Dyson SupersonicTM Black Technology uses a fast, controllable, powerful airflow and an intelligent temperature control system to efficiently dry your hair and keep your hair strong and healthy.
Dyson Supersonic__Hair Dryer - Nickel Purple
After the hair is washed and not dried, the hair strand expands by about 10% due to absorption of moisture, and at the same time, the surface of the scales becomes rough after being absorbed by water, thereby being vulnerable to external force damage, resulting in fragile and fragile hair. Damaged. Therefore, if it is not possible to properly combine the temperature and the airflow to dry quickly and gently, the hair is easily damaged, lacking in toughness and natural luster.
For traditional hair dryers, there are usually two options for drying the hair faster, using a more powerful motor to output a faster airflow or adding heat to promote moisture evaporation. In conventional hair dryer designs, the addition of a more powerful motor to provide greater airflow is limited—it causes an increase in the size of the blower and increases the weight of the tail of the machine, making the use of the blower extremely heavy and cumbersome. Therefore, in the case of limited motor, the only way to allow the hair dryer to dry quickly is to increase the heat. However, when excessive heat is transferred to the water molecules inside the hairline, the water molecules accelerate the movement from the hairline cortex to the hair scales. The accelerated movement of water molecules tends to damage the internal structure of the hair, causing damage to the hair.
Dyson Design Engineer Fred Howe
Driven by the ninth-generation Dyson digital motor, the Dyson Supersonic® blower produces fast, concentrated airflow. Temperature measurement 20 times per second ensures that the temperature is continuously and effectively controlled. These keep our hair from being exposed to excessive temperatures and maintain a healthy glow.
Dyson Hair Science Laboratory
In order to truly understand hair science, Dyson invested heavily in £50 million to create a hair science laboratory. 103 Dyson engineers, hair stylists and stylists, after four years, from aerodynamics to the cellular structure of the hair, have tested nearly 1600 kilometers of real hair.
“Our tests show that there is a strong connection between the luster of the hair and the health of the hair. To keep the hair healthy and full of shine, the hair surface and cortical structure need to be protected, and one of the best ways is to prevent it. The hair is damaged by excessive temperatures," said Rob Smith, manager of the Dyson Hair Science Laboratory.
Quick dry hair
Hair expert Dr. Yang Shuxia
More efficient delivery of powerful airflow helps to quickly remove moisture from the surface of the hair, reducing the need for heat during dry hair. In this process, using less heat means that moisture can more smoothly spill from the cortical layer to the hair surface. The cortical layer is a relatively strong part of the hair, so the smoother movement of water molecules means that the damage to the cortex is also relatively reduced, which helps the hair to remain strong and healthy.
The Dyson digital motor is uniquely placed in the handle, approaching 110,000 rpm and pushing 13 liters of air per second into the amplifier. The ninth generation digital motor works in conjunction with Dyson's Air AmplifierTM airflow multiplier technology. With this technique, the total amount of air ejected is amplified by a factor of three, resulting in a high-pressure, high-speed jet stream. The combination of these Dyson technologies provides the high speed and volume of airflow required for fast dry hair.
Avoid excessive heat damage
The part of the hair that the human eye can recognize is inanimate, and it cannot repair itself. Therefore, once the hair is damaged by heat, the damaged hair will always exist and cannot be repaired. (The left picture shows the hairline surface of the extremely damaged)
When the hair is exposed to extreme heat, the protein structure therein undergoes irreversible changes. These changes can cause hair to break, split, and difficult to manage.
In high-temperature environments, simple external forces such as combing hair can cause further damage to the already fragile hair, which can even penetrate deep into the cortex of the hair.
Damaged hair not only becomes fragile, it also loses its natural luster due to the voids formed inside the hair and the rough surface of the hair. Because in high temperature environments, active water molecules from the cortex to the surface of the hair increase the number and volume of hollow holes in the cortex, making the hair more fragile. When light enters the damaged hair, these holes can cause the light to not be perfectly refracted, thereby reducing the reflected light and reducing the gloss of the hair.
The Dyson Supersonic® hair dryer uses an intelligent temperature control system to prevent it from reaching excessive temperatures. Less damaged hair can reflect more light in the same direction, making it more shiny.
The glass bead thermistor in the Dyson SupersonicTM hair dryer intelligent temperature control system measures the temperature of the tuyere 20 times per second and transmits the data to the microprocessor, which then intelligently controls the two sets of heating elements to maintain The airflow temperature is always below 150°. And 150° is the temperature at which the proteins that make up the main structure of the hair begin to lose.
Helping healthy styling
Senior stylist Guo Zijing
Haircuts should not be dependent on overheating temperatures. Controlled airflow and temperature make the styling easy, but overheating can have the opposite effect. In fact, it will gradually damage the hair. In the long run, it will make the hair more fragile, more difficult to care, and affect the shaping.
In many traditional hair dryers, the airflow temperature is as high as 150 degrees or more. Especially when combing with a comb, the hair dryer is close to the hair, which will cause extreme flying temperatures, even up to 250°, and such extremely hot temperatures will hurt. your hair.
The Dyson Supersonic® hair dryer produces a focused, controlled air jet for drying and shaping. This allows you to quickly shape while drying your hair. The machine has three heating steps, three airflow and one cold air.
In order to effectively dry and shape the hair without causing hair curl and burrs, Dyson engineers focused their attention on laminar airflow. Simply put, when the air leaves the nozzle or tuyere of the machine, the airflow is continuous and will not be interrupted. The continuous concentrated airflow is more conducive to local modeling.
The Dyson Supersonic® hair dryer is equipped with 3 different tuyeres to provide a stable and controlled air flow:
Dyson Shunfeng
Dyson's smooth air dryer gently dries your hair, allowing you to dry and shape your hair at the same time through a smooth, airy airflow.
Dyson style wind mouth
Dyson's styled air nozzles produce high-speed airflow, making them ideal for styling. Because the airflow it creates is very concentrated, you can concentrate the airflow on a small part of the hair you need to shape without worrying that the rest of the hair will be blown up.
Dyson diffusion nozzle
The Dyson diffuser is designed to distribute air evenly around each curl. It simulates a natural drying process that helps reduce burrs and improve styling. It is a hairstyle that has been used for curly hair treatment.
All accessories maintain a cool touch. Through air-insulation technology, hot air is contained in the cold air like a sandwich, so that the surface of the tuyère is always kept cool, without worrying about the potential burn hazard during the molding process.
Dyson Supersonic? Hair Dryer - Nickel Purple
The Dyson Supersonic? Hair Dryer - Nickel Purple will be available in September at a suggested retail price of RMB2990.
~ Editor press ~
Dyson hair test:
Advanced Electronic Scanning Microscope: Dyson scientists can observe individual human hair at high resolution after testing to understand the composition of the hair and what causes cracking, holes and other damage to the hair.
Force test: A tensile test is performed before and after drying and conditioning the hair to measure the strength and elasticity of each hair, pulling the hair to break. Healthy hair is strong and elastic, and damaged hair can break easily.
Thermal Imager: Allows Dyson engineers to understand the temperature of the airflow coming out of the machine, ensuring that the temperature is stable and controllable when the blower is near your head or comb.
Real imaging test algorithm machine: often interpreted as RITA. The Dyson Real Imaging Test Algorithm Machine provides a range of image settings specifically designed to highlight key features of a particular hairstyle, such as straight hair, fluffy and curly.
Particle Image Velocimeter (PIV): Helps our engineers measure the velocity of airflow and visualize it. In order to gain a deeper understanding of the jet structure and turbulence of the airflow, we can optimize the airflow. This in turn affects the design of the three magnetic tuyeres.
Dyson Hair Science related data:
Dyson invests nearly £50 million in the development of the Dyson Supersonic® hair dryer
? About 1,600 kilometers of real human hair is used for research
600 prototypes
4 years of research and development time
103 engineers
About Dyson:
75: Dyson's machines are available in more than 75 countries and regions.
£1.5 billion: Dyson is committed to investing £1.5 billion for future technology research and development. This year, Dyson’s £250 million expansion of the Malmbury campus in the UK is about to open. We are developing four new product lines and will launch about 100 new products worldwide in the next four years.
Dyson Technology Lab: In May 2017, Dyson Technology Lab opened in Shanghai and produced 50 engineers and support positions in the next 12 months as part of the 2.5 billion global expansion plan. The new Chinese laboratory equipment has a software and machine trial lab, and Dyson combines hardware and software expertise to localize the machine to China's unique digital ecosystem.
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