropy and productivity in high-power PBF-LB/M of Inconel 718 using dual-spot beam shaping strategy</title><link>https://www.dairuihang.com/publications/2026-jmpt-dual-spot-inconel718/</link><pubDate>Wed, 01 Jul 2026 00:00:00 +0200</pubDate><guid>https://www.dairuihang.com/publications/2026-jmpt-dual-spot-inconel718/</guid><description>&lt;!-- Replace this summary with the official abstract from the journal. --&gt;
&lt;p&gt;This collaborative study investigates how a dual-spot beam shaping strategy affects microstructural anisotropy and build-rate productivity in high-power laser powder bed fusion of Inconel 718.&lt;/p&gt;</description></item><item><title>Temperature control in powder bed fusion of metals via inverse-designed laser beam shapes</title><link>https://www.dairuihang.com/publications/2026-am-inverse-designed-beam-shapes/</link><pubDate>Sun, 01 Feb 2026 00:00:00 +0100</pubDate><guid>https://www.dairuihang.com/publications/2026-am-inverse-designed-beam-shapes/</guid><description>&lt;!-- Replace this summary with the official abstract from the journal. --&gt;
&lt;p&gt;This work demonstrates that numerically optimized, inverse-designed laser beam shapes can control surface temperature fields in powder bed fusion of metals. Simulated surface temperatures agree well with absolute temperature maps measured by multispectral imaging, and the experimental validation of a diverse set of inverse-designed beam shapes shows that numerical optimization can guide advanced beam shaping for improved process control in PBF-LB/M.&lt;/p&gt;</description></item><item><title>Impact of beam shaping on melt pool behavior in laser processing of stainless steel 316L: Thermal analysis using multispectral imaging</title><link>https://www.dairuihang.com/publications/2025-jmpt-beam-shaping-melt-pool/</link><pubDate>Tue, 01 Apr 2025 00:00:00 +0200</pubDate><guid>https://www.dairuihang.com/publications/2025-jmpt-beam-shaping-melt-pool/</guid><description>&lt;!-- Replace this summary with the official abstract from the journal. --&gt;
&lt;p&gt;Using calibrated multispectral imaging, this study analyzes how ring-shaped laser beam profiles change melt pool temperature distributions in laser processing of stainless steel 316L compared to a Gaussian beam. Gaussian beams produce a concentrated heat zone with linearly increasing peak temperature, while ring-shaped profiles shift the melting behavior and produce characteristic half-moon-shaped temperature distributions, with direct implications for process stability and beam shape selection in PBF-LB/M.&lt;/p&gt;</description></item></channel></rss>