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Domain > crlsolutionsconsulting.com
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DNS Resolutions
Date
IP Address
2020-07-25
99.84.191.104
(
ClassC
)
2020-07-25
99.84.191.4
(
ClassC
)
2020-07-25
99.84.191.42
(
ClassC
)
2020-07-29
99.84.178.129
(
ClassC
)
2020-07-29
99.84.178.36
(
ClassC
)
2020-08-03
13.35.111.48
(
ClassC
)
2020-08-03
13.35.111.104
(
ClassC
)
2020-08-17
99.84.42.98
(
ClassC
)
2020-08-17
99.84.42.11
(
ClassC
)
2020-08-17
99.84.42.123
(
ClassC
)
2020-08-18
13.224.214.33
(
ClassC
)
2020-08-22
99.84.41.112
(
ClassC
)
2020-08-22
99.84.41.63
(
ClassC
)
2020-08-27
13.249.123.128
(
ClassC
)
2020-08-27
13.249.94.115
(
ClassC
)
2020-08-29
13.35.109.122
(
ClassC
)
2020-08-29
13.35.109.57
(
ClassC
)
2020-08-29
13.35.109.77
(
ClassC
)
2020-09-08
54.230.248.125
(
ClassC
)
2020-09-10
13.225.65.14
(
ClassC
)
2020-09-15
99.84.47.17
(
ClassC
)
2020-09-15
99.84.47.5
(
ClassC
)
2020-09-15
99.84.47.85
(
ClassC
)
2020-09-15
99.84.47.91
(
ClassC
)
2020-09-25
13.225.71.83
(
ClassC
)
2020-09-30
13.249.117.76
(
ClassC
)
2020-10-20
65.8.27.40
(
ClassC
)
2020-10-20
65.8.27.38
(
ClassC
)
2020-10-20
65.8.27.4
(
ClassC
)
2020-11-03
52.85.224.47
(
ClassC
)
2020-11-06
99.84.222.7
(
ClassC
)
2020-11-06
99.84.222.105
(
ClassC
)
2020-11-06
99.84.222.14
(
ClassC
)
2020-12-07
99.84.176.116
(
ClassC
)
2020-12-07
99.84.176.82
(
ClassC
)
2020-12-07
99.84.176.90
(
ClassC
)
2020-12-08
99.86.84.129
(
ClassC
)
2020-12-08
99.86.84.25
(
ClassC
)
2020-12-08
99.86.84.60
(
ClassC
)
2020-12-08
99.86.84.96
(
ClassC
)
2021-01-22
99.84.221.66
(
ClassC
)
2021-01-22
99.84.221.90
(
ClassC
)
2021-03-20
13.32.213.21
(
ClassC
)
2021-03-20
13.32.213.100
(
ClassC
)
2021-05-21
13.249.118.75
(
ClassC
)
2021-05-21
13.249.118.99
(
ClassC
)
2022-09-19
18.244.202.42
(
ClassC
)
2024-02-15
18.66.255.92
(
ClassC
)
2024-10-17
99.84.66.39
(
ClassC
)
2024-12-02
18.238.217.98
(
ClassC
)
2025-03-03
18.238.217.33
(
ClassC
)
2025-04-20
99.84.66.89
(
ClassC
)
2025-06-14
99.84.66.3
(
ClassC
)
2025-08-07
99.84.66.5
(
ClassC
)
Port 80
HTTP/1.1 301 Moved PermanentlyServer: CloudFrontDate: Thu, 04 Jan 2024 14:35:23 GMTContent-Type: text/htmlContent-Length: 167Connection: keep-aliveLocation: https://crlsolutionsconsulting.com/X-Cache: html>head>title>301 Moved Permanently/title>/head>body>center>h1>301 Moved Permanently/h1>/center>hr>center>CloudFront/center>/body>/html>
Port 443
HTTP/1.1 200 OKContent-Type: text/htmlContent-Length: 8928Connection: keep-aliveDate: Thu, 04 Jan 2024 14:35:24 GMTLast-Modified: Sat, 16 Sep 2023 16:56:35 GMTETag: 52ab2b20fd7f028a66cb47d799fe99f4Ser !DOCTYPE HTML>!-- Visualize by TEMPLATED templated.co @templatedco Released for free under the Creative Commons Attribution 3.0 license (templated.co/license)-->html> head> title>INNOVATIVE METHOD FOR CREEP RUPTURE LIFE PREDICTION/title> link relshortcut icon typeimage/png hrefimages/favicon.ico> meta http-equivContent-Type contenttext/html; charsetutf-8/> meta nameviewport contentwidthdevice-width, initial-scale1 /> link relstylesheet hrefassets/css/main.css /> /head> body> !-- Wrapper --> div idwrapper> !-- Header --> header idheader> !-- span classavatar>img srcimages/logovo.jpg alt />/span> --> h1>INNOVATIVE METHOD FOR CREEP RUPTURE LIFE PREDICTION/h1> p>a hrefabout.html>Vladimir Frayfeld, Ph.D/a>/p> ul classicons> li>a hrefhttps://www.linkedin.com/company/cr-life-solutions-inc classicon style2 fa-linkedin>span classlabel>Linkedin/span>/a>/li> li>a hrefmailto:vfrayfeld@crlsolutionsconsulting.com classicon style2 fa-envelope-o>span classlabel>Email/span>/a>/li> /ul> /header> div idpage classcontainer> div idcontent> !-- Main --> section idmain> p>The problem of creep-rupture life (CRL) prediction for high-temperature alloys and special steels is very substantial for designing turbojet engines, turbines, chemical, and nuclear reactors, steam boilers, and other power equipment. The problem has a long history and extensive literature. Difficulties in the resolution of this problem are caused by a colossal complexity of micro-physical mechanisms that form the long-term destruction processes in modern steels and alloys at creep./p> p>Numerous traditional methods for CRL prediction based on the theory of thermo-activated processes do not give enough reliable results. They include the widely known F. R. Larsons and J. Millers time-temperature parametric method, suggested in 1952, and a number (about 100) of similar time-temperature parameters. At the end of the 70s of the last century, a special group led by R. M. Goldhoff generalized and improv
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