Name: PORTABLE ENCLOSURE FOR PERSONNEL ISOLATION AND EVACUATION
Acronym: IzoEvac
Project No.: 105PTE/2022
Project Director: Istrate Marcel
Scientific and Technical Report – IzoEvac – STAGE I – 2022
Project Stages and Budget Value:
| YEAR | Source 1 State Budget (lei) | Source 2 Co-financing (lei) | TOTAL (lei) |
| 2022 | 304.000,00 | 56.000,00 | 360.000,00 |
| 2023 | 487.104,00 | 199.000,00 | 686.104,00 |
| 2024 | 402.000,00 | 200.000,00 | 602.000,00 |
| TOTAL | 1.193.104,00 | 455.000,00 | 1.648.104,00 |
Stage 1 Technical-scientific substantiation regarding the technical, innovative solutions for the design of the portable enclosure demonstrator for isolation and evacuation of personnel in the laboratory phase, with a view to technological transfer to the economic operator
- Experimental research on filtering/retaining materials for chemical, biological and radiological agents, with superior properties, from the composition of the two-way filter-ventilation subsystem
- Experimental research on solutions and methods for catalytic and photocatalytic self-decontamination
- Experimental research on the mechanical and permeation characteristics of chemical agents through advanced polymeric materials.
- Research for the design of the technological demonstrator of the portable enclosure product for isolation and evacuation of personnel. Modeling and simulations regarding the behavior under hydrodynamic stress of the structure as well as the behavior under stress during rapid/accidental decompression in air transport
- Wide-scale dissemination, through national/international communication and publication of the results. Creation of the project website.
Results:
- Experimental report on the filtration and pressure drop characteristics of multilayer structures – complex combined filters
- Experimental report on the catalytic and photocatalytic decontamination of chemical warfare agents
- Experimental report on the mechanical resistance and chemical agent action of materials with possible use in the manufacture of the product
- Study on the modeling and simulation of air flows in different operating modes, the behavior of the structure under hydrodynamic loads and the behavior under loads during accidental decompression in air transport.
- 1 BDI article.
- Creation of the project’s WEB page.
Stage 2 Technical and scientific substantiation of technical, innovative solutions for the realization of the technological demonstrator. Creation and testing of the technological demonstrator. Design, creation and verification of the functionality of the manufacturing line of the industrial prototype batch
2.1. Development of the development specification of the technological demonstrator of the product
2.2. Creation of the technological demonstrator of the portable enclosure for isolating and evacuating personnel
2.3. Testing and demonstration of the functionality of the technological demonstrator
2.4. Research on the industrial-level manufacturing technology of the two-way filter-ventilation subsystem
2.5. Research on the industrial-level manufacturing technology of the constructive elements of the product (except for the filter-ventilation subsystem) and its assembly
2.6. Development of the technical documentation for the manufacturing of the product (prototype – series 0)
2.7. Design of the manufacturing and assembly line of the two-way filter-ventilation subsystem
2.8. Design of the manufacturing and assembly line of the portable enclosure for isolation and evacuation of personnel
2.9. Realization of the manufacturing and assembly line of the product (including the two-way filter-ventilation subsystem)
2.10. Wide-scale dissemination, through national/international communication and publication of the results. Update the project’s WEB page
| CHAPTER NAME | VALUE Budget stage 2 / 2023 [lei] | VALUE Co-financing stage 2/ 2023 [lei] |
| Personnel expenses (including employer taxes) [1] | 179,400.00 | 112,548.11 |
| Logistics expenses | 54,200.00 | 46,651.89 |
| Capital expenditure | 0.00 | 0.00 |
| Inventory expenses | 51,440.00 | 46,651.89 |
| Expenses for services performed by third parties | 2,760.00 | 0.00 |
| Travel expenses (transportation, accommodation, daily allowance, participation fees, health insurance, visa fees) | 0.00 | 0.00 |
| Indirect costs (overhead) [2] | 58,400.00 | 39,800.00 |
| TOTAL | 292,000.00 | 199,000.00 |
Results
- Development specification of the technological demonstrator of the product.
- Batch of products (technological demonstrator) – 2 pcs. + individual subassemblies
- Test report of technological demonstrator
- Study on the industrial level manufacturing technology of the two-way filter-ventilation subsystem
- Study on the technology of making the constructive elements of the product (except for the filter-ventilation subsystem)
- Technical documentation of the product manufacturing
- Technical documentation for the manufacturing and assembly line of the two-way filter-ventilation subsystem
- Technical documentation for the manufacturing and assembly line of the product
- Product manufacturing and assembly line – full
- ISI article
- Updating the project WEB page
Stage 3 Manufacturing of the prototype batch and validating it by testing its functionality in conditions simulating real CBR contamination conditions. Patent application. Workshop and dissemination at technical and scientific events on the topic of the project.
3.1. Prototype batch manufacturing – series 0
3.2. Development testing-evaluation of the prototype batch – series 0
3.3. Preparation of the documentation necessary for the registration of a patent application with OSIM
3.4. Workshop, dissemination and participation in technical-scientific events on the project theme. Completion of the project WEB page
Results:
- Prototype batch – series 0 – 5 pcs.
- Product development testing-evaluation plan;
- Product development testing-evaluation report
- Patent application
- Workshop
- Presentation stand
- Article at a national/international conference
- Project WEB page completed
Scientific and technical report Stage 1/2022
Scientific and technical report Stage 2/2023
Scientific and technical report Stage 3/2024
Final scientific and technical report (2022-2024)