REPAIR MATERIAL FOR PROFILE RECOVERY, CAPABLE OF HARDENING AT LOW TEMPERATURES, AS WELL AS METHOD OF REDUCING PROFILE USING SUCH MATERIAL Russian patent published in 2019 - IPC C08F290/06 C09D163/10 C09D167/06 C09D175/14 C09D4/00 C04B26/06 C04B41/63 C08K5/18 

Abstract RU 2702687 C2

FIELD: chemistry.

SUBSTANCE: invention relates to use of material capable of hardening at low temperatures, as repair material for profile restoration. Repair material for profile restoration capable of hardening at low temperatures is characterized by the following properties: contains 100 weight parts of composition (A) containing resins which are polymerised by a radical mechanism, 0.1–10 weight parts of aromatic tertiary amine (C-1) containing hydroxyl group, 0.1–10 weight parts of organic peroxide (D) and 1.0–500 weight parts of inorganic filler (E). At that, composition (A) containing polymers polymerising by a radical mechanism, contains at least one type of resin (A-1), which is polymerisable by a radical mechanism, selected from a group consisting of vinyl ester resin, urethane (meth) acrylate resin and (meth) acrylate resin polyether, and unsaturated monomer (A-2) polymerising by radical mechanism, wherein there is at least two or more (meth)acryloyl groups per molecule. Profile to be restored represents at least one profile selected from group consisting of concrete, asphalt-concrete structures and mortar. Said repair material can harden even at such low air temperature as -25 °C. Also described is a profile recovery method using said material.

EFFECT: technical result is providing repair material, capable of hardening in short time intervals even at very low ambient temperatures (-25 °C), which is characterized by excellent performance and compression strength.

11 cl, 1 tbl, 17 ex

Similar patents RU2702687C2

Title Year Author Number
PROCESS FOR PREPARING FIBRE-REINFORCED COMPOSITE MATERIAL 2014
  • Stensma Mariya
  • Rejnders Jokhannes Martinus Gerardus Mariya
  • Zejderdejn Albert Roland
  • Gomes Santana Syusana
  • Talma Auke Gerardus
RU2653695C2
RESIN MIXTURE BASED ON EPOXY(METH)ACRYLATE RESIN AND USE THEREOF 2013
  • Gefke Gerald
  • Byurgel Tomas
  • Lyajtner Mikhael
RU2649437C2
REACTION RESIN COMPOSITION AND USE THEREOF 2014
  • Pfajl Armin
RU2667544C2
RESIN MIXTURE, BUILDING MORTAR FROM REACTIVE RESIN, MULTI-COMPONENT SYSTEM OF BUILDING MORTAR AND THEIR APPLICATION 2014
  • Byurgel Tomas
  • Menkh Monika
RU2670305C2
BENZOTHIAZOL-2-YLAZO-PHENYL COMPOUND AS DYE, COMPOSITIONS INCLUDING DYE, AND METHOD OF DETERMINING DEGREE OF CURE OF SUCH COMPOSITIONS 2014
  • Vendland Majkl S.
  • Shults Mark F.
  • Shafer Ketlin S.
  • Griesgraber Dzhordzh V.
RU2656611C2
MEANS OR CONTROLLING REACTIVITY AND GEL TIME OF RESIN MIXTURE, REACTION MIXTURE CONTAINING THEREOF AND ITS APPLICATION 2012
  • Pfajl Armin
  • Brinkkhorst Jokhannes
  • Zhigme Dide
  • Valdzhimili Luka
  • Prett Derek
  • Bertin Denis
RU2597701C2
DEVICE FOR CONTROL OF REACTIVITY AND TIME OF RESINS MIXTURE GELATINIZATION, CONTAINING IT REACTION MIXTURE AND USE THEREOF 2012
  • Pfajl Armin
RU2596877C2
METHACRYLIC COMPOSITION FOR CONCRETE REPAIR 2023
  • Shubin Nikolai Evgenevich
  • Gordeev Aleksei Sergeevich
RU2822837C1
METHOD OF CURING OF RADICALLY CURABLE RESIN 2014
  • Van Den Berg Mikhel
  • Talma Auke Gerardus
RU2674416C1
PHOTOCURABLE COMPOSITION, DENTAL PROSTHESIS REPAIR MATERIAL AND KIT FOR THEIR PRODUCTION 2019
  • Kinoshita, Masaki
  • Yamazaki, Tatsuya
RU2768151C1

RU 2 702 687 C2

Authors

Kuroki Kunihiro

Umino Atsushi

Dates

2019-10-09Published

2016-02-16Filed