TPU 685A10N √ TPU 685A10N
塑料新報(bào)價(jià)
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TPU 685A10N √ TPU 685A10N
產(chǎn)品屬性
產(chǎn)品優(yōu)勢(shì) TPU 685A10N √ TPU 685A10N TPU 685A10N √ TPU 685A10N 千泰塑膠 質(zhì)量保證,原產(chǎn)原包,提供SGS,UL黃卡,COA,出廠認(rèn)證報(bào)告
詳細(xì)信息 TPU 685A10N √ TPU 685A10N ‖。PMMA G800
、PC CF-3300
、EVA UE659
、→,F(xiàn)EP FJC-XH02
、‖。POM 527UV NC
、PC N-7
、LDPE LD-26A
、→,LDPE 2100TN00W
、PC HFD1262
、‖。PC/ABS 210GNH15
UHMWPE 240M
、PP GP3200
、TPU 522
、‖。TPU 95AEU
、→,EVA PX5125
、→,PP 9710
、PA66 SE35C
、‖。PA46 TW241F12
、‖。PEI MD138-1000
、PP 2014
、PP MC4352
、→,EBA SA2809
PA1010 RS LC1201
、→,PP 1800
、PETG K2010
PA10T XE 4120
、→,LDPE 757A
、PA6 1015CR
、‖。TPU S375D
、PPS A625H
、‖。PC FXG1414T
、TPE D3202-1000-03
、PC S-2000VR
、PP HH315MO
、PP FC9413G
、PPS R-4-240NA
、PC/ABS FR3002 BK
、‖。POM LS701
、PBT 2401MT
、‖。PC IN2200
、POM M90-31
、PA66 TY-834TC
、PP HP501H
、HDPE DGDA-2475
、→,PP 8681
、→,PC/PET X7200
、→,PA66 PA303G5
、→,EVA 、PP MV007U
、‖。PA66 RS78G33FHS
、‖。PC XP41R20GF
、PC EX1332T
、‖。PA6 V230H2.0
、→,PP TRC453NE
、‖。PC/ABS GY6012
、→,PBT X6800
、‖。PBT 1760
、→,PC DE0029
、→,TPU S98A
、PC BPL1000
PETG Z6006
、‖。PA6 KN173HIHS
、TPU C88A
、→,PC 3025G30
、→,PP RF401
、PP PJ-640
、PC PZ324G4NT
、→,PP JHC-374
、PBT 420R
、→,PA12 7033
、→,PES 1400AG-320
、‖。LCP 2023 NC00S
、
TPU 685A10N √ TPU 685A10N Optical properties of PMMA
1, visible light: high transmittance of visible light. PMMA is the best polymer transparent material at present, and its visible light transmittance is 92%, which is [1] higher than that of glass.
1. ultraviolet light: quartz can be completely ultraviolet light, but the price is high, ordinary glass can only pass through 0.6% ultraviolet ray, but PMMA can pass through 73%. PMMA can't filter out ultraviolet (UV). Ultraviolet light penetrates PMMA, and part of the manufacturer [2] is coated on the surface of the PMMA to increase the effect and properties of the UV light. On the other hand, PMMA has better stability than polycarbonate in the condition of ultraviolet light irradiation.
2. infrared: PMMA allows infrared rays less than 2800nm wavelengths to pass through. Longer wavelengths of IR, less than 25000nm, are basically blocked. There is a special colored PMMA that allows a specific wavelength of IR to pass through and block visible light, (used for remote control?or?heat, etc.).
The POM enhanced POM
The main reinforcement materials are glass fiber, glass ball?or?carbon fiber, and glass fiber is most commonly used. The mechanical properties of the reinforced glass can be increased by 2~3 times and the hot deformation temperature is increased by 50 degrees?or?more.
The high oil POM
Adding graphite, F4, molybdenum disulfide, lubricating oil and low molecular weight PE to POM can improve its lubrication performance. For example, adding 5 copies of F4 in POM can reduce the friction factor by 60%, and increase the wear resistance by 1~2 times. In addition, the addition of liquid lubricating oil in POM can greatly improve the wear resistance and the limit of PV. In order to improve the dispersing effect of oil, the oil absorption carrier, such as carbon black, barium hydroxide, and ethylene propylene rubber, should be added. The friction of adding 5% oil POM is increased by 72%, and the limit PV can reach 3.9MPa m/s (pure POM is 0.213MPa m/s), which is 3~20 times that of other engineering plastics.
PPO B has good electrical properties in a wide range of temperature and frequency. It has no hydrolysis and shrinkage, and has no self extinguishment. It is resistant to inorganic acid, alkali, aromatic hydrocarbon, halogenated hydrocarbon and oil. It is prone to swelling?or?stress cracking. C, it has the advantages of large rigidity, high heat resistance, refractory, high strength and so on. D and polyether have the advantages of wear-resistant, non-toxic, and resistant to pollution. Dielectric constant and dielectric loss of E and PPO plastic materials are among the smallest varieties in engineering plastics. They are hardly affected by temperature and humidity. They can be used in low, medium and high frequency electric fields. The load deformation temperature of F and PPO can reach more than 190 degrees C, and the embrittlement temperature is -170 C. G, its main shortcomings are poor melt fluidity and difficult processing.。
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