Geopolymer In-Situ Curing Monitoring Patent Snapshot
Geopolymer in-situ curing monitoring is an early-stage, highly fragmented field with only 6 patent families in scope, all filed from 2024 onward, distributed across twelve applicants each holding a single record. India and China are the only active jurisdictions, with no established dominant player and ample room for foundational IP capture.
A nascent field with no dominant leader and near-total IP fragmentation
No single applicant controls this space: all twelve ranked applicants hold exactly one patent record each, placing. China University of Mining and Technology, Yangzhou University, and ten others in a flat tie at the top of the ranking.
The top five filers collectively account for 42% of the ranked applicants visible in this query’ combined total, indicating moderate concentration at the upper tier despite the extremely small absolute corpus — a pattern typical of fields where institutional first-movers have not yet consolidated.
| # | Applicant | Patent records | Share |
|---|---|---|---|
| 1 | CHINA UNIV OF MINING & TECH | 1 | |
| 2 | Yangzhou University | 1 | |
| 3 | Jiangsu Ruiwo Construction Group Co., Ltd. | 1 | |
| 4 | BV Raju Institute of Technology | 1 | |
| 5 | Premchandra Jagannath Lokhande | 1 | |
| 6 | Dr. R. Ramya Swetha | 1 |
| # | Applicant | Patent records | Share |
|---|---|---|---|
| 7 | Dr. K. Vijai | 1 | |
| 8 | Dr. S. Mohamed Rabeek | 1 | |
| 9 | Dr. R. Prabakaran | 1 | |
| 10 | Dr. S. Berbeth Mary | 1 | |
| 11 | Chennai Institute of Technology | 1 | |
| 12 | Dr. Sanjana Tewari | 1 |
The flat ranking structure means no applicant has erected a meaningful IP barrier. An organization capable of filing even two to three strategically targeted patent families could immediately become the field’s leading rights holder.
All activity visible in this corpus dates from 2024 onward; the most recent filings are subject to standard publication lag and the true current scope may be modestly larger than reflected here. Longer-window growth, applicant concentration, and technology-route coverage are therefore more reliable signals than the latest-year bar alone.
Activity concentrated in 2024–2026; ceramics and testing branches dominate the technology mix
The filing trend and IPC composition charts together show a field that emerged abruptly in 2024 and spans a narrow but coherent cluster of technical disciplines anchored in materials science and analytical testing.
Annual filing trend
Zero activity was recorded from 2017 through 2023; three records appeared in 2024, one in 2025, and two in 2026. Given standard 18-month publication lag, the 2025 and 2026 figures are almost certainly under-counted, making it premature to read any plateau or decline into the most recent data points.
↗ Hover for values · click a bar to ask EurekaTechnology composition
C04B (Ceramics, cement and refractories) is the visible branch with five records, reflecting the materials-formulation focus of most filings. G01N (Material analysis and testing) is the closest monitoring-specific branch with two records, while B28C (Mortar and concrete mixing), E01C (Roads and pavements), and G01M (Testing machine and structure balance) each appear once, signaling early but sparse coverage of process control and field-application contexts.
↗ Hover for values · click a bar to ask EurekaHighly cited patent families surfaced by the query
Citation-heavy patent families returned by the query. Use this section as citation context, not as a curated list of the most topic-specific patents.
Method for integrating fiber optic sensor systems …
This invention introduces a method for integrating fiber optic sensor systems into geopolymer concrete to enable real-time monitoring of crack propagation and structural health. The method includes the preparation of fiber optic sensors with chemical-resistant coatings to endure the alkaline environment of geopolymer concrete, their strategic embedding in… (excerpt from the patent abstract)
Open this patent in Eureka →| # | Patent | Citations |
|---|---|---|
| 1 | 一种多料地聚物浆材的自动化混合设备及智能控制注浆方法 | 2 |
Ranked by total forward citations. Citation counts favour older and broadly cited patent families, and broad or adjacent patents may appear when they match the search scope. Treat this section as citation context, not as a curated list of the most topic-specific patents. Some patent titles may be shown in their original, non-English language where an accurate translation could not be guaranteed.
Assignee snapshot from the current evidence set
The applicants below are visible in this query result. Because the evidence set is relatively small, read this section as a directional snapshot rather than a full competitive ranking.
China University of Mining and Technology
Holds 1 patent record with a technology focus concentrated entirely in B28C (Mortar and concrete mixing — subclasses B28C5, B28C7, B28C9), indicating a process-equipment and automated-mixing orientation distinct from the materials-formulation angle taken by most other filers. Entered as a new entrant in the most recent active window. The most-cited record in the corpus — covering automated multi-material geopolymer mixing and intelligent grouting control — is associated with this applicant’s technical domain.
patent records: 1Yangzhou University
Holds 1 patent record co-filed with Jiangsu Ruiwo Construction Group Co., Ltd., with technology emphasis on C04B (Ceramics, cement and refractories — C04B111, C04B28) and E01C (Roads and pavements — E01C11), pointing to field-deployed geopolymer applications in pavement engineering. Entered as a new entrant; the industry co-applicant relationship suggests a translation pathway toward commercial deployment that most purely academic filers in this corpus lack.
patent records: 1Frequently asked questions
The current evidence corpus contains 6 patent families in scope. All were filed from 2024 onward, making this one of the youngest active patent domains in the geopolymer materials space.
No single applicant holds more than one patent record. China University of Mining and Technology, Yangzhou University, Jiangsu Ruiwo Construction Group, BV Raju Institute of Technology, and eight others are all tied at the top of the ranking with one record each.
India leads with four patent records, followed by China with two. No other jurisdictions — including the United States, European Patent Office, Japan, or Korea — appear in the current evidence corpus.
C04B (Ceramics, cement and refractories) is the visible branch with five records, reflecting a materials-formulation emphasis. G01N (Material analysis and testing) is the primary monitoring-oriented branch with two records. B28C, E01C, and G01M each appear once.
One co-filing relationship is recorded: Jiangsu Ruiwo Construction Group Co., Ltd. and Yangzhou University jointly filed one patent record, both classified as new entrants. No other collaborative clusters appear in the evidence.
Zero filings were recorded from 2017 through 2023; activity began in 2024 with three records, followed by one in 2025 and two in 2026. Because filings from the past 18–24 months are subject to publication lag, the 2025 and 2026 figures are likely under-counted. The overall picture is of a field in its earliest emergence phase, not a mature or declining one.
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Disclaimer. This page is generated from Patsnap Eureka data drawn from a limited snapshot of global patent and scientific-literature records, and is provided for general information and reference only.
Patent data carries inherent limitations: recent filings (typically the most recent 18–24 months) are under-counted due to standard publication lag; counts may be reported at either a patent-family or a patent-record basis and are not always directly comparable; classification, applicant-name, and citation data may contain errors, duplicates, or omissions; and the underlying search query defines and constrains the scope shown. As a result, the analysis may be incomplete or inaccurate and may not reflect the full technology landscape.
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