1. Kablov , E . N ., Innovatsionnye razrabotki VIAM po realizatsii “Strategicheskikh napravlenii razvitiya materialov i tekhnologii ikh pererabotki na period do 2030 goda” [Innovate developments of the AllRussian Scientific Research Institute of Aviation Materials within the project “Strategic development of materials and technologies of their recycling until 2030”], Aviatsionnye materialy i tekhnologii, 2015, No 1, pp. 3– 33, DOI: 10.18577/2071-9140-2015-0-1-3-33.
2. Kablov E . N . , Toloraya V . N ., VIAM – osnovopolozhnik otechestvennoy tekhnologii litya monokristallicheskikh turbinnykh lopatok GTD i GTU [VIAM, the founder of the domestic technology of casting monocrystalline turbine blades of GTE and GTU], Aviatsionnye materialy i tekhnologii, 2012, No S, pp. 105–117.
3. Dubrovin , V .K . , Kulakov , B . A . , Gabbaso v , R . D ., Protsessy fiziko-khimicheskogo vzaimodeystviya v pechakh napravlennoy kristallizatsii PMP-2 [Processes of physicochemical interaction in directional crystallization furnaces PMP-2], Materials of the All-Russian Scientific and Technical Conference “Fundamental and Applied Research in the Field of Creation of Cast Heat-Resistant Nickel and Intermetallic Alloys and High-Performance Technologies for Manufacturing GTE Parts”, Moscow: VIAM, 2017, pp. 149– 159.
4. Kablov , E . N . , Echin , A . B . , Bondarenko , Y u . A ., Istoriya razvitiya tekhnologii napravlennoy kristallizatsii i oborudovaniya dlya litya lopatok gazoturbinnykh dvigateley [The history of the development of directional solidification technology and equipment for cast blades of gas turbine engines], Trudy VIAM, 2020, No 3, Issue 01. URL: http://www.viam-works.ru (reference date 24/08/2020). DOI:10.18577/2307-6046-2020-0-3-3-12.
5. Kabl v , E . N ., Litye lopatki gazoturbinnykh dvigateley (splavy, tekhnologiya, pokrytiya) [Cast blades of gas turbine engines (alloys, technology, coatings)], Moscow: MISiS institute of steel and alloys, 2006.