van Blokland, Joran
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2

Electrical resistance characteristics of thermally modified..:

van Blokland, Joran ; Adamopoulos, Stergios
European Journal of Wood and Wood Products.  80 (2022)  3 - p. 749-752 , 2022
 
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4

Machine learning-based prediction of surface checks and ben..:

van Blokland, Joran ; Nasir, Vahid ; Cool, Julie..
Construction and Building Materials.  307 (2021)  - p. 124996 , 2021
 
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5

Machine learning-based prediction of internal checks in wea..:

van Blokland, Joran ; Nasir, Vahid ; Cool, Julie..
Construction and Building Materials.  281 (2021)  - p. 122193 , 2021
 
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8

Prediction of bending strength of thermally modified timber..:

van Blokland, Joran ; Olsson, Anders ; Oscarsson, Jan.
European Journal of Wood and Wood Products.  77 (2019)  3 - p. 327-340 , 2019
 
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9

Machine learning-based prediction of surface checks and ben..:

Adamopoulos, Stergios ; Van Blokland, Joran ; Nasir, Vahid.
https://pub.epsilon.slu.se/25920/1/van_blokland_j_et_al_211022.pdf.  , 2021
 
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10

Embedment properties of thermally modified spruce timber wi..:

Van Blokland, Joran ; Florisson, Sara ; Schweigler, Michael...
https://pub.epsilon.slu.se/26253/1/van_blokland_j_et_al_211201.pdf.  , 2021
 
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12

Crack formation, strain distribution and fracture surfaces ..:

van Blokland, Joran ; Olsson, Anders ; Oscarsson, Jan..
Wood Science and Technology, 0043-7719, 2020, 54, s. 1001-1028.  , 2020
 
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14

Crack formation, strain distribution and fracture surfaces ..:

van Blokland, Joran ; Olsson, Anders ; Oscarsson, Jan..
https://pub.epsilon.slu.se/17402/1/van_blokland_j_et_al_200818.pdf.  , 2020
 
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15

Prediction of bending strength of thermally modified timber..:

van Blokland, Joran ; Olsson, Anders ; Oscarsson, Jan.
European Journal of Wood and Wood Products, 0018-3768, 2019, 77:3, s. 327-340.  , 2019
 
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