2019年7月20日星期六

Application of Vacuum Insulated Glass in Home Appliances

The transparency and appearance of glass make it a perfect fit for a wide range of home appliance applications such as high-end freezer, refrigerator, wine cabinet, and display cabinet. However, ordinary glass material has its disadvantages that cannot be overlooked: on the one hand, because of its high thermal transmittance coefficient, the thermal insulation effect is poor. It has always been the weak link for reducing energy loss and consumption; on the other hand, to prevent condensation on the door, the use of electroplating film increases the energy consumption to a certain degree. In the context that emission reduction and environment protection have become the general trend, the vacuum insulated glass with thermal insulation, energy saving, and condensation free properties provides the ideal solution to this problem.

By the definition of thermal transmittance coefficient, the ambient temperature difference between the two sides of the glass will cause the heat being transferred from the side of higher temperature to the side of lower temperature. The bigger the temperature differences between the two sides, the larger the loss of energy. As to the energy efficiency of glass, the lower the thermal transmittance coefficient, the less the loss of heat, and vice versa. Vacuum insulated glass, especially the tempered vacuum insulated glass LandVac® made by LandGlass has a very low U-value. While the heat transfer is effectively blocked by the high level vacuum chamber, its U-value can be as low as 0.4W/(㎡·K). The thermal insulation effect of an 8.3 mm thick LandVac is better than that of a 1.5m thick brick wall. It effectively keeps the heat outside the cabinet from getting in, resulting in a great “coldness maintaining” effect with tremendous energy saving. In addition, the “coldness maintaining” effect can reduce the start-up time for the home appliance compressor and its working coefficient, significantly extending the service life of the appliance.

At present, a large number of glass doors used on freezers are dual-pane or triple-pane insulated glass. In order to prevent condensation, they generally place a layer of electroplating film on the glass surface which in turn increases the energy consumption. While the high vacuum chamber of LandVac vacuum glass effectively eliminates the dew condensation, the high thermal resistance property of LandVac vacuum insulated glass significantly lowers the surface dew point. It can maintain condensation free under the temperature of 50 below zero. The ultra-low dew point gives the freezer and household appliances a transparent visual effect. In addition, the 8.3mm thick LandVac weighs only 20kg/㎡. The lightweight structure reduces not only the overall weight of the freezer but also the material for the door frame, therefore, the total cost.

As one of the new generation energy saving materials heavily promoted by the State, LandVac vacuum glass offers apparent advantages such as low thermal transmittance coefficient, condensation free, light weight and thin structure that have great significance and potential to the development of energy efficient home appliances. Successfully commercialized LandVac is being known by more and more renowned domestic and international enterprises. Besides the home appliances field, it has demonstrated outstanding performance in military, construction, agriculture, and many other fields. In the future, it surely will make even greater contribution to energy conservation, green and environmental protection worldwide.

Application of Vacuum Insulated Glass in Construction Field

With the introduction of green building related national policies, building energy efficiency has received more and more attention. Research data show that building energy consumption has accounted for one-third of the total energy consumption of the society. While 50% of the building energy consumption is lost through windows and doors, 80% of the loss can be attributed to the glass. In the meantime, the waste water, gas, and residue produced by energy production impose great risk to the construction of the ecological civilization and human health. Under such a severe situation, it is imperative to speed up the development of green energy-saving building materials such as vacuum insulated glass.

By definition, vacuum insulated glass is an item consisting of two or more panes of sealed up glass with the air in the tiny space between the panes removed to achieve a vacuum state. As a new high performance energy-saving glass product with remarkable energy saving effect, vacuum insulated glass has the advantages of low heat transfer coefficient, high sound insulation performance, and light structure. It is an ideal energy efficient and environmentally friendly material, capable of significantly improving the performance indicators such as building energy saving standard and indoor environment to raise the overall building quality. A team of one hundred R&D researchers from LandGlass launched the tempered vacuum insulated glass LandVac® after eight years of endeavor. It offers seven major advantages, including the superior thermal and sound insulation performance, especially when compared with ordinary vacuum glass.

Energy saving green product

Thanks to the high vacuum chamber of LandVac that effectively blocks the thermal transmission, the thermal insulation performance of LandVac is 2-4 times better than laminated glass and 6-10 times than single pane glass. The properties of this product meet all international thermal transmittance requirements on windows and doors for passive houses. In addition to significantly reducing the energy consumption in the construction sector and the emission of waste water, waste gas, and waste residue, it can mitigate certain “A/C diseases” symptoms associated with staying in an air conditioned environment for extended period of time such as dizziness and upper respiratory tract infection.

Effective noise reduction

Thanks to the high vacuum chamber of LandVac that effectively blocks the sound transmission, the sound isolation performance is far better than the laminated glass. It has remarkable soundproof effect against high penetrative mid-low frequency noises such as traffic and construction noises. With the increasing density of urban buildings, traffic flow, and shopping malls, noise has become one of the most severe pollution sources. The emergence of LandVac has a far-reaching significance for restoring a peaceful and harmonious living environment.

High safety

Surface stress and granularity of LandVac meet tempered glass standards. It has passed several key safety tests including wind resistance test and impact test. Each piece of LandVac can withstand the pressure of a 1.7 m tall sand column, equivalent to even-distributed load of 40 adults with an average body weight of 70 kg standing on one square meter of LandVac. By adopting low temperature flexible sealing technology, LandVac completely retains the high strength, impact resistance, and other safety attributes of tempered glass. In case the glass breaks, it shatters into small and less harmful honeycomb shaped particles.

As one of the new generation energy saving materials promoted by the nation, LandVac® vacuum insulated glass not only has realized commercial production, but also has been successfully listed in the “Catalog of the Recommended Products for Passive Low-energy Buildings” of MOHURD. Thanks to its outstanding advantages in thermal and sound insulation performance, LandVac® is well-received in the passive house project in Urumqi, Xinjiang. In the context of global promotion of green buildings, LandVac has earned its reputation in the low energy consumption passive house projects with its unparalleled energy properties. It certainly means a wider market prospect for LandVac. In addition, vacuum insulated glass has also a board range of applications in many areas including green household appliances, transportation, and military development. We are confident that LandVac will make greater contributions to the global efforts in the fields of energy saving, green and environmental protection in the future.

2019年7月19日星期五

What is Vacuum Insulated Glass?

Vacuum insulated glass is made of two or more panes of glass separated by spacers, where in the space between panes of glass is evacuated and edges vacuum-tight sealed. Kept between two panes is a gap of 0.1~0.3mm. To ensure the glass can withstand the atmosphere pressure under vacuum, micro spacers are placed between panes to provide support.


Vacuum insulated glass is developed based on the principle of Dewar flask (i.e. vacuum flask), where the vacuum layer is used to reduce gas conduction and convection to achieve features such as heat insulation, anti-condensation and frostproof, noise reduction, etc. Vacuum insulated glass is a hi-tech, environmental friendly glass product that promises more energy saving. The production involves vacuum technology, materials science, mechanical and automation technology, and precision measurement technology. It has wide range of applications in windows and doors for buildings, vehicles, and vessels, thermal insulation cases (for example: showcase, refrigerated storage), and other devices that require the use of transparent, heat insulated materials. 



Applications of Vacuum

Vacuum Applications in Our Daily Life

Since the discovery of vacuum, from the vacuum flask in early days, to the vacuum pasteurization, or CRT tube manufacturing, or vacuum packaging today, vacuum technology has had a very wide application area and become an indispensable part of our daily lives. 


Vacuum Applications in Aerospace Industry

The significance of vacuum technology to aerospace industry is the simulation of outer space environment as launch vehicles, satellites, manned spacecrafts, space stations, space probes, space shuttles or other space vehicles are all operating in natural vacuum of the universe during the flight. 

As such, in addition to directly dealing with space vacuum environment, they are also exposed to solar radiation, various charged particles, and extreme temperature changes. These external factors could cause change or damage to the material properties, malfunction of sensitive instruments, endangering the proper operation of the vehicle and the safety of the astronauts. Therefore, it is necessary to establish ground experimental devices and facilities that can simulate space environment in universe. The safety of the spacecrafts and astronauts can only be properly ensured when the vehicle passes all the ground simulation tests and is successfully debugged under the simulated working conditions and characteristics of space environment to reduce potential risks in the flight. For these purposes, many simulation facilities of different kinds have been built on the ground.


2019年7月17日星期三

Early History of Vacuum Technology

In 1643, an Italian physicist Torricelli proved the presence of vacuum and atmosphere pressure in natural space. He created a long glass tube, sealed at the top, filled it with mercury, and set it vertically into a basin of mercury. The column of mercury fell to about 76 cm above the surface level of the mercury outside the tube. Torricelli believed that it left vacuum in the glass tube above the mercury. The 76 cm mercury column height is determined by the atmosphere pressure.



In 1650, the first piston vacuum pump was invented by Otto von Guericke of Germany.

In 1654, he conducted his famous Magdeburg hemispheres experiment in Magdeburg: he used the vacuum pump to suck the air out from inside the two attached hemispheres around 14 inches (35.5 cm) in diameter and demonstrated that two teams of eight horses pulled in opposite directions could not separate the two copper hemispheres. The experiment once more proved the presence of atmosphere in the space with tremendous pressure. To commemorate Torricelli in scientific discoveries and contributions, the torr, a conventional unit of pressure used in vacuum measurements, is named after him.

From:https://www.landvac.net/

Units in Vacuum Measurements

The most commonly used unit in vacuum measurements is Pa. 1Pa is equal to 1N/m2. The unit used in technical atmosphere is Bar. 1Bar=1kgf/cm2. The unit now used less often is torr. 1Torr is defined as 1/760atm.

AtmPaBarTorr
ATM11.013×1051.013760
PA0.987×10-511×10-57.5×10-3
Bar0.9871×1051750
Torr1.32×10-31331.33×10-31

While P is the symbol for pressure, the measuring unit is “pascal” or “Pa” in short. Pascal is a basic measuring unit for pressure in the international system of units, named after French physicist Blaise Pascal.

The physical significance of 1Pa: It is defined as 1N per square meter. The air density varies above the Earth’s surface where density near the ground is greater and decreases as altitude increases. While atmosphere pressure is caused by air gravity, the column in the tube falls lower at higher altitude with less air density. Higher the altitude is, less atmosphere pressure it gets. Within elevation of 3000m, the atmosphere pressure decreases by 100Pa per every 10m of rising height. Within elevation of 2000m, the atmosphere pressure decreases by 1mmHg per every 12m of rising height.

From:https://www.landvac.net/

2019年7月16日星期二

What is Vacuum?

A vacuum is a physical space with no or very little gas molecules and atoms in it. It is a field space where only a variety of energy particles exist. In applied physics and technical applications, vacuum refers to a given space with pressure of the gas state lower than a standard atmospheric pressure. While a perfect vacuum is a totally empty space with no gas, relative vacuum is a gaseous state measured based on the standard atmosphere pressure. 

FROM:https://www.landvac.net/