The first type: hanging doors; first put the hanging wheel or more than four fixtures used in the guide. Take care to place the holder in the middle of the guide rails, and then fasten the frame and guide rails with screws, install them horizontally into the door opening, and install the door leaf. The following locator needs to be installed at the overlap of the door leaf. If the door lock is asymmetric or not lockable, then the lock of the outer frame can be adjusted up and down. If the overlap of the two doors is skewed, we can adjust the upper hanging wheel to adjust up and down.
The second type: Sliding doors; first, the door frame and rails are fixed with screws and horizontally loaded into the door openings, and then the door leaf is installed. If the door lock is asymmetric or not lockable, the lock of the outer frame can be used to adjust up and down. If the two doors overlap, the upper pulley can also be used to adjust up and down.
The third type is a large folding door; first, place the hanger or four or more holders into the guide rails. The holder must be placed in the center of the rail, and then the door frame and the rails are fastened with screws, and then the door is inserted horizontally, and then the door is installed. The following locator pins should be installed below the lock-out door leaf. If there is deflection in the fold, we can adjust the lifting wheel up and down to make adjustments. After adjustment, remember to use a small hexagon to lock it and avoid using the hanging wheel to fall off.
Energy And Power Field
In the field of energy power, the improvement of efficiency and the extension of life span have very demanding requirements on material performance and structural design. Silicon carbide ceramic materials outperform most metallic materials in terms of specific stiffness, thermal shock resistance, friction and wear resistance, and thermal conductivity, but they are difficult to machine and cannot be used on a large scale.
FLK has achieved a breakthrough in the manufacturing technology of integrated complex components made of silicon carbide ceramics by using additive manufacturing technology.High strength, high rigidity, high stiffness, light weight: density 280-3.05g/cm, low energy consumption, good thermal shock resistance, low coefficient of thermal expansion, compared to metal parts, 3D printed silicon carbide ceramic parts can extend their service life by more than one time, reduce energy consumption, and meet extreme working conditions.
Energy And Power,3D Print Energy And Power,3D Print Turbine Worm Gear,3D Print Turbine Worm Housing
Ningbo FLK Technology Co., Ltd. , https://www.flk-global.com