| | | N | | | 13350 | | Recyklovaný polyamid PA 12 | FU | 2025 | nonRIV | P | 0,08 |
| | | N | | | 13391 | | Recyklovaná směs plastů PLA a PETG | FU | 2025 | nonRIV | P | 0,08 |
| | | N | | | 13392 | | Recyklovaná směs plastů PETG a PC a PS a případně ASA | FU | 2025 | nonRIV | P | 0,08 |
| R | W | S | K | 4 | 12234 | 2.3.1 | Flexible silicone ocular prosthesis | JI | 2023 | RIV24 | P(2) | 0,25 |
| R | W | S | K | 4 | 12235 | 2.3.1 | Recycled pa 12 excluded from processing by additive technologies | JI | 2023 | RIV24 | P(2) | 0,25 |
| R | | S | F | | 10332 | 2.11.0.4 | Silikonová oční protéza | FU | 2022 | RIV23 | P | 0,25 |
| R | | S | F | | 10435 | 2.11.0.4 | Silikonová oční protéza nové generace | GA | 2022 | RIV23 | P | 0,25 |
| R | | S | F | | 10570 | 2.11.0.3 | Termoplastický elastomer na bázi styrenu | FU | 2022 | RIV23 | P | 0,25 |
| R | W | S | F | 2 | 8967 | 1.4.4 | Physical properties and non-isothermal crystallisation kinetics of primary mechanically recycled poly(L-lactic acid) and poly(3-hydroxybutyrate-co-3-hydroxyvalerate) | JI | 2021 | RIV22 | P,S | 0,17 |
| R | | S | F | | 9541 | 2.9.3 | Biopolymerní kompozitní materiál na bázi kyseliny polylaktické | FU | 2021 | RIV22 | P | 0,2 |
| R | W | S | F | 3 | 7740 | 2.3.3 | Thermal properties and non-isothermal crystallization kinetics of biocomposites based on poly(lactic acid), rice husks and cellulose fibres | JI | 2020 | RIV21 | P,S | 0,13 |
| R | W | S | K | 3 | 7849 | 2.3.3 | Solid and microcellular polylactide nucleated with PLA stereocomplex and cellulose nanocrystals | JI | 2020 | RIV21 | P,S | 0,13 |
| R | W | S | F | | 7867 | 2.5.5 | Mechanical properties of biopolymer composite with natural fibers surface modified by low-temperature plasma | JI | 2020 | RIV21 | P | 0,2 |
| R | W | S | F | 2 | 8119 | 1.4.4 | Effect of Radiation Crosslinking and Surface Modification of Cellulose Fibers on Properties and Characterization of Biopolymer Composites | JI | 2020 | RIV21 | P | 0,2 |
| R | | S | F | | 8136 | 2.5.5 | Kelímek z biodegradovatelného kompozitního systému PHBV | GB | 2020 | RIV21 | P | 0,2 |
| R | | S | F | | 8137 | 2.5.5 | Lahvička z biodegradovatelného kompozitního systému PLA s nanokrystaly celulózy | GB | 2020 | RIV21 | P | 0,17 |
| | | S | F | | 6364 | 1.4.4 | Moderní plasty a vláknové kompozity. Díl I. Vstřikování plastů: materiály a technologie | BN | 2019 | nonRIV | O | 0,5 |
| | | S | F | | 6434 | 1.4.4 | Moderne Kunststoffe und Faserverbunde. Teil I. Kunststoffspritzguss:Werkstoffe und Verfahren. | BN | 2019 | nonRIV | O | 0,5 |
| R | | S | F | | 6582 | 2.5.5 | Polymerní kompozit s částicovým plnivem rostlinného původu | P | 2019 | RIV20 | P | 0,33 |
| R | S | S | F | | 5706 | 2.3.2 | Fused deposition modeling vs. Injection moulding: influence of fiber orientation and layer thickness on the mechanical properties | JN | 2018 | RIV19 | P,S | 0,2 |
| R | | S | F | | 6054 | 2.5.5 | Blatník Škoda A05 – levý přední z lehkého hybridního kompozitu PA6.6 8GB 10CF | GA | 2018 | RIV19 | P | 0,5 |
| R | | S | F | | 6056 | 2.5.5 | Výztuha nárazníku BMW F46 z lehkého kompozitu PP 30CeF | GA | 2018 | RIV19 | P | 0,5 |
| R | S | S | K | | 4570 | 2.5.1 | Mechanical Properties of Products Made of Abs with Respect to Individuality of Fdm Production Processes | JN | 2017 | RIV18 | P | 0,2 |
 | 4 | | S | K | | 4612 | 1.4.4 | Hybridní kompozitní materiál se syntetickou polymerní matricí, vlákny konopí a skleněnými dutými kuličkami | P | 2017 | RIV18 | P | 0,25 |
| R | S | S | F | | 4708 | 2.5.5 | Mechanical properties of hybrid composites based on polypropylene matrix | JN | 2017 | RIV18 | S | 0,33 |
| R | | S | F | | 4837 | 2.5.5 | Polymerní kompozit s přírodními vlákny a lehčenou matricí | P | 2017 | RIV18 | P | 0,13 |
 | 4 | | S | F | | 4838 | 2.5.5 | Polymerní kompozit se skleněnými dutými mikrokuličkami a uhlíkovými vlákny | P | 2017 | RIV18 | P | 0,25 |
| R | | S | K | | 4840 | 2.5.5 | Biokompozit s PLA matricí a vlákny banánovníku | P | 2017 | RIV18 | P | 0,13 |
| R | | S | F | | 4843 | 2.5.5 | Polymerní kompozit s kokosovými vlákny a nízkohustotními částicemi | FU | 2017 | RIV18 | P | 0,25 |
| R | S | S | F | | 4996 | 2.9.3 | Properties of injection molded nanocomposites and blends based on PLA, PHBV and L-CNC | JN | 2017 | RIV18 | S | 0,17 |
| R | S | S | F | | 309 | JS | Possibility to detect degraded recycled material in the moulded parts from PP | JN | 2016 | RIV17 | S | 0,33 |
| R | S | S | F | | 310 | JP | Thermal degradation of the thermoplastic Elastomers during the injection Moulding process | JN | 2016 | RIV17 | I | 0,2 |
| R | S | S | F | | 329 | JI | Influence of different coupling agent type on processibility and applicability of polymer composites | D | 2016 | RIV17 | P | 0,17 |
| R | S | P | F | | 335 | JP | Impact of innovative cooling system on mechanical properties of moulded parts | D | 2016 | RIV17 | S | 0,33 |
| R | S | S | F | | 336 | JP | Utilizing of inner porous structure in injection moulds for application of special cooling method | D | 2016 | RIV17 | P(2) | 0,17 |
| R | S | S | F | | 337 | JI | The deformation behaviour of hybrid composite systems with thermoplastic matrixitle | JN | 2016 | RIV17 | I | 0,25 |
| R | S | S | F | | 338 | JI | Adhesion additive influence on polyamide nano polymer composite properties | D | 2016 | RIV17 | P | 0,25 |
| R | S | S | K | | 489 | JP | Two component parts hardness optimization regarding production systems | JN | 2016 | RIV17 | S | 0,2 |
| R | S | S | F | | 513 | JI | Effect of dielectric barrier discharge plasma surface treatment on the properties of pineapple leaf fiber reinforced poly(Lactic acid) Biocomposites | JN | 2016 | RIV17 | S | 0,2 |
| R | S | S | F | | 517 | JR | Use of composite materials for FDM 3D print technology | JN | 2016 | RIV17 | P | 0,17 |
 | 5 | | P | F | | 926 | JI | Hybridní polymerní kompozit s vlákny přírodního původu a skleněnými dutými kuličkami | FU | 2016 | RIV17 | P | 0,2 |
 | 5 | | P | F | | 928 | JI | Polymerní kompozit s přírodními vlákny a lehčenou matricí | FU | 2016 | RIV17 | P | 0,13 |
| R | | P | F | | 931 | JI | Hybridní polymerní kompozit s přírodními a skleněnými vlákny | FU | 2016 | RIV17 | P | 0,13 |
| R | S | S | F | | 2582 | JI | Physical-mechanical properties of hollow glass microspheres filled polypropylene composites for injection moulding | JN | 2016 | RIV17 | S | 0,17 |
| R | S | P | F | | 2620 | JP | Observation of impact of progressive cooling system on temperature field distributions on surfaces of injection moulded plastic parts | D | 2016 | RIV17 | P,S | 0,17 |
| R | S | P | F | | 2729 | JI | New Silane and MAPP Coupling Agents as Natural Composites Production Systems Improvement | D | 2016 | RIV17 | P | 0,2 |
| R | S | S | F | | 3006 | JR | Mechanical properties of metal-plastic composite with internal fractal shape reinforcing structure | D | 2016 | RIV17 | P | 0,25 |
 | 1 | | S | F | | 2355 | JR | Ochranná dýchací maska se společným nádechovým a výdechovým otvorem | P | 2015 | RIV16 | P | 0,2 |
| R | W | S | F | | 2382 | JI | Physical-mechanical properties of biocomposites reinforced with coir (nano)fibers | D | 2015 | RIV16 | I | 0,2 |
| R | S | S | K | | 2559 | 2.3.1 | Optimization of snap-fit designs with rapid prototype technology support | JN | 2015 | RIV16 | P | 0,2 |
| R | | S | F | | 2633 | 2.5.5 | Polymerní kompozit se skleněnými dutými mikrokuličkami a uhlíkovými vlákny | FU | 2015 | RIV16 | P | 0,25 |
| R | | S | F | | 2723 | JR | Ochranná dýchací maska se společným nádechovým a výdechovým otvorem | FU | 2015 | RIV16 | P | 0,2 |
| R | | N | K | | 64 | JR | 3D Printing of Fractal Deterministic Shapes Into Polymer Matrix with Respect to Final Composite Mechanical Properties | D | 2014 | RIV15 | P,S | 0,25 |
| R | W | S | F | | 2592 | JI | Study of Crystallization of Polylactic Acid Composites And Nanocomposites with Natural Fibres by DSC Methodas | D | 2014 | RIV16 | P | 0,17 |
| | W | N | K | | 2596 | JI | Influence of the type of additives on the properties of polymer nanocomposites with fillers based on highly pure cellulose | D | 2014 | RIV15 | P | 0,17 |