A green building material detection method and device

By establishing a concrete mortar database and a real-time monitoring and evaluation method, the problems of time-consuming and labor-intensive traditional testing methods have been solved, enabling real-time monitoring and management of concrete mortar quality and improving testing efficiency and accuracy.

CN120875696BActive Publication Date: 2025-12-16JIANGSU TONGZHOU FOURTH CONSTR GROUP
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Patent Information

Application Number
CN202511402668.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-09-28
Publication Date
2025-12-16
Estimated Expiration
2045-09-28

AI Technical Summary

Technical Problem

Traditional methods for testing concrete mortar materials are time-consuming and labor-intensive, and the test results have subjective limitations, making it difficult to achieve real-time monitoring and rapid feedback.

Method used

By establishing a concrete mortar database, obtaining adaptive use records, setting testing parameters, monitoring the mortar testing process in real time, comprehensively evaluating material quality, and generating test reports.

Benefits of technology

It enables real-time monitoring and management of concrete mortar quality, reduces subjective judgment bias, improves testing efficiency and accuracy, and reduces resource waste and construction risks.

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Patent Text Reader

Abstract

The application discloses a kind of green building material detection method and device, it is related to data processing technical field.The green building material detection method and device of this kind, based on the adaptability of concrete mortar Use record analysis, set target concrete mortar detection parameter, and then monitor target concrete mortar detection process;Based on the target concrete mortar detection record data of monitoring target concrete mortar detection process acquisition;Comprehensive evaluation is carried out to target concrete mortar detection record data and the material quality demand of concrete mortar, and the quality of evaluation target concrete mortar is evaluated;Based on the quality evaluation result of target concrete, generates target concrete mortar detection report.The problem that traditional concrete mortar material detection method is time-consuming and labor-consuming, and the subjective limitation of detection result exists is solved, the quality of objective quantization concrete mortar is realized, and the re-construction risk caused by quality substandard is reduced.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of data processing, in particular to a green building material detection method and device. BACKGROUND

[0002] Concrete mortar plays a crucial role in construction engineering, and its quality directly affects the structural safety, service life and overall quality of the project. Therefore, ensuring that the quality of concrete mortar materials meets the standard requirements is one of the important tasks in the construction process of building engineering.

[0003] Traditional concrete mortar material detection methods often rely on manual sampling and laboratory testing, which is time-consuming, labor-intensive and complex to operate, making it difficult to achieve real-time monitoring and rapid feedback. Therefore, researchers have begun to explore concrete mortar material detection methods and devices based on modern technology to improve detection efficiency, reduce costs, and achieve real-time monitoring and data recording. Combining sensor technology and data processing technology, it is expected to accurately detect the quality of concrete mortar and provide more reliable and efficient concrete mortar material quality control solutions for building engineering.

[0004] For example, the Chinese invention patent with publication number CN104573375B discloses a cement material carbon fixation accounting method and device. The utilization data and carbonization factor data of cement materials are obtained, and a cement material database is established. The cement materials are divided according to their use types to obtain concrete cement, mortar cement and cement kiln ash. The cement material database is used to calculate the carbon fixation amount of concrete cement, mortar cement and cement kiln ash during their life cycles, which include the production stage, use stage, demolition stage and recycling and reuse stage. The carbon fixation amounts of concrete cement, mortar cement and cement kiln ash are summarized to obtain the carbon fixation amount of cement materials. This method can accurately calculate the carbon fixation amount of different cement materials at different stages, which is of great significance for global carbon loss research and provides a basis for China's climate change negotiations.

[0005] Referring to the above-mentioned cement material carbon fixation accounting method and device, combined with data analysis, it is expected to accurately quantify the concrete mortar detection results and accurately evaluate the quality of concrete mortar.

[0006] Therefore, there is an urgent need for a green building material detection method and device. SUMMARY

[0007] In view of the shortcomings of the prior art, the present application provides a green building material detection method and device, which solves the problems of time-consuming and labor-intensive detection and subjective limitations of traditional concrete mortar material detection methods.

[0008] To achieve the above object, the present application is implemented by the following technical solutions: A green building material detection method, comprising the following steps: based on the adaptability use record analysis of concrete mortar, setting target concrete mortar detection parameters, and then monitoring the target concrete mortar detection process; based on the monitoring target concrete mortar detection process, obtaining target concrete mortar detection record data; comprehensively evaluating the target concrete mortar detection record data and the material quality demand of concrete mortar, evaluating the quality of target concrete mortar; generating a target concrete mortar detection report based on the quality evaluation result of target concrete.

[0009] Further, the specific analysis process of setting target concrete mortar detection parameters is: establishing a concrete mortar database; obtaining the specific use type of target concrete mortar, based on the specific use type of target concrete mortar, obtaining the adaptability use record of concrete mortar of the same use type in the concrete mortar database, the adaptability use record including the construction environment record, material mix ratio record, performance detection record, and quality abnormality record of the concrete mortar of the same type; integrating the construction environment record and performance detection record of the concrete mortar of the same type, screening the construction environment record and performance detection record related to material detection, analyzing the screened construction environment record and performance detection record, identifying factors related to material detection, and then setting target concrete mortar detection parameters according to the identified factors related to material detection.

[0010] Further, the target concrete mortar detection parameters specifically include: detection environment parameters, performance detection parameters, and raw material detection parameters; the detection environment parameters specifically refer to the detection environment required to be set for performance detection and raw material detection of target concrete mortar, and the detection environment specifically includes temperature, humidity, and wind speed; the performance detection parameters specifically refer to the performance detection conditions required to be set for performance detection of target concrete mortar, and the performance detection conditions specifically include the pressure applied in compression detection, the water amount applied in water absorption performance detection, and the accuracy of performance detection instruments; and the raw material detection parameters specifically refer to the raw material detection conditions required to be set for raw material detection of target concrete mortar, and the raw material detection conditions specifically include the accuracy of raw material detection instruments.

[0011] Further, the specific analysis process of establishing the concrete mortar database is: determining the concrete mortar related data range and the concrete mortar database application target required to be covered by the concrete mortar database, the concrete mortar related data range specifically includes raw materials, mix proportion, performance test data, engineering cases, and the concrete mortar database application target specifically includes concrete mortar material detection requirements, concrete mortar material quality requirements, and concrete mortar construction management requirements; obtaining related data of various types of concrete mortar, the related data of various types of concrete mortar specifically includes adaptability usage record data, engineering construction data, and literature materials, and the various types of concrete mortar specifically includes masonry mortar, plastering mortar, and bonding mortar; collating, cleaning, and standardizing the related data of various types of concrete mortar; importing the related data of various types of concrete mortar into the database of system and structure to generate the concrete mortar database.

[0012] Further, in the specific evaluation process of evaluating the quality of the target concrete mortar, the target concrete mortar detection record data is obtained based on real-time monitoring of the target concrete mortar detection process, and then the target concrete mortar detection record data is comprehensively analyzed to obtain a target concrete mortar detection evaluation value, which is used to quantify the quality of the target concrete mortar; the material quality requirements of the target concrete mortar of the specific use type are comprehensively analyzed based on the target concrete mortar stored in the concrete mortar database to obtain a target concrete mortar detection threshold of the specific use type; the quality evaluation result of the target concrete mortar is obtained by comparing and analyzing the target concrete mortar detection evaluation value and the target concrete mortar detection threshold of the specific use type.

[0013] Further, the specific analysis process of obtaining the target concrete mortar detection evaluation value is: obtaining the target concrete mortar detection record data, the target concrete mortar detection record data specifically includes raw material detection data of the target concrete mortar and performance detection data of the target concrete mortar; the raw material detection compliance value of the target concrete mortar is obtained by integrating and analyzing the raw material detection data of the target concrete mortar; the performance detection compliance value of the target concrete mortar is obtained by integrating and analyzing the performance detection data of the target concrete mortar; the target concrete mortar detection evaluation value is obtained by weighting analysis of the raw material detection compliance value of the target concrete mortar and the performance detection compliance value of the target concrete mortar.

[0014] Further, the quality evaluation result of the target concrete mortar is obtained, specifically: when the target concrete mortar detection evaluation value is greater than or equal to the concrete mortar detection threshold value of the specific use type of the target concrete mortar, the quality evaluation result of the target concrete mortar is marked as target concrete mortar detection qualified, and the quality meets the concrete mortar construction requirement of the specific use type of the target concrete mortar; when the target concrete mortar detection evaluation value is less than the concrete mortar detection threshold value of the specific use type of the target concrete mortar, the quality evaluation result of the target concrete mortar is marked as target concrete mortar detection unqualified, and the quality does not meet the concrete mortar construction requirement of the specific use type of the target concrete mortar.

[0015] Further, the raw material detection data of the target concrete mortar specifically includes: water content ratio, aggregate amount ratio, and additive addition ratio; the specific acquisition method of the raw material detection compliance value of the target concrete mortar is: obtaining the water content ratio, aggregate amount ratio, and additive addition ratio of each sampling specimen of the target concrete mortar, and performing data cleaning on the water content ratio, aggregate amount ratio, and additive addition ratio of each sampling specimen of the target concrete mortar, and then performing weighted integration on the water content ratio, aggregate amount ratio, and additive addition ratio of each sampling specimen of the target concrete mortar to obtain the raw material detection compliance value of the target concrete mortar, which is used to numerically represent the compliance degree of the raw material proportioning of the target concrete mortar; the performance detection data of the target concrete mortar specifically includes: pressure bearing limit value, water absorption limit value, and density; the specific acquisition method of the performance detection compliance value of the target concrete mortar is: obtaining the pressure bearing limit value, water absorption limit value, and density of each sampling specimen of the target concrete mortar, and performing data cleaning on the pressure bearing limit value, water absorption limit value, and density of each sampling specimen of the target concrete mortar, and then performing weighted integration on the pressure bearing limit value, water absorption limit value, and density of each sampling specimen of the target concrete mortar to obtain the performance detection compliance value of the target concrete mortar, which is used to numerically represent the performance compliance degree of the target concrete mortar.

[0016] Further, the target concrete mortar detection report specifically includes: the specific use type of the target concrete mortar, the raw material detection data of the target concrete mortar, the performance detection data of the target concrete mortar, the target concrete mortar detection evaluation value, and the quality evaluation result of the target concrete.

[0017] The application discloses a concrete mortar detection device applying the green building material detection method, which comprises a processor for processing computer program instructions stored in a runtime execution memory; a detection parameter setting module for setting target concrete mortar detection parameters based on adaptive use record analysis of the concrete mortar, and monitoring a target concrete mortar detection process; a data acquisition module for acquiring target concrete mortar detection record data based on the monitored target concrete mortar detection process; a quality evaluation module for comprehensively evaluating the target concrete mortar detection record data and material quality requirements of the concrete mortar, and evaluating the quality of the target concrete mortar; and a report generation module for generating a target concrete mortar detection report based on the quality evaluation result of the target concrete mortar.

[0018] The application has the following beneficial effects:

[0019] (1) The green building material detection method and device can monitor and evaluate the material quality of the concrete mortar, discover potential problems and non-compliance conditions in time, take measures for adjustment and improvement, and ensure that the final concrete mortar quality meets the standard requirements; based on the real-time monitored and recorded data, data analysis and trend prediction can be performed to provide a scientific basis for relevant decisions, reduce the deviation of subjective judgment, and improve the accuracy and efficiency of decisions; fine management of the concrete mortar quality can avoid resource waste and production stagnation caused by quality problems, realize optimal utilization of resources, and improve production efficiency and economic benefits; establishment of a material detection process and evaluation system helps to standardize production operations, ensures that each batch of concrete mortar meets the quality standards, and improves the overall production level and product reliability.

[0020] (2) The green building material detection method and device adopt data processing technical means, consider comprehensively evaluating the material of the concrete mortar through data, obtain the quality evaluation of the concrete mortar based on the concrete mortar detection, comprehensively consider the material performance problems of the concrete mortar and the material ratio problems of the concrete, analyze the detection data of the two to obtain the material detection evaluation value, effectively quantify the quality of the concrete mortar, discover possible quality problems in time, reduce the re-construction, maintenance and compensation costs caused by non-standard quality, and reduce the risk of the project.

[0021] Of course, implementing any product of the application does not necessarily need to achieve all the advantages described above. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 A green building material detection method flow chart is provided.

[0023] Figure 2 A concrete mortar detection device structure diagram of the present application.

[0024] Figure 3 A raw material detection compliance value of the target concrete mortar in the target concrete mortar detection evaluation value calculation formula Effect diagram of the effect of the material detection evaluation value. DETAILED DESCRIPTION

[0025] The embodiment of the present application solves the problems of time and labor consumption of the traditional concrete mortar material detection method and the subjective limitation of the detection result.

[0026] The overall idea of the problem in the embodiment of the present application is as follows:

[0027] Firstly, by analyzing the adaptability of the use of the concrete mortar, the performance and possible problems in actual use are understood, and on this basis, the target concrete mortar detection parameters are set, the key indicators and detection methods that need to be monitored are determined, the monitoring system is established according to the set detection parameters, the target concrete mortar detection process is monitored in real time, the target concrete mortar detection record data is obtained through the monitoring system, the material detection record data obtained is comprehensively evaluated with the material quality demand of the concrete mortar, it is determined whether the target concrete mortar meets the quality requirements, and the possible problems and improvement space are found out, so as to realize the effective monitoring and management of the quality of the concrete mortar.

[0028] Please refer to Figure 1 The embodiment of the present application provides a technical scheme: a green building material detection method, comprising the following steps: based on the adaptability of the use of the concrete mortar, the target concrete mortar detection parameters are set, and then the target concrete mortar detection process is monitored; based on the monitoring of the target concrete mortar detection process, the target concrete mortar detection record data is obtained, and then the target concrete mortar detection record data and the material quality demand of the concrete mortar are comprehensively evaluated, and the quality of the target concrete mortar is evaluated; and generating a target concrete mortar detection report according to the quality evaluation result of the target concrete.

[0029] Specifically, the specific analysis process of setting the target concrete mortar detection parameter is: establishing a concrete mortar database; obtaining the specific use type of the target concrete mortar, based on the specific use type of the target concrete mortar, obtaining the adaptive use record of the concrete mortar of the same use type in the concrete mortar database, the adaptive use record specifically includes the construction environment record, the material mix ratio record, the performance detection record, and the quality abnormal record of the concrete mortar of the same type; integrating the construction environment record and the performance detection record of the concrete mortar of the same type, screening the construction environment record and the performance detection record related to material detection, analyzing the screened construction environment record and performance detection record, identifying factors related to material detection, and then setting the target concrete mortar detection parameter according to the identified factors related to material detection.

[0030] In the embodiment, the related data of the concrete mortar, including the type, the mix ratio, and the performance detection data, are collected and sorted to establish a complete concrete mortar database; the specific use type of the target concrete mortar to be monitored is determined, the adaptive use record of the concrete mortar of the same use type as the target concrete mortar is screened from the concrete mortar database, the screened construction environment record and performance detection record are integrated for subsequent analysis, the target concrete mortar detection parameter is set according to the identified factors related to material detection, so as to ensure that the quality of the target concrete mortar can be comprehensively and accurately monitored, and the quality of the target concrete mortar can be ensured to meet the requirements and possible quality problems can be found and solved in time.

[0031] Specifically, the target concrete mortar detection parameter specifically includes: a detection environment parameter, a performance detection parameter, and a raw material detection parameter; the detection environment parameter is specifically a detection environment required to be set for performance detection and raw material detection of the target concrete mortar, the detection environment includes temperature, humidity, and wind speed; the performance detection parameter is specifically a performance detection condition required to be set for performance detection of the target concrete mortar, the performance detection condition includes the pressure applied in compression detection, the water amount applied in water absorption performance detection, and the accuracy of performance detection instruments; and the raw material detection parameter is specifically a raw material detection condition required to be set for raw material detection of the target concrete mortar, the raw material detection condition includes the accuracy of raw material detection instruments.

[0032] In the present embodiment, according to the performance characteristics and production environment of the concrete mortar, a suitable temperature range is set, the temperature range is between 20°C and 30°C; a suitable humidity is conducive to the hardening and strength development of the concrete, the humidity range is set between 50% and 70%; excessive wind speed affects the flatness of the concrete surface and the loss of moisture, the wind speed is set below 0.5 m / s; according to the requirements of the relevant standards, a proper pressure is applied for the compressive strength test, according to the requirements of the standards, the depth and time of the specimen immersed in water are specified to ensure the accuracy of the test.

[0033] The performance testing instruments of the concrete mortar include but are not limited to compressive strength testing instruments, flexural strength testing instruments, permeability testing instruments, shrinkage testing instruments, thermal performance testing instruments, density testing instruments, and bond strength testing instruments. The compressive strength testing instruments are used to measure the compressive strength of the concrete mortar, including universal testing machines and pressure testing machines; the flexural strength testing instruments are used to measure the flexural strength of the concrete mortar, including bending testing machines; the tensile strength testing instruments are used to measure the tensile strength of the concrete mortar, including tensile testing machines; the permeability testing instruments are used to measure the permeability of the concrete mortar, including permeability testing instruments and permeability coefficient testing instruments; the shrinkage testing instruments are used to measure the shrinkage of the concrete mortar, including shrinkage meters and dry shrinkage testing instruments; the thermal performance testing instruments are used to measure the thermal performance of the concrete mortar, including thermal conductivity testing instruments and thermal diffusivity testing instruments; the density testing instruments are used to measure the density of the concrete mortar, including density meters and water density testing instruments; and the bond strength testing instruments are used to measure the bond strength of the concrete mortar, including pull-out testing machines and bond strength testing instruments.

[0034] The raw material testing instruments of the concrete mortar include but are not limited to electronic balances, moisture meters, centrifuges, and raw material testing benches. The electronic balances are used to measure the weight of the raw materials; the moisture meters are used to measure the moisture content in the concrete raw materials; the centrifuges are used to separate impurities in the concrete; and the raw material testing benches are used to test the physical and chemical properties of various raw materials.

[0035] Specifically, the specific analysis process of establishing the concrete mortar database is: determining the concrete mortar related data range and the concrete mortar database application target required by the concrete mortar database, the concrete mortar related data range including raw materials, mix proportion, performance test data, engineering cases, and the concrete mortar database application target including concrete mortar material detection requirements, concrete mortar material quality requirements, and concrete mortar construction management requirements; obtaining related data of various types of concrete mortar, the related data of various types of concrete mortar including adaptability use record data, engineering construction data, and literature materials, and the various types of concrete mortar specifically including masonry mortar, plastering mortar, and bonding mortar; collating, cleaning, and standardizing the related data of various types of concrete mortar; importing the related data of various types of concrete mortar into the database of determined system and structure to generate the concrete mortar database.

[0036] In the embodiment, the structure and relationship of the database, including the fields and indexes of the data table, store the concrete mortar related data in the database, facilitating information sharing and exchange between various related parties; through analysis of the data in the database, scientific basis can be provided for material selection, mix proportion design, and construction management of the concrete mortar, supporting decision making and optimization; monitoring and analyzing the performance test data and engineering construction data in the database can timely find quality problems and construction abnormalities of the concrete mortar material, and targeted adjustment and improvement can be made to improve product quality and engineering efficiency.

[0037] Specifically, in the specific evaluation process of evaluating the quality of the target concrete mortar: based on real-time monitoring of the target concrete mortar detection process, target concrete mortar detection record data is obtained, and then the target concrete mortar detection record data is comprehensively analyzed to obtain a target concrete mortar detection evaluation value, which is used to quantify the quality of the target concrete mortar; based on the material quality requirements of the target concrete mortar of the specific use type stored in the concrete mortar database, comprehensive analysis is performed to obtain a target concrete mortar detection threshold of the specific use type of the target concrete mortar; by comparing and analyzing the target concrete mortar detection evaluation value and the target concrete mortar detection threshold of the specific use type of the target concrete mortar, a quality evaluation result of the target concrete mortar is obtained.

[0038] The quality evaluation result of the target concrete mortar is obtained, specifically: when the target concrete mortar detection evaluation value is greater than or equal to the concrete mortar detection threshold value of the specific use type of the target concrete mortar, the quality evaluation result of the target concrete mortar is marked as target concrete mortar detection qualified, and the quality meets the concrete mortar construction requirement of the specific use type of the target concrete mortar; when the target concrete mortar detection evaluation value is less than the concrete mortar detection threshold value of the specific use type of the target concrete mortar, the quality evaluation result of the target concrete mortar is marked as target concrete mortar detection unqualified, and the quality does not meet the concrete mortar construction requirement of the specific use type of the target concrete mortar.

[0039] In the embodiment, the material detection threshold value of the specific use type of the target concrete mortar is specifically obtained in the following manner: the specific use type of the target concrete mortar is determined, the corresponding national or industry standard, specification and engineering design requirement are consulted according to the specific use type of the target concrete mortar, the material quality requirement data of the specific use type of the target concrete mortar is obtained from the concrete mortar database, including the standard threshold value and allowable deviation range of each quality index, the material detection threshold value of the specific use type of the target concrete mortar is formulated according to the data in the database and the reference standard and specification, combined with the actual engineering requirement, to ensure that the quality of the concrete mortar meets the requirement, and the threshold value is gradually improved and adjusted through analysis and comparison of the actual detection data, to ensure its accuracy and applicability.

[0040] The concrete mortar detection process is monitored in real time using appropriate monitoring equipment and sensors to ensure the accuracy and reliability of the detection data, the obtained material detection record data is comprehensively analyzed, including the evaluation of each quality index and the comparative analysis of related parameters, to obtain the target concrete mortar detection evaluation value; the material quality requirement data of the specific use type of the target concrete mortar is obtained from the concrete mortar database, including the standard threshold value of the quality index, the target concrete mortar detection evaluation value is compared and analyzed with the material detection threshold value of the specific use type stored in the concrete mortar database, to determine whether the quality of the concrete mortar meets the requirement, according to the comparison and analysis result, the target concrete mortar detection result is marked to confirm whether it is qualified, and then whether it meets the concrete mortar construction requirement of the specific use type is determined; through real-time monitoring of the target concrete mortar detection process, problems can be found and solved in time, to ensure the stability of the quality of the concrete mortar, automatic monitoring and recording can improve the accuracy and reliability of the data, reduce human error, real-time monitoring and evaluation of the quality of the concrete mortar can find quality problems in time, to ensure that the construction quality meets the requirement, and improve the reliability and safety of the project.

[0041] Specifically, the specific analysis process of obtaining the target concrete mortar detection evaluation value is: obtaining target concrete mortar detection record data, which specifically includes: target concrete mortar raw material detection data, target concrete mortar performance detection data; integrating and analyzing the target concrete mortar raw material detection data to obtain the target concrete mortar raw material detection compliance value; integrating and analyzing the target concrete mortar performance detection data to obtain the target concrete mortar performance detection compliance value; and weighting and analyzing the target concrete mortar raw material detection compliance value and the target concrete mortar performance detection compliance value to obtain the target concrete mortar detection evaluation value. In addition to testing the quality of the target concrete mortar by computer simulation software and analyzing its quality condition to obtain the target concrete mortar detection evaluation value, the target concrete mortar detection evaluation value can also be obtained by calculation, and the specific calculation formula is:

[0042] ; in the formula target concrete mortar detection evaluation value, target concrete mortar raw material detection compliance value, target concrete mortar performance detection compliance value, weight factor of raw material detection compliance value, weight factor of performance detection compliance value, refer to Figure 3 , the X-axis represents the target concrete mortar raw material detection compliance value, and the Y-axis represents the target concrete mortar detection evaluation value. The greater the target concrete mortar raw material detection compliance value, the greater the target concrete mortar detection evaluation value. The target concrete mortar performance detection compliance value is set to 0.7, the weight factor of the raw material detection compliance value is 0.4, and the weight factor of the performance detection compliance value is 0.6. Similarly, the greater the target concrete mortar performance detection compliance value, the greater the corresponding target concrete mortar detection evaluation value. The example values of the parameters are as follows:

[0043]

[0044] In the embodiment, the raw material detection data and performance detection data of the target concrete mortar are collected to ensure the accuracy and integrity of the data. The raw material detection data is integrated and analyzed to calculate the detection compliance value of each raw material, which reflects whether the material quality and performance of the concrete mortar meet the design requirements, is a comprehensive evaluation of the quality of the concrete mortar, and can comprehensively evaluate the quality and performance of the concrete mortar. The weight factors corresponding to the target concrete mortar raw material detection compliance value and the target concrete mortar performance detection compliance value are determined by relevant professionals according to engineering design requirements, material importance, historical data analysis and other aspects, and are obtained by expert discussion, historical data analysis and experimental verification.

[0045] Specifically, the raw material detection data of the target concrete mortar includes a water content ratio, an aggregate amount ratio, and an additive addition ratio; and the specific acquisition manner of the raw material detection compliance value of the target concrete mortar is: acquiring the water content ratio, the aggregate amount ratio, and the additive addition ratio of each sampling specimen of the target concrete mortar, performing data cleaning on the water content ratio, the aggregate amount ratio, and the additive addition ratio of each sampling specimen of the target concrete mortar, and then performing weighted integration on the water content ratio, the aggregate amount ratio, and the additive addition ratio of each sampling specimen of the target concrete mortar to obtain the raw material detection compliance value of the target concrete mortar. The raw material detection compliance value of the target concrete mortar is used to numerically represent the compliance degree of the raw material proportioning of the target concrete mortar. In addition to testing the raw material proportioning of the target concrete mortar by a computer simulation software and analyzing the raw material proportioning condition to obtain the raw material detection compliance value, the raw material detection compliance value can also be obtained by calculation. The specific calculation formula is:

[0046]

[0047] In the formula, C represents the raw material detection compliance value of the target concrete mortar, N represents the total number of the sampling specimens of the target concrete mortar,

[0048] ​​​​​​​​​​​​​​​The performance test data of the target concrete mortar includes: ultimate bearing capacity, ultimate water absorption capacity, and density. The specific method for obtaining the performance test compliance value of the target concrete mortar is as follows: obtain the ultimate bearing capacity, ultimate water absorption capacity, and density of each sample of the target concrete mortar; perform data cleaning on the ultimate bearing capacity, ultimate water absorption capacity, and density of each sample of the target concrete mortar; and then perform weighted integration on the ultimate bearing capacity, ultimate water absorption capacity, and density of each sample of the target concrete mortar to obtain the performance test compliance value of the target concrete mortar. The performance test compliance value of the target concrete mortar is used to numerically represent the degree of performance compliance of the target concrete mortar. Besides obtaining the performance compliance value through computer simulation software to test and analyze the performance of the target concrete mortar, the performance test compliance value can also be obtained through calculation. The specific calculation formula is as follows:

[0049]

[0050] In the formula This indicates the performance test results of the target concrete mortar meet the required standards. Indicates the first The pressure bearing limit value of each sampled specimen. Indicates the first The water absorption limit of each sample. Indicates the first Density of each sampled specimen This represents a reference value indicating the ultimate pressure bearing capacity. The reference value representing the water absorption limit. A reference value representing density. The weighting factor represents the ultimate pressure bearing capacity. The weighting factor represents the water absorption limit value. The weighting factor represents the density.

[0051] In the embodiment, by considering the water content ratio, aggregate dosage ratio and additive addition ratio, the raw material proportioning of the concrete mortar can be comprehensively evaluated, the compliance of various indicators can be ensured, the evaluation results can be ensured to be more accurate and reliable through data cleaning and weighted integration, the raw material detection compliance value is numerized, the evaluation results are more intuitive and comparable; the water content ratio represents the content of water in the concrete mortar, the aggregate dosage ratio represents the ratio of the dosage of aggregate to cement in the concrete mortar, and the additive addition ratio represents the ratio of the addition amount of additive to cement in the concrete mortar; the water content ratio is obtained by weighing the concrete mortar sample and drying at a constant temperature, and then weighing again; the aggregate dosage ratio is obtained by weighing the mass of aggregate and cement in the concrete mortar; the additive addition ratio is obtained by weighing the mass of additive and cement in the concrete mortar; the weight factors corresponding to the water content ratio, the aggregate dosage ratio and the additive addition ratio are determined through expert discussion, historical data analysis and experimental verification; the reference values corresponding to the water content ratio, the aggregate dosage ratio and the additive addition ratio are obtained by referring to the national or regional concrete mortar standards or specifications, or determined according to the engineering design requirements and actual conditions.

[0052] The pressure bearing limit value represents the maximum pressure that the concrete mortar can bear, which is an important indicator for evaluating its structural strength and durability; the water absorption limit value represents the amount of water absorbed by the concrete mortar within a certain time, which is an indicator for evaluating its impermeability and durability; the density represents the mass per unit volume of the concrete mortar, which is an indicator for evaluating its compactness and structural uniformity; the pressure bearing limit value is obtained by loading the concrete mortar sample through the pressure test equipment, recording its bearing capacity and taking the limit value; the water absorption limit value is obtained by soaking the concrete mortar sample in water for a certain time, then measuring the weight change to calculate the water absorption amount; the density is calculated by measuring the mass and volume of the concrete mortar sample; the weight factors corresponding to the bearing limit value, the water absorption limit value and the density are evaluated by experts or engineers in the field of concrete research, according to their experience and professional knowledge, the importance of these performance indicators is weighed, and then the corresponding weight factors are determined, or the experimental data or actual application data of historical concrete mortar projects are analyzed to understand the influence degree of different performance indicators on the final engineering quality, and the weight factors are determined based on this, a series of concrete mortar performance experiments can also be carried out, and the importance of each performance indicator and its relative weight are determined through statistical analysis of the experimental results; the reference values corresponding to the bearing limit value, the water absorption limit value and the density are obtained by referring to the requirements of these performance indicators in the national or regional concrete mortar standards or specifications, taking the standard values as the reference values, or determining the corresponding reference values according to the specific concrete mortar engineering design requirements, and the applicable reference values can also be determined combined with the actual engineering situation and demand, considering the site environment, use conditions and structure requirements.

[0053] Specifically, the target concrete mortar detection report specifically includes: the specific use type of the target concrete mortar, the raw material detection data of the target concrete mortar, the performance detection data of the target concrete mortar, the target concrete mortar detection evaluation value, and the quality evaluation result of the target concrete.

[0054] In this embodiment, first, the specific use type of the target concrete mortar is determined, such as ordinary concrete, high-strength concrete, and special concrete. The various raw materials used in the concrete mortar are detected, including cement, sand, aggregate, and admixture. The detection content includes the chemical composition, particle size distribution, and strength of the raw materials. The performance of the concrete mortar is detected, including but not limited to compressive strength, flexural strength, impermeability, water absorption, and shrinkage. According to the raw material detection data and the performance detection data, the performance of the concrete mortar is evaluated, and the evaluation value is obtained. The quality of the concrete is evaluated by comprehensively considering the raw material detection data, the performance detection data, and the material detection evaluation value of the target concrete mortar, to determine whether it meets the design requirements and actual use requirements. Comprehensive evaluation of the quality and performance of the concrete mortar can comprehensively evaluate the quality and performance of the concrete mortar, ensure that it meets the design requirements and actual use requirements, and timely find the quality problems of the raw materials or the concrete mortar, which is conducive to taking appropriate measures to improve and correct, thereby improving the engineering quality, reducing the problems and risks of the concrete mortar in the construction and use process, and ensuring the safety and reliability of the project.

[0055] Referring to Figure 2 A concrete mortar detection device applies the green building material detection method described above, which includes: a processor for processing computer program instructions stored in the runtime execution memory; a detection parameter setting module for setting target concrete mortar detection parameters based on adaptive use record analysis of the concrete mortar, and then monitoring the target concrete mortar detection process; a data acquisition module for acquiring target concrete mortar detection record data based on the monitoring of the target concrete mortar detection process; a quality evaluation module for comprehensively evaluating the target concrete mortar detection record data and the material quality requirements of the concrete mortar to evaluate the quality of the target concrete mortar; and a report generation module for generating a target concrete mortar detection report based on the quality evaluation result of the target concrete.

[0056] In summary, the present application has at least the following effects:

[0057] Through monitoring the detection process of the concrete mortar, possible quality problems can be found in time, and corresponding measures can be taken for improvement, so as to improve the quality of the concrete mortar, and comprehensive evaluation of material detection record data can provide objective and accurate data support for engineering managers, help them make reasonable decisions, and ensure that the quality of the concrete mortar meets the expected requirements; quality problems of the concrete mortar can be found in time and solved, re-construction, maintenance and compensation costs caused by substandard quality can be reduced, and the risk of the project can be reduced.

[0058] Those skilled in the art will appreciate that embodiments of the application can be provided as methods, apparatuses. Accordingly, the application can take the form of an entirely hardware embodiment, an entirely software embodiment or an embodiment combining software and hardware aspects. Furthermore, the application can take the form of a computer program product implemented on one or more computer-usable storage media (including, but not limited to, disk storage, CD-ROMs, optical storage devices, etc.) having computer usable program code embodied therein.

[0059] The application is described with reference to structural diagrams and flowcharts of apparatuses and methods according to embodiments of the application. It should be understood that each module and flow in the structural diagrams and flowcharts can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor or other programmable data processing apparatus to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing apparatus produce a means for implementing the functions specified in the flowchart Figure 1 one or more flows and structures Figure 1 apparatuses that perform the functions specified in the flowchart

[0060] These computer program instructions can also be stored in a computer-readable memory that can cause the computer or other programmable data processing apparatus to work in a specific manner, so that the instructions stored in the computer-readable memory produce a product including instruction apparatuses that implement the functions specified in the flowchart Figure 1 one or more flows and structures Figure 1 apparatuses that perform the functions specified in the flowchart

[0061] These computer program instructions can also be loaded into a computer or other programmable data processing apparatus, so that a series of operation steps are performed on the computer or other programmable data processing apparatus to produce a computer-implemented process, so that the instructions executed on the computer or other programmable data processing apparatus provide steps for implementing the functions specified in the flowchart Figure 1 one or more flows and structures Figure 1 apparatuses that perform the functions specified in the flowchart

[0062] While the preferred embodiments of the application have been described, additional variations and modifications can be made to these embodiments by those skilled in the art once they have the benefit of the present disclosure without departing from the spirit and scope of the application. Accordingly, it is intended that such additions and modifications be included within the scope of the application. It is the following claims, including any amendments thereto, which define the scope of the application.

[0063] Obviously, numerous modifications and variations of the present application are possible in light of the above teachings. It is therefore to be understood that within the scope of the appended claims, and their equivalents, the application can be practiced otherwise than as specifically described.

Claims

1. A method for testing green building materials, characterized in that, Includes the following steps: Based on the analysis of the adaptive use records of concrete mortar, target concrete mortar testing parameters are set, and then the testing process of target concrete mortar is monitored. The specific analysis process for setting the target concrete mortar testing parameters is as follows: Establish a concrete mortar database; Obtain the specific type of concrete mortar to be used. Based on the specific type of concrete mortar to be used, obtain the adaptive use records of concrete mortar of the same type in the concrete mortar database. The adaptive use records include the construction environment record, material mix ratio record, performance test record, and quality anomaly record of the concrete mortar of that type. The construction environment records and performance test records of this type of concrete mortar are integrated, and construction environment records and performance test records related to material testing are screened. The screened construction environment records and performance test records are analyzed to identify factors related to material testing. Then, target concrete mortar test parameters are set based on the identified factors related to material testing. Data on the detection records of target concrete mortar are obtained based on the detection process of the target concrete mortar. A comprehensive evaluation is conducted on the target concrete mortar test record data and the material quality requirements of the concrete mortar to assess the quality of the target concrete mortar. The specific evaluation process for assessing the quality of the target concrete mortar includes: Based on real-time monitoring of the target concrete mortar testing process, target concrete mortar testing record data is obtained, and then the target concrete mortar testing record data is comprehensively analyzed to obtain the target concrete mortar testing evaluation value. The target concrete mortar testing evaluation value is used to quantify the quality of the target concrete mortar. Based on the material quality requirements of concrete mortar of specific application types stored in the concrete mortar database, a comprehensive analysis is conducted to obtain the detection threshold of concrete mortar of specific application types. The quality assessment results of the target concrete mortar are obtained by comparing and analyzing the target concrete mortar test evaluation value with the concrete mortar test threshold of the specific type of concrete mortar used. The quality assessment results of the target concrete mortar are as follows: When the test evaluation value of the target concrete mortar is greater than or equal to the test threshold of the concrete mortar of the specific type of concrete mortar used, the quality evaluation result of the target concrete mortar is marked as qualified and the quality meets the construction requirements of the concrete mortar of the specific type of concrete mortar used. When the test evaluation value of the target concrete mortar is less than the test threshold of the concrete mortar of the specific type of concrete mortar used, the quality evaluation result of the target concrete mortar is marked as unqualified and the quality does not meet the construction requirements of the concrete mortar of the specific type of concrete mortar used. A target concrete mortar test report is generated based on the quality assessment results of the target concrete.

2. The method for testing green building materials according to claim 1, characterized in that, The specific testing parameters for the target concrete mortar include: testing environment parameters, performance testing parameters, and raw material testing parameters; The specific environmental parameters for testing refer to the testing environment that needs to be set when testing the performance of the target concrete mortar and the raw materials. The testing environment specifically includes temperature, humidity, and wind speed. The specific performance testing parameters are the performance testing conditions that need to be set when testing the performance of the target concrete mortar. The specific performance testing conditions include the pressure applied for compressive strength testing, the amount of water applied for water absorption testing, and the accuracy of the performance testing instrument. The raw material testing parameters are the raw material testing conditions that need to be set when testing the raw materials of the target concrete slurry. The raw material testing conditions specifically include the accuracy of the raw material testing instruments.

3. The method for testing green building materials according to claim 1, characterized in that, The specific analysis process for establishing the concrete mortar database is as follows: Determine the scope of concrete mortar-related data to be covered by the concrete mortar database and the application objectives of the concrete mortar database. The scope of concrete mortar-related data specifically includes raw materials, mix proportions, performance test data, and engineering cases. The application objectives of the concrete mortar database specifically include concrete mortar material testing requirements, concrete mortar material quality requirements, and concrete mortar construction management requirements. Acquire relevant data on various types of concrete mortar, including adaptive use record data, engineering construction data, and literature. The specific types of concrete mortar include masonry mortar, plastering mortar, and bonding mortar. The relevant data of various types of concrete mortar are sorted, cleaned, and standardized. Import relevant data of various types of concrete mortar into the database of the system and structure to generate a concrete mortar database.

4. The method for testing green building materials according to claim 1, characterized in that, The specific analytical process for obtaining the target concrete mortar test evaluation value is as follows: Obtain the target concrete mortar test record data, which specifically includes: raw material test data of the target concrete mortar and performance test data of the target concrete mortar; By integrating and analyzing the raw material testing data of the target concrete mortar, the raw material testing compliance values ​​of the target concrete mortar are obtained. By integrating and analyzing the performance test data of the target concrete mortar, the performance test compliance value of the target concrete mortar is obtained. A weighted analysis was performed on the raw material test compliance values ​​and the performance test compliance values ​​of the target concrete mortar to obtain the test evaluation value of the target concrete mortar.

5. The method for testing green building materials according to claim 4, characterized in that, The specific raw material testing data for the target concrete mortar include: moisture content, aggregate content ratio, and admixture addition ratio; The specific method for obtaining the raw material test compliance values ​​of the target concrete mortar is as follows: The moisture content ratio, aggregate content ratio, and admixture addition ratio of each sample of the target concrete mortar are obtained. Data cleaning is performed on the moisture content ratio, aggregate content ratio, and admixture addition ratio of each sample of the target concrete mortar. Then, the moisture content ratio, aggregate content ratio, and admixture addition ratio of each sample of the target concrete mortar are weighted and integrated to obtain the raw material test compliance value of the target concrete mortar. The raw material test compliance value of the target concrete mortar is used to numerically represent the degree of compliance of the raw material proportions of the target concrete mortar. The specific performance test data of the target concrete mortar includes: ultimate bearing capacity, ultimate water absorption capacity, and density. The specific method for obtaining the performance test compliance value of the target concrete mortar is as follows: The ultimate bearing capacity, ultimate water absorption capacity, and density of each sample of the target concrete mortar are obtained. The data of the ultimate bearing capacity, ultimate water absorption capacity, and density of each sample of the target concrete mortar are cleaned. Then, the ultimate bearing capacity, ultimate water absorption capacity, and density of each sample of the target concrete mortar are weighted and integrated to obtain the performance test compliance value of the target concrete mortar. The performance test compliance value of the target concrete mortar is used to numerically represent the degree of performance compliance of the target concrete mortar.

6. The method for testing green building materials according to claim 1, characterized in that, The target concrete mortar test report specifically includes: the specific type of target concrete mortar used, the raw material test data of the target concrete mortar, the performance test data of the target concrete mortar, the test evaluation value of the target concrete mortar, and the quality evaluation result of the target concrete.

7. A concrete mortar testing device, employing the green building material testing method according to any one of claims 1-6, characterized in that, include: A processor is used to process and execute computer program instructions stored in memory during runtime. The test parameter setting module is used to set the test parameters of the target concrete mortar based on the analysis of the adaptive use records of concrete mortar, and then monitor the test process of the target concrete mortar. The data acquisition module is used to acquire the target concrete mortar test record data based on the test process of the monitored target concrete mortar. The quality assessment module is used to comprehensively evaluate the target concrete mortar test record data and the material quality requirements of the concrete mortar, and to assess the quality of the target concrete mortar. The report generation module is used to generate a target concrete mortar test report based on the quality assessment results of the target concrete.

Citation Information

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