Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Carbon Fiber”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

The chondrogenic potential of carbon fiber and carbon fiber periosteum implants: an ultrastructural study in the rabbit.

The articular tissue generated on carbon fiber rods in rabbit knee joints after 75 days of intermittent active motion was compared with tissue generated on carbon fiber rods whose articular surfaces were covered with a free reversed periosteal graft. Both methods were effective in generating articular tissue; however, tissue with ultrastructural characteristics similar to those of hyaline cartilage was noted more frequently on the composite implants. If such composite implants were clinically effective then they might be useful in treating symptomatic osteochondral defects.

Animals↗

The fabrication of artifacts out of glassy carbon and carbon-fiber-reinforced carbon for biomedical applications.

Polymeric carbons are produced by the carbonization of a wide range of organic polymeric systems. We have concentrated on the fabrication of two types of polymeric carbons, glassy carbon and carbon-fiber-reinforced carbon (CFRC), both involving phenolic resin precursors. We describe herein the technology which enables us to make dental implants and heart valves out of glassy carbon. We also show how carbon-fiber-reinforced carbon can be made in the form of rods and plates for orthopedic use and molded before firing to produce complex, rigid, individually sculptured shapes suitable for maxillofacial bone replacement. The mechanical properties will be discussed in relation to the structure of these various forms of polymeric carbon. The main purpose of the work is to show that the technology of polymeric-carbon manufacture is essentially simple and the manufacturing process is readily carried out in laboratories which have already been equipped to fabricate standard dental prostheses.

Acrylonitrile↗

Inflammatory reaction of rat striated muscle to particles of carbon fiber reinforced carbon.

1. Carbon fiber reinforced carbon (CFRC) was implanted in rats as particles measuring 30 microns or 11 microns, denoted as CFRC-A and CFRC-B, respectively. Titanium (Ti) and vitreous carbon (VC) were used as controls. Ti was used with the same particle size as CFRC (Ti-A or Ti-B). The VC particles measured 11 microns. All materials were separately sterilized on ethylene oxide before use. 2. One hundred and ten female Wistar rats, weighing 180 to 220 g, were divided into six groups of 4 to 5 animals each, according the time of the observation (1, 2, 4, 8, 16 and 52 weeks). 3. Under aseptic conditions, one 3-0 curette full of CFRC-A or CFRC-B was implanted into the right triceps surae muscle in each animal and the same quantity of Ti-A (paired with CFRC-A) or Ti-B or VC (paired with CFRC-B) was implanted into the left muscle. 4. Histological analysis did not show necrosis of muscular tissue nor exudative reaction during the acute phase. 5. During the chronic phase the particles induced a chronic inflammatory infiltration containing fibroblasts, macrophages and giant cells. VC and CFRC-B induced the lowest inflammatory infiltration and CFRC-A induced the highest one. 6. We suggest that the longer carbon fiber fragments contained in CFRC-A may be responsible for this more intensive reaction, which may restrict the medical use of the preparation.

Animals↗

Waste polyvinylchloride derived pitch as a precursor to develop carbon fibers and activated carbon fibers.

Polyvinylchloride (PVC) was successfully recycled through the solvent extraction from waste pipe with an extraction yield of ca. 86%. The extracted PVC was pyrolyzed by a two-stage process (260 and 410 degrees C) to obtain free-chlorine PVC based pitch through an effective removal of chlorine from PVC during the heat-treatment. As-prepared pitch (softening point: 220 degrees C) was spun, stabilized, carbonized into carbon fibers (CFs), and further activated into activated carbon fibers (ACFs) in a flow of CO2. As-prepared CFs show comparable mechanical properties to commercial CFs, whose maximum tensile strength and modulus are 862 MPa and 62 GPa, respectively. The resultant ACFs exhibit a high surface area of 1200 m2/g, narrow pore size distribution and a low oxygen content of 3%. The study provides an effective insight to recycle PVC from waste PVC and develop a carbon precursor for high performance carbon materials such as CFs and ACFs.

Carbon↗

Ligament and tendon substitution with composite carbon fiber strands.

Carbon fiber strands were used experimentally to substitute for tendons in dogs and clinically to reconstruct tendons and ligaments in human. The investigation was carried out to determine the histologic appearance of the new composite structure and its tensile strength in comparison to the natural structure. The histologic picture disclosed a remarkable structure evolved by continuous irritation of the carbon fibers and consisting of two interrelated components: synthetic carbon fibers and biologic collagenous tissue. This carbon fiber composite structure was composed of long cylindrical units containing concentric layers of collagenous fibers and cells enveloping the core of each carbon fiber. After one year of physiologic use in dogs, the average ultimate tensile strength of the composite structure which replaced the quadriceps and triceps was 372 N, or 88% the strength of the natural tendons. One year after implantation the histologic picture of the composite structure in human showed a relatively dense collagenous architecture. However, a significant proportion of the structure was taken up by histiofibroblasts produced by the irritation of the carbon fibers. Thus, the density of the collagen in the composite structure remained relatively deficient in comparison to the nature tendon, and the structural tensile strength continued to depend entirely on the integrity of the carbon fibers.

Animals↗

Comparative biomechanical evaluation of different external fixation sidebars: stainless-steel tubes versus carbon fiber rods.

Carbon fiber rods were developed to provide radiolucent sidebars for external fixation. In the present study, a single-plane, half-pin, double-bar external fixator construct with either stainless-steel tubes or carbon fiber rods was applied on the anteromedial surface of an osteotomized synthetic human tibia and evaluated for fixation rigidity. Testing was performed with the bone fragments in cortical contact and with a 5-mm midshaft gap between the fragments. The sidebars then were loaded to failure in bending. The results of this study show (a) that the carbon fiber rods were 15% stiffer than the stainless-steel tubes (p = 0.009) and (b) that the external fixator with carbon fiber rods achieved approximately 85% of the fixation stiffness of the external fixator with stainless-steel tubes. The loss of stiffness of the external fixator with carbon fiber rods is most likely due to the clamps being less effective in connecting the carbon fiber rods rigidly to the Schanz screws.

Biomechanical Phenomena↗

Chemical vapor deposition fabrication and characterization of silica-coated carbon fiber ultramicroelectrodes.

Carbon fiber disk ultramicroelectrodes (UMEs) with well-defined geometries were prepared by chemical vapor deposition techniques. Transparent silica films with thicknesses from 1 to 600 microns were deposited on the cylindrical length of 5 and 10 microns carbon fibers from a SiCl4, H2, and O2 ternary precursor system at 850-1150 degrees C or sequential deposition from Si(OEt)4 as a single source precursor at 700 degrees C followed by the SiCl4, H2, and O2 precursor system. Film thickness, film adhesion to the fiber substrate, and the overall dimensions of the silica-coated carbon fiber were studied and found to be a function of the precursor system, precursor concentrations, fiber diameter, deposition time, and fiber temperature. The silica films were found to be free of microcracks and characterized by a quality seal between the carbon fiber and the coating. As a result, the silica-coated disk UME exhibits an excellent electrochemical response without the need to use an epoxy sealant at the electrode tip. Furthermore, the deposition of hard and inert ceramic materials imparts durability to fragile carbon fibers and facilitates the handling of UMEs in microenvironments. Finally, the advantage of concentric deposition about the fibers to produce a disk UME in the center of an insulating plane was used to examine the effect of the thickness of the insulating coating on the limiting current response.

Carbon↗

X-ray diffraction and X-ray photoelectron spectroscopy studies of Ni-P deposited onto carbon fiber surfaces: impact properties of a carbon-fiber-reinforced matrix.

In this work, the Ni-P coating on carbon fiber surfaces was carried out in order to improve the impact resistance of carbon fibers-reinforced epoxy matrix composites. The fiber surfaces and the fracture behaviors of composites were measured in terms of X-ray diffraction spectrometry (XRD), X-ray photoelectron spectrometry (XPS), scanning electron microscopy (SEM), and falling weight impact testing. From the XRD and XPS measurements, it was observed that Ni-P coating of carbon fibers led to an increase in two phases, i.e., microcrystalline and amorphous, mainly due to the increase of NiP(2), Ni(3)P, and Ni metal. Energy adsorbed by composites through the various fracture mechanisms was seen to be the characteristic distinguishing between nontreated and treated fiber-reinforced composite systems. The Ni-P alloy technique to improve the impact resistance of the composites was shown to be the modification of fiber-epoxy resin interfaces.

Journal Article↗

Effect of pH and surface functionalities on the cyclic voltammetric responses of carbon-fiber microelectrodes.

Carbon electrodes are useful for the detection of oxidizable species with cyclic voltammetry. In particular, carbon-fiber microelectrodes have been employed for the measurement of several neurotransmitters in brain tissue. However, during cyclic voltammetry with carbon-fiber electrodes the current varies with changes in concentration of some inorganic cations as a result of their interaction with surface functional groups. The electrode's response to the hydronium ion is a particular concern because its voltammetric response occurs over a broad range of potentials that overlap those of neurotransmitters of interest such as dopamine. This is especially a problem in vivo because simultaneous changes of dopamine and pH frequently occur in brain tissue. In this work, voltammetric current changes are shown to arise from pH dependent shifts in the peak potentials of background voltammetric waves that arise from species confined to the carbon-fiber electrode surface. Polishing the electrode with alumina suspended in cyclohexane in an environment containing lowered oxygen, a method previously demonstrated to remove oxides from the carbon surface, leads to a substantial reduction in the sensitivity to pH changes. However, this is accompanied by a loss in signal amplitude for dopamine. The dopamine response can be restored using the cation exchanger Nafion without significantly increasing the pH response. To investigate which oxide functional groups play a direct role in the electrode's current responses to changes in pH, surface-confined carbonyl and alcohol functionalities were chemically modified. In both cases, the modification did not affect the carbon-fiber electrode's responsiveness to changes in pH. Nonetheless, the polishing technique proved to be effective in reducing pH interferences in in vivo applications.

Animals↗

Prevention of spontaneous and chemically-induced carcinogenesis using activated carbon fiber adsorbent. I. Effect of the activated carbon fiber adsorbent 'Aqualen' on spontaneous carcinogenesis and life-span in mice.

Female SHR mice were fed the activated carbon fiber adsorbent Aqualen beginning at the age of 3 months through their life. Mice were fed Aqualen five times per week together with lab chow at a daily dose of 100 mg/kg b.w. The addition of Aqualen into food did not significantly influence the dynamics of body weight and the mean life-span of the animals. At the same time, the age at 90% mortality of mice was 4 months longer in the group exposed to Aqualen. There were no statistically significant differences in the incidence of all tumors and malignant tumors in the group of mice treated with Aqualen as compared with the control group. However, in the group of mice exposed to Aqualen, there was a 1.4 times reduction of the mean number of tumors per mouse. Feeding mice with the adsorbent led to a 4 months longer life-span in animals with any tumors and to a 5 months longer life-span in animals bearing malignant tumors (P < 0.05). No carcinogenic effect of Aqualen was found. It could be supposed that Aqualen has some geroprotective and anticarcinogenic properties.

Adsorption↗

Prevention of spontaneous and chemically induced carcinogenesis using activated carbon fiber adsorbent. II. Inhibitory effect of the activated carbon fiber adsorbent 'Aqualen' on N-methyl-N'-nitro-N-nitrosoguanidine-induced gastric carcinogenesis in rats.

Two-month-old female LIO rats were given N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) with tap water in a concentration of 100 mg/l for 12 months (groups 1 and 2) or were kept without the carcinogen treatment (groups 3 and 4). From the first day of exposure to MNNG rats from groups 2 and 3 were given activated carbon fiber adsorbent Aqualen in their diet five times per week together with lab chow in a daily dose of 100 mg/kg of body weight. The experiment was finalized 16 months after first exposure to the carcinogen. The total stomach adenocarcinoma incidence was 43% in group 1 and 39% in group 2, whereas invasive stomach adenocarcinomas occurred in 36% and 8% of rats from groups 1 and 2, respectively (P < 0.05). Tumors other then stomach sites (duodenum and liver) only developed in rats from group 1 (29%). No lesions were observed in rats exposed to Aqualen without MNNG. Thus, our results demonstrate the inhibitory effect of the activated carbon fiber adsorbent Aqualen on stomach carcinogenesis in rats.

Adsorption↗

Prevention of spontaneous and chemically induced carcinogenesis using activated carbon fiber adsorbent. III. Inhibitory effect of the activated carbon fiber adsorbent 'Aqualen' on 1,2-dimethylhydrazine-induced intestinal carcinogenesis in rats.

Two-month-old outbred female LIO rats were exposed weekly to 15 (experiment I, groups 1, 2 and 3) or to 5 (experiment II, groups 4, 5 and 6) subcutaneous injections of 1,2-dimethylhydrazine (DMH) at a single dose of 21 mg/kg of body weight. From the day of the first injection of the carcinogen, the rats from groups 2, 3, 5 and 6 were given Aqualen in their diet. In both experiments rats were fed Aqualen five times per week together with lab chow at the daily dose of 0.1 g/kg (groups 2 and 5) or 1.0 g/kg (groups 3 and 6) of body weight. Additionally, other rats were not exposed to the carcinogen and served as an intact control (group 7) or were given Aqualen with the diet at the daily dose of 0.1 g/kg (group 8) or 1.0 g/kg (group 9). These experiments were finalized 6 months after the first injection of DMH. In experiments I and II, the majority of tumors were localized in the descending colon. Tumors of the small intestines developed only in rats from experiment I. The total incidence of colon tumors as well as tumors in different parts of the colon and the mean number of tumors per rat were much higher in rats from all groups in experiment I than in the rats from experiment II. In experiment I supplementation of Aqualen to the diet was followed by a decrease in the incidence of tumors in the ascending colon and by a decrease in the number of tumors per rat in both ascending and descending colons regardless of the dose of the enterosorbent. In experiment II the effect of Aqualen was stronger than in experiment I -- the enterosorbent decreased both the tumor incidence and the multiplicity in the total colon, its ascending and descending parts and in the rectum. In experiments I and II the percentage of small colon tumors among rats exposed to Aqualen (groups 2, 3, 5 and 6) was higher than that of the controls (groups 1 and 4). Most of detected intestinal tumors were classified as adenocarcinomas. The level of tumor differentiation was higher in rats exposed to Aqualen. There were no pathological changes observed in rats exposed to Aqualen without DMH. Carcinogen treatment resulted in an increase of serum glucose and cholesterol levels whereas Aqualen normalized these changes. Thus, our results demonstrate the inhibitory effect of activated carbon fiber adsorbent Aqualen on intestinal carcinogenesis in rats.

1,2-Dimethylhydrazine↗

Characteristics of Nonafluorobutyl Methyl Ether (NFE) Adsorption onto Activated Carbon Fibers and Different-Size-Activated Carbon Particles.

The characteristics of adsorption of 1,1,1,2,2,3,3,4,4-nonafluorobutyl methyl ether (NFE), a chlorofluorocarbon (CFC) replacement, onto six different activated carbon; preparations (three activated carbon fibers and three different-sized activated carbon particles) were investigated to evaluate the interaction between activated carbon surfaces and NFE. The amount of NFE adsorbed onto the three activated carbon fibers increased with increasing specific surface area and pore volume. The amount of NFE adsorbed onto the three different-sized-activated carbon particles increased with an increase in the particle diameter of the granular activated carbon. The differential heat of the NFE adsorption onto three activated carbon fibers depended on the porosity structure of the activated carbon fibers. The adsorption rate of NFE was also investigated in order to evaluate the efficiency of NFE recovery by the activated carbon surface. The Sameshima equation was used to obtain the isotherms of NFE adsorption onto the activated carbon fibers and different-sized-activated carbon particles. The rate constant k for NFE adsorption onto activated carbon fibers was larger for increased specific surface area and pore volume. The rate of NFE adsorption on activated carbons of three different particle sizes decreased with increasing particle diameter at a low initial pressure. The adsorption isotherms of NFE for the six activated carbons conformed to the Dubinin-Radushkevich equation; the constants BE(0) (the affinity between adsorbate and adsorbent) and W(0) (the adsorption capacity) were calculated. These results indicated that the interaction between the activated carbon and NFE was larger with the smaller specific surface area of the activated carbon fibers and with the smaller particle diameter of the different-sized-activated carbon particles. The degree of packing of NFE in the pores of the activated carbon fibers was greater than that in the pores of the granular activated carbons. Copyright 2000 Academic Press.

Journal Article↗

A new approach towards defibrillation electrodes: highly conductive isotropic carbon fibers.

A new carbon fiber material was studied for its potential benefit in defibrillation electrodes. Miniaturization of the fiber production can result in small strands with extremely large surface areas. Two carbon fiber patches and a single carbon fiber bundle were used for the purposes of this study, and the results were compared to those obtained with conventional titanium/mesh patch electrodes. Tests performed in a saline filled tank revealed considerably lower resistances through the carbon material when compared to standard mesh electrodes. There was also a higher peak current flow with lower voltage. The carbon fibers exhibited lower impedance for defibrillation and this may be related to low polarization known to occur with carbon materials. This new carbon material may prove to be useful and further research is required.

Carbon↗

[Improving fiber adhesion by surface oxidation in carbon fiber reinforced bone cement].

The mechanical superiority of carbon fiber reinforced PMMA containing additional apatite was shown previously. For further improvement these carbon fibers were now submitted to a superficial oxidation treatment by HNO3. A closer contact between the carbon fibers and PMMA and even trabeculae-like adhesions were detected by Scanning Electron Microscopy. The fatigue strength of the carbon fiber reinforced bone cement could be increased at 17% by this oxidation treatment. This increase, however, is less than that observed in the case of other fiber reinforced composites. Most likely this is caused by the pronounced polymerisation contraction of PMMA. Further improvement of the adhesion of the fibers to cement may be achieved by different oxidation techniques, further extraction of foreign substances or graft polymerization of the carbon fibers by PMMA or other polymers.

Adhesiveness↗

Control of heavy metals during incineration using activated carbon fibers.

Activated carbon fibers (ACFs) were applied to control heavy metals in incineration flue gas. Three heavy metal species (Cr, Cd and Pb), three ACFs, various adsorption temperatures (150, 250 and 300 degrees C) and weights of ACFs were experimentally determined. The results indicated that the effects of the type of ACF and the weight of the ACFs on the solid-state Cr removal were insignificant. The extent of solid-state Cd and Pb removal was related to the knitting structure of ACFs and the physical characteristic of the metals. The removal efficiencies of the solid-state and gaseous metals at various reaction temperature followed the order 250>150>300 degrees C and 300>250>150 degrees C, respectively.

Adsorption↗

[A method for preparation of carbon fiber electrode].

Carbon fiber electrode (CFE) can be used in detection of exocytosis of single neuron or endocrine cell. A simplified method for preparation of CFE, as described in the present paper, greatly ensures the coordination and success of the preparation. Such CFEs have a low noise level. Exocytosis of rat adrenal chromaffin cells was investigated in the clarification of the effect of MPP+ on transmitter release. It is found that exocytosis was not stimulated by MPP+ and the high K+ induced secretion was not changed by MPP+. These observations suggest that the previously reported elevation of dopamine content in the surrounding histosolution of DA neuron is probably resulted from blockage of the re-uptake of DA by MPP+.

1-Methyl-4-phenylpyridinium↗