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      <comment>Funding Agency and Grant Number: Ministry of Culture and Innovation of Hungary [NKKP ADVANCED 149578, RRF-2.3.1-21-2022-00009]; Recovery and Resilience Facility of the European Union; Horizon Europe Framework Programme; International Atomic Energy Agency (IAEA); National Research, Development and Innovation Office, Hungary [OTKA FK138501];  [HORIZON-WIDERA-2021-ACCESS-03];  [101079051 - IPPT_TWINN];  [F23036]
            Funding text: The authors acknowledge the Ministry of Culture and Innovation of Hungary for support from the National Research, Development and Innovation Fund through Grant no. NKKP ADVANCED 149578. Project no. RRF-2.3.1-21-2022-00009, titled National Laboratory for Renewable Energy has been implemented with the support provided by the Recovery and Resilience Facility of the European Union within the framework of Programme Szechenyi Plan Plus. This research was funded by the Horizon Europe Framework Programme and the Call HORIZON-WIDERA-2021-ACCESS-03, under the grant agreement for Project 101079051 - IPPT_TWINN. The authors also extend their acknowledgment to the International Atomic Energy Agency (IAEA) for financial support under the umbrella of CRP (Coordinated Research Project, F23036) . This work was supported by the National Research, Development and Innovation Office, Hungary (OTKA FK138501) .</comment>
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      <abstractText>Material-jetting is a sub-field of additive manufacturing that typically produces cross-linked products with high engineering value. Various post-treatment techniques are often used to enhance the performance of the product. The aim of these post-treatments is mainly to increase the cross-linking density. The use of ionising radiation can be an excellent alternative for this purpose. In this study, gamma radiation was chosen as the ionising radiation and its applicability as a post-treatment technique was investigated. The printed samples were post-treated with absorbed doses between 25 and 200 kGy. Irradiation has significantly changed the mechanical properties. The tensile modulus for the untreated sample (0 kGy) was 1.92 GPa and it increased to 2.76 GPa after irradiation with 200 kGy, while the tensile strength increased from 38.1 MPa to 64.6 MPa. The heat deflection temperature of the untreated specimen was 48 degrees C, which increased to 60 degrees C for the 200 kGy irradiated specimen. The irradiation also had an effect on the thermal properties: the glass transition temperature increased from 46.7 degrees C to 59.6 degrees C, which is an outstanding result when compared to other post-treatment techniques. The changes in properties were caused by an increase in cross-link density, as confirmed by swelling and Fourier transform infrared spectroscopic analyses. The results presented in this study prove that high-energy gamma irradiation is a novel and effective tool to customise the mechanical and thermal properties of material jetting printed photopolymer parts. Gamma irradiation has clear practical benefits in industries where it is already applied, like medical device manufacturing, pharmaceutical or food industry, where strict sterilisation requirements can often be fulfilled by it.</abstractText>
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      <label>Krizsma Szabolcs et al. Gamma-irradiation post-treatment in photopolymer-based additive manufacturing: An efficient method for improved performance. (2025) MATERIALS TODAY COMMUNICATIONS 2352-4928 2352-4928 49</label><template>&lt;div class=&quot;JournalArticle Publication short-list&quot;&gt; &lt;div class=&quot;authors&quot;&gt; &lt;span class=&quot;author-name&quot; mtid=&quot;10073528&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10073528&quot; target=&quot;_blank&quot;&gt;Krizsma, Szabolcs&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10076732&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10076732&quot; target=&quot;_blank&quot;&gt;Kiss, Lóránt&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10042366&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10042366&quot; target=&quot;_blank&quot;&gt;Suplicz, András&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10026850&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10026850&quot; target=&quot;_blank&quot;&gt;Homlok, Renáta&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10017625&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10017625&quot; target=&quot;_blank&quot;&gt;Mészáros, László ✉&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; &lt;/div &gt;&lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;36455001&quot; mtid=&quot;36455001&quot; target=&quot;_blank&quot;&gt;Gamma-irradiation post-treatment in photopolymer-based additive manufacturing: An efficient method for improved performance&lt;/a&gt;&lt;/div&gt; &lt;div class=&quot;pub-info&quot;&gt; &lt;span class=&quot;journal-title&quot;&gt;MATERIALS TODAY COMMUNICATIONS&lt;/span&gt; &lt;span class=&quot;journal-volume&quot;&gt;49&lt;/span&gt; &lt;span class=&quot;page&quot;&gt; Paper: 114205 , 9 p. &lt;/span&gt; &lt;span class=&quot;year&quot;&gt;(2025)&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;pub-end&quot;&gt;&lt;div class=&quot;identifier-list&quot;&gt; &lt;span class=&quot;identifiers&quot;&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;10.1016/j.mtcomm.2025.114205&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.1016/j.mtcomm.2025.114205&quot;&gt; DOI &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;001612557400001&quot; target=&quot;_blank&quot; href=&quot;https://www.webofscience.com/wos/woscc/full-record/001612557400001&quot;&gt; WoS &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;105020935397&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-105020935397&quot;&gt; Scopus &lt;/a&gt; &lt;/span&gt; &lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;short-pub-prop-list&quot;&gt; &lt;span class=&quot;deleted-record&quot;&gt;Központi kezelésű&lt;/span&gt; &lt;span class=&quot;short-pub-mtid&quot;&gt; Közlemény:36455001 &lt;/span&gt; &lt;span class=&quot;status-holder&quot;&gt;&lt;span class=&quot;status-data status-ADMIN_APPROVED&quot;&gt; Admin láttamozott &lt;/span&gt;&lt;/span&gt; &lt;span class=&quot;pub-core&quot;&gt;Forrás Idéző &lt;/span&gt; &lt;span class=&quot;pub-type&quot;&gt;Folyóiratcikk (Szakcikk ) &lt;/span&gt; &lt;!-- &amp;&amp; !record.category.scientific --&gt; &lt;span class=&quot;pub-category&quot;&gt;Tudományos&lt;/span&gt; &lt;/div&gt; &lt;/div&gt; &lt;/div&gt;</template><template2>&lt;div class=&quot;JournalArticle Publication long-list&quot;&gt;
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&lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;36455001&quot; target=&quot;_blank&quot;&gt;Gamma-irradiation post-treatment in photopolymer-based additive manufacturing: An efficient method for improved performance&lt;/a&gt;&lt;/div&gt;    &lt;div&gt;		&lt;span class=&quot;journal-title&quot;&gt;MATERIALS TODAY COMMUNICATIONS&lt;/span&gt;

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				&lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Materials Chemistry&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q2&lt;/div&gt;
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&lt;div class=&quot;lastModified&quot;&gt;Utolsó módosítás: 2026.01.27. 11:42 Andódy Katalin (BME admin4)
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	&lt;pre class=&quot;comment&quot; style=&quot;margin-top: 0; margin-bottom: 0;&quot;&gt;&lt;u&gt;Megjegyzés&lt;/u&gt;: Funding Agency and Grant Number: Ministry of Culture and Innovation of Hungary [NKKP ADVANCED 149578, RRF-2.3.1-21-2022-00009]; Recovery and Resilience Facility of the European Union; Horizon Europe Framework Programme; International Atomic Energy Agency (IAEA); National Research, Development and Innovation Office, Hungary [OTKA FK138501];  [HORIZON-WIDERA-2021-ACCESS-03];  [101079051 - IPPT_TW...&lt;/pre&gt;
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