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US1480285A - Portable sanding machine - Google Patents

Portable sanding machine
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Publication number
US1480285A
US1480285AUS209756AUS20975617AUS1480285AUS 1480285 AUS1480285 AUS 1480285AUS 209756 AUS209756 AUS 209756AUS 20975617 AUS20975617 AUS 20975617AUS 1480285 AUS1480285 AUS 1480285A
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belt
casing
machine
sanding
motor
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US209756A
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Robert A Moore
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Jan. 8 1924. 1,480,285
- R. A. MOORE PORTABLE SANDING MACHINE Filed Dec. 3 1917 2 Sheets-Sheet 1 TTCEA/EYQS.
PORTABLE SANDING MACHINE Filed Dec. 31 1917 I 2 Sheets-Sheet 2 fiber fAMbO Patented Jan. 8 1924.
UNITED STATES ROBERT A. MOORE, OF DETROIT, MICHIGAN.
PORTABLE SANDING MACHINE.
Application filed December 31, 1917.
To all whom it may concern:
Be it known that I, ROBERT A. Moons, a citizen of the United States, and a resident of Detroit, county of lVayne, and State of Michigan, have invented a new and useful Improvement in Portable Sanding Machines, of which the following is a specification, the principle of the invention being herein explained and the best mode in which I have contemplated applying that principle, so' as to distinguish it from other inventions.
The present invention, relating, as indicated to a portable surfacing machine, has particular reference to a machine which may be readily operated by a single person for the purpose of smoothing up curved surfaces, such for example as automobile bodies, although obviously the invention is not limited to any particular use. A further object of the invention is to provide a mechanism which may be readily operated by a single person for the purpose of rubbing or smoothing concave surfaces, and surfaces which include moldings which must ordinarily be rubbed by hand, with considerable labor and the expenditure of a great deal of time. A further object of the invention is the provision in such a machine of means for continuously and effectively removing the dirt, grit and other material which is abraded from the surface being rubbed. To the accomplishment of the foregoing and related ends, said invention, then, consists of the means hereinafter fully described and particularly pointed out in the claims.
The annexed drawings and the following description set forth in detail certain mechanism embodying the invention, such disclosed means constituting, however, but one of various mechanical forms in which the principle of the invention may be used.
In said annexed drawings Fig. 1 is a side elevation of my improved machine in operation against a vertical surface; Fig. 2 is a similar view on an enlarged scale with the side cover plate removed to show the mechanism; Fig. 3 is a section on theline 33, Fig. 2; Fig. 4 is an elevation of one of the rolls for supporting the belt; ig. 5 is a section-on the line 55, Fig. 4; Fig. 6 is an elevation of the roll shown in Fig. 4 when in operating contact with a curved concave surface, such View also showing the sanding belt in transverse section;Fi 7 is an enlarged end view of one .of the rol s showing the condition of the belt when Serial No. 209,756.
passing thereover; Fig. 8 is a plan view of one form of belt; Fig. 9 is a sectional view through a corner of the casing; and Figs. 10 and 11 are views of a belt construction that may be used.
As will readily be seen from Figs. 1 and 2, my improved mechanism consists of a rectangular box-like casing 1, on one side of which is mounted ahandle 2, and in the end of which there is providedaconduit 3 for receiving and introducing fluid pressure for operating a motor 4 shown in outline only in Figure 2. The end opposite to that receiving theconduit 3 is formed at an acute angle to the side bearing thehandle 2, and is the end of the device at which the sanding or rubbing belt is exposed to operate against a surface. Thus in Fig. 1 abelt 5 is shown in operative contact with a substantially vertical surface 6, and thebelt 5, as indicated in Figure 2, extends over a ulley orroller 7 mounted at the left end of t e casing under an idler ortension pulley 8 and over a plurality of parallel supportingrolls 9. Ad jacent to thepulley 7 is a second roller or drivingpulley 10, which engages against the surface of thebelt 5 and is driven by means of agear 11 mounted on the end of the shaft bearing the pulley 1O exteriorly of the casing, and is driven by a gear 12 also disposed exteriorly of the casing, and is driven by theshaft 13 of the motor 4. Theroller 10 is mounted in the ends of two supportinglinks 14 shown in Fig. 2, and may be adjusted toward or away from theulley 7 to take up any difference in thic ness of thebelt 5.
I have not shown the detailed construction of the motor 4, and this may be of any suitable type, although preferably a fluid pressure motor, as already indicated, to which fluid pressure is supplied through theconduit 3, and which discharges such fluid pressure after use through aconduit 15 extending along the lower side of the casing adjacent to thebelt 5 and terminating in a narrow rectangular slot or mouth 16, which is disposed at the end of the casing in a discharge opening 17 formedtherein. Thisdischarge casing 17 has its outer side extended to within a very short distance of the lower end of thebelt 5 where the same passes around the lowermost one of therolls 9. As the belt is moved in a clockwise direction over the various rolls, it is moving toward thedischarge spout 17 and the pasupon by thebelt 5, and this dirt, grit and other material may either be discharged into the atmosphere or be collected in a suitable the same when once in position.
container (not shown) which may be attached to the end of theconduit 17 The casing is formed open at the right end and is provided on its sides, which may be removed, withguide strips 19 and 20. On a framework 60, consisting of parallel plates, between which are supported the various rolls and. belt, are formedcomplementary guides 21 and. 22, which engage againstguides 19 and 20 as the frame 60 is moved into the casing and properly positions The framework is locked byresilient latches 23 which engage inopenings 24 formed in the sides of the casing, as shown in Figures 2 and 3.
Each of the supportingrolls 9, the construction of which is shown in Figures 4, 5 and 6, consists of a plurality of individual and radiallydepressible sections 25. Each of thesesections 25 consists of a spiral coiled spring of relatively narrow width which has its inner end .attached to ashaft 26 which is rotatably mounted onpins 27 set into the two sides of the casing. The connection of the coiled spring to the shaft is preferably by means of a bayonet joint for convenient removal, although the springs may of course.
be riveted to the shaft if desired, as is shown inFi re 5.
It as been found that by using a large number of individual and relatively narrow depressible sections in each of therolls 9, it is possible to operate over surfaces hav ing a considerable degree of curvature, whether the curvature be inward or outward, and this is of great importance in connection with the smoothing of automobile bodies and particularly around the con nection between the body proper and the dash, where there is usually more or less molding. It is difficult to properly smooth fine inward curves in molding even though the work be done by hand, and by means of the present rollers it is possible to finish molding with extremely fine curves and in dented lines.
The present machine is adapted not only to sanding various surfaces, but also to rubbing down varnish and for other uses, and it is only necessary, to adapt the machine for these various Iiurposes, to change the belt. In Figure 6 have shown asanding belt 28. Thissanding belt 28 is mounted upon a composition orcork belt 29, which in turn is supported upon one ormore belts 30 of felt or wool. The use of a number of belts gives the entire belt a thickness of perhaps a quarter of an inch, but makes it very flexible and strong, and in order to insure flexibility, both transverse and longitudinal, I preferably make a series oftransverse slits 31 in the cork belt which underlies the sanding belt. At right angles to thetransverse slits 31 there are formed two or more longitudinal grooves 32 (see Figures 6 and 8), in which I disposerubber bands 33 which tend to return the transverse sections into their proper position after the belt has passed over any of the rollers.
The motor end of the casing is provided with a removable side coverplate 40 (see re 9), which is of course within thedriving gears 11 and 12. A cover orhousing 41 is mounted over the gears against the side of the casing, aflange 42 being formed on the housing, as shown in Figure 9, which permitsconvenient attachment to theeasing 1.
Another form of beltis shown in longitu-' dinal section in Figure 10. The outer surface of the same, supporting the sanding belt proper, is formed of separatenarrow sections 44 held together by means ofcords 43 passing around each section and thus affording a ve strong but flexible belt layer. In Figure 11 show more clearly the retaining cable for the belt strips.
Other modes of applying the principle of my invention may e employed instead of the one explained, change being made as regards the mechanism herein disclosed, provided the means stated by any of the following claims or the equivalent of such stated means be employed.
I therefore particularly point out and distinctlg claim as my invention.
1. n a machine of the character described, the combination of a casing, a motor therein, a roller operated by said motor, a frame removably mounted therein, a series of spaced rollers on said frame, an endless belt mounted around said rollers on said frame and removable therewith, and means adapt ed to lock said frame in said casing with said belt in operative relation with said first 3. A portable surfacing machine comprisinga casing, a motor mounted in one end of said casing, a roller mounted adjacent said pose a relatively flat portion of said belt in motor, a belt supporting means mounted at a plane at an acute angle to the long dimenthe other end of said casing, an endless sursion of said casing. 10 facing belt mounted about said roller and Signed by me, this 8th day of December,
5 said supporting means, means operably con- 1917. n
necting said belt and said motor, and said belt supporting means being mounted to ex- ROBERT A. MOORE.
US209756A1917-12-311917-12-31Portable sanding machineExpired - LifetimeUS1480285A (en)

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US2594646A (en)*1946-11-301952-04-29Bror G OlvingPolishing machine
US2618913A (en)*1950-02-231952-11-25George H PlanconAbrading machine shoe construction
US2850758A (en)*1955-04-061958-09-09Hoover CoLitter lifting cleaning tool
US5327609A (en)*1990-01-241994-07-12Reinhoud B.V.Mopsweeping apparatus with continuous action
US20070288030A1 (en)*2006-06-092007-12-13Biomet Manufacturing Corp.Patient Specific Knee Alignment Guide And Associated Method
US20080114370A1 (en)*2006-06-092008-05-15Biomet Manufacturing Corp.Patient-Specific Alignment Guide For Multiple Incisions
US20080312659A1 (en)*2006-02-272008-12-18Biomet Manufacturing Corp.Patient specific alignment guide and inter-operative adjustment
US20090024131A1 (en)*2006-02-272009-01-22Biomet Manufacturing Corp.Patient specific guides
US20090151736A1 (en)*2007-04-172009-06-18Biomet Manufacturing Corp.Method And Apparatus For Manufacturing An Implant
US20090163922A1 (en)*2006-02-272009-06-25Biomet Manufacturing Corp.Patient Specific Acetabular Guide And Method
US20090254093A1 (en)*2006-06-092009-10-08Biomet Manufacturing Corp.Patient-Specific Alignment Guide
US20100087829A1 (en)*2006-02-272010-04-08Biomet Manufacturing Corp.Patient Specific Alignment Guide With Cutting Surface and Laser Indicator
ITMI20082086A1 (en)*2008-11-212010-05-22Discotelsisal S P A IMPROVED ABRASIVE TAPE AND DEVICE FOR SURFACE GRINDING EQUIPPED WITH SUCH TAPE
US20100152782A1 (en)*2006-02-272010-06-17Biomet Manufactring Corp.Patient Specific High Tibia Osteotomy
WO2010058289A3 (en)*2008-11-212010-07-15Mangusta S.R.L.Improved abrasive belt and device for polishing surfaces provided with such belt
US20110015636A1 (en)*2006-02-272011-01-20Biomet Manufacturing Corp.Patient-Specific Elbow Guides and Associated Methods
US20110093086A1 (en)*2006-02-272011-04-21Witt Tyler DPatient-Specific Hip Joint Devices
US20110092804A1 (en)*2006-02-272011-04-21Biomet Manufacturing Corp.Patient-Specific Pre-Operative Planning
US20110160736A1 (en)*2006-02-272011-06-30Biomet Manufacturing Corp.Patient-specific femoral guide
US20110166578A1 (en)*2006-02-272011-07-07Biomet Manufacturing Corp.Alignment guides with patient-specific anchoring elements
US20110172672A1 (en)*2006-02-272011-07-14Biomet Manufacturing Corp.Instrument with transparent portion for use with patient-specific alignment guide
US20110184526A1 (en)*2007-04-172011-07-28Biomet Manufacturing Corp.Patient-modified implant
US20110190899A1 (en)*2006-02-272011-08-04Biomet Manufacturing Corp.Patient-specific augments
US20110213376A1 (en)*2010-02-262011-09-01Biomet Sports Medicine, LlcPatient-Specific Osteotomy Devices and Methods
US20110218545A1 (en)*2010-03-042011-09-08Biomet Manufacturing Corp.Patient-specific computed tomography guides
US8170641B2 (en)2009-02-202012-05-01Biomet Manufacturing Corp.Method of imaging an extremity of a patient
US8282646B2 (en)2006-02-272012-10-09Biomet Manufacturing Corp.Patient specific knee alignment guide and associated method
US8407067B2 (en)2007-04-172013-03-26Biomet Manufacturing Corp.Method and apparatus for manufacturing an implant
US8473305B2 (en)2007-04-172013-06-25Biomet Manufacturing Corp.Method and apparatus for manufacturing an implant
US8532807B2 (en)2011-06-062013-09-10Biomet Manufacturing, LlcPre-operative planning and manufacturing method for orthopedic procedure
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US2594646A (en)*1946-11-301952-04-29Bror G OlvingPolishing machine
US2618913A (en)*1950-02-231952-11-25George H PlanconAbrading machine shoe construction
US2850758A (en)*1955-04-061958-09-09Hoover CoLitter lifting cleaning tool
US5327609A (en)*1990-01-241994-07-12Reinhoud B.V.Mopsweeping apparatus with continuous action
US8535387B2 (en)2006-02-272013-09-17Biomet Manufacturing, LlcPatient-specific tools and implants
US8241293B2 (en)2006-02-272012-08-14Biomet Manufacturing Corp.Patient specific high tibia osteotomy
US20080312659A1 (en)*2006-02-272008-12-18Biomet Manufacturing Corp.Patient specific alignment guide and inter-operative adjustment
US20090024131A1 (en)*2006-02-272009-01-22Biomet Manufacturing Corp.Patient specific guides
US9480490B2 (en)2006-02-272016-11-01Biomet Manufacturing, LlcPatient-specific guides
US20090163922A1 (en)*2006-02-272009-06-25Biomet Manufacturing Corp.Patient Specific Acetabular Guide And Method
US9522010B2 (en)2006-02-272016-12-20Biomet Manufacturing, LlcPatient-specific orthopedic instruments
US20100087829A1 (en)*2006-02-272010-04-08Biomet Manufacturing Corp.Patient Specific Alignment Guide With Cutting Surface and Laser Indicator
US9539013B2 (en)2006-02-272017-01-10Biomet Manufacturing, LlcPatient-specific elbow guides and associated methods
US20100152782A1 (en)*2006-02-272010-06-17Biomet Manufactring Corp.Patient Specific High Tibia Osteotomy
US8591516B2 (en)2006-02-272013-11-26Biomet Manufacturing, LlcPatient-specific orthopedic instruments
US20110015636A1 (en)*2006-02-272011-01-20Biomet Manufacturing Corp.Patient-Specific Elbow Guides and Associated Methods
US20110093086A1 (en)*2006-02-272011-04-21Witt Tyler DPatient-Specific Hip Joint Devices
US20110092804A1 (en)*2006-02-272011-04-21Biomet Manufacturing Corp.Patient-Specific Pre-Operative Planning
US20110160736A1 (en)*2006-02-272011-06-30Biomet Manufacturing Corp.Patient-specific femoral guide
US20110166578A1 (en)*2006-02-272011-07-07Biomet Manufacturing Corp.Alignment guides with patient-specific anchoring elements
US20110172672A1 (en)*2006-02-272011-07-14Biomet Manufacturing Corp.Instrument with transparent portion for use with patient-specific alignment guide
US9662216B2 (en)2006-02-272017-05-30Biomet Manufacturing, LlcPatient-specific hip joint devices
US20110190899A1 (en)*2006-02-272011-08-04Biomet Manufacturing Corp.Patient-specific augments
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US9345548B2 (en)2006-02-272016-05-24Biomet Manufacturing, LlcPatient-specific pre-operative planning
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US8603180B2 (en)2006-02-272013-12-10Biomet Manufacturing, LlcPatient-specific acetabular alignment guides
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US10206695B2 (en)2006-02-272019-02-19Biomet Manufacturing, LlcFemoral acetabular impingement guide
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US8858561B2 (en)2006-06-092014-10-14Blomet Manufacturing, LLCPatient-specific alignment guide
US20070288030A1 (en)*2006-06-092007-12-13Biomet Manufacturing Corp.Patient Specific Knee Alignment Guide And Associated Method
US8979936B2 (en)2006-06-092015-03-17Biomet Manufacturing, LlcPatient-modified implant
US20080114370A1 (en)*2006-06-092008-05-15Biomet Manufacturing Corp.Patient-Specific Alignment Guide For Multiple Incisions
US10206697B2 (en)2006-06-092019-02-19Biomet Manufacturing, LlcPatient-specific knee alignment guide and associated method
US20090254093A1 (en)*2006-06-092009-10-08Biomet Manufacturing Corp.Patient-Specific Alignment Guide
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