摘要:
According to the present invention, a concept of functional quantities indicative of quantified functional degrees of such lower-level functions as "clearer characters", "cleaner background", and "thicker characters", which are subordinating to a qualification-oriented function of "more beautiful characters". Characteristic patterns of functional quantities F1, F2 and F3 of the lower-level functions for physical parameters (for example, the surface potential of a photoreceptor body) are prepared. When a fault repair is implemented by changing a value of a physical parameter, a tradeoff occurs between lower-level functions which are influenced by the physical parameter. That is, taking into account the functional quantities F1, F2 and F3 of the lower-level functions, the value of the physical parameter is set so that the functional quantity of the function of "more beautiful characters" is maximized. By introducing the concept of the functional quantities indicative of the quantified functional degrees of the functions, a flexible self-repairing function can be realized, thereby optimizing a repair operation.
摘要:
The present invention makes it possible to effectively make self-repair of a fault by referencing repair analysis cases. The cases are hierarchically classified according to the fault symptom, the fault and the class, and a case suitable for a fault developed is selected to perform repair work. In applying a case, the case is corrected as required. If work succeeded by the corrected case, the corrected case is registered in the same class as a class to which the original case belongs, to make each class rich in case contents.
摘要:
The amount of degradation, converted into a fuzzy qualitative value, is found on the basis of state data sensed by sensors 1a, 1b and 1c and degradation data. The value of a parameter changed by the amount of degradation is represented by a fuzzy qualitative value. In addition, the state data is converted into a fuzzy qualitative value, and it is judged by the value whether or not a fault exists. As a result, if a fault exists, fault diagnosis is made utilizing, as an initial value the value, of the parameter changed by the amount of degradation, and the causes of the fault are specified by comparing the result of the diagnosis with the state data converted into the fuzzy qualitative value. The causes of the fault specified are repaired by operating corresponding actuators 6a, 6b and 6c. Since the causes of the fault are specified while handling the fuzzy qualitative value, the causes of the fault can be specified more precisely. Accordingly, it is possible to achieve an image forming apparatus in which autonomy is high and repair labor is reduced.
摘要:
Disclosed is a water developable photosensitive resin composition suitable for a printing plate, which has excellent dimensional stability and excellent chemical and physical properties. The photosensitive resin composition comprises;(A) an acrylic resin of which glass transition temperature (T.sub.g), as defined by ##EQU1## [wherein T.sub.g1, T.sub.g2, . . . represents a glass transition temperature of a homopolymer prepared from each monomer, T.sub.g0 represents a glass transition temperature of a copolymer and W.sub.1, W.sub.2, . . . shows a weight fraction of each monomer.] and acid value (AV) satisfy the following relations;60.degree. C..ltoreq.T.sub.g .ltoreq.125.degree. C.80 mg KOH/g.ltoreq.AV.ltoreq.130 mg KOH/g, andT.sub.g -10.ltoreq.AV.ltoreq.T.sub.g +40(B) a basic nitrogen atom-containing compound(C) an ethylenically unsaturated monomer, and(D) a photopolymerization initiator.
摘要:
A photosensitive resin base printing material in the form of laminate comprising, in successive order, a support, a photosensitive resin layer, a slip layer of a high molecular substance which is soluble or swellable in a developer, an optional releasing layer and a sheet or film form of protective layer, which is characterized in that a dyestuff is included in an amount of 0.01 to 20% by weight of the high molecular weight substances in said slip layer.The present printing material is specifically excellent in resolution and far improved as compared with heretofore proposed printing materials in respect to both handling and visual inspection properties.