FIELD: engineering.
SUBSTANCE: invention relates to the field of destruction of a material solid body (MSB) by at least two sources of local highly intensive heat impact (LHIHI), forming an impact area consisting of figures selected from a group: a circle, an ellipse, an oval, assuming that the maximum concentration coefficient of thermoelastic stresses attributed to the interference of elastic waves in this area is achieved, and is aimed at providing effective modes of LHIHI sources on the surface of the MSB for destruction thereof, including technical apparatuses (TA), by reducing the ultimate tensile strength of the material of the solid body or reducing the load-bearing capacity of the structure of technical apparatuses made of metals, alloys, composite materials, as well as optical and optoelectronic apparatuses. Thermoelastic (thermal) stresses are a type of mechanical stress caused in the MSB by a change in the temperature or the unevenness of distribution thereof. Thermoelastic (thermal) stresses occur in the MSB due to the limited possibility of thermal expansion (compression) from the surrounding parts of the body or from other bodies surrounding the body. Thermoelastic (thermal) stresses can cause destruction of the MSB, parts and structural elements of the TA. LHIHI is understood as the impact of a heat flow source only on a certain (limited) part of the surface of the MSB in the form of a heat spot of various shapes, figures, and sizes.
EFFECT: provided effective modes of LHIHI sources on the surface of the MSB for destruction thereof.
1 cl, 16 dwg
Title | Year | Author | Number |
---|---|---|---|
METHOD FOR DESTROYING MATERIAL SOLID BODY UNDER LOCAL HIGHLY INTENSIVE HEAT IMPACT ON SURFACE THEREOF | 2020 |
|
RU2756936C1 |
METHOD FOR DESTROYING MATERIAL SOLID BODY UNDER LOCAL HIGHLY INTENSIVE HEAT IMPACT ON SURFACE THEREOF | 2020 |
|
RU2756935C1 |
METHOD OF INVESTIGATING THERMAL STRESSES ARISING IN SOLID MATERIAL BODY WITH POLARIZATION-OPTICAL METHOD ON MODEL FROM PIEZO-OPTICAL MATERIAL UNDER LOCAL HEAT FLOW IMPACT ON THEM WITH THEORETICAL COEFFICIENT DETERMINATION OF THERMAL STRESS CONCENTRATION | 2015 |
|
RU2621458C1 |
POLARIZATION-OPTICAL METHOD OF ANALYZING STRESS AND DEFORMATION OF SOLID MATERIAL BODY USING MODEL MADE OF PIEZO-OPTICAL MATERIAL EXPOSED TO LOCAL HEAT FLUX | 2015 |
|
RU2610219C1 |
METHOD OF TRANSMITTING INFORMATION USING A SUBSTITUTING LOGICAL TERNARY NOISE-RESISTANT CODE | 2019 |
|
RU2724794C1 |
COMPOSITE METAL-DIAMOND COATING, METHOD OF ITS PRODUCTION, DISPERSE SYSTEM FOR DEPOSITION OF COMPOSITE METAL-DIAMOND COATING AND METHOD FOR ITS PRODUCTION | 2019 |
|
RU2706931C1 |
METHOD FOR PRODUCING A COMPOSITE METAL-DISPERSED COATING, DISPERSED SYSTEM FOR PRECIPITATION OF COMPOSITE METAL-DISPERSED COATING AND METHOD OF ITS PRODUCTION | 2020 |
|
RU2746861C1 |
METHOD OF OPERATIONAL AND TECHNICAL PROTECTION OF OBJECTS AND BORDERS | 2021 |
|
RU2768227C1 |
METHOD FOR OPERATIONAL CONTROL OF RAILWAY STOCK LOCATION, ITS SPEED AND INTEGRITY | 2021 |
|
RU2794238C1 |
METHOD OF SYNCHRONIZATION OF TRANSMITTED MESSAGES | 2021 |
|
RU2792591C1 |
Authors
Dates
2021-10-08—Published
2020-10-15—Filed