A method and system for controlling the curing of a wet adhesive coated film
By adjusting the intensity of UV light source illumination and combining it with the curing control parameters and thickness assessment of the coated film, the reliability and efficiency issues of wet curing of the coated film were resolved, achieving efficient and reliable curing treatment.
Patent Information
- Application Number
- CN202410223817.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-02-29
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2044-02-29
AI Technical Summary
Existing technologies cannot meet the reliability and curing efficiency requirements of wet adhesive curing of coating films in new energy vehicles. Traditional gas boiler heating cannot meet environmental protection requirements and has insufficient temperature regulation efficiency and precision, making it difficult to adapt to the application needs of hot melt adhesives and polyester polymer plasticizers.
By determining the curing control parameters and influencing factors of the coated film, and combining the correlation coefficient of the UV curing light source under different light intensities, the light control intensity of the UV light source is adjusted. Based on the evaluation results of the coating thickness and uniformity, the light intensity is dynamically adjusted to achieve differentiated control.
It improves the reliability and accuracy of the curing process of coated adhesive films, avoids inaccurate curing caused by inconsistent light intensity when the coating thickness changes, and enhances the efficiency and reliability of the curing process.
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Figure CN117960544B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of colloid curing technology, and particularly relates to a method and system for controlling the wet curing of coated adhesive films. Background Technology
[0002] With the continuous growth in demand for new energy vehicles, the upgrading of automotive electronics and intelligence has been promoted. More complete and comprehensive electronic auxiliary systems are widely used in new energy vehicles. The requirements for heat dissipation and stability of electronic devices and batteries have also increased. This has also put forward higher requirements for the reliability and curing efficiency of wet adhesive curing control of coating films used for insulation control of vehicle circuits and batteries.
[0003] Existing technical solutions often use traditional gas-fired boilers for heating, which not only fails to meet increasingly stringent environmental protection requirements, but also makes it difficult to meet the requirements for temperature regulation efficiency and accuracy, thus failing to meet the application requirements of hot melt adhesives and polyester polymer plasticizers.
[0004] To address the aforementioned technical problems, this invention provides a method and system for controlling the wet curing of coated adhesive films. Summary of the Invention
[0005] To achieve the objectives of this invention, the following technical solution is adopted:
[0006] According to one aspect of the present invention, a method for controlling the wet curing of a coated adhesive film is provided.
[0007] A method for controlling the wet curing of a coated adhesive film, characterized by comprising:
[0008] S1 determines the curing control parameters of the wet adhesive film based on the application scenario and the influencing factors of different curing control parameters. It also determines the light control intensity of the UV curing light source under the reference wet adhesive thickness by combining the correlation coefficient between the UV curing light source under different light intensities and different curing control parameters.
[0009] S2 controls the curing of the coated film at different coating thicknesses based on the light intensity control to obtain curing results with different curing control parameters at different coating thicknesses. Combined with the influence factors of different curing control parameters, the curing quality factor at different coating thicknesses is determined. The coating thickness is divided into multiple thickness control intervals through the curing quality factor.
[0010] S3 determines the uniformity evaluation result of the coating thickness of the coating film based on the historical coating thickness of the coating film, and proceeds to the next step when the uniformity evaluation result does not meet the requirements;
[0011] When S4 determines that an adjustment to the curing process is required based on the uniformity evaluation results, the coating time of the coating film, and the deviation of the coating thickness of the coating film from the adjacent thickness control range, the intensity of the UV light source is adjusted based on the variation in the wet adhesive content of the coating film.
[0012] The beneficial effects of this invention are as follows:
[0013] 1. The light intensity of the UV curing light source at the reference wet adhesive thickness is determined based on the influence factors of different curing control parameters and the correlation coefficients with different curing control parameters. This not only considers the curing results of a single curing control parameter under different light intensities, but also integrates it with actual application scenarios, thereby achieving differentiated consideration of different curing control parameters, thus ensuring the reliability of light intensity control and the reliability of curing process.
[0014] 2. The intensity of UV light source illumination is adjusted based on the variation of wet adhesive content in the coated film. This avoids the technical problem of inaccurate curing results caused by the UV light source illumination intensity not changing accordingly when the coating thickness of the original coated film changes. This improves the reliability of the curing process of the coated film and also reduces the technical problem of the efficiency of comparison processing being difficult to meet requirements due to frequent comparisons. It ensures differentiated control of the UV light source illumination intensity used for curing the coated film.
[0015] A further technical solution is that the curing control parameters include, but are not limited to, viscosity, peeling degree, insulation parameters, and the time to maintain a preset viscosity.
[0016] A further technical solution is that the influencing factor of the curing control parameter is determined according to the application of the coated adhesive film, and the specific application requires different curing control parameters.
[0017] A further technical solution is that the correlation parameter is determined based on the deviation between the curing result of the UV curing light source under different light intensities and the curing control target of the curing control parameter.
[0018] A further technical solution involves determining the light control intensity of the UV curing light source at a reference wet adhesive thickness by combining the comprehensive quality evaluation value of the UV light source under different light intensities, specifically including:
[0019] Based on the lifespan of the UV light source under different light intensities, the lifespan impact factor of the UV light source under different light intensities is determined. The light control intensity of the UV curing light source at the reference wet adhesive thickness is determined by the weighted sum of the lifespan impact factor and the comprehensive quality assessment value.
[0020] A further technical solution involves determining the need for adjustments to the adhesive curing process, specifically including:
[0021] The probability of variation in the coating thickness of the adhesive film is determined based on the coating time of the adhesive film and the deviation of the coating thickness of the adhesive film from the adjacent thickness control range.
[0022] Based on the uniformity assessment results, the probability of variation, and the coating thickness of the coated film, the probability of coating anomalies in the coated film is determined, and the need for adjustment of the coating curing process is determined based on the coating anomaly probability.
[0023] A further technical solution involves adjusting the intensity of the UV light source based on variations in the wet adhesive content of the coated film, specifically including:
[0024] The variation in the coating thickness of the coating film is determined based on the variation in the wet adhesive amount, and the intensity of the UV light source is adjusted according to the variation in the coating thickness of the coating film.
[0025] On the other hand, the present invention provides a computer system comprising: a memory and a processor connected in communication, and a computer program stored in the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes the above-described method for controlling the wet curing of a coated adhesive film.
[0026] Other features and advantages will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of the invention are realized and obtained through the structures particularly pointed out in the description and the drawings.
[0027] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, preferred embodiments are described below in detail with reference to the accompanying drawings. Attached Figure Description
[0028] The above and other features and advantages of the present invention will become more apparent from a detailed description of exemplary embodiments thereof with reference to the accompanying drawings.
[0029] Figure 1 This is a flowchart of a method for controlling the wet curing of a coated adhesive film;
[0030] Figure 2 This is a flowchart illustrating the method for determining the light intensity control of a UV curing light source at a reference wet adhesive thickness.
[0031] Figure 3 This is a flowchart illustrating the method for determining the curing quality factor under different coating thicknesses. Detailed Implementation
[0032] Exemplary embodiments will now be described more fully with reference to the accompanying drawings. However, these exemplary embodiments can be implemented in many forms and should not be construed as limited to the embodiments set forth herein; rather, they are provided so that the invention will be thorough and complete, and the concept of the exemplary embodiments will be fully conveyed to those skilled in the art. The same reference numerals in the drawings denote the same or similar structures, and therefore their detailed description will be omitted.
[0033] The terms “a,” “one,” “the,” and “the” are used to indicate the existence of one or more elements / components / etc.; the terms “including” and “having” are used to indicate an open-ended meaning of inclusion and that other elements / components / etc. may exist in addition to the listed elements / components / etc.
[0034] Example 1
[0035] To solve the above problems, according to one aspect of the present invention, such as Figure 1 As shown, according to one aspect of the present invention, a method for controlling the wet curing of a coated adhesive film is provided, characterized in that it specifically includes:
[0036] S1 determines the curing control parameters of the wet adhesive film based on the application scenario and the influencing factors of different curing control parameters. It also determines the light control intensity of the UV curing light source under the reference wet adhesive thickness by combining the correlation coefficient between the UV curing light source under different light intensities and different curing control parameters.
[0037] Furthermore, the curing control parameters include, but are not limited to, viscosity, peeling degree, insulation parameters, and the time to maintain a preset viscosity.
[0038] Specifically, the influencing factors of the curing control parameters are determined according to the application of the coated adhesive film, and the specific application requires different curing control parameters.
[0039] It is understood that the correlation parameter is determined based on the deviation between the curing result of the UV curing light source under different light intensities and the curing control target of the curing control parameter.
[0040] Specific examples, such as Figure 2As shown, the method for determining the illumination control intensity of the UV curing light source at the reference wet adhesive thickness is as follows:
[0041] The curing quality evaluation values of the UV curing light source under different light intensities were determined by using the influence factors of different curing control parameters and the correlation coefficients between different light intensities and different curing control parameters at different base wet adhesive thicknesses.
[0042] The comprehensive quality assessment value of the UV light source under different light intensities is determined based on the curing quality assessment values of different curing control parameters.
[0043] The lifespan of the UV light source under different light intensities is obtained, and the light control intensity of the UV curing light source under the reference wet adhesive thickness is determined by combining the comprehensive quality evaluation value of the UV light source under different light intensities.
[0044] It is understandable that the illumination control intensity of the UV curing light source at the reference wet adhesive thickness is determined by combining the comprehensive quality evaluation value of the UV light source under different light intensities, specifically including:
[0045] Based on the lifespan of the UV light source under different light intensities, the lifespan impact factor of the UV light source under different light intensities is determined. The light control intensity of the UV curing light source at the reference wet adhesive thickness is determined by the weighted sum of the lifespan impact factor and the comprehensive quality assessment value.
[0046] In another embodiment, the method for determining the illumination control intensity of the UV curing light source at the reference wet adhesive thickness is as follows:
[0047] The light intensity is filtered according to the lifespan of the UV light source under different light intensities to obtain a preset light intensity range, and the preset light intensity is filtered according to the preset light intensity range.
[0048] By determining the influence factors of different curing control parameters and the correlation coefficient between the preset light intensity and different curing control parameters at the reference wet adhesive thickness, the curing quality evaluation value of the UV curing light source at the preset light intensity is determined. It is then determined whether there are curing control parameters whose curing quality evaluation value does not meet the requirements. If so, it is determined that the preset light intensity does not belong to the light intensity control. If not, proceed to the next step.
[0049] The curing quality threshold of the preset light intensity is determined by the service life. It is then determined whether the number of curing control parameters whose curing quality assessment value is less than the curing quality threshold meets the requirements. If yes, proceed to the next step; otherwise, it is determined that the preset light intensity does not belong to the light control intensity.
[0050] Based on the curing quality evaluation values of different curing control parameters, the comprehensive quality evaluation value of the UV light source under the preset light intensity is determined. It is then determined whether the comprehensive quality evaluation value meets the requirements. If yes, proceed to the next step; otherwise, it is determined that the preset light intensity does not belong to the light control intensity.
[0051] The lifespan of the UV light source under different light intensities is obtained, and the light control intensity of the UV curing light source under the reference wet adhesive thickness is determined by combining the comprehensive quality evaluation value of the UV light source under different light intensities.
[0052] In another embodiment, the method for determining the illumination control intensity of the UV curing light source at the reference wet adhesive thickness is as follows:
[0053] The light intensity is filtered according to the lifespan of the UV light source under different light intensities to obtain a preset light intensity range, and the preset light intensity is filtered according to the preset light intensity range.
[0054] The curing quality assessment values of the UV curing light source under the preset light intensity are determined by using the influence factors of different curing control parameters and the correlation coefficients between the preset light intensity at the reference wet adhesive thickness and the different curing control parameters. When there are curing control parameters whose curing quality assessment values do not meet the requirements:
[0055] The curing control parameters are divided into different parameter control intervals by the influencing factors. When the number of curing control parameters whose curing quality assessment values do not meet the requirements in the preset parameter control interval is not met, it is determined that the preset light intensity does not belong to the light intensity control.
[0056] When the number of curing control parameters whose curing quality assessment values within the preset parameter control range do not meet the requirements is sufficient, the curing quality threshold of the preset light intensity is determined by the service life. It is then determined whether the number of curing control parameters whose curing quality assessment values are less than the curing quality threshold meets the requirements. If yes, proceed to the next step; otherwise, it is determined that the preset light intensity does not belong to the light control intensity.
[0057] The comprehensive quality assessment value of the UV light source under the preset light intensity is determined based on the curing quality assessment value of different curing control parameters. When the comprehensive quality assessment value does not meet the requirements, it is determined that the preset light intensity does not belong to the light control intensity.
[0058] When there are no curing control parameters whose curing quality assessment values do not meet the requirements, or when the comprehensive quality assessment value meets the requirements, the preset light intensity is used as the alternative light intensity. The service life of the UV light source under the alternative light intensity is obtained, and the light control intensity of the UV curing light source under the reference wet adhesive thickness is determined by combining the comprehensive quality assessment value of the UV light source under the alternative light intensity.
[0059] S2 controls the curing of the coated film at different coating thicknesses based on the light intensity control to obtain curing results with different curing control parameters at different coating thicknesses. Combined with the influence factors of different curing control parameters, the curing quality factor at different coating thicknesses is determined. The coating thickness is divided into multiple thickness control intervals through the curing quality factor.
[0060] Specific examples, such as Figure 3 As shown, the method for determining the curing quality factor under the coating thickness is as follows:
[0061] Based on the curing results and curing control targets of different curing control parameters under different coating thicknesses, the curing control parameters are divided into unqualified curing parameters and qualified curing parameters.
[0062] The parameter quality assessment quantity of the unqualified curing parameters is determined based on the number of unqualified curing parameters, the curing results of different unqualified curing parameters, and the influence factors of the unqualified curing parameters. The parameter quality assessment quantity of the qualified curing parameters is determined based on the number of qualified curing parameters, the curing results of different qualified curing parameters, and the influence factors of the qualified curing parameters.
[0063] The curing quality factor at the coating thickness is determined by the parameter quality assessment values of the unqualified curing parameters and the parameter quality assessment values of the qualified curing parameters.
[0064] In another embodiment, the method for determining the curing quality factor under the adhesive coating thickness is as follows:
[0065] Based on the curing results and curing control targets of different curing control parameters under different coating thicknesses, the curing control parameters are divided into unqualified curing parameters and qualified curing parameters. It is determined whether the proportion of unqualified curing parameters is greater than a preset proportion. If so, the curing quality factor under the coating thickness is determined by the proportion of unqualified curing parameters. If not, proceed to the next step.
[0066] The parameter quality assessment quantity of qualified curing parameters is determined by the number of qualified curing parameters, the curing results of different qualified curing parameters, and the influence factor of qualified curing parameters. It is then determined whether there are unqualified curing parameters under the coating thickness. If so, proceed to the next step; otherwise, the curing quality factor under the coating thickness is determined by the parameter quality assessment quantity of the curing parameters.
[0067] Based on the number of unqualified curing parameters, the curing results of different unqualified curing parameters, and the influence factors of unqualified curing parameters, the parameter quality assessment quantity of unqualified curing parameters is determined. It is then determined whether the parameter quality assessment quantity of the unqualified curing parameters meets the requirements. If yes, proceed to the next step; otherwise, determine the curing quality factor under the coating thickness by using the parameter quality assessment quantity of the unqualified curing parameters.
[0068] The weight values of the unqualified curing parameters and the qualified curing parameters are determined based on the percentage deviation between the curing results of the unqualified curing parameters and the curing control target, and the percentage deviation between the curing results of the qualified curing parameters and the curing control target. The curing quality factor at the coating thickness is then determined by combining the parameter quality assessment values of the unqualified curing parameters and the parameter quality assessment values of the qualified curing parameters.
[0069] S3 determines the uniformity evaluation result of the coating thickness of the coating film based on the historical coating thickness of the coating film, and proceeds to the next step when the uniformity evaluation result does not meet the requirements;
[0070] Specifically, the method for determining the uniformity evaluation result of the coating thickness of the adhesive film is as follows:
[0071] Based on the historical coating thickness of the coated film, determine the variation in the historical coating thickness of the coated film at different unit lengths and the percentage of unit lengths where the variation meets the requirements. Combined with the percentage of unit lengths where the variation in the historical coating thickness of the coated film at different unit lengths does not meet the requirements and the maximum variation, determine the uniformity evaluation result of the coated film.
[0072] Furthermore, the uniformity evaluation result of the coated film is in the range of 0 to 1. If the uniformity evaluation result is less than the preset uniformity, it is determined that the uniformity evaluation result of the coated film does not meet the requirements.
[0073] In another embodiment, the method for determining the uniformity evaluation result of the coating thickness of the adhesive film is as follows:
[0074] S31 determines the maximum variation of the historical coating thickness of the coating film under different unit lengths based on the historical coating thickness of the coating film, and judges whether the maximum variation meets the requirements. If yes, proceed to the next step; otherwise, proceed to step S34.
[0075] S32 uses coating films with historical variations in coating thickness as screening coating films, and determines whether the length proportion of the screening coating films within a preset time period is less than a preset length proportion. If so, it is determined that the uniformity evaluation result of the coating thickness of the coating film meets the requirements; otherwise, it proceeds to the next step.
[0076] S33 obtains the length percentage of the screened coated film within a preset time period, and determines the problem variation assessment amount of the coated film by combining the historical coating thickness variation of the screened coated film and the percentage of the number of historical coating thickness variations of the coated film at different unit lengths that do not meet the requirements. It then determines whether the problem variation assessment amount meets the requirements. If yes, it determines that the uniformity assessment result of the coating thickness of the coated film meets the requirements. If no, it proceeds to the next step.
[0077] S34 obtains the historical variation of the coating thickness of the coated film under different unit lengths and the percentage of unit lengths where the variation meets the requirements, and determines the uniformity evaluation result of the coated film by combining the uniformity evaluation result of the coating thickness of the coated film and the maximum variation.
[0078] When S4 determines that an adjustment to the curing process is required based on the uniformity evaluation results, the coating time of the coating film, and the deviation of the coating thickness of the coating film from the adjacent thickness control range, the intensity of the UV light source is adjusted based on the variation in the wet adhesive content of the coating film.
[0079] Specifically, adjustments needing to be made to the adhesive curing process include:
[0080] The probability of variation in the coating thickness of the adhesive film is determined based on the coating time of the adhesive film and the deviation of the coating thickness of the adhesive film from the adjacent thickness control range.
[0081] Based on the uniformity assessment results, the probability of variation, and the coating thickness of the coated film, the probability of coating anomalies in the coated film is determined, and the need for adjustment of the coating curing process is determined based on the coating anomaly probability.
[0082] In another embodiment, determining the need for adjustments to cure the adhesive coating specifically includes:
[0083] If the coating time of the adhesive film exceeds the preset time, it is determined that an adjustment for the curing of the adhesive is required.
[0084] When the coating time of the adhesive film is not greater than the preset time but is within the preset coating time range:
[0085] The coating time threshold is determined based on the deviation between the coating thickness of the coated film and the adjacent thickness control range. When the coating time of the coated film is greater than the coating time threshold, it is determined that the coating curing needs to be adjusted.
[0086] When the coating time of the adhesive film is not greater than the coating time threshold, the probability of variation of the coating thickness of the adhesive film is determined based on the coating time of the adhesive film and the deviation of the coating thickness of the adhesive film from the adjacent thickness control range. It is then determined whether the probability of variation of the coating thickness of the adhesive film meets the requirements. If yes, proceed to the next step; otherwise, it is determined that the coating curing needs to be adjusted.
[0087] Based on the uniformity assessment results, the probability of variation, and the coating thickness of the coated film, the probability of coating anomalies in the coated film is determined, and the need to adjust the coating curing process is determined based on the coating anomaly probability.
[0088] When the coating time of the adhesive film is not greater than the preset time but is not within the preset coating time range:
[0089] Therefore, it is determined that no adjustment is needed for the adhesive curing process.
[0090] Furthermore, the intensity of the UV light source is adjusted based on the variation in the wet adhesive content of the coated film, specifically including:
[0091] The variation in the coating thickness of the coating film is determined based on the variation in the wet adhesive amount, and the intensity of the UV light source is adjusted according to the variation in the coating thickness of the coating film.
[0092] Example 2
[0093] On the other hand, the present invention provides a computer system comprising: a memory and a processor connected in communication, and a computer program stored in the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes the above-described method for controlling the wet curing of a coated adhesive film.
[0094] Through the above embodiments, this application achieves the following technical effects:
[0095] 1. The light intensity of the UV curing light source at the reference wet adhesive thickness is determined based on the influence factors of different curing control parameters and the correlation coefficients with different curing control parameters. This not only considers the curing results of a single curing control parameter under different light intensities, but also integrates it with actual application scenarios, thereby achieving differentiated consideration of different curing control parameters, thus ensuring the reliability of light intensity control and the reliability of curing process.
[0096] 2. The intensity of UV light source illumination is adjusted based on the variation of wet adhesive content in the coated film. This avoids the technical problem of inaccurate curing results caused by the UV light source illumination intensity not changing accordingly when the coating thickness of the original coated film changes. This improves the reliability of the curing process of the coated film and also reduces the technical problem of the efficiency of comparison processing being difficult to meet requirements due to frequent comparisons. It ensures differentiated control of the UV light source illumination intensity used for curing the coated film.
[0097] The various embodiments in this specification are described in a progressive manner. Similar or identical parts between embodiments can be referred to mutually. Each embodiment focuses on describing the differences from other embodiments. In particular, the embodiments of apparatus, devices, and non-volatile computer storage media are basically similar to the method embodiments, so the descriptions are relatively simple; relevant parts can be referred to the descriptions of the method embodiments.
[0098] The foregoing has described specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims may be performed in a different order than that shown in the embodiments and may still achieve the desired result. Furthermore, the processes depicted in the drawings do not necessarily require the specific or sequential order shown to achieve the desired result. In some embodiments, multitasking and parallel processing are possible or may be advantageous.
[0099] The above description is merely one or more embodiments of this specification and is not intended to limit this specification. Various modifications and variations can be made to the one or more embodiments of this specification by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of one or more embodiments of this specification should be included within the scope of the claims of this specification.
Claims
1. A method for controlling the wet curing of a coated adhesive film, characterized in that, Specifically, it includes: Based on the application scenario, the curing control parameters of the wet adhesive film and the influencing factors of different curing control parameters are determined. The light control intensity of the UV curing light source under the reference wet adhesive thickness is determined by combining the correlation coefficient between the UV curing light source under different light intensities and different curing control parameters. The curing control of the coated film under different coating thicknesses is performed based on the light intensity control to obtain curing results with different curing control parameters under different coating thicknesses. The curing quality factor under different coating thicknesses is determined by combining the influence factors of different curing control parameters. The coating thickness is divided into multiple thickness control intervals by the curing quality factor. The uniformity evaluation result of the coating thickness of the coating film is determined based on the historical coating thickness of the coating film, and if the uniformity evaluation result does not meet the requirements, proceed to the next step; When it is determined that adjustments to the coating curing are needed based on the uniformity evaluation results, the coating time of the coating film, and the deviation of the coating thickness of the coating film from the adjacent thickness control range, the intensity of the UV curing light source is adjusted based on the variation of the wet adhesive amount of the coating film.
2. The method for controlling the wet curing of the coated adhesive film as described in claim 1, characterized in that, The curing control parameters include, but are not limited to, viscosity, peel strength, insulation parameters, and the time required to maintain a preset viscosity.
3. The method for controlling the wet curing of the coated adhesive film as described in claim 1, characterized in that, The influencing factors of the curing control parameters are determined according to the application of the coated film, and the specific application requires different curing control parameters.
4. The method for controlling the wet curing of the coated adhesive film as described in claim 1, characterized in that, The correlation coefficient is determined based on the deviation between the curing results of the UV curing light source under different light intensities and the curing control target of the curing control parameters.
5. The method for controlling the wet curing of the coated adhesive film as described in claim 1, characterized in that, The method for determining the illumination control intensity of the UV curing light source at the reference wet adhesive thickness is as follows: The curing quality evaluation values of the UV curing light source under different light intensities were determined by using the influence factors of different curing control parameters and the correlation coefficients between different light intensities and different curing control parameters at different base wet adhesive thicknesses. The comprehensive quality assessment value of the UV light source under different light intensities is determined based on the curing quality assessment values of different curing control parameters. The lifespan of the UV light source under different light intensities is obtained, and the light control intensity of the UV curing light source under the reference wet adhesive thickness is determined by combining the comprehensive quality evaluation value of the UV light source under different light intensities.
6. The method for controlling the wet curing of the coated adhesive film as described in claim 1, characterized in that, The method for determining the curing quality factor under the coating thickness is as follows: Based on the curing results and curing control targets of different curing control parameters under different coating thicknesses, the curing control parameters are divided into unqualified curing parameters and qualified curing parameters. The parameter quality assessment quantity of the unqualified curing parameters is determined based on the number of unqualified curing parameters, the curing results of different unqualified curing parameters, and the influence factors of the unqualified curing parameters. The parameter quality assessment quantity of the qualified curing parameters is determined based on the number of qualified curing parameters, the curing results of different qualified curing parameters, and the influence factors of the qualified curing parameters. The curing quality factor at the coating thickness is determined by the parameter quality assessment values of the unqualified curing parameters and the parameter quality assessment values of the qualified curing parameters.
7. The method for controlling the wet curing of the coated adhesive film as described in claim 1, characterized in that, The method for determining the uniformity evaluation result of the coating thickness of the adhesive film is as follows: Based on the historical coating thickness of the coated film, determine the variation in the historical coating thickness of the coated film at different unit lengths and the percentage of unit lengths where the variation meets the requirements. Combined with the percentage of unit lengths where the variation in the historical coating thickness of the coated film at different unit lengths does not meet the requirements and the maximum variation, determine the uniformity evaluation result of the coated film.
8. The method for controlling the wet curing of the coated adhesive film as described in claim 7, characterized in that, The uniformity evaluation result of the coated film is between 0 and 1. If the uniformity evaluation result is less than the preset uniformity, it is determined that the uniformity evaluation result of the coated film does not meet the requirements.
9. The method for controlling the wet curing of the coated adhesive film as described in claim 1, characterized in that, The adjustments required for adhesive curing include: The probability of variation in the coating thickness of the adhesive film is determined based on the coating time of the adhesive film and the deviation of the coating thickness of the adhesive film from the adjacent thickness control range. Based on the uniformity assessment results, the probability of variation, and the coating thickness of the coated film, the probability of coating anomalies in the coated film is determined, and the need for adjustment of the coating curing process is determined based on the coating anomaly probability.
10. A computer system, comprising: A memory and processor connected in communication, and a computer program stored in the memory and capable of running on the processor, characterized in that: when the processor runs the computer program, it executes a method for controlling the wet curing of a coated adhesive film as described in any one of claims 1-9.
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