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791.
792.
The punch press is a further classical example of impact noise: the force is built up in the punch relatively slowly, and the whole machine is strained until the load on the material being punched reaches a yield and shortly afterwards a fracture level. At this stage the strain energy in the machine and its workpiece must be redistributed and this leads to vibration of the whole machine and to noise radiation. In this paper work which has been carried out at ISVR over a number of years is presented. It describes the way the Energy Accountancy Equation [1] can be modified to relate the noise radiated directly to the sum of the squares of the large rates of change of force against time, and illustrates clearly the way that noise control, with use of passive or active methods in designing the punch tooling, can be related directly to the one parameter 10 log Σ[f(t)]max2. It is shown that noise levels can be reduced by up to 30 dB under ideal conditions by fracture pulse tailoring while still cutting metal, but that more realistically, 10 dB reductions may be obtained below those of current practice by practical tool design. An explanation is given of why large open presses are never likely to achieve the proposed factory noise levels and that the noise from double-sided presses can be controlled effectively by tooling modifications and by the addition of damping. The paper describes work carried out on passive and active cancellation systems used to arrest and springback of the press structure following workpiece material fracture and explains the practical limitations of such systems. Active techniques are limited by the difficulties obtained, with brittle hard materials, of finding a trigger and load freezing system which can operate fast enough to reduce adequately the force parameter 10 log Σ (fmax(t))2. Where punching finish allows, it has been found that well-designed shear and/or cutting with low percentage clearance is superior to active cancellation, since this provides a surer method of reducing the above force parameter, especially for harder materials. The Energy Accountancy Equation suggests that the use of increased structural damping can be an effective method of noise reduction, particularly if the punch press structure is initially only lightly damped. Experiments on a third-scale model of a 200 tonne double-sided press suggest that this damping needs to be added selectively in areas where the vibrational energy density is high and coincides with areas of high noise radiation. Thus, in the experiments described, 12 dB reduction has been obtained under such conditions, only 1 or 2 dB reduction being obtained when damping of the base plate has been unaltered.  相似文献   
793.
The preparation, characterisation and 1H NMR spectra of some N-arylaminopropenylylidenearylammonium salts are reported. The NMR data show that in DMSO the cations exist as conjugated amino–imines, generally as the ‘all-trans’ geometrical isomer. An exception is found in the case of the 4-nitrophenyl derivative which produces a mixture of the ‘all-trans’ and ‘cis-trans’ isomers with slow exchange between them at room temperature. The relative stability of the ‘all-trans’ isomer increases as the salt becomes more ionic. By varying the temperature, pH and nature of the anion it is found that exchange of the N? H protons on the cation controls the appearance of spin-spin coupling between the N? H and 1,3-propene protons.  相似文献   
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795.
The fungus Mortierella isabellina converts ethyl benzene and a number of parasubstituted derivatives to the corresponding optically active 1-phenylethanols with enantiomeric excesses between 5 and 40%. Hydrogen removal from the substrate preceeds product formation and is stereochemically independent of it.  相似文献   
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Abstract— Measurements of relative photolysis yields in nanosecond flash photolysis studies of carbon monoxide and dioxygen complexes of haemoglobin and myoglobin are compared with published values of the quantum efficiency for photodissociation obtained from microsecond flash or continuous photolysis studies. It is shown that the differences in quantum yield between HbCO and MbCO and between Hb02 and Mb02 can be correlated with the different extent of ultrafast recombination observed in the nanosecond experiments. Furthermore, the temperature dependence of the quantum yield in the case of HbCO can be entirely attributed to the effect of temperature on the ultrafast recombination.  相似文献   
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