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1.
The article focuses on the problem of polycrystalline diamond cutter (PDC) cutters' overlapping influence on rock reaction force. This study proposed a static force balance model, based on the model of Wojtanowicz and Kuru (1993 Wojtanowicz, A.K.; Kuru, E. (1993) Mathematical modeling of PDC bit drilling process based on a single-cutter mechanics. Journal of Energy Resources Technology-Transactions of the ASME, 115(4): 247256.[Crossref], [Web of Science ®] [Google Scholar]). The innovation of this model is considering two types of friction forces, acting on the contact frontal surface and the lateral surface of a PDC cutter, respectively. Additionally, the proposed model assumes a rock reaction force direction not orthogonal to the contact surface of a cutter but parallel to the crack propagation direction and similar to the rock heterogeneity direction.

Numerical study was provided for a new and a worn PDC cutter to define a rock reaction force depending on options of adjacent cutters' placement (cutters' shape, cutter sizes, bake rake angle, side rake angle, etc.). Two main tendencies were observed: increasing of lateral plot of a cutter decreases rock reaction force, and deviation between directions of cutting force and crack propagation is an extremely significant factor and affects rock reaction force magnitude.  相似文献   

2.
《仪器科学与技术》2013,41(5):393-405
This paper presents the design of an automated measurement device developed for speciation studies of organometallic compounds in samples of a complex and varying composition matrix.

The instrument automates three essential steps in a typical speciation analysis procedure: isolation of analytes, their enrichment, and time-resolved introduction into a detector. Analytes are extracted by purging from post-sample dissolution/digestion mixture, in the form of volatile derivatives, with their simultaneous enrichment on a capillary cryotrap. Before introduction into a detector, they are rapidly (ca. 0.5 min.) separated on a multi-capillary gas chromatographic column operating in isothermal mode.

The construction of the automated speciation analyser (ASA) makes it practically independent of a kind of the detector used (it was tested with MIP-AED,[1] Pereiro, I. R., Wasik, A. and ?obński, R. 1998. Purge-and-Trap Isothermal Multicapillary Gas Chromatographic Sample Introduction Accessory for Speciation of Mercury by Microwave-Induced Plasma Atomic Emission Spectrometry. Anal. Chem., 70: 4063 [Google Scholar] ICP—MS,[2] Wasik, A., Pereiro, I. R., Dietz, Ch., Szpunar, J. and ?obński, R. 1998. Speciation of Mercury by ICP-MS After On-Line Capillary Cryofocusing and Ambient Temperature Multicapillary Gas Chromatography. Anal. Commun., 35: 331 [Google Scholar] and AAS detectors) and gives the freedom of choice of sample preparation procedure. The only requirement to the latter is that analytes should be in a form of volatile compound in an aqueous matrix.  相似文献   

3.
In engineering practice, the predictions of bearing steady state and the dynamic characteristics are based on the bearing nominal dimensions. However, as the authors showed in a previous study (Fillon, et al. (1) Fillon, M., Dmochowski, W. and Dadouche, A. 2007. Sensitivity of Tilting Pad Journal Bearing Performance Characteristics to Manufacturing Tolerances. Trib. Transactions, 50: 387400. [Taylor & Francis Online], [Web of Science ®] [Google Scholar]), manufacturing tolerances related to the bearing geometry (e.g., bearing clearances or angular pivot position) can significantly affect the steady-state characteristics such as the operating temperature, the minimum film thickness, and the power loss. This paper investigates changes to the bearing dynamic properties due to variations of the design parameters within the manufacturing tolerances. The dynamic properties of the tilting-pad journal bearings are represented by eight linear coefficients of stiffness and damping.

The study presents results obtained for realistic variations of bearing clearance, preload, pivot offset, as well as the pad angular extension. As an example, five-pad tilting-pad journal bearings with a diameter of 76.2 mm (3 in.) and three different L/d ratios have been used.  相似文献   

4.
Oxley's machining theory has recently been extended[1] Adibi-Sedeh, A. H., Madhavan, V. and Bahr, B. 2002. Extension of Oxley's analysis of machining to use different material models. Submitted to ASME Journal of Manufacturing Science and Engineering [Google Scholar] to accept material property inputs in the form of widely used constitutive models such as the Johnson–Cook and MTS material models. In the process, additional modifications have been made to the model to improve its self-consistency. For instance, the shear force is obtained from the total work of deformation, thereby eliminating the unknown parameter η, and the hydrostatic pressure at the tool-chip interface is calculated considering the gradient in temperature in addition to the gradient in strain. This study is aimed at understanding the effect of these modifications separate from the changes due to the introduction of the new material models by comparing results obtained using Oxley's original model to that obtained with the above modifications. We also compare results obtained using different constitutive models for AISI 1045 to the experimental results of the “Assessment of Machining Models” effort.  相似文献   

5.
6.
Reich, et al. ( 1 Reich, R., Panseri, N. and Bohaychich, J. 2001. “The Effects of Lubricant Starvation in Cold Rolling of Aluminum Metal When Using on Oil-in-Water Emulsion,”. Lubrication Engineering, 57: 1518.  [Google Scholar] ) reported that the rolling force for the cold rolling of aluminum increased when starvation occurred in the oil-in-water (O/W) emulsion used as the rolling fluid. They reported that the starvation occurrence was dependent on the emulsion concentration and the size of the oil droplets, but the thickness of a starved lubricant film was independent of the rolling speed. However, from their experimental results, the cause of the increase of the rolling force and the quantitative inlet oil film thickness at the entrance between the roll and the workpiece for the O/W emulsions cannot be understood. In this study, the aluminum rolling experiments using O/W emulsions with different concentrations were carried out in order to reproduce the increase of the rolling force. Experiments were carried out using a laboratory mill with two high rolls. The workpiece material was an aluminum A1050-H. Commercial rolling oil was used as base oil for the aluminum emulsion. The rolling force was measured during the rolling and the appearance of the workpiece after rolling was taken. Moreover, the effect of the surface roughness of the rolls on the increase of the rolling force was investigated. The increase of the rolling force was reproduced in the aluminum rolling with the O/W emulsion using the laboratory rolling mill. It was observed that the increase of the rolling force occurred after the oil starvation, and it depended on the oil starvation, the oil film thickness, the surface roughness of the roll, the rolling speed, and the reduction in thickness.  相似文献   

7.
Two computational models to determine the fatigue life and reliability of a commercial turboprop gearbox are compared with each other and with field data. These models are (1 Zaretsky, E. V. 1992. “STLE Life Factors for Rolling Bearings,”, STLE SP–34 Park Ridge, IL: STLE.  [Google Scholar]) Monte Carlo simulation of randomly selected lives of individual bearings and gears comprising the system and (2 Weibull, W. 1939. “A Statistical Theory of the Strength of Materials,”. In Ingenioersvestenskapsakademiens. Handl. 151 [Google Scholar]) two-parameter Weibull distribution function for bearings and gears comprising the system using strict-series system reliability to combine the calculated individual component lives in the gearbox. The Monte Carlo simulation included the virtual testing of 744,450 gearboxes. Two sets of field data were obtained from 64 gearboxes that were first-run to removal for cause, were refurbished and placed back in service, and then were second-run until removal for cause. A series of equations were empirically developed from the Monte Carlo simulation to determine the statistical variation in predicted life and Weibull slope as a function of the number of gearboxes failed. The resultant L 10 life from the field data was 5,627 h. From strict-series system reliability, the predicted L 10 life was 774 h. From the Monte Carlo simulation, the median value for the L 10 gearbox lives equaled 757 h. Half of the gearbox L 10 lives will be less than this value and the other half more. The resultant L 10 life of the second-run (refurbished) gearboxes was 1,334 h. The apparent load-life exponent p for the roller bearings is 5.2. Were the bearing lives to be recalculated with a load-life exponent p equal to 5.2, the predicted L 10 life of the gearbox would be equal to the actual life obtained in the field. The component failure distribution of the gearbox from the Monte Carlo simulation was nearly identical to that using the strict-series system reliability analysis, proving the compatibility of these methods.  相似文献   

8.
The development of a general 3D model for a corner-radiused, chamfered, edge-honed cutting worn tool is elaborated. The surface of the cutting tool was constructed using one angular scalar specifying location on the corner radius and leading/trailing edges and another non-dimensional scalar for specifying location on the relief, edge-hone, chamfer and tool-top. Then, for given geometric parameters and cutting conditions, the angular extremities of contact on the corner radius and leading/trailing edges was obtained and validated. The kinematic surface finish on the workpiece surface including the Brammertz and sideflow effects was then simulated in typical hard turning. The model was expanded to allow wiper edges and flank wear. A simplified crater wear model was adopted for continuous hard turning to allow virtual cross-sectioning. Accurate estimation of flank and crater wear volume was also enabled. The model results for the fresh tool agreed with well-known trends from 2D modeling. Preliminary results indicate that there exists a geometric basis for higher Ra and Rt for a worn tool. The Brammertz effect simulation, though not in agreement with the data of Knuefermann (2003 Knuefermann , M.M.W. ( 2003 ) Machining surfaces of optical quality by hard turning, School of Applied Sciences, Cranfield University, Cranfield, Bedfordshire, UK . [Google Scholar]) corroborated the modification proposed therein.  相似文献   

9.
We describe a method for directly calculating the contours of a function from cone beam data. The algorithm is based on a new inversion formula for the gradient of a function presented in Louis (Inverse Probl 32(11):115005, 2016. http://stacks.iop.org/0266-5611/32/i=11/a=115005). The Radon transform of the gradient is found by using a Grangeat type of formula, reducing the inversion problem to the inversion of the Radon transform. In that way the influence of the scanning curve, vital for all exact inversion formulas for complete data, is avoided Numerical results are presented for the circular scanning geometry which neither fulfills the Tuy–Kirillov condition nor the much weaker condition given by the author in Louis (Inverse Probl 32(11):115005, 2016. http://stacks.iop.org/0266-5611/32/i=11/a=115005).  相似文献   

10.
Erosion is so widespread and undesirable in various engineering applications such that it is so incumbent to find anti-erosion means to address it. In previous researches (Han et al. in J Bionic Eng 7(09):S50–S58, 2010; J Wuhan Univ Technol Mater Sci Ed 26(2):305–310, 2011; Langmuir 28(5):2914–2921, 2012; Adv Colloid Interface Sci 234:27–50, 2016; Surf Coat Technol 313:143–150, 2017; Zhang et al. in Adv Mater Sci Eng 2013(5):1–9, 2013), people found that the surface of desert scorpion Androctonus australis, which belonged to the parabuthus, had very complex microstructures that had the strong anti-erosion qualities in the blown sand environment. Here, through further research, a new microstructure, hexagonal pit structure, was firstly discovered on the back of desert scorpion. These microstructures were applied in the design of biomimetic samples, which were fabricated by 3D printer using EOS stainless steel GP1. These biomimetic samples were used to test the erosion rate under the impact of quartz sand of three different sizes. The experiment was carried out using a blasting jet machine with injection angle, velocity and time of 30°, 25 ms?1 and 90 s, respectively, and the results showed that the biomimetic samples with different microstructures had better anti-erosion performance. The hexagonal pit structure, whose depth was 200–300 μm and the length was 200–500 μm, had also good anti-erosion performance. The physical model was established to express the mechanism of anti-erosion by controlling the motion direction and impacting velocity of the particles. The anti-erosion performance of all these biomimetic samples can be quantified by the erosion rate and improvement rate. On the whole, these microstructures all have good anti-erosion effect; hence, this paper research is of great practical significance.  相似文献   

11.
Cuckoo search (CS) is a relatively new meta-heuristic that has proven its strength in solving continuous optimization problems. This papers applies cuckoo search to the class of sequencing problems by hybridizing it with a variable neighborhood descent local search for enhancing the quality of the obtained solutions. The Lévy flight operator proposed in the original CS is modified to address the discrete nature of scheduling problems. Two well-known problems are used to demonstrate the effectiveness of the proposed hybrid CS approach. The first is the NP-hard single objective problem of minimizing the weighted total tardiness time ( \(1|| \sum {T_{w}}\) ) and the second is the multiobjective problem of minimizing the flowtime \(\overline {C}\) and the maximum tardiness T m a x for single machine ( \(1|| (\frac {1}{n}\sum {C}, T_{max})\) ). For the first problem, computational results show that the hybrid CS is able to find the optimal solutions for all benchmark test instances with 40, 50, and 100 jobs and for most instances with 150, 200, 250, and 300 jobs. For the second problem, the hybrid CS generated solutions on and very close to the exact Pareto fronts of test instances with 10, 20, 30, and 40 jobs. In general, the results reveal that the hybrid CS is an adequate and robust method for tackling single and multiobjective scheduling problems.  相似文献   

12.
When a rubber block is squeezed against a nominal flat but rough surface, the rubber bottom surface will penetrate into the substrate roughness profile. The relation between penetration depth \(w\) (or the average interfacial separation \(\bar{u}\) ) and the applied squeezing pressure \(p\) determines the (perpendicular) contact stiffness \(K=\hbox {d}p/\hbox {d}w=-\hbox {d}p/\hbox {d}\bar{u}\) , which is important for many applications. We have measured the relation between \(p\) and \(\bar{u}\) for a rubber block squeezed against 28 different concrete and asphalt road surfaces. We find a linear relation between \({\mathrm{log}}p\) and \(\bar{u}\) , in agreement with theory predictions. The measured stiffness values correlate rather well with the theory prediction.  相似文献   

13.
We developed a new magnetic levitation tribometer (MLT) to study point-contact friction via pendulum method. The device allows us to carry out fast and accurate point-contact measurement of friction between a pair of materials. The MTL parameters were found with the help of test experiments with the steel ball / glass plate pair. The friction coefficient values are coherent with the results known in the literature (Serway and Beichner in Physics for scientists and engineers, 5th edn, Saunders College Publishing, Orlando, 2000). The proposed MLT technique at loads lower than \(10^{-3}\) N is very promising for non-destructive investigation of frictional properties of organic monolayers.  相似文献   

14.
This paper allows the backorder rate as a control variable to widen applications of the Wu and Tsai’s 2001 model. Moreover, we also consider the backorder rate that proposed by combining the work of Ouyang and Chuang 2001 (also see Lee 2005) with the work of Pan and Hsiao 2001, 2005) (also see Pan et al. 2004) to present a new general form. Thus, the backorder rate is dependent on the amount of shortages and backorder price discounts. In addition, we also develop an algorithmic procedure to find the optimal inventory policy. Finally, a numerical example is also given to illustrate the results.  相似文献   

15.
Abstract

Four amperometric biosensors, based on diamond paste, are proposed for the determination of the enantiopurity of leucine. The design of the biosensors used physical immobilization in diamond paste of L‐amino acid oxidase for the assay of L‐leucine and D‐amino acid oxidase for the assay of D‐leucine. The response characteristics of the different diamond paste based biosensors were obtained and compared. The linear concentration ranges for the biosensors were in pmol/L to nmol/L magnitude order. The biosensors showed high reliability for the determination of enantiopurity of leucine as a raw material.  相似文献   

16.
17.
Load behavior is one of the most critical factors affecting mills' energy consumption and grinding efficiency,and is greatly affected by the liner profiles. Generally, as liner profiles vary, the ball mill performances are extremely different. In order to study the performance of the ball mill with regular polygon angle-spiral liners(RPASLs), experimental and numerical studies on three types of RPASLs, including regular quadrilateral, pentagonal and hexagonal, are carried out. For the fine product of desired size, two critical parameters are analyzed: the energy input to the mill per unit mass of the fine product, E*, and the rate of production of the fine product, F*. Results show that the optimal structure of RPASLs is Quadrilateral ASL with an assembled angle of 50°. Under this condition, the specific energy consumption E* has the minimum value of 303 J per fine product and the production rate F* has the maximum value of 0.323. The production rate F* in the experimental result is consistent with the specific collision energy intensity to total collision energy intensity ratio E_s/E_t in the simulation. The relations between the production rate F* and the specific energy consumption E* with collision energy intensity E_s and E_t are obtained. The simulation result reveals the essential reason for the experimental phenomenon and correlates the mill performance parameter to the collision energy between balls,which could guide the practical application for Quadrilateral ASL.  相似文献   

18.
Abstract

The particle size and heterogeneity effects on the analyte line were investigated for the analysis of powdered samples by X-ray fluorescence technique. In the analysis of samples utilizing the powder method, these effects caused serious errors with variations in particle size for the emitted intensity. The fluorescence intensities of some elements in pellet samples of cement (the range of particle sizes, < 32 µm, 32–38 µm, 38–45 µm, 45–63 µm, 45–75 µm, 75–106 µm, and 106–150 µm and, at press pressure 3.50 and 1.41 × 107 kg/m2), are measured using a wavelength dispersive X-ray fluorescence (WDXRF) spectrometer for 14 pellets prepared according to the powder method. The results show that the K α X-ray fluorescence intensities from samples can effect about 17% maximum differences in normalized intensities within selected particle sizes. These experimental results were interpreted by comparing with the other experimental results in the literature.  相似文献   

19.
Polytetrafluoroethylene (PTFE) possesses exceptional lubricating properties; however, its uses are limited due to its high susceptibility to wear. In an effort to overcome this shortcoming, a great deal of focus is placed on creating PTFE composites that exploit the strengths of PTFE and also reduce or eliminate its weaknesses. This investigation explores the use of Au nanoparticle-filled PTFE films to produce low-friction and low-wear surface coatings. PTFE + Au nanoparticle composite films were produced by dip coating stainless steel substrates into a mixture of colloidal PTFE and Au nanoparticles. Tribological tests showed that the composite film has a wear life that is twice that of pure PTFE and possesses an average coefficient of friction that is up to 50 % lower. PTFE suffers delamination as a result of poor adhesion of the film to the substrate and tearing resulting from a dominant adhesive wear mode. PTFE + Au, on the other hand, shows no sign of delamination or adhesive wear. This change in wear mode caused by the addition of Au nanoparticles significantly increases the wear resistance and durability of PTFE.  相似文献   

20.
In spite of using a large number of subgroups (m) of small samples (n), the estimated control limits of $ \bar{X} $ chart in phase I can be erroneous unless the preliminary samples are drawn from a stable process. As a result, the performance of the chart in phase II can be significantly affected. The pattern in the $ \bar{X} $ chart, exhibited by the plots of the subgroup averages of the preliminary samples, will be different depending on stability and instability of the process while the preliminary samples were collected. Based on this concept, a new feature-based test statistic (FTS) is proposed for evaluating suitability of the preliminary samples for the designing of the $ \bar{X} $ chart. The FTS, for given m, approximately follows $ N[1,{\text{ SD(}}m{)]} $ , where SD(m) is a function of m. The goodness of the approximation and effectiveness of the test are evaluated using simulated data. The results show that both are satisfactory for m?>?=48. The proposed statistic is also quite effective in detecting unstable process condition resulting in a cyclic pattern. The computation of FTS involves some complexities. However, now-a-days computers are widely available and so computation difficulty may not be a problem.  相似文献   

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