发明名称 SPRING-LESS MULTI-POSITION MICRO-FLUIDIC VALVE ASSEMBLY
摘要 A springless rotary shear that produces compression forces by utilizing the stiffness properties of polymer seals. The valve is designed to produce an effective spring load, with inherent sealing force, by deflecting polymer elements whose response depends on stiffness that is governed by each component's elastic modulus and geometry. A stator seal protrudes thousandths of an inch beyond a stator seal housing. When a stator is fastened down to the stator seal housing the clamping forces are transmitted to the stator seal, rotor seal, shaft adapter, bearings and housings, and the assembly is deflected to a flush position, resulting in a sealing force between the rotor and stator seal. The transmitted sealing force is as a function of the stiffness of each component and the protrusion distance of the stator seal above the mating surface prior to fastening the stator.
申请公布号 US2016082439(A1) 申请公布日期 2016.03.24
申请号 US201514861711 申请日期 2015.09.22
申请人 IDEX Health & Science LLC 发明人 SERVIN Carl M.
分类号 B01L3/00;F16K99/00 主分类号 B01L3/00
代理机构 代理人
主权项 1. A spring-less micro-fluidic valve assembly comprising: a stator seal device defining a substantially planar stator face and an opposite, distal facing stator contact surface perimetrically defined by a contact surface perimeter, said stator seal device including at least two or more stator channels extending therethrough from said contact surface to corresponding stator ports at said stator face; a rotor seal device having a substantially planar rotor face defining one or more rotor channels and an opposite, proximally facing rotor contact surface; a relatively rigid actuator housing having an inner wall defining an axially extending receiving passage therethrough, said inner wall including distally facing housing bearing support surface; a shaft adapter configured for axial receipt in said receiving passage of the actuator housing, and defining a proximally facing adapter bearing support surface and a distally facing adapter contact surface configured for contact support of said rotor contact surface; a bearing assembly disposed between the housing bearing support surface and the adapter bearing support surface for rotational support of the shaft adapter and rotor seal device thereof about a rotational axis; a relatively rigid stator seal housing defining a stator passage formed and dimensioned for axial seated receipt of the stator seal device therein, and a distally facing housing contact surface that defines a receiving port extending into said stator passage, and is further formed and dimensioned for axial reciprocating receipt of said stator contact surface therethrough, the stator seal housing having a proximal portion configured to hard mount to a distal portion of said actuator housing, such that said actuator housing, said bearing assembly, said shaft adapter, said rotor seal device, said stator seal device and said stator seal housing collectively cooperate to axially position said contact surface of said stator seal device a substantially precise, calibrated distance, δ, beyond said housing contact surface of the stator seal housing, in a non-leak-tight condition; and a stator manifold device configured to mount to said stator seal housing, in a compressed mount condition, such that a proximally facing manifold contact surface of said manifold device contacts said stator contact surface, in the non-leak-tight condition, and repositions said stator contact surface, to a leak-tight condition, substantially flush with said housing contact surface, said stator seal device and said rotor seal device collectively being sufficiently compressed together at a compression pressure enabling leak-tight, relatively low pressure fluid flow between corresponding stator ports and at least one rotor channel at said rotor-stator interface therebetween.
地址 Northbrook IL US