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1.
新型芳香族双马来酰亚胺树脂固化反应及性能   总被引:1,自引:0,他引:1  
通过与二苯甲烷型双马来酰亚胺(MBMI)对比,对新型芳香族双马来酰亚胺单体(BBMI)进行了预聚、固化反应和性能研究.DSC表明,BBMI单体的反应活性较大,固化速度较快,与二烯丙基双酚A(DAB-PA)的预聚物凝胶时间较短.与MBMI/DABPA相比,BBMI/DABPA的TMg低2℃.热重分析表明,BBMI/DAB-PA的热稳定性优于MBMI/DABPA.与二苯甲烷型双马来酰亚胺相比,BBMI的弯曲强度提高了32.16 MPa,250℃的弯曲强度提高29.54 MPa,弯曲强度保留率从73.0%提高至78.6%.  相似文献   

2.
合成了2,2-双[N-(4-炔丙氧基苯基)-3,4-二酰亚胺苯基]六氟丙烷(6FDPE),与(4,4''-二苯基甲烷)双马来酰亚胺(BDM)和二烯丙基双酚A(DABPA)的改性双马来酰亚胺(BDM/DABPA)树脂共混,制备了BDM/DABPA/6FDPE共混树脂。对共混树脂的黏温特性、固化反应和固化树脂的热稳定性和力学性能等进行了研究。结果表明,6FDPE能够扩展BDM/DABPA树脂的加工窗口至70 ℃以上。随着6FDPE的添加量增加,共混改性树脂在氮气氛围下共混树脂固化物的5%热失重温度()升高达到416 ℃,800 ℃的残留率(Yr800℃)高达41%,但玻璃化转变温度(Tg)会降低,仍高于300 ℃。6FDPE可增韧BDM/DABPA树脂,共混改性树脂的冲击强度提高至23.9 kJ/m2,增加了55%,但树脂浇铸体的弯曲强度和拉伸强度分别降低至132 MPa和78 MPa,都下降了13%。  相似文献   

3.
含八氢基笼形倍半硅氧烷的双马来酰亚胺树脂   总被引:4,自引:0,他引:4  
利用硅氢加成反应和烯加成反应,以八氢基笼形倍半硅氧烷(T8H8)、二烯丙基双酚A(DABPA)和双马来酰亚胺(BMI)为单体合成了改性BMI树脂,采用FT-IR、DSC、TGA分别表征了树脂的结构、固化行为及热性能.研究结果表明,T8H8-DABPA-BMI固化树脂的玻璃化转变温度达到323℃,热分解温度(5%失重,T5d)为422、800℃热分解残重率为50.7%.  相似文献   

4.
采用二烯丙基双酚A(Ortho-dially Bisphenol A,以下简称O-DABPA)对T型双马来酰亚胺(Bismaleimide,以下简称BMI)树脂进行改性,并用红外光谱(Fourier TransformInfrared,以下简称FT-IR)、差式扫描量热仪(Differential ScanningCalorimetry,以下简称DSC)对改性前后的树脂结构及固化反应进行测定,利用热熔预浸法对改性BMI树脂制备预浸料,考查了预浸料的力学性能及高温下的弯曲性能。结果表明,在175℃下二烯丙基双酚A和T型双马来酰亚胺树脂质量比为1∶1,反应时间为1 h时,改性BMI树脂制备的预浸料工艺性良好,单向板层间剪切强度为84.86 Mpa,在240℃时,弯曲强度及模量分别为1 326.41 MPa和120.31 GPa,强度保留率为76.73%。  相似文献   

5.
采用二烯丙基双酚A和二苯甲烷型双马来酰亚胺与双酚A型氰酸酯共聚,以改善氰酸酯树脂的工艺和耐热性能;利用DSC,TGA,DMA表征了树脂的固化行为和耐热性能;此外,还研究了树脂的力学性能及高频下的介电性能。结果表明,改性后的氰酸酯树脂固化反应温度降低了约60℃,改性树脂固化物在氮气气氛下Td5约400℃,Tg约270℃,显示了良好的耐热性能。在7~15 GHz宽频范围下,改性树脂的介电常数3,介电损耗0.008~0.01,显示了良好的介电性能。  相似文献   

6.
纳米碳粉改性苯并噁嗪树脂性能研究   总被引:2,自引:0,他引:2       下载免费PDF全文
文摘为了适应苯并噁嗪树脂在高性能领域的应用,采用纳米碳粉对其进行了改性研究。结果表明,纳米碳粉对苯并噁嗪树脂的固化有催化作用,降低了苯并噁嗪树脂的固化特征温度,在一定程度上克服了苯并噁嗪树脂高温固化的不足;同时,纳米碳粉的加入,提高了苯并噁嗪树脂的弯曲性能与压缩性能,起到了增强增韧树脂的效果。  相似文献   

7.
文摘为改善苯并噁嗪树脂对树脂传递模塑(RTM)成型工艺的适应性,并进一步提升苯丙噁嗪基复合材料的耐高温性能。提出利用炔基改性苯并噁嗪树脂,以提高树脂的交联密度,并改善树脂流变特性。结果表明:改性后的炔基苯并噁嗪树脂在81. 5℃时黏度低至805 mPa·s可满足RTM工艺灌注要求,在110℃其工艺窗口高达310 min。同时,炔基苯并噁嗪树脂的起始固化温度低至130℃,固化温度为167℃,后处理温度为208℃,满足低温固化要求。通过DMA与TGA分析,RTM成型低温固化苯并噁嗪/碳纤维复合材料的Tg为411℃,在N_2环境下800℃残留率高达88. 6%,表明其复合材料具有良好的耐高温性能。SEM观察发现该树脂与纤维界面粘结强度较高,碳纤维复合材料350℃拉伸性能保留率达99%以上,弯曲、层剪性能保留率达70%以上,压缩性能保留率也达60. 9%。  相似文献   

8.
适用于RTM成型的新型耐烧蚀苯并噁嗪树脂的研究   总被引:1,自引:0,他引:1       下载免费PDF全文
在低黏度的双环苯并噁嗪中间体(B-BOZ)中加入一种新型的多官能基单环苯并噁嗪(AS-BOZ)或一种交联剂(TPA),复配制得了一种适用于BTM成型的新型耐烧蚀苯并噁嗪树脂,对树脂体系的黏度及固化物的热稳定性、力学性能、残碳率及碳的形貌进行了研究。结果表明,无论是AS-BOZ还是TPA的引入都使得双环苯并噁嗪体系黏度降低,同时提高体系的交联密度,使固化物的Tg和残碳率都大幅度提高.其中BA2-1固化物的Tg为250℃,800℃下氮气中残碳率为68%,质量烧蚀率为23.3 mg/s;BT2-1固化物的Tg为240℃,800℃下氮气中残碳率为70%,质量烧蚀率为20.1 mg/s,两体系高温下均能得到致密的碳层结构。  相似文献   

9.
通过预聚反应制备了一种新型聚苯并噁嗪改性树脂.利用FTIR、GPC表征了改性树脂.利用旋转黏度计、DSC、DMA和TGA分别考察了树脂的流动性能、固化行为和改性树脂固化物的热性能.结果表明:制备的苯并噁嗪改性树脂在60~ 100℃,黏度小于500 mPa·s,恒温6h黏度不明显增大,具有良好的流动性能,适用于RTM成型工艺.改性树脂聚合温度较低,具有良好的固化工艺性.改性树脂固化物在氮气气氛下Td5在430℃以上,在900℃的残重高达73.71%,Ts为353.4℃,具有良好热性能.  相似文献   

10.
本文报道一种综合性能优良的改性双马来酰亚胺(BMI)型基体树脂。该树脂由MI与0,0'-二烯丙基双酚A等共聚而成,具有良好的工艺性,未固化树脂可溶于丙酮。固化物具有突出的韧性(G1c=203J/m^2)、较高的耐热性(HDT=255℃)及良好的湿/热稳定性(平衡吸水率为3.6%)。  相似文献   

11.
This paper discusses experimental results from two different build configurations of a heated multiple rotating cavity test rig.Measurements of heat transfer from the discs and tangential velocities are presented.The test rig is a 70% full scale version of a high pressure compressor stack of an axial gas turbine engine.Of particular interest are the internal cylindrical cavities formed by adjacent discs and the interaction of these with a central axial throughflow of cooling air.Tests were carried out for a range of non-dimensional parameters representative of high pressure compressor internal air system flows(Re up to 5×106 and Rez up to 2×105).Two different builds have been tested.The most significant difference between these two build configurations is the size of the annular gap between the(non-rotating) drive shaft and the bores of the discs.The heat transfer data were obtained from thermocouple measurements of surface temperature and a conduction solution method.The velocity measurements were made using a two component,LDA system.The heat transfer results from the discs show differences between the two builds.This is attributed to the wider annular gap allowing more of the throughflow to penetrate into the cavity.There are also significant differences between the radial distributions of tangential velocity in the two builds of the test rig.For the narrow annular gap,there is an increase of non-dimensional tangential velocity V/Ωr with radial location to solid body rotation V/Ωr=1.For the wider annular gap,the non-dimensional velocities show a decrease with radial location to solid body rotation.   相似文献   

12.
Aerospace relay is one kind of electronic components which is used widely in national defense system and aerospace system. The existence of remainder particles induces the reliability declining, which has become a severe problem in the development of aerospace relay. Traditional particle impact noise detection (PIND) method for remainder detection is ineffective for small particles, due to its low precision and involvement of subjective factors. An auto-detection method for PIND output signals is proposed in this paper, which is based on direct wavelet de-noising (DWD), cross-correlation analysis (CCA) and homo-filtering (HF), the method enhances the affectiv-ity of PIND test about the small particles. In the end, some practical PIND output signals are analysed, and the validity of this new method is proved.  相似文献   

13.
14.
Antimony-doped tin hydroxide colloid precipitates have been synthesized by hydrolysis of SnCl4 and SbCl3 using: (1) an ion-exchange hydrolysis to remove chlorine ions, and (2) isoamyl acetate as an azeotropic solvent to obviate water. The obtained dried powder is of high dispersivity without any need for further grinding. The size and dispersivity of the final particles are investigated with the aid of TG-DTA, BET, XRD and TEM. After having calcined, the antimony-doped tin oxide nanopowder possesses a tetragonal rutile structure with high dispersivity, uniform particles and low hard agglomeration.  相似文献   

15.
The effects of Mo on the microstructure evolution, porosity and hydrogen sorption properties of Ti-Mo getters are investigated in this work. The results show that the addition of Mo prolongs the densification process of Ti-Mo getters and results in a significant amount of sintered pores. With the Mo content increasing, the porosity of getters firstly increases reaching the maximum value as it at- tains about 7.5wt.%, and then drops. At the room temperature, the hydrogen sorption property of getters increases progressively with the Mo content increasing, but the tendency is not very clear before its content lies below 2.5wt.%. When the Mo content achieves about 7.5wt.%, the hydrogen sorption property proves to be the best. The discussion is made about the above mentioned phenomena inclusive of hydrogen sorption properties of getters under different activation conditions (from 500-750 ℃).  相似文献   

16.
超声速燃烧数值模拟中的湍流与化学反应相互作用模型   总被引:1,自引:0,他引:1  
杨越  游加平  孙明波 《航空学报》2015,36(1):261-273
高精度数值模拟有助于理解超声速湍流燃烧中湍流与化学反应的相互作用,可为发动机燃烧室等工程应用设计提供可靠的预测模型。除直接数值模拟外,目前在湍流燃烧应用中使用的大涡模拟和雷诺平均Navier-Stokes模拟均需要借助模型模化发生在湍流小尺度上的流动与化学反应过程对湍流大尺度运动的影响。现有的湍流与化学反应相互作用模型大致可分为:火焰面类模型和概率密度函数类模型,2类模型在不同的应用中各自具有优势和局限性。此外,现有模型大都基于低马赫数燃烧,而超声速燃烧中通常会伴随快速混合、局部熄火和再着火以及激波等复杂过程,这为发展其中的湍流与化学反应相互作用模型提出了更多的挑战。  相似文献   

17.
适于低轨卫星IP网络的单核共享树组播算法(英文)   总被引:1,自引:0,他引:1  
为了解决低轨卫星IP网络中现有典型源组播算法的信道资源浪费问题,本文提出了一套单核共享树组播算法,即核心群合并共享树(CCST)和加权核心群合并共享树(w-CCST)算法。CCST 算法包括动态近似中心(DAC)选核方法和核心群合并组播路径构建方法。DAC方法专为周期、规律运动的低轨卫星网络提出,不需要复杂的星上计算。在核心群合并方法中,以核节点作为初始核心群,通过核心群和剩余组成员的最短路径方法逐步扩展直至整棵组播树构建完成,从而使得组播树的树代价最小,大大提高了网络的带宽利用率和组播传输效率。w-CCST 算法中所提出的加权因子可以调整树代价和端到端传播时延之间的折衷程度,因此,可以通过调整加权因子来适度增大树代价、降低端到端传播时延以支持某些端到端时延要求苛刻的实时组播业务。最后,与低轨卫星 IP 网络中典型算法进行了性能比较,仿真结果说明,CCST 算法的平均树代价比其它算法显著降低,w-CCST 算法的平均端到端传播时延小于 CCST 算法。  相似文献   

18.
Jet Vectoring Control Using a Novel Synthetic Jet Actuator   总被引:3,自引:1,他引:2  
A primary air jet vectoring control system with a novel synthetic jet actuator (SJA) is presented and simulated numerically. The results show that, in comparison with an existing traditional synthetic jet actuator, which is able to perform the duty of either “push” or “pull”, one novel synthetic jet actuator can fulfill both “push” and “pull” functions to vector the primary jet by shifting a slide block inside it. Therefore, because the new actuator possesses greater efficiency, it has potentiality to replace the existing one in various appli- cations, such as thrust vectoring and the reduction of thermal signature. Moreover, as the novel actuator can fulfill those functions that the existing one can not, it may well be expected to popularize it into more flow control systems.  相似文献   

19.
The slewing motion control of a truss arm driven by a V-gimbaled control-moment-gyro (CMG) is a nonlinear control problem. The V-gimbaled CMG consists of a pair of gyros that must precess synchronously. The moment of inertia of the system, the angular momentum of the gyros and the external disturbances are not exactly known. With the help of feedback linearization and recursive Lyapunov design method, an adaptive nonlinear controller is designed to deal with the unknown items. Performance of the proposed controller is verified by simulation.  相似文献   

20.
A new time-accurate marching scheme for unsteady flow calculations is proposed in the present work. This method is the combination of classical Successive Over-Relaxation (SOR) iteration method and Jacobian matrix diagonally dominant splitting method of LUSGS. One advantage of this algorithm is the second-order accuracy because of no factorization error. Another advantage is the low computational cost because the Jacobian matrices and fluxes are only calculated once in each physical time step. And, the SOR algorithm has better convergence property than Gauss-Seidel. To investigate its accuracy and convergency, several unsteady flow computa- tional tests are carried out by using the proposed SOR algorithm. Roe’s FDS scheme is used to discritize the inviscid flux terms. Un- steady computational results of SOR are compared with the experiment results and those of Gauss-Seidel. Results reveal that the numerical results agree well with the experimental data and the second-order accuracy can be obtained as the Gauss-Seidel for unsteady flow computations. The impact of SOR factor is investigated for unsteady computations by using different SOR factors in this algorithm to simulate each computational test. Different numbers of inner iterations are needed to converge to the same criterion for different SOR factors and optimal choice of SOR factor can improve the computational efficiency greatly.  相似文献   

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