2020年1月1日星期三

Air tightness, Water tightness and Wind-load Resistance of Building Exterior Doors and Windows

Air tightness, Water tightness and Wind-load Resistance of Building Exterior Doors and Windows

The three physical properties of building fenestration system generally refer to the air tightness, water tightness, and wind-load resistance. These three properties are the required items in fenestration testing. In 1986, China enacted the inspection standard for the three physical properties of building exterior doors and windows.  The standard was later updated in 2002. The new national standard was revised in the following aspects:
1.  Add the rate of air permeability per unit area as a rating indicator, to derive comprehensive rating when combined with the rate of air permeability per unit seam length rating indicator.  
2.  Add the content of inspecting air permeability rate under negative pressure differential.
3.  Specify the scope of use of the pressure fluctuation on water tightness performance.  
4.  Add the content of engineering inspection over the performance of wind-load resistance.

Air permeability performance, also known as air tightness, refers to the resistance of the closed exterior doors and windows to air leakage. The airtight performance of the exterior doors and windows has a great impact on the heat loss.  The better the airtight performance, the lesser the thermal exchange and the impact on room temperature. The measurement of air tightness takes the air penetration per unit seam length and unit area under standard condition when the pressure difference between the inside and outside the window equals to 10 Pa as the rating indicator. The air tightness is divided into 8 levels. The higher the number, the lesser the heat loss and the better the air tightness. Good air permeability is conducive to energy conservation and environmental protection.

The performance rating of the air tightness of exterior doors and windows
Level
Rating indicator q1
Rating indicator q2
1
4.0≥q1>3.5
12.0≥q2>10.5
2
3.5≥q1>3.0
10.5≥q2>9.0
3
3.0≥q1>2.5
9.0≥q2>7.5
4
2.5≥q1>2.0
9.0≥q2>7.5
5
2.0≥q1>1.5
6.0≥q2>4.5
6
1.5≥q1>1.0
4.5≥q2>3.0
7
1.0≥q1>0.5
3.0≥q2>1.5
8
q1≤0.5
q2≤1.5

Unit of indicator value:
q1: Indicator value per unit open seam. Measuring unit is m3/(m·h);
q2: Indicator value per unit area. Measuring unit is m3/(m2·h)
The data are extracted from “Graduations and Test Methods of AiPermeability Water tightness and Wind Load Resistance Performance for Building External Windows and Doors”.

Water tightness refers to the resistance of the closed exterior doors and windows to water leakage under wind and rain at the same time. General testing of the water tightness of exterior doors and windows is conducted according to the standard set forth in the “Graduations and Test Methods of Air Permeability ,Water tightness and Wind Load Resistance Performance for Building External Windows and Doors”, which specifies in detail the testing equipment requirements, performance testing methods, and the rating  indicators for water tightness. The testing devices simulate the condition of exterior doors and windows in the stormy weather, measure the pressure difference between the two sides of the doors and windows using pressure supply system, water supply system, pressure and water flow measuring system to determine the pressure differential during severe leakage, and finally identify the water tightness factor and rating of the doors and windows. The water tightness of doors and windows is divided into 6 levels with higher level representing stronger water tightness. The doors and windows with good waterproof performance can effectively prevent the intrusion of rainwater into their internal structure to ensure a longer service life.

The performance rating of the water tightness of exterior doors and windows
Level
Rating indicator(Unit: Pa)
1
100≤△P<150
2
150≤△P<250
3
250≤△P<350
4
350≤△P<500
5
500≤△P<700
6
△P≥700
P is the pressure difference in a severe leakage. As defined in the national fenestration standard, it represents the pressure difference when a severe leakage in the testing samples of the exterior doors and windows occurs.
Severe leakage refers to: continuous spout from the test sample interface; continuous flow out of the test sample interface.  
Level 6 should have the specific testing pressure indicated after rating. The data are extracted from Graduations and Test Methods of Air Permeability Water tightness and Wind Load Resistance Performance for Building External Windows and Doors”. 

Wind-load resistance refers to the resistance of the closed doors and windows to wind pressure without any damages (e.g. cracking, panel breakage, local yield, bonding failure, etc.) and functional impairment such as loose hardware and opening difficulties. There are up to 9 levels of wind resistance for doors and windows. The higher the number, the stronger the wind-load resistance. It is worth noting that the wind-load resistance level is not the same as the typhoon level. Wind load resistance level 9 indicates that the window can withstand more than 5000 Pa of wind pressure, easily resisting the destructive force of the Category 12 hurricane.

The performance rating of the wind-load resistance of exterior doors and windows
Level
Rating indicator(Unit: kPa)
1
1.0≤P<1.5
2
1.5≤P<2.0
3
2.0≤P<2.5
4
2.5≤P<3.0
5
3.0≤P<3.5
6
3.5≤P<4.0
7
4.0≤P<4.5
8
4.5≤P<5.0
9
P≥5.0
The data are extracted from “Graduations and Test Methods of Air Permeability Water tightness and Wind Load Resistance Performance for Building External Windows and Doors”.
Level 9 should have the specific testing pressure indicated after rating.

2019年9月10日星期二

What is Servo Controller in the Glass Tempering Furnace?

What is Servo Controller in the Glass Tempering Furnace?
Answer: Similar to the inverter, a Servo controller is a type of device used to control servo motor. Thanks to its extensive speed range, high precision positioning ability, quick response, high reliability, as well as strong ability in environment adaptiveness and anti-interference, it has been widely used in positioning devices that require high-speed and high-precision. At present, our company uses servo controllers primarily in applications such as transport positioning control and bending control devices.
In general, a servo drive controls servo motor through position, speed and torque to achieve high-precision positioning in a transmission system.

Performance Requirements for Glass Tempering Furnace Corresponding to the Needs in Tempered Glass Curtain Wall Market

There are a large variety of capacities and configurations for glass tempering furnaces. You should choose the right glass tempering furnace based on your market positioning. For glasses used in curtain walls, the performance requirements of the glass tempering furnace may vary. Today, we will show you the different performance requirements of tempering furnaces for corresponding curtain walls on tempered glass market. These guidelines could be conducive to your next equipment acquisitions.

2019年9月9日星期一

What should we do if white haze occurs during glass temping process?

Longitudinal white haze occurring in the middle of the glass panels:     
 Reasons:  
1、The level of the equipment’s roller bed is poor.
2、Radial runout of the ceramic roller bed.
3、The heat balance is not enough.
4、Low temperature in the upper part of the convection furnace.
5、The speed of the glass oscillation inside the furnace is too fast.      
6、High temperature in the bottom part of the radiation furnace.               
7、Check whether the O-shape belt is slipping.               
8、Check whether the main shaft coupling keyway is damaged.                                                   
Measures: 
1、Check the equipment’s level.
2、Check for the radial runout of the ceramic roller bed. (the bearing seat is filled with high-temperature lithium 
lubricating grease) 
3、Appropriately switch on a higher heat balance pressure and operating time.
4.  Increase the speed of the convection blowers above the convection furnace.
5、Lower the speed of the glass oscillation inside the furnace.
6、Lower the temperature in the lower part of the radiation furnace.
7、Check whether the O-shape belt is loose or slipping away.
8、If there is any damage, initiate repair or replace with a new one.
 Transverse white haze occurring at both ends of the glass:
  Reasons: 
1、The temperature difference between the upper part and the lower part of the furnace is too large.               
2、(Radiation furnace) Excessively large heat balance pressure and operating time.                        
3、(JetConvection furnace) Excessively high rotating speed of the convection blowers in the upper part of the furnace.
4、The temperature in the bottom part is set too low.
Measures: 
1、Control the temperature difference between the upper and lower part of the furnace within 10℃.
2、(Radiation furnace) Appropriately reduce the heat balance pressure and operating time.
3、(JetConvection furnace) Appropriately lower the rotating speed of the convection blowers in the upper part of the 
furnace.
        4、Appropriately increase the temperature in the bottom part.


How does a position limit switch work?

Also known as limit switch, it is a type of low current electric command device often used for position detection control. When a moving object comes into contact with an actuator, the device operates the contacts to make or break an electrical connection, causing the mechanical moving object to automatically stop, reverse, change speed or cycle in a certain direction or within a certain range.


https://www.landglass.net/

2019年9月7日星期六

What is the seamless input/output processing control in the glass tempering furnaces?

It refers to the processing control over the heating chamber to allow input and output simultaneously. While the traditional process does not allow a new production cycle before vacating the heating chamber, this method offers much higher productivity; the shortfall of this approach is the lack of flexibility in settings as the input and output have to be synchronized.


https://www.landglass.net/

How does a proximity switch work?

A proximity switch is a type of position limit switch that operates without any direct physical contact with moving parts. When an approaching object being sensed within the detection range, the switch will be actuated without physical contact or pressure to emit control command to PLC. It is used for position limit, object counting, positioning control, and automatic protection in auto-control systems. 


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