Two-shot tube retention pocket tube clamp, mold and process

US9541223B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9541223-B2
Application numberUS-201414319830-A
CountryUS
Kind codeB2
Filing dateJun 30, 2014
Priority dateJun 30, 2014
Publication dateJan 10, 2017
Grant dateJan 10, 2017

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A first shot body member includes a pair of side walls, a semi-circular sleeve positioned between the pair of side walls to define a portion of a longitudinal pocket, and a pair of deflecting wings. Each deflecting wing is coupled to one of the side walls at a corner. A second shot isolation member of an elastically resilient second material is bonded to portions of an interior surface of the longitudinal pocket defined by each of: the semi-circular sleeve, each of the pair of side walls, each of the pair of corners, and each of the pair of wings. Mold members can include supporting surfaces to support interior and exterior portions of the wing during the second shot molding operation, while leaving an exposed interior bonding surface that defines a portion of the second shot molding cavity. Related methods are further disclosed.

First claim

Opening claim text (preview).

What is claimed is: 1. A tube retention fastener, comprising: a body of a first polymeric material, the body including: a pair of side walls; a semi-circular sleeve positioned between the pair of side walls to define a portion of a longitudinal pocket; a pair of deflecting wings, each of the pair of deflecting wings being coupled to one of the pair of side walls at one of a pair of corners, respectively, each deflecting wing extending toward a central plane passing through a longitudinal axis of the longitudinal pocket in a non-deflected position; wherein the pair of side walls, the semi-circular sleeve, the pair of corners, and the pair of deflecting wings together define an interior surface of the longitudinal pocket; an isolation member of an elastically resilient second material bonded to portions of the interior surface of the longitudinal pocket defined by each of: the semi-circular sleeve, each of the pair of side walls, each of the pair of corners, and each of the pair of deflecting wings; wherein each of the deflecting wings includes a first portion of the isolation member bonded to each of the deflecting wings and defining a wing face between a distal end of each of the deflecting wings and a respective one of the corners, and wherein each of the side walls includes a second portion of the isolation member bonded to each of the side walls and defining a side wall face opposing the wing face between the distal end of each of the deflecting wings and a respective one of the corners, and wherein each one of the pair of corners defines a hinge point for both an isolation member portion and a body portion of an adjacent one of the pair of deflecting wings. 2. The tube retention fastener of claim 1 , wherein each of the pair of deflecting wings has a deflected position in which the wing face of the isolation member contacts against the side wall face of the isolation member. 3. The tube retention fastener of claim 1 , wherein a wing longitudinal end face of the isolation member is interiorly offset from a wing longitudinal end face of the body adjacent each of the pair of deflecting wings. 4. The tube retention fastener of claim 3 , wherein the wing longitudinal end face of the isolation member is interiorly offset from the wing longitudinal end face of the body adjacent an entire wing length of each of the pair of deflecting wings from the respective first and second corner to the respective first and second distal ends. 5. The tube retention fastener of claim 1 , wherein a longitudinal end face of the isolation member is interiorly offset from a longitudinal end face of the body adjacent an entire longitudinal pocket length from the first corner along the first side wall, the semi-circular sleeve, and the second side wall to the second corner. 6. The tube retention fastener of claim 1 , wherein the resilient member further comprises a plurality of longitudinal ribs within the longitudinal pocket, and wherein a pair of opposing longitudinal ribs define an entry throat that is narrower than a diameter defined by the plurality of longitudinal ribs. 7. The tube retention fastener of claim 6 , wherein each of the pair of deflecting wings has a deflected position in which a distance between outer surfaces of each of the deflecting wings is larger than the entry throat. 8. The tube retention fastener of claim 1 , wherein the distal end of each deflecting wing has a disruptive shape with the isolation member bonded thereto. 9. The tube retention fastener of claim 8 , wherein the disruptive shape comprises a “Z” shaped surface. 10. A tube retention fastener, comprising: a body of a first polymeric material, the body including: a pair of side walls; a semi-circular sleeve positioned between the pair of side walls to define a portion of a longitudinal pocket; a pair of deflecting wings, each of the pair of deflecting wings being coupled to one of the pair of side walls at one of a pair of corners, respectively, each deflecting wing extending toward a central plane passing through a longitudinal axis of the longitudinal pocket in a non-deflected position; wherein the pair of side walls, the semi-circular sleeve, the pair of corners, and the pair of deflecting wings together define an interior surface of the longitudinal pocket; an isolation member of an elastically resilient second material bonded to portions of the interior surface of the longitudinal pocket defined by each of: the semi-circular sleeve, each of the pair of side walls, each of the pair of corners, and each of the pair of deflecting wings; wherein a wing longitudinal end face of the isolation member is interiorly offset from an adjacent wing longitudinal end face of the body to expose a lip of the portion of the interior surface defined by each of the pair of deflecting wings of the body. 11. The tube retention fastener of claim 10 , wherein each one of the pair of corners defines a hinge point for both an isolation member portion and a body portion of an adjacent one of the pair of deflecting wings. 12. The tube retention fastener of claim 10 , wherein the resilient member further comprises a plurality of longitudinal ribs within the longitudinal pocket, and wherein a pair of opposing longitudinal ribs define an entry throat that is narrower than a diameter defined by the plurality of longitudinal ribs. 13. The tube retention fastener of claim 12 , wherein each of the pair of deflecting wings has a deflected position in which a distance between outer surfaces of each of the deflecting wings is larger than the entry throat. 14. The tube retention fastener of claim 10 , wherein a distal end of each deflecting wing has a disruptive shape with the isolation member bonded thereto. 15. The tube retention fastener of claim 14 , wherein the disruptive shape comprises a “Z” shaped surface. 16. A tube retention fastener, comprising: a body of a first polymeric material, the body including: a pair of side walls; a semi-circular sleeve positioned between the pair of side walls to define a portion of a longitudinal pocket; a pair of deflecting wings, each of the pair of deflecting wings being coupled to one of the pair of side walls at one of a pair of corners, respectively, each deflecting wing extending toward a central plane passing through a longitudinal axis of the longitudinal pocket in a non-deflected position; wherein the pair of side walls, the semi-circular sleeve, the pair of corners, and the pair of deflecting wings together define an interior surface of the longitudinal pocket; an isolation member of an elastically resilient second material bonded to portions of the interior surface of the longitudinal pocket defined by each of: the semi-circular sleeve, each of the pair of side walls, each of the pair of corners, and each of the pair of deflecting wings; wherein each of the deflecting wings includes a first portion of the isolation member bonded to each of the deflecting wings and defining a wing face between a distal end of each of the deflecting wings and a respective one of the corners, and wherein each of the side walls includes a second portion of the isolation member bonded to each of the side walls and defining a side wall face opposing the wing face between the distal end of each of the deflecting wings and a respective one of the corners; and wherein a wing longitudinal end face of the isolation member is interiorly offset from an adjacent wing longitudinal end face of the body to expose a lip of the portion of the interior surface defined by each of the pair of deflecting wings of the body.

Assignees

Inventors

Classifications

  • Fastening elements (bolts B29L2001/002; nuts B29L2001/005; screws B29L2001/007; slide fasteners B29L2005/00; buttons for haberdashery B29L2019/00) · CPC title

  • with an insert · CPC title

  • moulding interconnected elements which are movable with respect to one another, e.g. chains or hinges · CPC title

  • the inserts being deformed or preformed, e.g. by the injection pressure · CPC title

  • Supports for pipes, cables or protective tubing, e.g. hangers, holders, clamps, cleats, clips, brackets (anchors for holding pipes on or under the ground F16L1/06; noise absorbers in the form of specially adapted hangers or supports F16L55/035; arrangements specially adapted for supporting insulated bodies F16L59/12) · CPC title

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What does patent US9541223B2 cover?
A first shot body member includes a pair of side walls, a semi-circular sleeve positioned between the pair of side walls to define a portion of a longitudinal pocket, and a pair of deflecting wings. Each deflecting wing is coupled to one of the side walls at a corner. A second shot isolation member of an elastically resilient second material is bonded to portions of an interior surface of the l…
Who is the assignee on this patent?
Newfrey Llc
What technology area does this patent fall under?
Primary CPC classification F16L3/13. Mapped technology areas include Mechanical Engineering.
When was this patent published?
Publication date Tue Jan 10 2017 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).