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Layout Design Method of Hydraulic Manifold Block Components

A technology of hydraulic integration and hydraulic components, which is applied in the direction of mechanical equipment, servo motor components, fluid pressure actuation devices, etc., can solve the problems of design resource waste, time-consuming, hydraulic integrated block design quality and stability, etc. , to achieve the effect of improving the efficiency of the layout, the total length of the oil circuit is short, and the number of process holes is small

Active Publication Date: 2016-07-13
TIANJIN UNIV
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  • Abstract
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  • Application Information

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Problems solved by technology

The design of the hydraulic manifold mainly includes two parts: the layout design of the hydraulic components and the design of the internal oil circuit connection. A lot of time, resulting in a waste of design resources, and has a great impact on the design quality and stability of the hydraulic manifold

Method used

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  • Layout Design Method of Hydraulic Manifold Block Components
  • Layout Design Method of Hydraulic Manifold Block Components
  • Layout Design Method of Hydraulic Manifold Block Components

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Embodiment Construction

[0046] The specific implementation manner of the present invention will be further described in detail below in conjunction with the accompanying drawings and examples.

[0047] The process of the present invention is as figure 1 shown, including the following steps:

[0048] The first step is to define the name of each surface of the hydraulic manifold. Such as figure 2 As shown, for the convenience of description, the names of the surfaces of the hydraulic manifold block are defined as 1 side, 2 sides, 3 sides, 4 sides, 5 sides, and 6 sides; according to the hydraulic component supplier manual, the base plate model of the component is extracted and classified, such as image 3 As shown, according to the size of the oil port of the component, the base plate can be divided into base plates with a diameter of 6mm, base plates with a diameter of 10mm, and base plates with a diameter of 16mm and above. The component layout strategies of hydraulic manifolds with different diam...

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Abstract

The invention discloses a layout design method for hydraulic integrated block elements. The layout design method comprises the following steps that 1, the names of surfaces, meeting a six-face solid, of a hydraulic integrated block are defined; 2, element base plate models are extracted and classified, and an element layout constraint data base and an element layout principle database are built; 3, a hydraulic integrated block element list and a communicating relation list are built; 4, the elements including an oil mouth P, an oil mouth T, an oil mouth A and an oil mouth B are arranged on the top face of the hydraulic integrated block; 5, the drift diameter specification of the hydraulic integrated block is determined, and corresponding layout strategies are selected for other elements; 6, other elements in the lists are arranged on the other faces of the hydraulic integrated block. Compared with the prior art, through the layout design of the hydraulic integrated block elements, a good element layout effect is generated, and a basis is provided for the internal oil path design of the hydraulic integrated block. Different drift diameter specifications are defined, hydraulic element layout design is carried out on the hydraulic integrated blocks with different drift diameters, layout accuracy and layout efficiency are improved, and the aims that the oil path in the hydraulic integrated block is shortest and the number of process holes is smallest are achieved at last.

Description

technical field [0001] The invention relates to a method for designing a hydraulic manifold, in particular to a method for designing the layout of elements of a hydraulic manifold for different diameter specifications. Background technique [0002] The hydraulic manifold is the core part of the integrated hydraulic system. Its exterior is a compact layout of various irregular hydraulic components on each surface, and its interior is dense, complex, and criss-cross channels. The integrated configuration of hydraulic components using hydraulic integrated blocks can significantly reduce pipeline connections, reduce the complexity of the hydraulic system, increase the flexibility of adding and changing circuits, and improve the adaptability of the system. It has the advantages of compact structure, convenient installation and maintenance, and less leakage. , Small vibration, which is conducive to the integration and standardization of the hydraulic system. [0003] The layout d...

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F15B13/02
Inventor 牛文铁白金伟
Owner TIANJIN UNIV