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醫(yī)療器械外殼的設(shè)計(jì)需要考慮一些因素
來源:http://m.1100s.cn作者:山東嘉瑞杰機(jī)械科技有限公司發(fā)布時(shí)間:2023-03-24
醫(yī)療器械外殼是指醫(yī)療器械本身的外部保護(hù)殼,其主要作用是保護(hù)醫(yī)療器械內(nèi)部結(jié)構(gòu)和電路,防止外部物質(zhì)和雜質(zhì)進(jìn)入,同時(shí)也可以起到美觀和舒適的作用。醫(yī)療器械外殼的材料一般選用具有高溫、耐腐蝕、抗紫外線等特性的工程塑料或金屬材料,常用材料有ABS、PC、PMMA、鋁合金等。
The medical device shell refers to the external protective shell of the medical device itself. Its main function is to protect the internal structure and circuit of the medical device, prevent external substances and impurities from entering, and also play a beautiful and comfortable role. The materials used for medical device housings are generally engineering plastics or metal materials with high temperature, corrosion resistance, UV resistance, and other characteristics. Common materials include ABS, PC, PMMA, aluminum alloy, and so on.
醫(yī)療器械外殼的設(shè)計(jì)需要考慮以下因素:
The design of medical device housings needs to consider the following factors:
細(xì)節(jié)設(shè)計(jì):醫(yī)療器械外殼需要考慮細(xì)節(jié)設(shè)計(jì),如表面光潔度、殼體厚度、拉手、固定螺絲等,細(xì)節(jié)設(shè)計(jì)可以提高產(chǎn)品的外觀質(zhì)量和易用性。
Detailed design: The shell of medical devices needs to consider detailed design, such as surface finish, shell thickness, handles, fixing screws, etc. Detailed design can improve the appearance quality and ease of use of the product.
材料選擇:醫(yī)療器械外殼的材料選擇需要考慮其特性和適用性,如耐高溫、耐腐蝕、抗紫外線等,同時(shí)還需要考慮材料的成本和可加工性。
Material selection: The selection of materials for medical device housings requires consideration of their characteristics and applicability, such as high temperature resistance, corrosion resistance, UV resistance, etc., as well as the cost and processability of the materials.
結(jié)構(gòu)設(shè)計(jì):醫(yī)療器械外殼的結(jié)構(gòu)設(shè)計(jì)需要考慮其與醫(yī)療器械內(nèi)部結(jié)構(gòu)的契合度和固定方式,同時(shí)還需要考慮外殼的拆裝方便性和維修性。
Structural design: The structural design of the medical device housing needs to consider its compatibility with the internal structure of the medical device and its fixation method, as well as the ease of disassembly and maintenance of the housing.
醫(yī)療設(shè)備外殼設(shè)計(jì)的幾點(diǎn)要素:
Several elements of medical device housing design:
(1)幾何形狀和精度。吸塑外殼的幾何尺寸包括有:吸塑產(chǎn)品切割面到成型面的尺寸、切割面到切割面的尺寸,它與板材厚度、材料特性、成型工藝有直接的關(guān)聯(lián)。
(1) Geometry and accuracy. The geometric dimensions of the blister shell include: the dimensions from the cutting surface to the molding surface of the blister product, and the dimensions from the cutting surface to the cutting surface, which are directly related to the thickness of the plate, material characteristics, and molding process.
(2)脫模角度。吸塑模具由脫模角度不同的凹模和凸模構(gòu)成,通常來說,凹模的脫模角度為0.5o-1o,凸模的脫模角度為2o-5o。
(2) Release angle. The blister mold consists of a concave mold and a convex mold with different release angles. Generally speaking, the release angle of the concave mold is 0.5o-1o, and the release angle of the convex mold is 2O-5o.
(3)外殼圓角。吸塑外殼應(yīng)當(dāng)設(shè)計(jì)成盡量大的圓角,不可設(shè)計(jì)成尖角并要進(jìn)行倒角處理,確保吸塑外殼產(chǎn)品的應(yīng)力適宜。
(3) Shell fillet. The blister shell should be designed with a rounded corner as large as possible, and cannot be designed with sharp corners. Chamfering should be performed to ensure that the stress of the blister shell product is appropriate.
(4)寬深比。醫(yī)療設(shè)備外殼吸塑產(chǎn)品的寬深比是衡量吸塑成型難易程度的重要指標(biāo),表示的是產(chǎn)品的小寬度與深度的比例,其值越大表明吸塑產(chǎn)品成型越容易,其值越小則表明吸塑產(chǎn)品成型越難。
(4) Aspect to depth ratio. The width-to-depth ratio of a blister product for a medical device shell is an important indicator of the difficulty of blister molding, indicating the ratio of the small width to depth of the product. A larger value indicates that the blister product is easier to mold, while a smaller value indicates that the blister product is more difficult to mold.
總之,醫(yī)療器械外殼是醫(yī)療器械中不可或缺的組成部分,其設(shè)計(jì)需要綜合考慮產(chǎn)品的功能、美觀、易用性等多個(gè)方面,選用合適的材料和加工工藝,以滿足醫(yī)療器械的使用要求和市場需求。更多相關(guān)內(nèi)容就來我們網(wǎng)站http://m.1100s.cn咨詢!
In summary, the housing of medical devices is an indispensable component of medical devices. Its design requires comprehensive consideration of multiple aspects such as product functionality, aesthetics, and ease of use, and the selection of appropriate materials and processing techniques to meet the operational requirements and market demands of medical devices. For more relevant content, please visit our website http://m.1100s.cn consulting service
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