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雙組份打膠機設(shè)計方法有哪些?

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中空玻璃設(shè)備--雙組份打膠機設(shè)計三種辦法:
Hollow glass equipment -- three methods for the design of two-component gluing machine:
(一)雙組份打膠機機械體系規(guī)劃辦法
(1) Mechanical system planning method of two component gluing machine
機械體系規(guī)劃足研究組成體系的各部分及其內(nèi)在聯(lián)系,從全體體系動身,建基本規(guī)劃準則,辯證解決設(shè)汁問題的一種規(guī)劃分法。體系規(guī)劃辦法的主要思維是在規(guī)劃過程中強調(diào)體系內(nèi)部和外部環(huán)境的聯(lián)系,強調(diào)全體體系和分體系的聯(lián)系,并以之貫穿干整個規(guī)劃過程。在分解與綜合中要考慮各分體系聯(lián)絡(luò)聯(lián)系的強弱及其與全體體系相關(guān)的完整性。
Mechanical system planning is a kind of planning method that studies the parts and internal relations of the system, starts from the whole system, establishes the basic planning criteria and dialectically solves the design problem. The main thinking of the system planning method is to emphasize the connection between the internal and external environment of the system, the connection between all systems and subsystems, and to run through the whole planning process. In decomposition and synthesis, it is necessary to consider the strength of connection of each subsystem and the integrity related to the whole system.
(二)雙組份打膠機優(yōu)化規(guī)劃辦法
(2) Optimization planning method of two component gluing machine
優(yōu)化規(guī)劃辦法是應(yīng)用數(shù)學化原理解決實際問題的規(guī)劃辦法。針對規(guī)劃使命,以結(jié)構(gòu)更合理,工作性能,成本等為規(guī)劃要求,在多種方案、多組參數(shù)、多種規(guī)劃變量巾確認主要規(guī)劃變量的取值,使之滿足規(guī)劃要求。在機械規(guī)劃中,優(yōu)化規(guī)劃體現(xiàn)為更傳規(guī)劃方案的確認和規(guī)劃參數(shù)的確認。
Optimization planning method is a planning method to solve practical problems by applying mathematical optimization principle. In view of the planning mission, the most reasonable structure, the best performance and the lowest cost are taken as the planning requirements. The value of the main planning variables is confirmed in a variety of schemes, groups of parameters and various planning variables to meet the optimal planning requirements. In the mechanical planning, the optimization planning is embodied in the confirmation of the best planning scheme and the confirmation of the best planning parameters.
進行雙組份打膠機優(yōu)化規(guī)劃時,首要需要對具體的工程問題進行比較深化的了解,挑選優(yōu)化核算辦法,構(gòu)造合適的數(shù)學模型,尋覓規(guī)劃成果,找出規(guī)劃參數(shù)。如減速器規(guī)劃中,能夠?qū)①Y料更省和結(jié)構(gòu)更緊湊作為規(guī)劃方針。這樣,在傳動裝置規(guī)劃核算中.應(yīng)該注意合理挑選熱處理工,參數(shù)挑選時盡量使各部分的強度量合理。運用優(yōu)化規(guī)劃辦法,能夠加快規(guī)劃過程、縮短規(guī)劃周期,達到事半功倍的意圖。
In the optimization planning of two-component gluing machine, it is necessary to understand the specific engineering problems, select the optimal accounting method, construct the appropriate mathematical model, search for the optimal planning results, and find out the optimal planning parameters. For example, in the planning of reducer, it can take the most economical data and the most compact structure as the planning guideline. In this way, in the planning and accounting of the transmission device, attention should be paid to the reasonable selection of heat treatment workers, and the strength of each part should be reasonable as far as possible during the parameter selection. Using optimization planning method can speed up the planning process, shorten the planning cycle, and achieve the purpose of twice the result with half the effort.
(三)雙組份打膠機牢靠性規(guī)劃
(3) Reliability planning of two-component beater
牢靠性是指體系在規(guī)則時刻內(nèi),在給定條件下完結(jié)規(guī)則功能的能力。產(chǎn)品的牢靠性需有一個定量的表述,但牢靠性的定量表述具有隨機件,對任何產(chǎn)品來講,在其牢靠工作與失效之間,都具有時刻上的不確認性;因而,關(guān)于不同類型的牢靠性問題,就需要不同的表述方式,常見的有牢靠度、無故障率、失效率、平均無故障時刻等。合理規(guī)劃分配各部分的牢靠性指標,能夠限度地發(fā)揮各部分的規(guī)劃優(yōu)勢,保證產(chǎn)品在工作品質(zhì)、技術(shù)標準和運用等文面達到高高質(zhì)。
Reliability refers to the ability of the system to complete the rule function under given conditions in the rule time. There needs to be a quantitative expression of the product's reliability, but the quantitative expression of the product's reliability has random parts. For any product, there is uncertainty at any time between its reliable work and failure. Therefore, different expression methods are needed for different types of reliability problems, such as common reliability, failure free rate, failure efficiency, average failure free time, etc. Reasonable planning and distribution of the reliability index of each part can give full play to the planning advantages of each part and ensure the high quality of products in terms of work quality, technical standards and safe use.

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