外文翻译---水平处理技术创新
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1、PDF外文:http:/ An innovation in horizontal processing Peter Lymn and Ken Bishop CEMCO FSL Ltd, Waterlooville, UK Abstract Purpose The purpose of this paper is to detail an innovative new equipment enhancement for use in the horizontal processing of printed circuit boards (PCBs). Design/methodology/app
2、roach The paper describes a non-contact laminar or streamline flow process chamber. It also describes a transport and guiding method suitable for both thick and thin materials and expands on the mechanics and fluid dynamics that further reduce equipment length and operating cost. Findings The new pr
3、ocess chamber and its related enhancements result in a faster and more uniform chemical reaction than is obtainable with conventional flood chambers. This enables the equipment to have reduced length and to offer reduced operating costs. Originality/value The paper presents a new approach to horizon
4、tal processing that can offer reduced equipment footprints and reductions in operating costs. Keywords Process management, Printed circuits, Conveyors, Chemical technology process Introduction Printed circuit board (PCB) fabricators have used horizontal roller conveyers to transport copper cl
5、ad laminate through chemical spray treatment chambers for many years. These simple conveyorised spray processors have evolved over time to accommodate much thinner materials, but the complication of guiding and supporting them through spray jets generally means two types of machine are required; one
6、 for thick, rigid material and another longer, more complex system for very thin or flexible substrates. More recently, this type of equipment has been further adapted to incorporate immersion chambers for plating and other surface treatment processes where spray jets are not suitable. The need to c
7、ontain the static head above the roller transport system and the relatively long contact times required for immersion processes make these systems even longer and more complex. This paper describes a non-contact laminar or streamline flow process chamber that results in a faster and more uniform che
8、mical reaction than is obtainable with conventional flood chambers. It also describes a transport and guiding method suitable for both thick and thin materials and expands on the mechanics and fluid dynamics that further reduce equipment length and operating cost. 2 Chemical process chamber In
9、 conventional immersion chambers, fluid is pumped from a sump to a dammed roller conveyor chamber. The solution is typically re-circulated at a rate of five times the chamber volume per minute through manifolds positioned between conveyor rollers. Transportation is achieved by using roller wheels to
10、 avoid excessive masking of the panel being processed. This combination of flooded jet and roller wheel transport results in chaotic turbulent zones within a relatively stagnant bath and can lead to variable chemical reaction across the panel. The “Fluid Engine” immersion chambers, by contrast, prov
11、ide laminar flow up to 100 the chamber volume per minute or in excess of 11m per minute, resulting in faster, more uniform reactions. The engine comprises two plates closed at each side to form a narrow chamber. Fluid containment rollers, mounted at the entry and exit of the chamber, push and
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