Hot air supply circulating air drying device for coiled materials
By designing a hot air replenishment and circulating air drying device for roll materials, precise control and automatic adjustment of the internal environment of the drying oven were achieved, solving the problems of unstable drying effect, high energy consumption and complicated operation, and improving drying efficiency and product quality.
Patent Information
- Application Number
- CN202520487759.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-19
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-03-19
AI Technical Summary
Existing drying ovens cannot achieve precise temperature, humidity and air speed control during the drying process, resulting in unstable drying effect, complicated operation, high energy consumption, and difficulty in adapting to the drying needs of materials in motion.
Design a hot air supply and circulating air drying device for roll materials, including temperature, humidity and wind speed adjustment units, using high-precision sensors and automatic control system, combined with built-in electric heating device and circulating fan, to achieve precise control and automatic adjustment of the internal environment of the drying oven.
It improves drying efficiency and quality, reduces energy consumption, lowers operational difficulty, is highly adaptable, can meet the drying needs of materials in motion, and ensures product quality.
Smart Images

Figure CN223965810U_ABST
Abstract
Description
Technical Field
[0001] This technical solution mainly involves the technical fields of "industrial drying oven technology", "environmental temperature and humidity control technology", and "automated temperature and humidity control technology", and in particular, it relates to a hot air supply and circulating air drying device for roll materials. Background Technology
[0002] In the production of in vitro diagnostic test strips, the drying of the roll film is a crucial step that directly affects the product's quality and performance. Traditional roll drying equipment typically only has basic heating functions and lacks precise control over the internal environment of the drying oven. This results in unstable drying effects, high energy consumption, and ineffective moisture removal, affecting the uniformity and quality of the drying process. To ensure drying effectiveness, some rolls are often placed in large drying chambers using hot air drying. These ovens often employ simple hot air circulation systems without automatic adjustment functions, requiring operators to monitor and adjust the oven's operating status in real time, increasing labor intensity and operational difficulty.
[0003] Some drying ovens, while equipped with temperature and humidity detection functions, lack effective moisture removal mechanisms. This prevents timely removal of moisture from the oven's interior under high humidity conditions, affecting drying efficiency and product quality. Other ovens, although designed with moisture removal systems, fail to automatically adjust the removal rate based on actual humidity changes, resulting in inaccurate moisture removal, wasted energy, and potential environmental pollution.
[0004] Furthermore, most existing drying ovens are designed for fixed-position drying of specific materials, making them unsuitable for the efficient drying of materials in motion. Additionally, temperature control of materials in motion requires addressing heat loss and replenishment to achieve a relatively constant temperature within the oven.
[0005] To address the aforementioned issues, existing oven technology solutions have the following shortcomings:
[0006] 1. For drying membrane materials during operation, the internal environment of the drying oven is not precisely controlled, and automatic adjustment of temperature and humidity cannot be achieved, resulting in unstable drying effect.
[0007] 2. Existing drying ovens are mainly used for the closed drying of stationary materials, and are not suitable for the stable drying of materials in motion.
[0008] 3. The operation is complex, requiring manual monitoring and adjustment of the oven's working status, which increases labor intensity and operational difficulty.
[0009] 4. High energy consumption and lack of energy-saving measures such as energy reuse lead to increased production costs. Utility Model Content
[0010] Based on this, this technical solution mainly solves the following problems: 1) Traditional drying ovens cannot achieve precise control of temperature, humidity and wind speed, resulting in unstable drying effect; 2) For drying materials in motion, it is necessary to solve the technical problems of heat loss and maintaining efficient drying within a specific temperature range; 3) Complex operation, requiring manual monitoring and adjustment of the oven's working status, increasing labor intensity and operational difficulty; 4) High energy consumption, lack of energy-saving measures such as hot air circulation, leading to energy waste; 5) Traditional drying ovens cannot provide uniform wind speed, affecting the basic problem of drying uniformity and efficiency.
[0011] The purpose of this invention is to overcome the shortcomings of the prior art and provide a hot air supply and circulating air drying device for rolled materials. This device features precise internal environment control, automatic temperature and humidity adjustment, automatic moisture removal, energy saving, and adjustable air speed.
[0012] To solve the above-mentioned technical problems, the present invention achieves its objective as follows: The present invention relates to a hot air supply and circulating air drying device for rolled materials, comprising a temperature regulation unit, a humidity regulation unit, a wind speed regulation unit, a device body, and a control unit.
[0013] The equipment body is divided into multiple areas by internal partitions: a mixing chamber for return air and fresh air from the drying zone, an airflow heating zone with an electric heating device installed in the return air duct, and a drying zone with a wind speed sensor, a humidity sensor, and a temperature sensor installed.
[0014] The temperature control unit includes a temperature sensing component and a temperature control component. The temperature sensing component adopts one or more of the following: thermocouple, resistance temperature detector (RTD), thermistor, integrated temperature sensor, and infrared temperature sensor. For example, a thermocouple is selected, with a measurement accuracy of ±0.5℃ and a response time of less than 1 second.
[0015] Temperature control components: including an electric heating element and an electric heating PI film.
[0016] Electric heating device: Three PTC electric heaters are selected and located after the fresh air controller in front of the circulating fan. Each PTC electric heater has a power of 500W. The controller controls the temperature and energization frequency of the heaters to heat and control the airflow passing through them.
[0017] Electrothermal PI film: It is set parallel to the running direction of the film material to be dried, at a distance of 8mm from the film material to be dried, and can provide stable radiant heat to the film material to be dried, with a radiant heat power of 200W / m².
[0018] The humidity control unit includes a humidity sensing component and a humidity control component:
[0019] Humidity sensing components: One or more of lithium chloride humidity sensors, carbon humidity-sensitive elements, or polymer thin-film capacitive humidity sensors are used. For example, a lithium chloride humidity sensor is selected, with a measurement accuracy of ±3%RH and a response time of less than 5 seconds.
[0020] Humidity control components: These include an exhaust element installed above the drying zone. The exhaust element is electrically controlled and automatically adjusts the size of the exhaust opening or the exhaust volume based on the difference between the airflow humidity value and the set target value.
[0021] The wind speed regulation unit includes a wind speed sensor and wind speed regulation components:
[0022] Wind speed sensing component: A thermal wind speed sensing component is selected, with a measurement accuracy of ±0.1m / s and a response time of less than 2 seconds;
[0023] The airflow regulation component includes a fresh air controller and a circulating fan. The fresh air controller, installed at the fresh air inlet, is a combination of a fan and a valve. The fan speed range is 0-3000 rpm, and the valve opening range is 0-100%. It can adjust the fresh air intake based on data from wind speed, temperature, and humidity sensors. The airflow regulation component also includes bottom air outlets and air outlets on the surface of the hollow roller. Hot air can be dispersed into the drying area via the air circulation supply component. The hollow roller is directly connected to the heated mixed air, enabling direct dispersion of hot air into the drying area and preventing the membrane width from obstructing the transfer of hot air from the bottom.
[0024] Circulating fan: A centrifugal fan is selected and installed in the circulating air duct, located after the electric heating device. The fan's air volume range is 1000-5000 m³ / h, and the wind speed range is 5-20 m / s. Based on the wind speed sensor value, the fresh air and return air are mixed and passed through the heating zone at a certain wind speed. The circulating air volume is changed according to the adjustment target.
[0025] Control unit: Connected to the temperature control unit, humidity control unit, and fan speed control unit, including control components and display components.
[0026] Control components: A PLC controller is used to achieve precise control and adjustment of each unit;
[0027] Display component: It is a 10-inch LCD screen with a resolution of 1920×1080, which can display parameters such as temperature, humidity, and wind speed in real time.
[0028] In some embodiments, the oven further includes:
[0029] The upper and lower rotating shafts are located in the film drying area and can be used to wind the roll material up and down to improve drying efficiency. The last rotating shaft before the roll material is output from the oven is also equipped with a torque motor to drive it, which can transmit and eliminate the friction force generated on the roll material in the drying area, and pull the roll material through the oven under low tension.
[0030] The beneficial effects of this utility model are as follows: 1. Improved drying efficiency: The hot air supply and circulating air drying device of this utility model can quickly and evenly heat the film material through a hot air circulation system, thus improving drying efficiency. 2. Precise temperature, humidity, and wind speed control: Through built-in temperature, humidity, and wind speed sensors, this utility model can monitor the temperature, humidity, and wind speed inside the oven in real time, and automatically adjust the electric heating device, fresh air controller, circulating fan, and exhaust device according to the monitoring results to ensure a stable internal environment and improve drying quality. 3. Energy saving and consumption reduction: The oven of this utility model reduces energy consumption by adjusting the ratio of circulating air volume to fresh air volume through a circulating fan, and further reduces energy consumption by providing radiant heat through the PI film. 4. Automated operation: The oven of this utility model has automated hot air circulation and moisture warning and exhaust functions, reducing manual operation and improving production efficiency and safety. 5. Strong adaptability: The oven design of this utility model can adapt to the drying needs of materials in motion, avoiding problems such as large temperature fluctuations and poor drying effect, and has strong adaptability and flexibility. 6. Improved Product Quality: By precisely controlling the temperature, humidity, and airflow during the drying process, this invention effectively avoids damage to the film material caused by excessively high temperature, unsuitable humidity, or uneven drying, thus improving product quality. 7. By using a torque motor to transmit and eliminate the frictional force generated on the roll material on the roller in the drying zone, this invention reduces the tension of the roll material during the drying process, improving the stability and service life of the equipment. Attached Figure Description
[0031] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.
[0032] Figure 1 This is a schematic diagram of the structure of a hot air supply and circulating air drying device for rolled materials according to the present invention;
[0033] Figure 2 This is a left view of a hot air supply and circulating air drying device for rolled materials according to this utility model;
[0034] Figure 3This is a front view of a hot air supply and circulating air drying device for rolled materials according to this utility model; Detailed Implementation
[0035] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0036] It should be noted that all directional indicators (such as up, down, left, right, front, back, etc.) in this utility model embodiment are only used to explain the relative positional relationship and movement of each component in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicator will also change accordingly.
[0037] In addition, the term "and / or" in the text includes three solutions. Taking A and / or B as an example, it includes technical solution A, technical solution B, and technical solution that satisfies both A and B. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of a person skilled in the art to implement them. When the combination of technical solutions is contradictory or cannot be implemented, it should be considered that such combination of technical solutions does not exist and is not within the scope of protection claimed by this utility model.
[0038] Example 1
[0039] like Figure 1 - Figure 3 As shown, this application provides a technical solution: a hot air supply and circulating air drying device for rolled materials, including a temperature control unit, a humidity control unit, a wind speed control unit, a material conveying unit, a device body 80, and a control unit.
[0040] The equipment body 80 is divided into multiple areas by partitions 81. The area includes the mixing chamber of return air and fresh air in the film drying area 813, the airflow heating area 811 with a fresh air controller and an electric heating device, and the drying area 813 with a wind speed sensor 50, a humidity sensor 60, and a temperature sensor 90.
[0041] The temperature control unit includes a temperature sensing component 90 and a temperature control component, which can realize real-time temperature display and adjustment;
[0042] The temperature sensing component 90 is one or more of the following: thermocouple, resistance temperature detector (RTD), thermistor, integrated temperature sensor, and infrared temperature sensor.
[0043] The temperature regulating component includes an electric heating device 20 and an electric heating PI film 83;
[0044] Specifically, the electric heating device 20 is a PTC electric heater. It is located after the fresh air controller in front of the circulating fan, with at least one unit installed. The controller controls the temperature and frequency of operation of the electric heating device to heat and control the airflow passing through it. The electric heating device 20 is located on the partition 81 within the airflow heating zone 811. It can adjust its power according to the airflow temperature to maintain the target temperature. For example, when the internal pressure difference is 8 Pa, the circulating fan speed increases to 1500 rpm, and the circulating airflow increases to 800 m³ / h. The electric heating device 20 is horizontally multi-layered to ensure stable inlet air temperature. It is vertically positioned to the outlet of the fresh air controller 10, allowing fresh air to be heated and mixed upon impact. If the temperature decreases, the electric heating power is increased; otherwise, the power is decreased.
[0045] Specifically, the electric heating PI film 83 is set parallel to the running direction of the film material to be dried, and the electric heating PI film 83 is 5-10mm away from the film material to be dried, so as to provide stable radiant heat to the film material to be dried.
[0046] The humidity control unit includes a humidity sensing component 60 and a humidity control component 70, which can realize real-time display and adjustment of humidity;
[0047] The humidity sensing component 60 is one or more of a lithium chloride humidity sensor, a carbon humidity-sensitive element, or a polymer thin-film capacitive humidity sensor.
[0048] The humidity control unit 70 includes an exhaust element installed on the upper part of the drying zone 813. The exhaust element can adjust the air volume of the exhaust element according to the difference between the airflow humidity value and the set target value. The exhaust element includes an electric control device or a manual control device, which can control the amount of air exhausted from the drying zone.
[0049] Specifically, the electric control device is located at the top of the oven and can automatically adjust the size of the exhaust opening or the exhaust volume according to the data output by the humidity sensor to control the exhaust volume.
[0050] Specifically, the manual control device is located at the top of the oven, which can manually control the air volume. Then, based on the data output by the humidity sensor, it automatically adjusts the fresh air intake and the circulating air volume of the circulating fan. As the humidity value increases, the exhaust volume increases, thus achieving humidity control.
[0051] The wind speed regulation unit includes a wind speed sensor 50 and a wind speed regulation component, which can realize the real-time display and regulation of wind speed;
[0052] The wind speed sensing component 50 is one or more of the following: mechanical wind speed sensing component, thermal wind speed sensing component, and ultrasonic wind speed sensing component.
[0053] The airflow regulation component includes a fresh air controller 10 and a circulating fan 30, which can regulate the airflow in the drying device.
[0054] Specifically, the fresh air controller 10 is installed at the fresh air inlet and can adjust the fresh air intake based on the data from the wind speed sensor 50, temperature sensor 90 and humidity sensor 60.
[0055] Specifically, the fresh air controller 10 is one or both of a fan or a valve, which can control the air volume;
[0056] The wind speed regulating component also includes bottom air outlets and air outlets on the surface of the hollow roller, and hot air can be dispersed and delivered to the dryer through the air circulation supply component;
[0057] The hollow roller is directly connected to the heated mixed air, enabling the hot air to be directly and dispersed into the drying area, avoiding the blockage of hot air transmission at the bottom due to the width of the membrane material.
[0058] Specifically, the circulating fan 30 is installed in the circulating air duct, located after the electric heating device 20. It can mix fresh air and return air according to the wind speed sensor value and then pass through the heating zone at a certain wind speed. The circulating air volume is changed according to the adjustment target.
[0059] Specifically, the circulating fan 30 is a centrifugal fan or a ducted fan, which can stably deliver the heated air into the drying area.
[0060] The material conveying unit includes upper and lower rotating shafts located in the film drying area. These shafts can convey the roll material up and down, improving drying efficiency. The last rotating shaft before the roll material exits the oven is also equipped with a torque motor to drive it. This motor can transmit and eliminate the friction generated on the roll material in the drying area, pulling the roll material through the oven under low tension.
[0061] The control unit is connected to the temperature regulation unit, humidity regulation unit, wind speed regulation unit, and material conveying unit. It includes control components and display components, and can realize the display and control of each unit.
[0062] The hot air supply and circulation drying device for roll film in this embodiment, through the reasonable setting of each air zone, can achieve adjustable fresh air and circulating air, hot air circulation, efficient removal of moisture, and stable and controllable wind speed. It can achieve stable hot air circulation while ensuring reduced heat loss, thereby improving the drying efficiency of roll film, increasing drying effect, and reducing drying time.
[0063] The above description is only a preferred embodiment of the present utility model and does not limit the patent scope of the present utility model. All equivalent structural transformations made under the inventive concept of the present utility model using the contents of the present utility model specification and drawings, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present utility model.
Claims
1. A hot air supply and circulating air drying device for rolled materials, characterized in that, The device comprises a temperature adjusting unit, a humidity adjusting unit, a wind speed adjusting unit, a device body and a control unit: The temperature adjusting unit comprises a temperature sensing component and a temperature adjusting component, which can realize real-time display and adjustment of temperature, and the temperature adjusting component comprises an electric heating device and an electric heating PI film; The humidity adjusting unit comprises a humidity sensing component and a humidity adjusting component, which can realize real-time display and adjustment of humidity; The wind speed adjusting unit comprises a wind speed sensor and a wind speed adjusting component, which can realize real-time display and adjustment of wind speed; The device body is divided into multiple areas by a partition, and a new air controller and a wind flow heating area provided with an electric heating device are installed in a mixed cavity of return air and fresh air from a film material drying area, and a drying area provided with a wind speed sensor, a humidity sensor and a temperature sensor; The control unit is connected with the temperature adjusting unit, the humidity adjusting unit and the wind speed adjusting unit, and comprises a control component and a display component, which can realize display and control of each unit.
2. The roll material hot air supply circulating air drying device according to claim 1, wherein: The temperature sensing component is one or more of a thermocouple, a thermal resistor, a thermistor, an integrated temperature sensor and an infrared temperature sensor; The electric heating device is a PTC electric heater, and the electric heating device is located behind the new air controller in front of the circulating fan, and at least one piece is provided, and the controller controls the temperature value and the power frequency to achieve heating and temperature control of the air flow passing through the electric heating device; The electric heating PI film is arranged in parallel with the running direction of the film to be dried, and the distance between the electric heating PI film and the film to be dried is 5-10 mm, which can provide stable radiant heat for the film to be dried.
3. The roll material hot air supply circulating air drying device according to claim 1, wherein: The humidity sensing component is one or more of a lithium chloride humidity sensor, a carbon humidity sensing element or a polymer film capacitive humidity sensor; The humidity adjusting component comprises an exhaust element, which is installed on the upper part of the drying area, and the exhaust amount of the exhaust element can be adjusted according to the difference between the wind flow humidity value and the set target value.
4. The roll material hot air supply circulating air drying device according to claim 1, wherein: The wind speed sensing component is one or more of a mechanical wind speed sensing component, a thermal wind speed sensing component and an ultrasonic wind speed sensing component; The wind speed adjusting component comprises a new air controller and a circulating fan, which can realize adjustment of the air volume in the drying device.
5. The roll material hot air supply circulating air drying device according to claim 4, wherein: The wind speed adjusting component further comprises a bottom air outlet hole and a hollow reel surface air outlet hole, and the hot air can be dispersed and sent into the drying area through the air circulation supply component; The hollow reel is directly communicated with the mixed air after heating, which can realize direct dispersion of the hot air to the drying area, and avoid blocking of the bottom hot air transmission due to the width of the film.
6. The roll material hot air supply circulating air drying device according to claim 4, wherein: The new air controller is installed at the new air inlet, and the amount of new air can be adjusted according to the data of the wind speed sensor, the temperature sensor and the humidity sensor. The circulating fan is installed in the circulating air duct behind the electric heating device, and can mix fresh air and return air according to the wind speed sensing value, pass through the heating area at a certain wind speed, and change the circulating air volume according to the adjustment target.
7. The hot air supply circulating air drying device for the web material according to claim 6, characterized in that, The fresh air controller is one or both of a fan and a valve, which can control the air volume; The circulating fan is a centrifugal fan or a duct fan, which can stably send the heated hot air into the drying area.
8. The hot air supply circulating air drying device for the web material according to claim 3, characterized in that, The exhaust element includes an electric control device or a manual control device, which can control the exhaust volume of the drying area; The electric control device is located at the upper part of the oven, and can automatically adjust the exhaust opening size or the exhaust volume according to the output data of the humidity sensor to achieve the control of the exhaust volume; The manual control device is located at the upper part of the oven, and can realize the manual control of the exhaust volume, and then automatically adjust the fresh air entering amount and the circulating fan circulating air volume according to the output data of the humidity sensor, so that the humidity value is controlled.
9. The web through-air replenishment drying apparatus of Claim 3, wherein, Further comprising, The material conveying unit includes upper and lower rotating shafts, which are located in the film material drying area and can convey the web material up and down to improve the drying efficiency. The last rotating shaft before the web material output oven is also provided with a torque motor to drive, which can conduct and eliminate the friction force generated by the web material on the rotating shaft in the drying area, and pull the web material through the oven in a low tension state.