India Concrete Admixtures Market Analysis by Mordor Intelligence
The India Concrete Admixtures Market size is estimated at USD 1.09 billion in 2025, and is expected to reach USD 1.51 billion by 2030, at a CAGR of 6.82% during the forecast period (2025-2030). Sustained government spending on transport corridors, metro extensions, and smart‐city upgrades keeps the India concrete admixtures market firmly buoyant, while rapid urban migration fuels residential high-rise projects that directly translate into higher dosage volumes for water reducers and superplasticizers. Accelerating the adoption of precast and ready-mix concrete in tier-II and tier-III urban centers further decentralizes demand nodes, giving regional manufacturers a springboard into the India concrete admixtures market evolving supply chain. The transition from naphthalene to polycarboxylate ether (PCE) chemistry allows contractors to achieve 40% water reduction and 90-minute slump retention, a performance leap that differentiates premium brands within the India concrete admixtures market[1]Sika AG, “ViscoCrete ACE Series Product Data Sheet,” sika.com.
Key Report Takeaways
- By product, water reducers commanded 37.16% of India's concrete admixtures market share in 2024, while superplasticizers are advancing at the fastest 7.48% CAGR to 2030.
- By end-use sector, infrastructure held 32.53% of the India concrete admixtures market size in 2024, whereas residential construction is projected to grow at an 8.04% CAGR through 2030.
India Concrete Admixtures Market Trends and Insights
Drivers Impact Analysis
| Drivers | (~) % Impact on CAGR Forecast | Geographic Relevance | Impact Timeline |
|---|---|---|---|
| Government mega-infrastructure pipeline funding | +1.5% | Nationwide, densest in tier-I urban corridors | Long term (≥ 4 years) |
| Surge in precast and RMC adoption in tier-II/III cities | +1.2% | Emerging urban clusters across states | Medium term (2-4 years) |
| BIS 2025 low-carbon concrete guidelines | +0.8% | Pan-India public projects | Medium term (2-4 years) |
| Expansion of high-speed rail and metro networks | +0.6% | Mumbai–Ahmedabad, Delhi NCR, Bangalore corridors | Long term (≥ 4 years) |
| PCE admixtures for 3-D printed concrete pilots | +0.4% | Research hubs in select metros | Long term (≥ 4 years) |
| Source: Mordor Intelligence | |||
Government Mega-Infrastructure Pipeline Funding
Union Budget 2025-26 sets aside INR 11.21 lakh crore (USD 134.2 billion) for capital expenditure, channeling a powerful demand stream into the India concrete admixtures market. Transport and urban infrastructure attract more than 60% of this outlay, compelling contractors to specify admixtures that slash cement consumption by 15% without sacrificing 28-day strength. Accelerated project timelines generated by fast-track approval programs raise demand for set-accelerating blends that can hit early strength targets within 16 hours. IS 9103:2018 compliance clauses embedded in government tenders elevate the entry bar, corralling market share toward certified brands. Adoption of sulfate‐resistant and marine-grade formulations becomes routine in coastal bridges and port expansions. These trends collectively embed a long-run growth premium into the India concrete admixtures market.
Surge in Precast and RMC Adoption in Tier-II/III Cities
Factory-controlled concrete now permeates mid-sized urban footprints as 317 new ready-mix units came online between 2024 and 2025, widening the geographic tapestry of the India concrete admixtures market. Precast players require extended slump retention of 120 minutes for travel distances that can exceed 90 kilometers. PCE-based superplasticizers thus displace low-margin plasticizers as builders chase productivity gains from faster cycle times. Labor scarcity and wage inflation make site-mixed concrete uncompetitive, cementing a structural shift that enriches admixture volumes. Regional cement plants concurrently raise fly-ash substitution levels to 35%, and manufacturers recalibrate formulations for binder systems rich in supplementary cementitious materials. These converging factors lift average dosage rates in emerging cities, powering the India concrete admixtures market beyond historic metropolitan confines.
BIS 2025 Low-Carbon Concrete Guidelines Spur Admixture Demand
Forthcoming BIS rules cap embodied carbon and oblige contractors to disclose mix designs that hit emissions targets, cementing sustainability as a procurement gatekeeper. Limestone calcined clay cement (LC3) compatibility tests reveal that conventional naphthalene doses underperform, triggering a pivot toward water-based PCE systems with reduced volatile organic compounds. Large producers allocate up to 8% of research and development budgets to green reformulations, erecting a resource wall that regional suppliers may struggle to scale. Green building labels such as IGBC and LEED India increasingly mandate admixtures below 50 g/L VOC, giving compliant brands a commercial head-start. Nano-silica and bio-based additives enter experimental mixes that target 70% clinker substitution, widening the product palette within the India concrete admixtures market.
Expansion of High-Speed Rail and Metro Networks
The 508-kilometer Mumbai–Ahmedabad corridor demands concrete of 50 MPa compressive strength and chloride permeability below 1,000 coulombs, a specification achievable only with high-range water reducers and viscosity modifiers. Japanese and European contractors import stringent material protocols, nudging domestic producers to secure international test certifications. Metro extensions in Delhi, Bangalore, and Chennai create over 500 kilometers of tunnels and viaducts that require underwater concreting aids and early-strength accelerators. Compressed 36-month completion schedules cement the value proposition of self-compacting mixes enabled by third-generation PCE. The India concrete admixtures market therefore gains a durable volume pipeline linked to rail urbanization.
Restraints Impact Analysis
| Restraint | (~) % Impact on CAGR Forecast | Geographic Relevance | Impact Timeline |
|---|---|---|---|
| Raw-material price volatility (naphthalene, lignosulfonate) | -1.40% | Import-dependent markets | Short term (≤ 2 years) |
| Fragmented contractor base; low dosing awareness | -0.90% | Rural and semi-urban North/East | Medium term (2-4 years) |
| Green-building VOC caps tighten chemical compositions | -0.70% | Metro cities and state capitals with IGBC/GRIHA adoption, strongest in Delhi NCR, Mumbai, Bangalore | Medium term (2-4 years) |
| Source: Mordor Intelligence | |||
Raw-Material Price Volatility (Naphthalene, Lignosulfonate)
Spot naphthalene and acrylic acid prices climbed in 2024, carving into gross margins that already hover near 15% for many regional blenders. Import reliance for sodium gluconate and triethanolamine magnifies foreign-exchange exposure, pushing landed costs up by 9% during currency dips. Freight surcharges add a further 8-12% during peak container shortages. Large multinationals hedge volatility through multi-year supply contracts and captive intermediate production, but smaller firms must revise price lists quarterly, straining customer loyalty in price-sensitive districts. Procurement instability therefore subtracts incremental growth points from the India concrete admixtures market.
Fragmented Contractor Base; Low Dosing Awareness
Over 40,000 registered contractors operate in India, yet field surveys reveal that 85% view admixtures merely as flow enhancers and lack clarity on optimal dosage protocols[2]NBM&CW, “Self-Curing Concrete for the Indian Construction Industry,” nbmcw.com . Incorrect dosing yields set delays or early shrinkage, tarnishing category reputation and fuelling resistance to premium formulations. Regional languages and literacy gaps complicate training roll-outs that can cost USD 2,500 per city. Large suppliers deploy mobile apps, virtual labs, and on-site clinics, but the fragmented industry structure slows knowledge diffusion. The resulting skepticism tempers the otherwise robust adoption curve of the India concrete admixtures market.
Segment Analysis
By Product: Superplasticizers Redefine Performance Benchmarks
Water reducers dominated 37.16% of India's concrete admixtures market share in 2024 by virtue of ubiquitous usage in conventional mixes. Yet superplasticizers are expanding at a 7.48% CAGR, underpinning the next chapter of the India concrete admixtures market as builders lean into higher strength-to-weight ratios and tighter workability envelopes. The India concrete admixtures market size attributed to superplasticizers is projected to rise sharply alongside self-compacting and ultra-high-performance concrete. PCE-based grades facilitate 40% water reduction and 90-minute slump retention, significantly higher than the 60-minute plateau of naphthalene systems, and justify price premiums that contractors accept in durability-centric projects.
Accelerators and retarders maintain relevance where night pours and temperature fluctuations dictate rapid cycle times or delayed sets. Air-entraining admixtures find applications in Himalayan infrastructure reliant on freeze-thaw durability, while viscosity modifiers address anti-washout needs in marine pile construction. Shrinkage-reducing blends remain niche but obtain mindshare as designers tackle thermal cracking in mass pours. Overall, the product landscape shows a gradual tilt toward high‐margin, performance-oriented chemistries that differentiate suppliers within the India concrete admixtures market.
Note: Segment shares of all individual segments available upon report purchase
By End-use Sector: Residential Momentum Gains Pace
Infrastructure construction retained 32.53% of the India concrete admixtures market size in 2024, yet the residential sector posts an 8.04% CAGR, signaling robust diffusion of admixture technologies into mid-rise housing. Tier-II and tier-III developers increasingly specify ready-mix concrete to compress schedules, driving distributed demand that regional manufacturers quickly tap into. This trend enlarges the India concrete admixtures market as housing subsidies and smart-city initiatives converge.
In infrastructure, large transport corridors and river bridge programs still require high-volume deliveries and specialized formulations such as corrosion inhibitors. Commercial and institutional builds grow in line with GDP but display heterogeneous dosage profiles, shaped by floorplate span, service life targets, and certification standards such as IGBC. The residential upturn, however, introduces new retail channels through building-material outlets, fostering product standardization and pushing the India concrete admixtures market deeper into previously underserved demographic segments.
Note: Segment shares of all individual segments available upon report purchase
Geography Analysis
Northern and western India collectively account for nearly two-thirds of concrete‐grade chemical demand owing to dense industrial bases, metro service expansions, and proximity to clinker capacity clusters. Delhi NCR and Mumbai alone consume an outsized slice of the India concrete admixtures market, powered by continuous metro line additions and airport revamps. Southern hubs such as Bangalore and Chennai provide a second axis of growth, where IT-led urbanization drives premium high-rise developments that rely on PCE blends and corrosion inhibitors for coastal conditions.
Eastern states, historically underpenetrated, now entice suppliers as mining projects and new industrial corridors multiply concrete consumption. Ready-mix capacity in Bhubaneswar, Ranchi, and Patna adds diversity to the India concrete admixtures market footprint, though dosing awareness lags western benchmarks. Coastal belts, spanning Gujarat to Tamil Nadu, exhibit higher uptake of marine-grade admixtures, reflecting aggressive port modernization under the Sagarmala initiative.
High-altitude zones across Himachal Pradesh and Uttarakhand demand air-entraining agents and accelerators to counter sub-zero pours, carving a niche sub-segment within the India concrete admixtures market. State-specific sustainability mandates differentiate regulatory climates; for instance, Karnataka caps embodied carbon in government buildings and pushes rapid acceptance of low-VOC admixtures. Collectively, regional variations translate into a mosaic of technical specifications that manufacturers must navigate to secure breadth within the India concrete admixtures market.
Competitive Landscape
The India concrete admixtures market is moderately fragmented. Capacity expansions continue apace: Sika deployed USD 15 million to scale its Pune plant, while Fosroc’s new Chennai unit added 50,000 tons for marine-grade formulations. Saint-Gobain’s 60% stake in ECMAS deepens eastern penetration, illustrating how acquisitions remain a favored route to regional reach. Backward integration into monomer and polymer streams shields multinationals from feedstock swings and enhances margin stability. Innovation centers in Bangalore and Mumbai conduct joint trials with premier institutes, chasing next-gen solutions such as carbon-curing accelerators and bio-enzymatic shrinkage reducers. Digital engagement also advances; mobile apps democratize dosage calculation and bring small contractors into the branded fold. These combined strategic thrusts accelerate differentiation in a market where entry barriers rise with each regulatory and performance threshold embedded into public-sector tenders.
India Concrete Admixtures Industry Leaders
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Fosroc, Inc.
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MAPEI S.p.A.
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Saint-Gobain
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Sika AG
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CICO Group
- *Disclaimer: Major Players sorted in no particular order
Recent Industry Developments
- January 2025: Master Builders Solutions, part of Sika AG, announced its re-entry into the Indian market, focusing on high-performance construction chemicals and admixture solutions for infrastructure and commercial construction segments.
- February 2025: Saint-Gobain acquired Fosroc, a global construction chemicals manufacturer. This strategic move is anticipated to drive growth in the India concrete admixture market by fostering innovation, improving product accessibility, and intensifying market competition.
Free With This Report
We provide a complimentary and exhaustive set of data points on global and regional metrics that present the fundamental structure of the industry. Presented in the form of 24+ free charts, the section covers rare data on newly built floor area, infrastructural spending, and existing construction floor area across residential, commercial, industrial and institutional sectors.
List of Tables & Figures
- Figure 1:
- FLOOR AREA OF NEW COMMERCIAL CONSTRUCTION, SQUARE FEET, INDIA, 2018 - 2030
- Figure 2:
- FLOOR AREA OF NEW INDUSTRIAL AND INSTITUTIONAL CONSTRUCTION, SQUARE FEET, INDIA, 2018 - 2030
- Figure 3:
- SPENDING ON INFRASTRUCTURE PROJECTS, USD, INDIA, 2018 - 2030
- Figure 4:
- FLOOR AREA OF NEW RESIDENTIAL CONSTRUCTION, SQUARE FEET, INDIA, 2018 - 2030
- Figure 5:
- VALUE OF CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 6:
- VALUE OF CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, USD, INDIA, 2018 - 2030
- Figure 7:
- VALUE SHARE OF CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2018 VS 2023 VS 2030
- Figure 8:
- VALUE OF CONCRETE ADMIXTURES CONSUMED IN COMMERCIAL SECTOR, USD, INDIA, 2018 - 2030
- Figure 9:
- VALUE SHARE OF CONCRETE ADMIXTURES CONSUMED IN COMMERCIAL SECTOR, BY SUB PRODUCT, %, INDIA, 2023 VS 2030
- Figure 10:
- VALUE OF CONCRETE ADMIXTURES CONSUMED IN INDUSTRIAL AND INSTITUTIONAL SECTOR, USD, INDIA, 2018 - 2030
- Figure 11:
- VALUE SHARE OF CONCRETE ADMIXTURES CONSUMED IN INDUSTRIAL AND INSTITUTIONAL SECTOR, BY SUB PRODUCT, %, INDIA, 2023 VS 2030
- Figure 12:
- VALUE OF CONCRETE ADMIXTURES CONSUMED IN INFRASTRUCTURE SECTOR, USD, INDIA, 2018 - 2030
- Figure 13:
- VALUE SHARE OF CONCRETE ADMIXTURES CONSUMED IN INFRASTRUCTURE SECTOR, BY SUB PRODUCT, %, INDIA, 2023 VS 2030
- Figure 14:
- VALUE OF CONCRETE ADMIXTURES CONSUMED IN RESIDENTIAL SECTOR, USD, INDIA, 2018 - 2030
- Figure 15:
- VALUE SHARE OF CONCRETE ADMIXTURES CONSUMED IN RESIDENTIAL SECTOR, BY SUB PRODUCT, %, INDIA, 2023 VS 2030
- Figure 16:
- VALUE OF CONCRETE ADMIXTURES CONSUMED BY SUB PRODUCT, USD, INDIA, 2018 - 2030
- Figure 17:
- VALUE SHARE OF CONCRETE ADMIXTURES CONSUMED BY SUB PRODUCT, %, INDIA, 2018 VS 2023 VS 2030
- Figure 18:
- VALUE OF ACCELERATOR CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 19:
- VALUE SHARE OF ACCELERATOR CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 20:
- VALUE OF AIR ENTRAINING ADMIXTURE CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 21:
- VALUE SHARE OF AIR ENTRAINING ADMIXTURE CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 22:
- VALUE OF HIGH RANGE WATER REDUCER (SUPER PLASTICIZER) CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 23:
- VALUE SHARE OF HIGH RANGE WATER REDUCER (SUPER PLASTICIZER) CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 24:
- VALUE OF RETARDER CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 25:
- VALUE SHARE OF RETARDER CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 26:
- VALUE OF SHRINKAGE REDUCING ADMIXTURE CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 27:
- VALUE SHARE OF SHRINKAGE REDUCING ADMIXTURE CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 28:
- VALUE OF VISCOSITY MODIFIER CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 29:
- VALUE SHARE OF VISCOSITY MODIFIER CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 30:
- VALUE OF WATER REDUCER (PLASTICIZER) CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 31:
- VALUE SHARE OF WATER REDUCER (PLASTICIZER) CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 32:
- VALUE OF OTHER TYPES CONCRETE ADMIXTURES CONSUMED, USD, INDIA, 2018 - 2030
- Figure 33:
- VALUE SHARE OF OTHER TYPES CONCRETE ADMIXTURES CONSUMED BY END USE SECTOR, %, INDIA, 2023 VS 2030
- Figure 34:
- MOST ACTIVE COMPANIES BY NUMBER OF STRATEGIC MOVES, INDIA, 2020 - 2023
- Figure 35:
- MOST ADOPTED STRATEGIES, COUNT, INDIA, 2020 - 2023
- Figure 36:
- REVENUE SHARE OF ALL CONCRETE ADMIXTURES BY MAJOR PLAYERS, %, INDIA, 2022
India Concrete Admixtures Market Report Scope
Commercial, Industrial and Institutional, Infrastructure, Residential are covered as segments by End Use Sector. Accelerator, Air Entraining Admixture, High Range Water Reducer (Super Plasticizer), Retarder, Shrinkage Reducing Admixture, Viscosity Modifier, Water Reducer (Plasticizer) are covered as segments by Sub Product.| Water Reducer (Plasticizer) |
| Retarder |
| Accelerator |
| Air Entraining Admixture |
| Viscosity Modifier |
| Shrinkage Reducing Admixture |
| High Range Water Reducer (Super Plasticizer) |
| Other Functions |
| Commercial |
| Industrial and Institutional |
| Infrastructure |
| Residential |
| By Product | Water Reducer (Plasticizer) |
| Retarder | |
| Accelerator | |
| Air Entraining Admixture | |
| Viscosity Modifier | |
| Shrinkage Reducing Admixture | |
| High Range Water Reducer (Super Plasticizer) | |
| Other Functions | |
| By End-use Sector | Commercial |
| Industrial and Institutional | |
| Infrastructure | |
| Residential |
Market Definition
- END-USE SECTOR - Concrete admixtures consumed in the construction sectors such as commercial, residential, industrial, institutional, and infrastructure are considered under the scope of the study.
- PRODUCT/APPLICATION - Under the scope of the study, the consumption of concrete admixture products such as water reducers (plasticizers), retarders, accelerators, air-entraining admixture, viscosity modifiers, shrinkage-reducing admixture, high-range water reducers (superplasticizers), and other types are considered.
| Keyword | Definition |
|---|---|
| Accelerator | Accelerators are admixtures used to fasten the setting time of concrete by increasing the initial rate and speeding up the chemical reaction between cement and the mixing water. These are used to harden and increase the strength of concrete quickly. |
| Acrylic | This synthetic resin is a derivative of acrylic acid. It forms a smooth surface and is mainly used for various indoor applications. The material can also be used for outdoor applications with a special formulation. |
| Adhesives | Adhesives are bonding agents used to join materials by gluing. Adhesives can be used in construction for many applications, such as carpet laying, ceramic tiles, countertop lamination, etc. |
| Air Entraining Admixture | Air-entraining admixtures are used to improve the performance and durability of concrete. Once added, they create uniformly distributed small air bubbles to impart enhanced properties to the fresh and hardened concrete. |
| Alkyd | Alkyds are used in solvent-based paints such as construction and automotive paints, traffic paints, flooring resins, protective coatings for concrete, etc. Alkyd resins are formed by the reaction of an oil (fatty acid), a polyunsaturated alcohol (Polyol), and a polyunsaturated acid or anhydride. |
| Anchors and Grouts | Anchors and grouts are construction chemicals that stabilize and improve the strength and durability of foundations and structures like buildings, bridges, dams, etc. |
| Cementitious Fixing | Cementitious fixing is a process in which a cement-based grout is pumped under pressure to fill forms, voids, and cracks. It can be used in several settings, including bridges, marine applications, dams, and rock anchors. |
| Commercial Construction | Commercial construction comprises new construction of warehouses, malls, shops, offices, hotels, restaurants, cinemas, theatres, etc. |
| Concrete Admixtures | Concrete admixtures comprise water reducers, air entrainers, retarders, accelerators, superplasticizers, etc., added to concrete before or during mixing to modify its properties. |
| Concrete Protective Coatings | To provide specific protection, such as anti-carbonation or chemical resistance, a film-forming protective coat can be applied on the surface. Depending on the applications, different resins like epoxy, polyurethane, and acrylic can be used for concrete protective coatings. |
| Curing Compounds | Curing compounds are used to cure the surface of concrete structures, including columns, beams, slabs, and others. These curing compounds keep the moisture inside the concrete to give maximum strength and durability. |
| Epoxy | Epoxy is known for its strong adhesive qualities, making it a versatile product in many industries. It resists heat and chemical applications, making it an ideal product for anyone needing a stronghold under pressure. It is widely used in adhesives, electrical and electronics, paints, etc. |
| Fiber Wrapping Systems | Fiber Wrapping Systems are a part of construction repair and rehabilitation chemicals. It involves the strengthening of existing structures by wrapping structural members like beams and columns with glass or carbon fiber sheets. |
| Flooring Resins | Flooring resins are synthetic materials applied to floors to enhance their appearance, increase their resistance to wear and tear or provide protection from chemicals, moisture, and stains. Depending on the desired properties and the specific application, flooring resins are available in distinct types, such as epoxy, polyurethane, and acrylic. |
| High-Range Water Reducer (Super Plasticizer) | High-range water reducers are a type of concrete admixture that provides enhanced and improved properties when added to concrete. These are also called superplasticizers and are used to decrease the water-to-cement ratio in concrete. |
| Hot Melt Adhesives | Hot-melt adhesives are thermoplastic bonding materials applied as melts that achieve a solid state and resultant strength on cooling. They are commonly used for packaging, coatings, sanitary products, and tapes. |
| Industrial and Institutional Construction | Industrial and institutional construction includes new construction of hospitals, schools, manufacturing units, energy and power plants, etc. |
| Infrastructure Construction | Infrastructure construction includes new construction of railways, roads, seaways, airports, bridges, highways, etc. |
| Injection Grouting | The process of injecting grout into open joints, cracks, voids, or honeycombs in concrete or masonry structural members is known as injection grouting. It offers several benefits, such as strengthening a structure and preventing water infiltration. |
| Liquid-Applied Waterproofing Membranes | Liquid-Applied membrane is a monolithic, fully bonded, liquid-based coating suitable for many waterproofing applications. The coating cures to form a rubber-like elastomeric waterproof membrane and may be applied over many substrates, including asphalt, bitumen, and concrete. |
| Micro-concrete Mortars | Micro-concrete mortar is made up of cement, water-based resin, additives, mineral pigments, and polymers and can be applied on both horizontal and vertical surfaces. It can be used to refurbish residential complexes, commercial spaces, etc. |
| Modified Mortars | Modified Mortars include Portland cement and sand along with latex/polymer additives. The additives increase adhesion, strength, and shock resistance while also reducing water absorption. |
| Mold Release Agents | Mold release agents are sprayed or coated on the surface of molds to prevent a substrate from bonding to a molding surface. Several types of mold release agents, including silicone, lubricant, wax, fluorocarbons, and others, are used based on the type of substrates, including metals, steel, wood, rubber, plastic, and others. |
| Polyaspartic | Polyaspartic is a subset of polyurea. Polyaspartic floor coatings are typically two-part systems that consist of a resin and a catalyst to ease the curing process. It offers high durability and can withstand harsh environments. |
| Polyurethane | Polyurethane is a plastic material that exists in various forms. It can be tailored to be either rigid or flexible and is the material of choice for a broad range of end-user applications, such as adhesives, coatings, building insulation, etc. |
| Reactive Adhesives | A reactive adhesive is made of monomers that react in the adhesive curing process and do not evaporate from the film during use. Instead, these volatile components become chemically incorporated into the adhesive. |
| Rebar Protectors | In concrete structures, rebar is one of the important components, and its deterioration due to corrosion is a major issue that affects the safety, durability, and life span of buildings and structures. For this reason, rebar protectors are used to protect against degrading effects, especially in infrastructure and industrial construction. |
| Repair and Rehabilitation Chemicals | Repair and Rehabilitation Chemicals include repair mortars, injection grouting materials, fiber wrapping systems, micro-concrete mortars, etc., used to repair and restore existing buildings and structures. |
| Residential Construction | Residential construction involves constructing new houses or spaces like condominiums, villas, and landed homes. |
| Resin Fixing | The process of using resins like epoxy and polyurethane for grouting applications is called resin fixing. Resin fixing offers several advantages, such as high compressive and tensile strength, negligible shrinkage, and greater chemical resistance compared to cementitious fixing. |
| Retarder | Retarders are admixtures used to slow down the setting time of concrete. These are usually added with a dosage rate of around 0.2% -0.6% by weight of cement. These admixtures slow down hydration or lower the rate at which water penetrates the cement particles by making concrete workable for a long time. |
| Sealants | A sealant is a viscous material that has little or no flow qualities, which causes it to remain on surfaces where they are applied. Sealants can also be thinner, enabling penetration to a certain substance through capillary action. |
| Sheet Waterproofing Membranes | Sheet membrane systems are reliable and durable thermoplastic waterproofing solutions that are used for waterproofing applications even in the most demanding below-ground structures, including those exposed to highly aggressive ground conditions and stress. |
| Shrinkage Reducing Admixture | Shrinkage-reducing admixtures are used to reduce concrete shrinkage, whether from drying or self-desiccation. |
| Silicone | Silicone is a polymer that contains silicon combined with carbon, hydrogen, oxygen, and, in some cases, other elements. It is an inert synthetic compound that comes in various forms, such as oil, rubber, and resin. Due to its heat-resistant properties, it finds applications in sealants, adhesives, lubricants, etc. |
| Solvent-borne Adhesives | Solvent-borne adhesives are mixtures of solvents and thermoplastic or slightly cross-linked polymers such as polychloroprene, polyurethane, acrylic, silicone, and natural and synthetic rubbers. |
| Surface Treatment Chemicals | Surface treatment chemicals are chemicals used to treat concrete surfaces, including roofs, vertical surfaces, and others. They act as curing compounds, demolding agents, rust removers, and others. They are cost-effective and can be used on roadways, pavements, parking lots, and others. |
| Viscosity Modifier | Viscosity Modifiers are concrete admixtures used to change various properties of admixtures, including viscosity, workability, cohesiveness, and others. These are usually added with a dosage of around 0.01% to 0.1% by weight of cement. |
| Water Reducer | Water reducers, also called plasticizers, are a type of admixture used to decrease the water-to-cement ratio in the concrete, thereby increasing the durability and strength of concrete. Various water reducers include refined lignosulfonates, gluconates, hydroxycarboxylic acids, sugar acids, and others. |
| Water-borne Adhesives | Water-borne adhesives use water as a carrier or diluting medium to disperse resin. They are set by allowing the water to evaporate or be absorbed by the substrate. These adhesives are compounded with water as a dilutant rather than a volatile organic solvent. |
| Waterproofing Chemicals | Waterproofing chemicals are designed to protect a surface from the perils of leakage. A waterproofing chemical is a protective coating or primer applied to a structure's roof, retaining walls, or basement. |
| Waterproofing Membranes | Waterproofing membranes are liquid-applied or self-adhering layers of water-tight materials that prevent water from penetrating or damaging a structure when applied to roofs, walls, foundations, basements, bathrooms, and other areas exposed to moisture or water. |
Research Methodology
Mordor Intelligence follows a four-step methodology in all our reports.
- Step-1: Identify Key Variables: The quantifiable key variables (industry and extraneous) pertaining to the specific product segment and country are selected from a group of relevant variables & factors based on desk research & literature review; along with primary expert inputs. These variables are further confirmed through regression modeling (wherever required).
- Step-2: Build a Market Model: In order to build a robust forecasting methodology, the variables and factors identified in Step-1 are tested against available historical market numbers. Through an iterative process, the variables required for market forecast are set and the model is built on the basis of these variables.
- Step-3: Validate and Finalize: In this important step, all market numbers, variables and analyst calls are validated through an extensive network of primary research experts from the market studied. The respondents are selected across levels and functions to generate a holistic picture of the market studied.
- Step-4: Research Outputs: Syndicated Reports, Custom Consulting Assignments, Databases & Subscription Platforms