Control method for clothing processing equipment and clothing processing equipment
The control method for clothing treatment equipment addresses the issue of damage to special care materials by using external low-temperature air for drying, enhancing care and energy efficiency while reducing component costs and preventing bacterial growth.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- QINGDAO HAIER WASHING ELECTRIC APPLIANCES CO LTD
- Filing Date
- 2024-06-13
- Publication Date
- 2026-06-22
AI Technical Summary
Conventional washing machines often cause damage to clothes made of special care materials like wool or silk during drying due to inadequate temperature adjustment, leading to increased energy consumption.
A control method for clothing treatment equipment that transports external low-temperature air into the treatment drum, selectively operating a low-temperature dehumidification mode based on the garment material, and includes steps to obtain the garment material and weight to optimize drying conditions.
Prevents clothing damage, saves energy, reduces the need for additional components like condensers, and improves user experience by preventing mold and bacterial growth.
Smart Images

Figure 2026520181000001_ABST
Abstract
Description
Technical Field
[0001] This application claims the priority of the Chinese patent application with the application number 202310710322.4, filed on June 14, 2023, and all the content of the above Chinese patent application is incorporated herein by reference.
[0002] The present invention relates to the technical field of clothing treatment equipment, and specifically provides a control method for clothing treatment equipment and a clothing treatment equipment.
Background Art
[0003] Conventional washing machines often have a drying function. However, after washing clothes made of special care materials such as wool or silk, the adjustment of the drying temperature is often slower than the actual temperature of the inner drum. Therefore, if the drying temperature is too high, it will cause damage to the clothes, and long-term drying will increase power energy consumption.
[0004] Therefore, in this field, in order to solve the problem of conventional washing machines that are prone to causing clothing damage when drying clothes made of special care materials, a new control method for clothing treatment equipment is needed.
Summary of the Invention
Problems to be Solved by the Invention
[0005] The purpose of the present invention is to solve the above technical problems, that is, to solve the problem of conventional washing machines that are prone to causing clothing damage when drying clothes made of special care materials.
Means for Solving the Problems
[0006] According to a first aspect, the present invention provides a control method for a clothing treatment device, wherein the clothing treatment device is configured to transport external low-temperature air into a clothing treatment drum. The control method includes a step of obtaining the clothing material in the clothing treatment drum. This application claims the priority of the Chinese patent application with the application number 202310710322.4, filed on June 14, 2023, and all the content of the above Chinese patent application is incorporated herein by reference.
[0002] The present invention relates to the technical field of clothing treatment equipment, and specifically provides a control method for clothing treatment equipment and a clothing treatment equipment.
Background Art
[0003] Conventional washing machines often have a drying function. However, after washing clothes made of special care materials such as wool or silk, the adjustment of the drying temperature is often slower than the actual temperature of the inner drum. Therefore, if the drying temperature is too high, it will cause damage to the clothes, and long-term drying will increase power energy consumption.
[0004] Therefore, in this field, in order to solve the problem of conventional washing machines that are prone to causing clothing damage when drying clothes made of special care materials, a new control method for clothing treatment equipment is needed.
Summary of the Invention
Problems to be Solved by the Invention
[0005] The purpose of the present invention is to solve the above technical problems, that is, to solve the problem of conventional washing machines that are prone to causing clothing damage when drying clothes made of special care materials.
Means for Solving the Problems
[0006] According to a first aspect, the present invention provides a control method for a clothing treatment device, wherein the clothing treatment device is configured to transport external low-temperature air into a clothing treatment drum. The control method includes a step of obtaining the clothing material in the clothing treatment drum. The process includes the step of selectively operating a low-temperature dehumidification mode, which involves transporting low-temperature external air into the garment processing drum based on the garment material.
[0007] In the above-mentioned preferred technical proposal for a method of controlling the garment processing equipment, the step of "selectively operating the low-temperature dehumidification mode based on the garment material" is: If the garment material is a special care material, the process further includes the step of operating the low-temperature dehumidification mode for a preset time.
[0008] In the above-described preferred technical proposal for a control method of the garment processing equipment, before the step of "acquiring the garment material in the garment processing drum," the control method is: Steps to obtain the weight of the clothing, The procedure includes the step of operating the outside air intake mode for a preset time if the clothing weight is greater than the first preset weight.
[0009] In the above-mentioned preferred technical proposal for a control method of the garment processing equipment, the step of "acquiring the garment material in the garment processing drum" is: If the garment weight is less than or equal to a first preset weight, the process further includes the step of obtaining the garment material in the garment processing drum.
[0010] In the above-described preferred technical proposal for a control method of the garment processing equipment, before the step of "acquiring garment weight", the control method is: The process includes the step of the garment processing equipment running a normal garment processing program.
[0011] In the above-mentioned preferred technical proposal for a control method of the garment processing equipment, the low-temperature dehumidification mode is: The system further includes controlling the airflow velocity to a first preset velocity and rotating the garment processing drum at a first preset rotational speed.
[0012] In the above-mentioned preferred technical proposal for a control method of the garment processing equipment, the outside air introduction mode is: The airflow velocity is controlled to a second preset velocity, and the garment processing drum rotates at a second preset rotational speed, wherein the first preset rotational speed is greater than the second preset rotational speed, and the first preset velocity is greater than the second preset velocity.
[0013] In the above-mentioned preferred technical proposal for a method of controlling the garment processing equipment, the step of "selectively operating the low-temperature dehumidification mode based on the garment material" is: If the garment material is a normal care material, the process further includes the step of operating the outside air intake mode.
[0014] In the above-mentioned preferred technical proposal for a control method of clothing processing equipment, the control method is: The steps include: the garment processing equipment operates a special garment processing program, The further step includes operating the low-temperature dehumidification mode directly after the clothes have been dehydrated.
[0015] The present invention further provides a garment processing device. The garment processing device includes a controller and a memory, the memory being suitable for storing a plurality of program codes, the program codes being loaded and executed by the controller being suitable for performing the method of controlling the garment processing device described in any one of the above technical proposals.
[0016] As those skilled in the art will understand, the method for controlling a garment processing apparatus of the present invention includes the steps of obtaining the material of the garment and selectively operating a low-temperature dehumidification mode, which includes transporting low-temperature ambient air into the garment processing drum, based on the material of the garment. [Effects of the Invention]
[0017] When the above technical solution is adopted, when the clothing material is a material that requires special care, for example, when the clothing material is a material that requires special care such as silk or wool, the clothing can be directly dried by the low-temperature air in nature, without the need to heat the air, protecting the clothing, preventing clothing damage, improving the clothing care effect, further saving electrical energy, and also, the external air can blow out impurities such as flocks on the clothing outside the clothing treatment drum, and the water vapor also blows out directly outside the clothing treatment drum, without the need to install a condenser to condense the circulating water vapor, greatly reducing the cost of the drying care module and correspondingly reducing the overall cost of the device. In addition, if the user does not take out the laundry and dry it for a long time after washing the clothes, there is a possibility that mold may grow or bacteria may breed on the clothes. By transporting outside air into the clothing treatment drum, the occurrence of the above problems can be prevented and the user experience can be improved.
[0018] Hereinafter, preferred embodiments of the present invention will be described with reference to the drawings.
Brief Description of the Drawings
[0019] [Figure 1] It is the main step flowchart of the control method of the clothing treatment device of the present invention. [Figure 2] It is the specific step flowchart of the control method of the clothing treatment device of the present invention.
Embodiments for Carrying out the Invention
[0020] Hereinafter, preferred embodiments of the present invention will be described with reference to the drawings. Those skilled in the art should understand that these embodiments are merely for explaining the technical principles of the present invention and are not intended to limit the protection scope of the present invention. Those skilled in the art can make adjustments as needed to adapt to specific applications. For example, in this application, a washing machine is described, but this is not limiting. The control method of the clothing treatment device of the present invention can clearly also be applied to other devices for clothing treatment. For example, the clothing treatment device may be a sock washer, a shoe washer, a clothing care device, etc.
[0021] Furthermore, the terms "first" and "second" are merely for explanatory purposes and should not be understood as indicating or implying relative importance.
[0022] Furthermore, in the description of the present invention, unless there are specific and clear regulations and limitations, the term "communicate" should be understood in a broad sense. For example, the interiors of two elements may communicate directly, or may communicate indirectly through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the present invention can be understood according to the specific situation.
[0023] In order to solve the problem of conventional washing machines that are prone to damage when drying clothes made of special materials such as wool and silk, the present invention provides a control method for a clothing treatment device. The clothing treatment device is configured to be able to transport external low-temperature air into the clothing treatment drum. Specifically, the clothing treatment device includes a first duct. One end of the first duct communicates with the outside of the clothing treatment device, and the other end of the first duct communicates with the inside of the clothing treatment drum. A fan is provided in the first duct, so that after starting the fan, external air can be transported into the clothing treatment drum. However, the clothing treatment device may not be provided with the first duct, and instead, air may be directly transported into the clothing treatment drum through the fan. Those skilled in the art can install the structure of the clothing treatment device by themselves as needed. In the present invention, there is no limitation on the specific structure of the clothing treatment device, as long as the clothing treatment device can transport external air into the clothing treatment drum.
[0024] Specifically, as shown in Figure 1, the control method for garment processing equipment is mainly: Step S100 involves obtaining the material of the clothing, The system includes step S200, which selectively operates a low-temperature dehumidification mode based on the material of the clothing.
[0025] The low-temperature dehumidification mode involves activating the fan and having the first duct transport low-temperature air from the outside environment into the garment processing drum. This allows garments made of materials requiring special care, such as silk or wool, to be dried directly with low-temperature air from the outside environment, eliminating the need to heat the air, protecting the garments, preventing damage, improving the garment care effect, and saving electrical energy. Furthermore, the outside air can blow away flocks and other debris from the garment processing drum, and water vapor is also blown directly out of the drum, eliminating the need to install a condenser to condense circulating water vapor. This significantly reduces the cost of the drying care module and, consequently, the overall cost of the device. Additionally, if a user leaves their laundry unattended for a long time after washing, mold or bacteria may grow on the clothes. Transporting outside air into the garment processing drum prevents these problems and improves the user experience.
[0026] The garment material may be obtained by detecting the garment using a sensor installed in the garment processing drum, or the garment material data may be pre-stored in the garment processing device, and the user can set the garment material at the time of use via a button or a terminal such as a mobile phone app. Therefore, the present invention does not limit the method of obtaining the garment material, and those skilled in the art can set it themselves as needed, and all of these should fall within the scope of protection of the present invention.
[0027] As shown in Figure 2, one possible embodiment of the washing machine control method of the present invention will be described below.
[0028] Specifically, the control method is: Step S301: The washing machine receives a command to run the normal laundry program.
[0029] Step S302: Control the washing machine to run the washing program.
[0030] Step S303: Control the washing machine to run the spin-drying program.
[0031] Step S304: Obtain the weight of the clothes after spin-drying.
[0032] Step S305: If the clothing weight is greater than the first preset weight, the outside air intake mode is operated directly.
[0033] The washing machine weighs the clothes after washing and spinning them, and if the weight of the wet clothes exceeds a first preset weight, it indicates that there are too many clothes and the weight limit for the low-temperature dehumidification mode has been exceeded. In this case, the user should remove all the clothes and air dry them, or divide them into batches and use low-temperature dehumidification or another drying method. Additionally, to prevent clothes from remaining in the washing drum for a long time and breeding bacteria, the machine will operate the outside air intake mode, transporting a small amount of outside air into the internal drum to reduce bacterial growth and mold development.
[0034] Step S306: If the garment weight is less than or equal to the first preset weight, obtain the garment material.
[0035] Step S307: If the garment material is a special care material, operate the low-temperature dehumidification mode for a preset time.
[0036] Step S308: If the garment material is a normal care material, the outside air intake mode will operate for a preset time.
[0037] Step S309: After the user has removed all the clothes, the low-temperature dehumidification mode is operated for a preset time.
[0038] The user can send a washing machine operation program command by pressing a washing machine button or via a terminal device such as a mobile phone app. Specifically, the washing program of the washing machine involves supplying water to the clothes drum and controlling the clothes drum to rotate according to preset parameters to wash the clothes. Specifically, the spin-drying program involves spinning the clothes drum to remove water and reduce humidity. However, those skilled in the art can set the washing program and spin-drying program as needed, and the present invention does not limit this in any way, and both should fall within the scope of protection of the present invention.
[0039] If the weight of the wet clothes is less than or equal to a first preset weight, it indicates that there are few clothes and the weight does not exceed the threshold for the amount of clothes that can be processed in the low-temperature dehumidification mode, and the material of the clothes is obtained. If the material of the clothes is a special care material, the low-temperature dehumidification mode is operated. If the material of the clothes is a normal care material, such as cotton, polyester, or acrylic, the user removes the clothes and hangs them to dry, or uses another drying method, and operates the outside air intake mode to transport a small amount of outside air into the internal drum to reduce bacterial growth and mold growth, in order to prevent the clothes from remaining in the washing drum for a long time and breeding bacteria. After the user has removed all the clothes, the low-temperature dehumidification mode can be continued for a while to dry the washing drum and water tank, etc., and prevent mold from growing if the washing machine is not used for a long time. Of course, special care materials and normal care materials can be set by those skilled in the art as needed, and this invention does not limit the specific types of special care materials and normal care materials in any way, and both should be limited to the scope of protection of this invention.
[0040] The low-temperature dehumidification mode is, specifically, Steps to control the fan to start up, The process includes the steps of controlling the airflow velocity to a first preset velocity and rotating the garment processing drum at a first preset rotational speed.
[0041] The outside air intake mode is, specifically, Steps to control the fan to start up and The procedure includes the steps of controlling the airflow velocity to a second preset velocity and causing the garment processing drum to rotate at a second preset rotational speed, wherein the first preset velocity is greater than the second preset velocity and the first preset rotational speed is greater than the second preset rotational speed.
[0042] The outside air intake mode primarily prevents bacterial growth on clothing by transporting fresh air into the drum, while the low-temperature dehumidification mode requires drying of clothing. To conserve electrical energy, the fan speed in the outside air intake mode is lower than that in the low-temperature dehumidification mode, and the rotation speed of the clothing processing drum in the outside air intake mode is also lower than that of the clothing processing drum in the low-temperature dehumidification mode. In fact, the rotation speed of the clothing processing drum in the outside air intake mode may even be zero, meaning the clothing processing drum in the outside air intake mode may remain stationary, thereby further saving energy consumption. However, those skilled in the art can set specific parameters for the outside air intake mode and the low-temperature dehumidification mode as needed, and the present invention does not limit this in any way.
[0043] In another possible embodiment, the control method is: Step S401, the washing machine receives an instruction to run a special garment processing program, Step S402 controls the washing machine to run the washing program, Step S403 controls the washing machine to run the spin-drying program, Step S404 involves obtaining the weight of the clothes after dehydration, If the clothing weight is greater than the first preset weight, step S405 is performed to operate the outside air intake mode. Step S406 further includes operating the low-temperature dehumidification mode if the weight of the clothing is less than or equal to the first preset weight.
[0044] When using the washing machine, the user directly selects and operates a special garment care program. When the washing machine directly starts operating the special garment care program, it does not need to detect the garment material, and the default garment material is a special care material. The washing and spin-drying programs in the special garment care program may be the same as or different from those in the normal garment care program. For example, the special garment care program rotates the garment drum at a slower speed during washing and spin-drying compared to the normal garment care program, thereby reducing garment damage during washing and spin-drying. Furthermore, if the weight of the wet garments does not exceed a threshold, the low-temperature dehumidification mode is directly operated to improve the garment care effect and reduce garment damage. Of course, the weight of the garments may not be detected after spin-drying, and the low-temperature dehumidification mode may be directly operated after spin-drying. Those skilled in the art may choose as needed, and all of these fall within the scope of protection of the present invention.
[0045] The method for obtaining the weight of clothing may be to install a sensor on the clothing processing drum and measure the electrical signal from the sensor to obtain the weight of clothing, or it may be to obtain the weight of clothing using a weighing scale. However, those skilled in the art may set their own method for obtaining the weight of clothing as needed, and in this invention, there are no restrictions on the method for obtaining the weight of clothing; as long as the weight of clothing can be obtained accurately, all methods should fall within the scope of protection of this invention.
[0046] In another possible embodiment, the washing machine is further configured to introduce drying hot air into the garment processing drum. Specifically, the washing machine further includes a second duct containing a hot air blower, the second duct communicating with the garment processing drum, thereby providing the washing machine with a high-temperature dehumidification mode. The high-temperature dehumidification mode specifically includes activating the hot air blower and controlling the garment processing drum to rotate at a preset rotational speed. However, those skilled in the art may set the specific steps of the high-temperature dehumidification mode as needed, and the present invention is not limited thereto, as long as the high-temperature dehumidification mode can transport drying hot air into the garment processing drum.
[0047] The control method is, After the clothes have been dehydrated, if the clothes are made of a normal care material, or if the clothes are made of a special care material and the weight of the clothes is greater than the first preset weight, the high-temperature dehumidification mode is operated. Steps to obtain clothing humidity, If the clothing humidity is less than or equal to the first preset humidity, the high-temperature dehumidification mode is closed and the low-temperature dehumidification mode is operated. The further step includes closing the low-temperature dehumidification mode and operating the outside air intake mode if the clothing humidity is less than or equal to a second preset humidity.
[0048] The second preset humidity level is lower than the first preset humidity level.
[0049] If the user is in a hurry to wear their clothes, the high-temperature dehumidification mode can be used to accelerate the drying speed. Specifically, if the clothing material is of normal care material, the requirement for drying temperature is not high, and dehumidification can be performed using the high-temperature dehumidification function. That is, the hot air fan is activated and hot drying air is introduced into the clothing processing drum to dry the clothes, thereby improving the drying efficiency of the clothes. When the humidity of the clothes in the clothing processing drum falls below the first preset humidity, it indicates that the clothes are somewhat dry. In this case, continuing high-temperature dehumidification would cause significant damage to the clothes, so the high-temperature dehumidification mode is closed and the low-temperature dehumidification mode is operated, that is, outside low-temperature air is introduced into the clothing processing drum. Low-temperature air can dry clothes without causing damage, and the low-temperature dehumidification mode does not require heating the air, thus saving electrical energy. After low-temperature dehumidification for a while, when the clothes reach the target dryness level, that is, when the humidity of the clothes falls below the second preset humidity, the low-temperature dehumidification mode is closed and the outside air introduction mode is operated. This prevents the problem of bacteria multiplying due to the user forgetting to remove the clothes and them remaining in the clothing processing drum for a long time.
[0050] Furthermore, if the garment material is a special care material and the weight of the garment is greater than the first preset weight, the high-temperature dehumidification mode may be operated. Because there is a large amount of garment, in the previous stage, high-temperature dehumidification allows the hot air to quickly evaporate the moisture on the garment, thereby slowing the rate at which the garment heats up, further improving the garment drying efficiency, and minimizing damage to the garment. However, as the garment humidity decreases, the temperature of the garment gradually rises, so if there is a large amount of garment, in the previous stage, the high-temperature dehumidification mode is operated when the garment humidity is high, and after the garment humidity has decreased slightly, the low-temperature dehumidification mode is operated to dry the garment at a low temperature, and after the garment humidity reaches the target humidity, the outside air intake mode is operated. The combination of high-temperature and low-temperature dehumidification allows the garment to achieve maximum drying efficiency with minimal damage and minimum energy consumption when the user is in a hurry to wear the garment.
[0051] As described above, the present invention, by obtaining the material of the clothing, allows the low-temperature dehumidification mode to be operated to dry the clothing when the clothing material is a special care material, thereby saving electrical energy and avoiding damage to the clothing due to high temperatures. Furthermore, when the clothing is made of a normal care material or when there is a large amount of clothing, the high-temperature dehumidification mode can be used to dry the clothing when the humidity is high in the first stage, and the low-temperature dehumidification mode can be used to dry the clothing when the humidity is low in the second stage, thereby improving drying efficiency, preventing damage to clothing, and reducing energy consumption. In addition, the present invention can prevent bacteria from multiplying in the clothing processing drum by using the outside air introduction mode. Furthermore, after the washing machine has processed the clothing, the user can remove the clothing and dehumidify the clothing processing drum at a low temperature for a while, thereby rapidly drying the inside, preventing the growth of unpleasant odors and mold, and improving the user experience.
[0052] The above embodiments, as described in the first paragraph of this section, are merely for illustrating the principles of the present invention and are not intended to limit the scope of protection of the present invention. Without departing from the principles of the present invention, those skilled in the art can modify the above structures so that the present invention can be applied to more specific application scenarios.
[0053] Furthermore, the present invention provides a garment processing device. The garment processing device includes a controller and a memory, the memory being suitable for storing a plurality of program codes, the program codes being loaded and executed by the controller to perform the control method of the garment processing device in any one of the embodiments described above.
[0054] As those skilled in the art will understand, the garment processing equipment further includes several other well-known structures, such as a processor, controller, memory, etc., where the memory includes, but is not limited to, random memory, flash, read-only memory, programmable read-only memory, volatile memory, non-volatile memory, serial memory, parallel memory, or registers. The processor includes, but is not limited to, CPLD / FPGA, DSP, ARM processor, MIPS processor, etc. To avoid unnecessarily obscuring the embodiments of this disclosure, these well-known structures are not shown in the drawings. As those skilled in the art will understand, the implementation of all or part of the methods of the embodiments of the present invention can be completed by a computer program instructing the relevant hardware. The computer program can be stored in a computer-readable storage medium. When this computer program is executed by the processor, the steps of each embodiment of the methods can be implemented. The computer program includes computer program code, which may be in source code format, object code format, executable file, or some intermediate format, etc. The computer-readable storage medium may include any entity or device, medium, U disk, mobility hard disk, magnetic disk, optical disk, computer memory, read-only memory, random access memory, electric carrier signals, telecommunications signals, and software distribution media capable of carrying the computer program code. However, the contents contained in the computer-readable storage medium may be increased or decreased as appropriate in accordance with the requirements of the laws and patent practices of the jurisdiction. For example, in a certain jurisdiction, the computer-readable storage medium may not include electric carrier signals and telecommunications signals, based on the laws and patent practices.
[0055] Furthermore, since the configuration of the control modules is merely for the purpose of describing the functional units of the system of the present invention, it should be understood that the physical devices corresponding to the control modules may be the processor itself, a part of the software in the processor, a part of the hardware, or a combination of software and hardware. Therefore, the number of control modules can be set as needed.
[0056] Those skilled in the art will understand that the control module can be appropriately divided. Since specific divisions of the control module do not lead to the technical solutions departing from the principles of the present invention, all divided technical solutions will fall within the scope of protection of the present invention. Although the steps were described in the order described above in the embodiments, those skilled in the art will understand that, in order to achieve the effects of these embodiments, it is not necessary to perform the different steps in that order; they may be performed simultaneously (in parallel) or in reverse order.
[0057] The technology of the present invention has been described above in conjunction with preferred embodiments shown in the drawings. However, it will be readily apparent to those skilled in the art that the scope of protection of the present invention is not limited to these specific embodiments. Without departing from the principles of the present invention, those skilled in the art can make equivalent modifications or substitutions to the relevant technical features, and all such modified or substituted technical solutions will fall within the scope of protection of the present invention.
Claims
1. A method for controlling a garment processing machine, wherein the garment processing machine is configured to transport external low-temperature air into the garment processing drum. The control method described above is The steps include obtaining the material of the garments inside the garment processing drum, A method for controlling a garment processing device, characterized by comprising the step of selectively operating a low-temperature dehumidification mode, which includes transporting low-temperature air from outside into the garment processing drum, based on the garment material.
2. The step of "selectively operating the low-temperature dehumidification mode based on the garment material" is, The method for controlling a garment processing device according to claim 1, further comprising the step of operating a low-temperature dehumidification mode for a preset time if the garment material is a special care material.
3. Before the step "Retrieve garment material in garment processing drum", Steps to obtain the weight of the clothing, A method for controlling a garment processing device according to claim 1, characterized in that it includes the step of operating the outside air intake mode for a preset time if the garment weight is greater than a first preset weight.
4. The step of "obtaining the garment material in the garment processing drum" is, A method for controlling a garment processing device according to claim 3, further comprising the step of obtaining the material of the garment in the garment processing drum when the garment weight ≤ a first preset weight.
5. Before the step of "obtaining clothing weight", the control method, The method for controlling a garment processing device according to claim 3, characterized in that the garment processing device includes the step of running a normal garment processing program.
6. The aforementioned low-temperature dehumidification mode is A method for controlling a garment processing device according to claim 3, further comprising controlling the airflow velocity to a first preset airflow velocity and rotating the garment processing drum at a first preset rotational speed.
7. The aforementioned outside air intake mode is, A method for controlling a garment processing device according to claim 6, further comprising controlling the airflow velocity to a second preset velocity, and the garment processing drum rotating at a second preset rotational speed, wherein the first preset rotational speed is greater than the second preset rotational speed, and the first preset airflow velocity is greater than the second preset airflow velocity.
8. The step of "selectively operating the low-temperature dehumidification mode based on the garment material" is, The method for controlling a garment processing device according to claim 2, further comprising the step of operating an outside air intake mode when the garment material is a normal care material.
9. The control method described above is The steps include: the garment processing equipment operates a special garment processing program; The method for controlling a garment processing device according to claim 5, further comprising the step of directly operating a low-temperature dehumidification mode after dewatering the clothes.
10. A garment processing machine, A garment processing device comprising a controller and memory, wherein the memory is suitable for storing a plurality of program codes, and the program codes are loaded and executed by the controller to perform the method of controlling the garment processing device described in any one of claims 1 to 9.