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88results about How to "Poor control" patented technology

Method and apparatus for forming parts from a continuous stock material and associated forge

The present invention provides a method and apparatus for forming a plurality of parts, such as spade-type boring bits, from a continuous stock material. Thus, the various steps of the forming method of the present invention can be performed to predetermined portions of the continuous stock material prior to separating the continuous stock material into discrete parts, thereby enhancing the efficiency of the forming process. The present invention also provides an improved forge for forming portions of the continuous stock material into parts having a predetermined shape. The forge can be designed to provide a clearance region proximate the forward end of the ram to permit slight flexing of the forward end of the ram in a radially outward direction during forging operations. The forge can also include a lubrication system for lubricating its various components. In addition, the forge can incrementally rotate the ram after one or more parts have been forged. By repeating the incremental rotation of the ram, the forge will eventually rotate the ram a full 360°. An improved forging die is also provided which includes a back surface having a conical medial section and a pair of conical lateral sections that are recessed relative to the medial section such that forces will principally be applied to the medial section during forging operations.
Owner:BLACK & DECKER INC

Tunneling construction method of fully mechanized tunnelling machine for weak-cementation eugeogenous rock dip drift

The invention relates to a weakly consolidated eugeogenous rock body slant roadway road-header tunneling construction method. The existing tunneling construction of a weakly consolidated eugeogenous rock body slant roadway uses drill and blast method, while wall rocks are fragmentized and soft and the problems of out break, big perturbation, roof fall, and the like, exist widely, therefore, the timely supporting can not be ensured, and the deterioration of the wall rock state is beyond control. At present, no method for the weakly consolidated eugeogenous rock body slant roadway road-header tunneling construction exists. The technical problem solved by the invention is to provide a road-header tunneling construction technology directing at the weakly consolidated eugeogenous rock body slant roadway, having less perturbation to the wall rock and being capable of supporting the wall rock. The invention solves the problem that as all of the component forces of the huge pressure of the deadweight of the road-header in the slant roadway tunneling direction act on the head of the road-header, the head of the road-header is not easy to control. The tunneling and constructing procedures of the road-header are as follows: cutting, primary supporting, gangue loading, transfer, gangue transportation and secondary supporting.
Owner:ORDOS HAOHUA CLEAN COAL CO LTD +1

Automatic workpiece conveying and assembling production system and method

The invention discloses an automatic workpiece conveying and assembling production system and method suitable for the technical field of automatic production systems. The production system comprises a transmission device, a material accommodating device, a rotating drive device, a first industrial robot and a second industrial robot. The material accommodating device is provided with at least two material storage discs; an image recognition device is arranged above the transmission device and/or the material accommodating device. The production method includes the following steps that photos of different teaching workpieces are taken through the image recognition device, and then the workpieces are alternatively taken out of the material accommodating device and conveyed to the transmission device through the first industry robot; photos of the teaching workpieces on the transmission device are taken through the image recognition device, and then the workpieces are clamped into the material accommodating device from the transmission device through the second industrial robot. The automatic workpiece conveying and assembling production system and method are perfect in adaptability, high in production efficiency and convenient to adopt.
Owner:SHENZHEN INST OF ADVANCED TECH CHINESE ACAD OF SCI

Steel for ball screws and manufacturing method thereof

PendingCN110484837ALow content of harmful elementsGuaranteed amount of residual aluminumBall screwWater immersion
The invention relates to steel for ball screws. The steel for ball screws comprises, by mass: 0.45%-0.60% of C, 0.15-0.40% of Si, 0.90-1.10% of Mn, 0.70-1.20% of Cr, less than or equal to 0.015% of S,less than or equal to 0.025% of P, less than or equal to 0.25% of Ni, 0.15-0.40% of Mo, less than or equal to 0.30% of Cu, less than or equal to 0.05% of Al, less than or equal to 0.0010% of Ca, lessthan or equal to 0.003% of Ti, less than or equal to 0.0010% of O, 0.0050-0.0090% of N, less than or equal to 0.04% of As, less than or equal to 0.03% of Sn, less than or equal to 0.005% of Sb, lessthan or equal to 0.002% of Pb, and the balance Fe and inevitable impurities. The delivery state of the steel is as follows: high-temperature quenching and tempering are carried out, and the hardness meets 220-280 HBW, and the microscopic structure is of a sorbite and bainite structure, and is subjected to SEP 1927 water immersion high-frequency flaw detection, so that the defect length is requirednot to exceed 5 mm. The manufacturing process comprises the steps of electric furnace or converter, external refining, VD or RH vacuum degassing, continuous casting, continuous casting blank squaringto form an intermediate billet (a square billet), intermediate billet heating and rolling, finishing, quenched-tempered heat treatment (including high temperature quenching and tempering), surface lathing and warehousing.
Owner:JIANGYIN XINGCHENG SPECIAL STEEL WORKS CO LTD

Fault-tolerant control method of dual-motor synchronous control system

The invention discloses a fault-tolerant control method of a dual-motor synchronous control system. A feedback rotating speed and a rotor position are input into a synchronous control unit, three-phase currents of double motors are converted through Park and Clark to obtain respective feedback quadrature-direct axis currents, corresponding torques are input into the synchronous control unit to becompared, and a corresponding angle and speed compensation strategies are determined; a quadrature-axis reference current and a direct-axis reference current are compared with the feedback quadrature-direct axis current of the double motors, and respective quadrature-direct axis reference voltages are calculated; Park inverse transformation is performed on the quadrature-direct axis reference voltage of the double motors to obtain two voltage components under a static coordinate system, and three duty ratio signals are obtained; and a fault bridge arm of the inverter is judged by detecting a three-phase current of the double motors, fault signals are sent to a fault-tolerant inverter and a PWM signal logic synthesis unit to complete reconstruction of a fault-tolerant topology and implementation of a fault-tolerant algorithm, and finally fault-tolerant control of the double permanent magnet synchronous motors is achieved. System reliability is high.
Owner:CHECC DATA CO LTD +1
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