Portable vice having dual independent jaws
10052743 ยท 2018-08-21
Inventors
Cpc classification
B25B3/00
PERFORMING OPERATIONS; TRANSPORTING
B25B1/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A portable vice affixed to a work bench comprising a pair of independently positioned jaws for clamping a horseshoe. A hand-operated lever simultaneously controls the interjaw distance of a pair of independent jaws gripping two differently contoured horseshoe surfaces. Two parallel stanchions are disposed symmetrically of each independent jaw pair, with each jaw pair comprising a movable jaw situated above a stationary jaw. A slidable carriage encloses a spring for each independent jaw pair and is retained laterally between the pair of parallel stanchions and vertically between a top spring retaining plate and a bottom carriage plate.
Claims
1. A dual-jaw vice apparatus for securely gripping an irregularly oddly-shaped article having a first portion with a contour surface and a second portion also with a contour surface, said dual-jaw vice apparatus comprising: a support member comprising a main frame rail member pair and a slide rail member pair, with each of said slide rail member pair disposed adjacent and exteriorly of each of said main frame rail member pair; said main frame rail member pair having a first side main frame rail member fixedly attached perpendicularly to a planar surface of a substantially horizontal base plate member at one end thereof and having a second side main frame rail member fixedly attached perpendicularly at the other, opposite end of said base plate member; a carriage member comprising a spring member pair retained within a brace assembly and disposed between said main frame member pair and slidably engaged therewith and affixed at each opposite end thereof to a slide rail member of said slide rail member pair; said carriage member sliding from a first position disposed atop a cam assembly to a second position thereabove delimited by a spring plate member; an independently opening and closing jaw member pair comprising: a movable jaw member pair fixedly disposed atop said slide rail member pair; and a stationary jaw member pair fixedly disposed atop said main frame rail member pair disposed immediately below said movable jaw member pair; a hand-operated lever pivotally interconnected with said camshaft assembly, with downward movement of said hand-operated lever functionally related to activation of rotation of said cam assembly, causing proportionally related upward movement of said carriage member, in turn, causing functionally related simultaneous compression of said spring member pair; and said upward sliding movement of said carriage member effectuating a first interjaw separation between said first movable jaw member and said first stationary jaw member for accommodating said contour surface of said first portion of said irregularly oddly-shaped article and simultaneously effectuating a second interjaw separation between said second movable jaw member and said second stationary jaw member for accommodating said contour surface of said second portion of said irregularly oddly-shaped article.
2. The dual jaw vice apparatus recited in claim 1, wherein said cam assembly comprises a cam affixed to an axial camshaft having a plurality of bearings circumferentially emplaced therearound and disposed transversely between said first side main frame rail member and said second side main frame rail member, rotatably attached thereto with a pivot pin disposed within a corresponding axial bore, and being substantially parallel to said carriage member.
3. The dual-jaw vice apparatus recited in claim 2, wherein said brace assembly comprises a pair of spaced-apart brace members with a pair of corresponding fixedly attached bottom plate members, with each said brace member pair having a spaced-apart first lateral brace member and a second lateral brace member.
4. The dual-jaw vice apparatus recited in claim 3, wherein each said lateral brace member of said brace assembly has a chamfer angle of about 40 to about 50 relative to the horizontal.
5. The dual-jaw vice apparatus recited in claim 3, wherein each said lateral brace member of said brace assembly has a chamfer angle of about 45 relative to the horizontal.
6. The dual-jaw vice apparatus recited in claim 4, wherein each said jaw of said jaw member pair has an edge angle of about 30 to about 70 relative to the horizontal.
7. The dual-jaw vice apparatus recited in claim 6, wherein each said jaw of said jaw member pair has an edge angle of about 40 to about 60 relative to the horizontal.
8. The dual-jaw vice apparatus recited in claim 7, wherein each said jaw of said jaw member pair has an edge angle of about 50 relative to the horizontal.
9. The dual-jaw vice apparatus recited in claim 6, wherein each of said side slide rail members is constrained by a corresponding pair of clevis members from exhibiting lateral movement while sliding upon said side main frame rail members.
10. The dual-jaw vice apparatus recited in claim 9, wherein one or both of said spring member pair would be removed and replaced within said corresponding one or both of said brace assembly pair.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8) Reference is made herein to the figures in the accompanying drawings in which like numerals refer to like components. Referring collectively to
(9) Referring collectively to the closed jaw embodiment depicted in
(10) Similarly, second jaw member 55B comprises second top movable jaw member 45B disposed above and adjacent second bottom stationary jaw member 40B at interjaw distances d2. Second top movable jaw member 45B is affixed at end portion thereof 47B atop second side slide rail member 20B which, in turn, is affixed at the bottom thereof to brace member pair 35B proximal to an end thereof. Similarly, second bottom, stationary jaw member 40B is affixed at end thereof 42B atop second side main frame rail member 10B which, in turn, is affixed to base plate member 25 proximal to an end thereof, opposite to the end thereof to which first side main frame rail member 10A is affixed.
(11) The preferred dual jaw vice embodiment contemplated hereunder includes carriage member 100 supported by first stanchion member 15A spaced apart from second stanchion member 15B, and having a brace assembly for retaining a pair of compression members 50A and 50B for controlling the unique vice-gripping and clamping capabilities described herein. It will be appreciated by those skilled in the art that the vice-gripping and clamping capabilities taught hereunder are especially suited for securely accommodating irregularly, oddly shaped articles such as horseshoes and the like. More particularly, carriage member 100 is depicted with brace assembly 32 comprising two pairs of laterally spaced-apart brace members: brace members 35A and brace members 35B, respectively, for retaining compression spring members 50A and 50B. Each of first pair of brace members 35A is disposed on a side of spring member 50A and preferably perpendicularly to first carriage bottom plate member 52A, with spring member 50A retained between top retaining plate member 90 and first carriage bottom plate member 52A.
(12) Thus, this brace assembly 32 assures that spring member 50A is securably retained both laterally between its brace member pair 35A, and vertically between top retaining plate member 90 and first carriage bottom plate member 52A. Similarly, carriage member 100 further comprises second pair of brace members 35B disposed on a side of spring member 50B and perpendicularly to second carriage bottom plate member 52B, with spring member 50B retained between top retaining plate member 90 and second carriage bottom plate member 52B. It will be appreciated by those skilled in the art that brace assembly 32 also assures that spring member 50B is securably retained both laterally between its brace member pair 35B, and vertically between top retaining plate member 90 and second carriage bottom plate member 52B. Furthermore, it will become evident that top retaining plate member 90 is affixed laterally at each opposite end thereof to first and second side main frame side rail members 10A and 10B, respectively, at a proximal lateral surface thereof.
(13) Operationally, when dual jaw vice 2 is sitting idle on a workbench or like substantially flat horizontal surface, as depicted in
(14) Simultaneously, in like fashion, when handle 85 is disposed in a substantially vertical position, vice jaw member pair 55B is situated in an abutted neutral condition, i.e., vice jaw member pair 55B being disposed in a closed position. Accordingly, when vice jaw member pair 55B is situated in a closed position, movable jaw member 45B is abuttably disposed atop stationary jaw member 40B, thereby manifesting a zero interjaw distance d2, i.e., with no space therebetween. It will be appreciated by those skilled in the art that this abutted relationship between vice jaws 40B and 45B is functionally related to spring member 50B being situated in an uncompressed neutral condition.
(15) On the other hand, now referring to
(16) Thus, when horseshoe 94 is emplaced within vice jaw member pairs 55A and 55B, flat portion 95A of horseshoe 95 would be gripped and clamped by first jaw member pair 55A at a fixed corresponding first interjaw distanced1between upper jaw member 45A and lower jaw member 40A. Simultaneously, protruding portion thereof 95B would be gripped by second jaw member pair 55B at a second, corresponding fixed larger interjaw distanced2between upper jaw member 45B and lower jaw member 40B with d2 being proportionately larger than d1 as depicted. That is, the ratio of these two interjaw distances would be proportional to the relative contour-differences of the implicated portions of the article being gripped, e.g., portions 95A and 95B of horseshoe 94.
(17) Referring now collectively to
(18) It should be evident that this simultaneous upward movement of first and second pairs of carriage bottom plate members causes synchronous compression of retained spring members 50A and 50B, respectively. This synchronous compression of spring members 50A and 50B imposes proportional forced upon spring retainer plate 90 thereby urging corresponding proportional upward sliding movement of carriage member 100 along pair of spaced-apart side slide rail members 20A and 20B. As depicted in
(19) It has been found to be especially advantageous for securably gripping and clasping oddly, irregularly shaped articles contemplated hereunder, such as first horseshoe portion 95A and second horseshoe portion 95B, to configure each of the jaw members hereof with angle relative to the horizontal. Those skilled in the art will appreciate that incorporating an edge angle into jaw embodiments hereof preferably in the range of about 30 to about 70 effectively achieves secure gripping and clamping objectives of instant portable dual-jaw vice embodiments taught herein. To achieve gripping and clamping capabilities as contemplated hereunder, it has been found to be even more preferable for vice embodiments to have a narrower jaw member range with angle from about 40 to about 60; and to achieve optimum gripping and clamping capabilities an angle of about 50 has been found to be most preferable. It should be clearly understood that, while the dual jaw members depicted in the embodiments displayed in the figures herein are exemplified with having the same angle , embodiments may, of course, be configured with a different angle for each jaw pair. For instance, such an asymmetric jaw angle configuration could prove to be advantageous if especially oddly shaped articles were contemplated to be vice-gripped in drastically differently contoured portions thereof.
(20) Similarly, it should be apparent to those skilled in the art that chamfer angle incorporated into each pair of brace members 35A and 35B may vary from about 40 to about 50 to enable spring members 50A and 50B, respectively, to be expeditiously emplaced therein or removed therefrom. It has been found that a chamfer angle of about 45 is most preferable for conveniently achieving emplacement or replacement of this spring member pair while simultaneously affording an adequate retaining-enclosure therefor during sliding motion contemplated hereunder.
(21) Of course, it should be evident to those skilled in the art that, since embodiments of the present invention handily accommodate oddly, irregularly-shaped objects, these two interjaw distances would typically be different from each othersince a particular feature and advantage of embodiments hereof is that each of the two jaw pairs can manifest an independent and individualized interjaw distance proportional to the physical attributes of the article section being gripped. Each side slide rail member 20A and 20B slidably accommodates upward or downward sliding movement of first movable jaw member 45A and second movable jaw member 45B, respectively, thereby causing proportional functionally related upward or downward sliding movement of carriage member 100.
(22) It will be seen that hand operated lever member 85 is pivotally mounted upon cam shaft 75 of cam assembly 5 and affords adequate leverage for enabling a practitioner to conveniently activate cam roller bearing pair 65A and 65B. It will be appreciated that compression of corresponding spring members 50A and 50B simultaneously and synchronously with vertically upward movement of carriage member 100 causes first oddly, irregularly-shaped portion 95A of horseshoe 94 to be snugly and securely clamped and grasped within first jaw member 55A, i.e., grasped between first jaw top portion 45A and first jaw stationary bottom portion 40A; and simultaneously causes second oddly, irregularly-shaped portion 95B of horseshoe 94 to be snugly and securely grasped and clamped within second jaw member 55B, i.e., grasped between having second jaw top portion 45B and second jaw stationary bottom portion 40B.
(23) It should likewise be evident to those skilled in the art that, once an oddly-shaped article no longer needs to be secured within the present embodiment, then a practitioner would impose downward hand-pressure once again upon handle 80 of lever 85 to urge proportional upwards movement upon carriage member 100 causing functionally related synchronous compression of spring members 50A and 50B which consequently effectuates synchronous opening of vice grip pair 55A and 55B, thereby enabling horseshoe 94 or other oddly-shaped article to be conveniently released and removed.
(24) The following is a tabulation of the components depicted in the drawings:
(25) TABLE-US-00001 Component Listing Numeral Component Explanation 2 Dual Jaw Vice apparatus 5 Cam assembly Enables camshaft to pivot upon main side rails 10A-B Side main frame rail member pair 15A-B Vertical support member pair Comprising pair of side main frame & slide rails 20A-B Side slide rail member pair 25 Base plate For mounting dual jaw vice apparatus 30A-D Bolt holes for mounting main frame Hole D not shown rail pair (10A-B) upon base plate 25 32 Brace assembly 35A & Brace member pairs, each pair preferably chamfer angle 45 connecting 35B laterally spaced-apart bottom spring plate (52A-B) and top jaw side rail (20A-B), creating bottom slide for slide upper rail members (20A-B) [on 10A-B] and sole mounting brace for bottom spring bracket 40A, B Bottom stationary jaw member pair preferably angle 50 to promote clamping; holding object in compression from top jaw (45A-B) 42A, B End portion affixed atop a main frame slide rail member 45A, B Top movable jaw member pair Preferably angle 50 to promote clamping 47A, B End portion affixed atop an outer main frame slide rail member 50A, B Spring member pair Situated between top mounting plate 90 and bottom mounting plates 95A-B 52A, B Carriage bottom plate pair upon Retaining bottom of each spring individually which spring member 50A rests in position 52C, D Carriage bottom plate pair upon Retaining bottom of each spring individually which spring member 50B rests in position 55A, B Jaw member pair Each having movable upper member and stationary lower member 60 Roller bearing pair Enables frictionless camshaft movement 65A-B Roller bearing 70A, B Clevis member pair for retaining U-shaped member sustaining position of upper slide rail member pair 20A-B upper slide rails 20A-B as slides up & down, thereby avoiding lateral movement 72 Axial bore through which camshaft pivot pin passes & rotates 73 Axial camshaft pivot pin 75 Camshaft 80 Handle grip rubberized 85 Handle lever 90 Top spring retaining plate Retaining top of springs in position 94 Horseshoe 95A Horseshoe, first portion Flat surface 95B Horseshoe, second portion Protruding uneven surface 100 Slide rail carriage
(26) Other variations and modifications will, of course, become apparent from a consideration of the structures and techniques hereinbefore described and depicted. Accordingly, it should be clearly understood that the present invention is not intended to be limited by the particular features and structures hereinbefore described and depicted in the accompanying drawings, but that the present invention is to be measured by the scope of the appended claims.