IP Library Granted Patent US 9,644,777
Granted Patent B2
US 9,644,777 · App. 14/844,093 · Granted May 9, 2017

Vibration-proof clamp

Inventor: Hiroyuki Kato (Utsunomiya, JP)
Assignee: NEWFREY LLC
F16L55/035F16L3/1091F16L3/237
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Quick Facts
Patent No.
US 9,644,777
App. No.
14/844,093
Granted
May 9, 2017
Kind
B2
Abstract

A vibration-proof clamp includes a clamp body made of rigid resin and having a pipe clamp portion for holding pipes and a stud mounting portion for mounting to a stud; a cover for covering the pipe clamp portions of the clamp body; the cover connected to the clamp body; a first rubber member made of rubber or soft resin for mounting to the clamp body; and a second rubber member for mounting to the cover; the second rubber member having the shape and size which are the same as those of the first rubber member. Holding end portions of the first and second rubber members have semicircular shapes in cross section. The clamp body has rubber bottom holding portions for holding the holding end portions of the first rubber member. The cover has rubber top holding portions for holding the holding end portions of the second rubber member.

Claims (100)

1. A vibration-proof clamp for holding multiple elongated members, each elongated member having respective first and second semicircular portions, comprising:

a clamp body having multiple bottom holding portions for holding the elongated members, and a locking portion for locking to an attached member;

a cover connected to the clamp body so as to cover the holding portions of the clamp body;

multiple first resilient members attached to the clamp body, each configured to hold a surface of the first semicircular portion of each of the elongated members;

multiple second resilient members attached to the cover, each configured to hold a surface of the second semicircular portion of each of the elongated members, respective second resilient members having the same size and shape as respective first resilient members; wherein

each first and second resilient member together forming a discrete and separate set;

each discrete and separate set of first and second resilient members being configured to hold a single, particular elongated member;

the first and second resilient members each having two respective end portions in the width direction;

each end portion defining respective holding end portions in the width direction;

the first and second resilient member holding end portions are semicircular in cross section;

the first and second resilient member holding end portions define radially-inwardly-extending ribs which also extend in the width direction;

the shapes and sizes of the first and second resilient member holding end portions supporting each elongated member being the same, except that the ribs of each set defining circles having radii sized to hold a particular elongated member;

the clamp body multiple bottom holding portions being of a shape and size conforming to the holding end portions, in order to support the first resilient member holding end portions on both end portions in the width direction, the shapes and sizes of each of the bottom holding portions being the same; and wherein

the cover having multiple top holding portions of a shape and size conforming to the holding end portions, in order to support the second resilient member holding end portions on both end portions in the width direction, the shapes and sizes of each of the top holding portions being the same;

the clamp body bottom holding portions and the cover top holding portions are semicircular in cross section; whereby

multiple discrete and separate sets of first and second resilient members being supported, respectively, in the top and bottom holding portions; and wherein

the holding end portions of the resilient members define respective end surfaces in the width direction which are substantially coplanar with respective side surface portions of the top holding portions and the bottom holding portions; whereby

when the cover is attached to the clamp body, the elongated members are clamped between respective sets of resilient members; such that

the clamp can accommodate elongated members having semicircular portions of different diameters while using the same clamp body and cover.

2. The vibration-proof clamp claimed in claim 1 , wherein:

elongated members of different diameters are clamped in the clamp; and

each discrete and separate set of first and second resilient members being sized to clamp respective elongated members having different diameters; such that

the same clamp body and cover are used to hold the different-sized sets of resilient members.

3. The vibration-proof clamp claimed in claim 1 , wherein the clamp accommodates elongated members of differing diameters while using the same clamp body and cover.

4. The vibration-proof clamp claimed in claim 3 , wherein the resilient members used on elongated members of differing diameters are of different colors, to identify for which size of elongated member a resilient member is to be used.

5. The vibration-proof clamp claimed in claim 1 , wherein the clamp requires no mis-assembly prevention mating portion nor mis-assembly prevention shape.

6. The vibration-proof clamp claimed in claim 1 , wherein the first and second resilient member holding end portions include facing contact surfaces when assembled in respective top and bottom holding surfaces, so that the assembled first and second resilient member holding end portions, when viewed in side elevation, are substantially circular in shape.

7. The vibration-proof clamp claimed in claim 6 , wherein the first resilient member contact surface lying substantially in the same plane as a top surface of the clamp body bottom holding portion.

8. The vibration-proof clamp claimed in claim 1 , wherein:

the first resilient members including respective base portions;

the base portions defining bottom portion ridges extending in the width direction; and wherein

the bottom portion ridges engaging a bottom surface portion of the clamp body, such that a slight gap is created between the resilient member base portion and the bottom surface portion of the clamp body; whereby

transmission of vibrations via the resilient members and the clamp base are further attenuated.

9. The vibration-proof clamp claimed in claim 8 , wherein:

the second resilient members including respective base portions;

the base portions defining bottom portion ridges extending in the width direction; and wherein

the bottom portion ridges engaging a top surface portion of the cover, thereby creating a slight gap between the resilient member base portion and the top surface portion of the cover; whereby

transmission of vibrations via the resilient members and the cover are further attenuated.

10. The vibration-proof clamp claimed in claim 8 , wherein:

the first and second resilient members further including respective lateral end portions;

the lateral end portions defining side portion ridges extending in the vertical direction; and wherein

the side portion ridges engaging an end surface portion of the clamp body, thereby creating a slight gap between the resilient member lateral end portions and the end surface portion of the clamp body; whereby

transmission of vibrations via the resilient members and the clamp body are further attenuated.

11. The vibration-proof clamp claimed in claim 1 , wherein:

the clamp body including a bottom affixing foot for affixing the first resilient member;

the cover has a top affixing foot of the same shape as the bottom affixing foot for affixing the second resilient member; and wherein

the first and second resilient members defining affixing foot receiving holes in order to insert bottom affixing feet or top affixing feet therein; whereby

the clamp body bottom affixing foot is inserted into the first resilient member affixing foot receiving hole so that the first resilient member is joined to the clamp body; and

the cover top affixing foot is inserted into the second resilient member affixing foot receiving hole so that the second resilient member is joined to the cover.

12. The vibration-proof clamp claimed in claim 1 , wherein:

the cover including a main body locking portion having a tip portion;

the tip portion including a folded-back elastically-deformable locking claw; and

the clamp body defining a locking projection for the cover locking claw to engage; whereby

the cover is joined with the clamp body by locking the cover locking claw with the locking projection on the clamp body.

13. A vibration-proof clamp for holding multiple elongated members, each elongated member having respective first and second semicircular portions, comprising:

a clamp body having multiple bottom holding portions for holding the elongated members, and a locking portion for locking to an attached member;

a cover connected to the clamp body so as to cover the holding portions of the clamp body;

multiple first resilient members attached to the clamp body, each configured to hold a surface of the first semicircular portion of each of the elongated members;

multiple second resilient members attached to the cover, each configured to hold a surface of the second semicircular portion of each of the elongated members, respective second resilient members having the same size and shape as respective first resilient members; wherein

each first and second resilient member together forming a discrete and separate set;

each discrete and separate set of first and second resilient members being configured to hold a single, particular elongated member;

the first and second resilient members each having two respective end portions in the width direction;

each end portion defining respective holding end portions in the width direction;

the first and second resilient member holding end portions are semicircular in cross section;

the first and second resilient member holding end portions define radially-inwardly-extending ribs which also extend in the width direction;

the shapes and sizes of the first and second resilient member holding end portions supporting each elongated member being the same, except that the ribs of each set defining circles having radii sized to hold a particular elongated member;

the clamp body multiple bottom holding portions being of a shape and size conforming to the holding end portions, in order to support the first resilient member holding end portions on both end portions in the width direction, the shapes and sizes of each of the bottom holding portions being the same; and wherein

the cover having multiple top holding portions of a shape and size conforming to the holding end portions, in order to support the second resilient member holding end portions on both end portions in the width direction, the shapes and sizes of each of the top holding portions being the same;

the clamp body bottom holding portions and the cover top holding portions are semicircular in cross section; whereby

multiple discrete and separate sets of first and second resilient members being supported, respectively, in the top and bottom holding portions; and wherein

when the cover is attached to the clamp body, the elongated members are clamped between respective sets of resilient members; such that

the clamp can accommodate elongated members having semicircular portions of different diameters while using the same clamp body and cover; and wherein

the clamp accommodates elongated members spaced at different pitches while using the same first and second resilient members, so that only the clamp body and cover need be changed to accommodate the different pitches of the elongated members.

14. A vibration-proof clamp for holding multiple elongated members, each elongated member having respective first and second semicircular portions, comprising:

a clamp body having multiple bottom holding portions for holding the elongated members, and a locking portion for locking to an attached member;

a cover connected to the clamp body so as to cover the holding portions of the clamp body;

multiple first resilient members attached to the clamp body, each configured to hold a surface of the first semicircular portion of each of the elongated members;

multiple second resilient members attached to the cover, each configured to hold a surface of the second semicircular portion of each of the elongated members, respective second resilient members having the same size and shape as respective first resilient members; wherein

the first resilient members further including respective base portions;

the base portions defining bottom portion ridges extending in the width direction; and wherein

the bottom portion ridges engaging a bottom surface portion of the clamp body, such that a slight gap is created between the resilient member base portion and the bottom surface portion of the clamp body; whereby

transmission of vibrations via the resilient members and the clamp base are further attenuated; and wherein

the first and second resilient members further including respective lateral end portions;

the lateral end portions defining side portion ridges extending in the vertical direction; and wherein

the side portion ridges engaging an end surface portion of the clamp body, thereby creating a slight gap between the resilient member lateral end portions and the end surface portion of the clamp body; whereby

transmission of vibrations via the resilient members and the clamp body are further attenuated; and wherein,

when respective sets of resilient members are aligned side-by-side in the clamp, the resilient members contact one another only at their respective side portion ridges;

each first and second resilient member together forming a discrete and separate set;

each discrete and separate set of first and second resilient members being configured to hold a single, particular elongated member;

the first and second resilient members each having two respective end portions in the width direction;

each end portion defining respective holding end portions in the width direction;

the first and second resilient member holding end portions are semicircular in cross section;

the first and second resilient member holding end portions define radially-inwardly-extending ribs which also extend in the width direction;

the shapes and sizes of the first and second resilient member holding end portions supporting each elongated member being the same, except that the ribs of each set defining circles having radii sized to hold a particular elongated member;

the clamp body multiple bottom holding portions being of a shape and size conforming to the holding end portions, in order to support the first resilient member holding end portions on both end portions in the width direction, the shapes and sizes of each of the bottom holding portions being the same; and wherein

the cover having multiple top holding portions of a shape and size conforming to the holding end portions, in order to support the second resilient member holding end portions on both end portions in the width direction, the shapes and sizes of each of the top holding portions being the same;

the clamp body bottom holding portions and the cover top holding portions are semicircular in cross section; whereby

multiple discrete and separate sets of first and second resilient members being supported, respectively, in the top and bottom holding portions; and wherein

when the cover is attached to the clamp body, the elongated members are clamped between respective sets of resilient members; such that

the clamp can accommodate elongated members having semicircular portions of different diameters while using the same clamp body and cover.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 21, 2015
From: KATO, HIROYUKI
To: NEWFREY LLC
Reel/Frame 036610/0614 →
Priority Claims (1)
JP 2014-186138 · Sep 12, 2014 · national
Continuity (1)
Related Publication 20160076689A1 · Mar 17, 2016