No.1309,Unit 1,Commericial office building,No.1 Rongding Business building,No226 Zhonghua North Street,Xinhua district,Shijiazhuang,China. | admin@haochengwiremesh.com |
Place of Origin: | China Mainland |
Brand Name: | HAOCHENG |
Certification: | ISO9001:2015,SGS |
Model Number: | HC-T02 |
Minimum Order Quantity: | Stocked items, 1 square meter,Customized items,usually 30 square meters |
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Packaging Details: | inside the roll with paper tube to reduce the pressure while loading; then wrapped with plastic film,final loaded in wooden case.Special requirement can be met |
Delivery Time: | Stocked items,within 3-5 days, Customized items,usually within 15-20 days |
Payment Terms: | L/C, D/A, D/P, T/T, Western Union, MoneyGram, Paypal, Escrow, Trade Assurance, Payoneer etc |
Supply Ability: | 1000 square meters per month |
Material: | Bright Tungsten Wire,black Tungsten Wire | Mesh Count: | 1-150mesh |
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Wire Diameter: | 0.025mm-1mm | Aperture: | 0.16mm-1mm |
Weave: | Plain Weave,twill Weave | Sample: | 20 30 40 80 100mesh Available |
Mesh Width: | 1m,1.2m Or Customized | Mesh Length: | 10m,20m,30m Or Customized |
Tungsten mesh properties:
1.Tungsten mesh offers the highest furnace service temperature about 3000oC with suitable optical heat transfer performance for specific temperature uniformity.
2.Large surface area decreases the watt density resulting in enhanced element service life.
3.Mild wire tear will not affect the mesh service life in any case.
4.Tungsten mesh is produced in the specific sizes, shapes and styles to fit any type of vacuum furnace
5.The mesh element can perform at the minimum temperature in correspondence to the service temperature limit.
6.As the thermal stress are unavoidable during heating operations in the high temperature furnaces, an inherent flexibility of tungsten mesh and weave designs, handle the stress more significantly.
7.Tungsten metal mesh sustains dimensional stability during the frequent heat cycling. As the mesh has large radiating area, its surface life is considerably increased by decreasing the surface watt loading on the heating elements.
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