摘要:
A Ti-based bulk amorphous matrix composite including a composition represented by Formula 1, in at %: TiaZrbBecCudNieMfIg Formula 1 where M is at least one of Nb and Ta, I is an impurity, and a, b, c, d, e, and f vary within the ranges 38≦a≦50, 11≦b≦18, 12≦c≦20, 6≦d≦10, 6≦e≦9, 1≦f≦20 and 0.01≦g≦0.5, with a+b+c+d+e+f+g=100.
摘要翻译:包含由式1表示的组成的Ti基块状无定形基质复合物,其在%:TiaZrbBecCudNieMfIgFormula 1中,其中M是Nb和Ta中的至少一种,I是杂质,a,b,c,d,e和 f在范围38 @ a @ 50,11 @ b @ 18,12 @ c @ 20,6 @ d @ 10,6 @ e @ 9,1 @ f @ 20和0.01 @ g @ 0.5范围内变化,其中+ b + c + d + e + f + g = 100。
摘要:
A radiation detector comprising a metal-carbon junction wherein a layer of carbon (11) is deposited on a layer of metal (12) having a work function higher than the work function of carbon (11), the junction having electrical characteristic of a diode.
摘要:
The present invention relates to a Cu-based amorphous alloy composition having a chemical composition represented by the following general formula, by atomic %: Cu100-a-b-c-dZraAlb(M1)c(M2)d, where a, b, c and d satisfy the formulas of 36≦a≦49, 1≦b≦10, 0≦c≦10, and 0≦d≦5, respectively, and c and d are not zero at the same time, and M1, the 4th element added to a ternary alloy of Cu—Zr—Al, is one metal element selected from the group consisting of Nb, Ti, Be and Ag, and M2, the 5th element added to the ternary alloy of the Cu—Zr—Al, is one amphoteric element or non-metal element selected from the group consisting of Sn and Si.
摘要翻译:本发明涉及具有以下通式表示的化学组成的Cu基非晶态合金组合物,其原子百分比:Cu 100-abcd sub> (M 1/2)其中a,b,c, c和d分别满足36 <= a <= 49,1 <= b <= 10,0 <= c <= 10和0 <= d <= 5的公式,c和d不为零 同时和添加到Cu-Zr-Al的三元合金中的第四元素是从Nb,Ti,Be和Ag组成的组中选择的一种金属元素和M 1 添加到Cu-Zr-Al的三元合金中的第五元素是选自Sn和Si中的一种两性元素或非金属元素。
摘要:
A nanometer-sized porous metallic glass and a method for manufacturing the same are provided. The porous metallic glass includes Ti (titanium) at 50.0 at % to 70.0 at %, Y (yttrium) at 0.5 at % to 10.0 at %, Al (aluminum) at 10.0 at % to 30.0 at %, Co (cobalt) at 10.0 at % to 30.0 at %, and impurities. Ti+Y+Al+Co+the impurities=100.0 at %.
摘要翻译:提供了一种纳米尺寸的多孔金属玻璃及其制造方法。 多孔金属玻璃包括在50.0at%至70.0at%的Ti(钛),在0.5at%至10.0at%的Y(钇),10.0at%至30.0at%的Al(铝),10.0 %至30.0at%,和杂质。 Ti + Y + Al + Co +杂质= 100.0原子%。
摘要:
The present invention relates to a Cu-based amorphous alloy composition having a chemical composition represented by the following general formula, by atomic %: Cu100-a-b-c-dZraAlb(M1)c(M2)d, where a, b, c and d satisfy the formulas of 36≦a≦49, 1≦b≦10, 0≦c≦10, and 0≦d≦5, respectively, and c and d are not zero at the same time, and M1, the 4th element added to a ternary alloy of Cu—Zr—Al, is one metal element selected from the group consisting of Nb, Ti, Be and Ag, and M2, the 5th element added to the ternary alloy of the Cu—Zr—Al, is one amphoteric element or non-metal element selected from the group consisting of Sn and Si.
摘要翻译:本发明涉及具有以下通式表示的化学组成的Cu基非晶态合金组合物,其原子百分比:Cu 100-abcd sub> (M 1/2)其中a,b,c, c和d分别满足36 <= a <= 49,1 <= b <= 10,0 <= c <= 10和0 <= d <= 5的公式,c和d不为零 同时和添加到Cu-Zr-Al的三元合金中的第四元素是从Nb,Ti,Be和Ag组成的组中选择的一种金属元素和M 1 添加到Cu-Zr-Al的三元合金中的第五元素是选自Sn和Si中的一种两性元素或非金属元素。
摘要:
The invention relates to a system for determining surroundings in a wireless network, the system including first and second nodes, each node being programmed to periodically detect the nodes located in the surroundings thereof every time period Δ, characterized in that: the first node comprises a transmitter (1) and control means (3) for activating the transmitter (1) for a transmission time ξ less than the time period Δ, the transmitter transmitting an identification signal during the transmission time ξ; the second node comprises a receiver (2) and control means (3) for activating the receiver (2) for a reception time α less than the time period Δ, the receiver (2) listening for the signals from the adjacent nodes during the reception time a, the control means (3) of the second node activating the receiver once per time period Δ.
摘要:
The present invention relates to an amorphous alloy and a method for manufacturing thereof. The amorphous alloy according to the present invention includes has a chemical formula of Ni100-a-b-c-d-e-fNbaZrbTicTadMeIf, wherein the M is at least one selected from a group of Sn and Si, wherein the I is at least one selected from a group of C and O, and wherein the a, b, c, d, e, and f are satisfied with the compositions of 10.0 wt %≦a≦25.0 wt %, 5.0 wt %≦b≦25.0 wt %, 5.0 wt %≦c≦10.0 wt %, 0.0 wt %≦d≦25.0 wt %, 0.0 wt %≦e≦6.5 wt %, 0.0 wt %≦f≦0.5 wt %, respectively.
摘要:
A nanometer-sized porous metallic glass and a method for manufacturing the same are provided. The porous metallic glass includes Ti (titanium) at 50.0 at % to 70.0 at %, Y (yttrium) at 0.5 at % to 10.0 at %, Al (aluminum) at 10.0 at % to 30.0 at %, Co (cobalt) at 10.0 at % to 30.0 at %, and impurities. Ti+Y+Al+Co+the impurities=100.0 at %.
摘要翻译:提供了一种纳米尺寸的多孔金属玻璃及其制造方法。 多孔金属玻璃包括在50.0at%至70.0at%的Ti(钛),在0.5at%至10.0at%的Y(钇),10.0at%至30.0at%的Al(铝),10.0 %至30.0at%,和杂质。 Ti + Y + Al + Co +杂质= 100.0原子%。
摘要:
The invention relates to a system for determining surroundings in a wireless network, the system including first and second nodes, each node being programmed to periodically detect the nodes located in the surroundings thereof every time period Δ, characterized in that: the first node comprises a transmitter (1) and control means (3) for activating the transmitter (1) for a transmission time ξ less than the time period Δ, the transmitter transmitting an identification signal during the transmission time ξ; the second node comprises a receiver (2) and control means (3) for activating the receiver (2) for a reception time α less than the time period Δ, the receiver (2) listening for the signals from the adjacent nodes during the reception time a, the control means (3) of the second node activating the receiver once per time period Δ.
摘要:
The present invention relates to an amorphous alloy and a method for manufacturing thereof. The amorphous alloy according to the present invention includes has a chemical formula of Feioo-a-b-c-d-e-f-gCraMobCcBaYeMflg. Here, the M is at least one selected from a group consisting of Al, Co, N1 and Ni, and the I is at least one selected from a group consisting of Mn, P, S, and O as impurities. The a, b, c, d, e, f, and g are satisfied with the compositions of 16.0 wt %≦a