US2092190A - Device for mixing paint and other materials in cans - Google Patents
Device for mixing paint and other materials in cans Download PDFInfo
- Publication number
- US2092190A US2092190A US755839A US75583934A US2092190A US 2092190 A US2092190 A US 2092190A US 755839 A US755839 A US 755839A US 75583934 A US75583934 A US 75583934A US 2092190 A US2092190 A US 2092190A
- Authority
- US
- United States
- Prior art keywords
- cans
- shaft
- holder
- connecting rod
- casing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
- 239000000463 material Substances 0.000 title description 7
- 239000003973 paint Substances 0.000 title description 7
- 239000011435 rock Substances 0.000 description 5
- 238000010276 construction Methods 0.000 description 4
- 230000008093 supporting effect Effects 0.000 description 4
- 238000006073 displacement reaction Methods 0.000 description 3
- 238000003756 stirring Methods 0.000 description 3
- 230000008878 coupling Effects 0.000 description 2
- 238000010168 coupling process Methods 0.000 description 2
- 238000005859 coupling reaction Methods 0.000 description 2
- 239000004615 ingredient Substances 0.000 description 2
- 239000000203 mixture Substances 0.000 description 2
- 230000035939 shock Effects 0.000 description 2
- 238000013329 compounding Methods 0.000 description 1
- 239000000470 constituent Substances 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000010355 oscillation Effects 0.000 description 1
- 239000002245 particle Substances 0.000 description 1
- 229920000136 polysorbate Polymers 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01F—MIXING, e.g. DISSOLVING, EMULSIFYING OR DISPERSING
- B01F31/00—Mixers with shaking, oscillating, or vibrating mechanisms
- B01F31/70—Drives therefor, e.g. crank mechanisms
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T74/00—Machine element or mechanism
- Y10T74/18—Mechanical movements
- Y10T74/18416—Rotary to alternating rotary
Definitions
- the present invention relates to a device for mixing paint and other materials in cans, so that when cans are stored on shelves and the like for a long period of time and the heavier particles or constituents of the mixture in the cans becomes settled and somewhat solid in the bottoms of the cans, the cans may be treated so as to thoroughly mix and stir up the ingredients therein and thus renew the contents.
- An object of the present invention is to provide a device or machine of this character which reduces vibration to a minimum and which so operates upon the cans as to thoroughly stir up and admix the ingredients without the great shock or impact usually resulting from lengthwise displacements of the cans back and forth when being operated upon, and thus the contents within the cans will not be bodily projected or thrown alternately against the opposite ends of the can tending to disrupt the same and create a compounding action of the machine.
- the invention has for a further object the peculiar mounting of a holder for cans so that the holder may oscillate about an axis intersecting the holder between its ends and to provide means for effecting the oscillation which is directly connected to the holder in the longitudinal plane thereof, and which remains in such plane so as to obtain a direct action on the holder with a substantial leverage which in itself considerably reduces vibration and requires less effort in the operation of the holder than prior devices of the eccentric or crank type.
- a further object of the invention is to provide a device or machine embodying these features and which is of relatively simple construction and wherein the construction is such that the machine may rest solidly upon a support and wherein the machine may accommodate more than one can at a time.
- Figure l is a side elevation of a machine constructed according to the present invention.
- Figure 2 is a top plan view of the same Figure 3 is a vertical section taken through the machine on the line 3-3 of Figure 2.
- Figure 4 is a transverse section taken on the line 46 of Figure 2.
- FIG. 5 is a side elevation of a slightly modified form of the machine embodying the features of this invention.
- Figure 6 is a longitudinal section taken through the same on the line 6-6 of Figure 7, and
- Figure 7 is a top plan view of the modified form 5 of machine.
- the body part of the machine comprises a frame I5 which may be in the form of a housing, as shown, and which is of suitable length and width to support the device and which is adapted to be secured by screws l'6 or the like to a suitable support.
- the frame l5 carries on its upper end a longitudinally extending casing I! which is closed at its sides and its ends and by a removable top 5 I8 admitting access to the interior parts of the machine.
- a transversely eX- tending crank shaft I9 having suitable bearings in the opposite sides of the casing I! and which at its intermediate portion is provided with a crank 20 which may be of the double disc and eccentric pin type as shown.
- crank shaft I 9 extends from the adjacent side of the casing l1 and is provided with a drive pulley 2
- thus rotates the shaft l9 so as to operate the crank 26.
- a connecting rod 25 is journaled at one end on the crank 26 and extends lengthwise in the casing I!
- Shaft sections 21 have bearing through the opposite walls of the casing ll in register with the sleeve 26 and are secured in the opposite ends of the sleeve 26 by set screws 28 or the like, the sleeve 26 and the shaft sections 2'! providing a transversely disposed rock shaft structure which extends beyond the opposite sides of the casing ll. Stop collars 29 may be secured by set screws to the shaft sections 21 at the opposite outer sides of the casing I!
- the shaft sections 21 carry on their outer ends can holders 30 which are suitably shaped to receive cans of paint or the like of conventional size and which may be proportioned to receive cans of various sizes within a practical range.
- Each holder 38 is provided with a clamping plate 31 mounted on a jack screw 32 which is threaded through one end of the holder 38 and provided 5 with a suitable hand wheel 33 by means of which the clamping plate 3! may be forced up against the end of a can to bind the can between the clamping plate and the opposite end of the holder 38.
- Each holder 38 is provided with a hub 34 which is suitably fixed upon the adjacent shaft section 21 so that when the shaft sections are rocked or oscillated the holders '38 will correspondingly rock or oscillate about and upon the axis of the shaft sections 21.
- the shaft sections 21 thus provide sup-porting means for the can holders 38 and also an operatingmeans therefor.
- connecting rod engages the sleeve at diametrically opposed points and thus connecting rod is held for operation in the longitudinal plane of the can holders 38 and consequently the effort required for operating or 25 oscillating the holders 38 depends upon the length of the connecting rod 25 between the sleeve 26 and the crank 28.
- connection of the connecting rod 25 is thus direct with respect to the holders so that 30 the outer end of the connecting rod may be easily raised and lowered to rock the holders back and forth and thus provide the necessary stirring or mixing of the contents of cans mounted in the holder. It is preferable to dispose the axis of the rock shaft structure, including the shaft sections 21, normal to the longitudinal axis of the holders 30 and also equi-distantly spaced from the opposite ends and opposite diametrical points of the holder.
- the adjustment of the cans in the holder will sufficiently approximate the rocking or oscillating movement without material pounding or offsetting of the weight of the cans so that the machine in operation will run relatively smoothly and the contents of the cans will be properly displaced from end to end in the cans and 'without the bodily displacement and imp-act which is occasioned by a bodily shifting of the holder in an endwise direction.
- a relatively small motor may be employed to rotate the drive wheel 21.
- the drive wheel 2! turns the crank shaft 68 and the throw of the crank 20 not only raises and lowers the outer end of the connecting rod 25 but also shifts the same in the direction of its length.
- the connecting rod 25 is relatively rigid throughout its length so that as it rises and falls it reciprocates the shaft sections '21 and their can holders 38 and the sliding connection of the rod 25 with the sleeve 26 permits the rod to at all times remain'in the plane of the longitudinal axes of the shaft sections 21 and the holders 38. Owing to the length of the connecting rod 21 but little effort is required in not only rocking the holders 30 on their transverse supporting axis but in absorbing or overcoming shock or pounding incident to the displacement of the contents in the cans.
- the device ' is of extremely simple construction 7' and incident to the direct rigid crank connection reduces vibration and pounding to a minimum.
- a pair of standards 35 is mounted on a suitable support 36 and at their upper ends provide bearings for trunnions 31 which project from the opposite sides of a can holder 38.
- the can holder 38 is of the general construction shown in Figures 1 to 4 and the trunnions 3'! are disposed on a common axis which intersects the intermediate portion of the holder 38 and the longitudinal axis thereof.
- One end of the holder 38 is provided with an axially disposed sleeve 39 in which is secured rigidly one end of a connecting rod 48 by means of a key or pin 4!
- connecting rod 48 is coaxial with the holder 38 and may be raised and lowered at its opposite end to rock the holder 38 on the axis of the trunnions 31.
- the opposite end of the connecting rod 48 is provided with a coupling or socket head 42 for receiving therein the ball head 43 of an arm 44 which carries an eccentric strap 45 on. its lower end encircling an eccentricdisc 46 mounted on the crank 4! of a drive shaft 48.
- a casing 49 which maycontain a body of oil in its lower end portion within which the ec centric 46 with its adjacent parts may operate, and the opposite ends of the crank shaft 48 have bearing through the opposite sides of the casing 49 and at one end extends beyond the casing and is provided with a drive pulley or wheel 50.
- the wheel 58 may be operated by a belt 5
- the casing 49 is provided in one wall with a vertical slot 52 through which the connecting rod 4
- the arm 44 is of sufficient length to lie substanitally in the horizontal plane of the trunnions or axis of the can holder 38 when the eccentric 46 is in a substantially intermediate position, as shown in Figure 6.
- the rocking of the holder 38 is substantially equal in opposite directions out of itsnormal horizontal position.
- the rigid connecting rod 40 swings as a unit with the can holder 38 and is proportioned as to length so as to reducethe work required for rocking the holder 38 and also for absorbing or taking up the thrust or pounding action of the material within. the cans during operation of the machine.
- a relatively light motor may be used for operating the drive wheel 50.
- the drive wheel 58 When the drive wheel 58 is turned it rotates the crank shaft 48 and consequently turns the disc 46 with the result that the arm 44 is raised and lowered and at the same time swung within the limits of the ec-
- the drive shaft 48 is mounted centric disc 46 in its coupling with the outer end of the connecting rod 40.
- the arm 44 thus raises and lowers the outer end of the connecting rod 48 and the latter is coincident with the radius of the axis or trunnions 31.
- the connecting rod 25 in the "other form of the invention is also coincident with the radius of the axis of the shaft sections 21 and can holders 38.
- a paint mixing device comprising a housing, a shaft journalled in opposed walls of said housing and extending outwardly of said walls, said shaft having a transversely disposed opening between said walls, a second shaft journalled in said walls, said second. shaft being disposed in spaced parallel relation to said first shaft, a rod a shaft journalled in opposed walls of said housloosely extending through said opening in said ing and extending outwardly of said walls, said first shaft, drivi means for d Second S shaft having a transversely disposed opening becan supporting means carried by the opposite tween said walls, a second shaft journalled in said ends of said first shaft, and adjustable clamping 5 walls, said second shaft being disposed in spaced means Carried y d Supporting a parallel relation to said first shaft, a rod eccentrically carried by said second shaft, said rod JOSEPH TACCOGNA.
Landscapes
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
- Coating Apparatus (AREA)
Description
Sept. 7, 1937.
J. TACCOGNA DEVICE FOR MIXING PAINT AND OTHER MATERIALS IN CANS 2 Sheets-Sheet l J11 a N Filed Dec. 3, 1934 N N 3mm Jbsepfi Taccognw Sept. 7, 1937. J. TACCOGNA 2,092,190
DEVICE FOR MIXING PAINT AND OTHER MATERIALS IN CANS Filed Dec. 3, 1934 2 Sheets-Sheet 2 Ill-JD Jise iu Tancqgnw Patented Sept. 7, 1937 UNITED STATE meme PATET QFFEQE DEVICE FOR MIXING PAINT AND OTHER MATERIALS IN CANS 2 Claims.
The present invention relates to a device for mixing paint and other materials in cans, so that when cans are stored on shelves and the like for a long period of time and the heavier particles or constituents of the mixture in the cans becomes settled and somewhat solid in the bottoms of the cans, the cans may be treated so as to thoroughly mix and stir up the ingredients therein and thus renew the contents.
An object of the present invention is to provide a device or machine of this character which reduces vibration to a minimum and which so operates upon the cans as to thoroughly stir up and admix the ingredients without the great shock or impact usually resulting from lengthwise displacements of the cans back and forth when being operated upon, and thus the contents within the cans will not be bodily projected or thrown alternately against the opposite ends of the can tending to disrupt the same and create a compounding action of the machine.
The invention has for a further object the peculiar mounting of a holder for cans so that the holder may oscillate about an axis intersecting the holder between its ends and to provide means for effecting the oscillation which is directly connected to the holder in the longitudinal plane thereof, and which remains in such plane so as to obtain a direct action on the holder with a substantial leverage which in itself considerably reduces vibration and requires less effort in the operation of the holder than prior devices of the eccentric or crank type.
A further object of the invention is to provide a device or machine embodying these features and which is of relatively simple construction and wherein the construction is such that the machine may rest solidly upon a support and wherein the machine may accommodate more than one can at a time.
With the foregoing and other objects in view, the invention will be more fully described hereinafter, and will be more particularly pointed out in the claims appended hereto.
In the drawings, wherein like symbols refer to like or corresponding parts throughout the several views,
Figure l is a side elevation of a machine constructed according to the present invention.
Figure 2 is a top plan view of the same Figure 3 is a vertical section taken through the machine on the line 3-3 of Figure 2.
Figure 4 is a transverse section taken on the line 46 of Figure 2.
Figure 5 is a side elevation of a slightly modified form of the machine embodying the features of this invention.
Figure 6 is a longitudinal section taken through the same on the line 6-6 of Figure 7, and
Figure 7 is a top plan view of the modified form 5 of machine.
Referring now to the drawings, the body part of the machine comprises a frame I5 which may be in the form of a housing, as shown, and which is of suitable length and width to support the device and which is adapted to be secured by screws l'6 or the like to a suitable support.
The frame l5 carries on its upper end a longitudinally extending casing I! which is closed at its sides and its ends and by a removable top 5 I8 admitting access to the interior parts of the machine. Near one end portion of the casing ll, the latter is provided with a transversely eX- tending crank shaft I9 having suitable bearings in the opposite sides of the casing I! and which at its intermediate portion is provided with a crank 20 which may be of the double disc and eccentric pin type as shown. One end of the crank shaft I 9 extends from the adjacent side of the casing l1 and is provided with a drive pulley 2| or the like over which may be passed a belt 22 which extends downwardly through a slot 23 in the top of the frame l5 and at said side of the casing IT for passage about a drive pulley 24 of .a motor or the like which may be disposed or housed within the bottom of the frame I5. The pulley 2| thus rotates the shaft l9 so as to operate the crank 26. A connecting rod 25 is journaled at one end on the crank 26 and extends lengthwise in the casing I! and slidably engages through a transversely disposed sleeve 26 suitably apertured intermediate its ends for slidably receiving the connecting rod 25 therethrough. Shaft sections 21 have bearing through the opposite walls of the casing ll in register with the sleeve 26 and are secured in the opposite ends of the sleeve 26 by set screws 28 or the like, the sleeve 26 and the shaft sections 2'! providing a transversely disposed rock shaft structure which extends beyond the opposite sides of the casing ll. Stop collars 29 may be secured by set screws to the shaft sections 21 at the opposite outer sides of the casing I! to hold the sleeve 26 in equi-distantly spaced relation from the opposite walls of the casing l1 and in line with the crank 20 of the operating shaft. The shaft sections 21 carry on their outer ends can holders 30 which are suitably shaped to receive cans of paint or the like of conventional size and which may be proportioned to receive cans of various sizes within a practical range.
Each holder 38 is provided with a clamping plate 31 mounted on a jack screw 32 which is threaded through one end of the holder 38 and provided 5 with a suitable hand wheel 33 by means of which the clamping plate 3! may be forced up against the end of a can to bind the can between the clamping plate and the opposite end of the holder 38. Each holder 38 is provided with a hub 34 which is suitably fixed upon the adjacent shaft section 21 so that when the shaft sections are rocked or oscillated the holders '38 will correspondingly rock or oscillate about and upon the axis of the shaft sections 21. The shaft sections 21 thus provide sup-porting means for the can holders 38 and also an operatingmeans therefor. I v I From Figure 3, it will be noted that the connecting rod 25 is slidable through the sleeve 26 .v
so that the connecting rod engages the sleeve at diametrically opposed points and thus connecting rod is held for operation in the longitudinal plane of the can holders 38 and consequently the effort required for operating or 25 oscillating the holders 38 depends upon the length of the connecting rod 25 between the sleeve 26 and the crank 28.
The connection of the connecting rod 25 is thus direct with respect to the holders so that 30 the outer end of the connecting rod may be easily raised and lowered to rock the holders back and forth and thus provide the necessary stirring or mixing of the contents of cans mounted in the holder. It is preferable to dispose the axis of the rock shaft structure, including the shaft sections 21, normal to the longitudinal axis of the holders 30 and also equi-distantly spaced from the opposite ends and opposite diametrical points of the holder. The adjustment of the cans in the holder, particularly with short cans, will sufficiently approximate the rocking or oscillating movement without material pounding or offsetting of the weight of the cans so that the machine in operation will run relatively smoothly and the contents of the cans will be properly displaced from end to end in the cans and 'without the bodily displacement and imp-act which is occasioned by a bodily shifting of the holder in an endwise direction.
In operation, a relatively small motor may be employed to rotate the drive wheel 21. The drive wheel 2! turns the crank shaft 68 and the throw of the crank 20 not only raises and lowers the outer end of the connecting rod 25 but also shifts the same in the direction of its length.
The connecting rod 25 is relatively rigid throughout its length so that as it rises and falls it reciprocates the shaft sections '21 and their can holders 38 and the sliding connection of the rod 25 with the sleeve 26 permits the rod to at all times remain'in the plane of the longitudinal axes of the shaft sections 21 and the holders 38. Owing to the length of the connecting rod 21 but little effort is required in not only rocking the holders 30 on their transverse supporting axis but in absorbing or overcoming shock or pounding incident to the displacement of the contents in the cans.
The device 'is of extremely simple construction 7' and incident to the direct rigid crank connection reduces vibration and pounding to a minimum.
Referring now to the modification shown in Figures 5, 6, and '7, a pair of standards 35 is mounted on a suitable support 36 and at their upper ends provide bearings for trunnions 31 which project from the opposite sides of a can holder 38. The can holder 38 is of the general construction shown in Figures 1 to 4 and the trunnions 3'! are disposed on a common axis which intersects the intermediate portion of the holder 38 and the longitudinal axis thereof. One end of the holder 38 is provided with an axially disposed sleeve 39 in which is secured rigidly one end of a connecting rod 48 by means of a key or pin 4! so that the connecting rod 48 is coaxial with the holder 38 and may be raised and lowered at its opposite end to rock the holder 38 on the axis of the trunnions 31. The opposite end of the connecting rod 48 is provided with a coupling or socket head 42 for receiving therein the ball head 43 of an arm 44 which carries an eccentric strap 45 on. its lower end encircling an eccentricdisc 46 mounted on the crank 4! of a drive shaft 48. in a casing 49 which maycontain a body of oil in its lower end portion within which the ec centric 46 with its adjacent parts may operate, and the opposite ends of the crank shaft 48 have bearing through the opposite sides of the casing 49 and at one end extends beyond the casing and is provided with a drive pulley or wheel 50.
The wheel 58 may be operated by a belt 5|, as shown in Figure 5, driven from any suitable source of power. The casing 49 is provided in one wall with a vertical slot 52 through which the connecting rod 4|] extends and in which the rod has a free vertical swinging movement. The arm 44 is of sufficient length to lie substanitally in the horizontal plane of the trunnions or axis of the can holder 38 when the eccentric 46 is in a substantially intermediate position, as shown in Figure 6. Thus, the rocking of the holder 38 is substantially equal in opposite directions out of itsnormal horizontal position.
In this case, like in the first form, the rigid connecting rod 40 swings as a unit with the can holder 38 and is proportioned as to length so as to reducethe work required for rocking the holder 38 and also for absorbing or taking up the thrust or pounding action of the material within. the cans during operation of the machine. Thus, a relatively light motor may be used for operating the drive wheel 50. When the drive wheel 58 is turned it rotates the crank shaft 48 and consequently turns the disc 46 with the result that the arm 44 is raised and lowered and at the same time swung within the limits of the ec- The drive shaft 48 is mounted centric disc 46 in its coupling with the outer end of the connecting rod 40. The arm 44 thus raises and lowers the outer end of the connecting rod 48 and the latter is coincident with the radius of the axis or trunnions 31. The connecting rod 25 in the "other form of the invention is also coincident with the radius of the axis of the shaft sections 21 and can holders 38.
What is claimed is: I
1. A paint mixing device comprising a housing, a shaft journalled in opposed walls of said housing and extending outwardly of said walls, said shaft having a transversely disposed opening between said walls, a second shaft journalled in said walls, said second. shaft being disposed in spaced parallel relation to said first shaft, a rod a shaft journalled in opposed walls of said housloosely extending through said opening in said ing and extending outwardly of said walls, said first shaft, drivi means for d Second S shaft having a transversely disposed opening becan supporting means carried by the opposite tween said walls, a second shaft journalled in said ends of said first shaft, and adjustable clamping 5 walls, said second shaft being disposed in spaced means Carried y d Supporting a parallel relation to said first shaft, a rod eccentrically carried by said second shaft, said rod JOSEPH TACCOGNA.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US755839A US2092190A (en) | 1934-12-03 | 1934-12-03 | Device for mixing paint and other materials in cans |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US755839A US2092190A (en) | 1934-12-03 | 1934-12-03 | Device for mixing paint and other materials in cans |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US2092190A true US2092190A (en) | 1937-09-07 |
Family
ID=25040859
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US755839A Expired - Lifetime US2092190A (en) | 1934-12-03 | 1934-12-03 | Device for mixing paint and other materials in cans |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US2092190A (en) |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE3017318A1 (en) * | 1979-05-08 | 1980-11-20 | Graco Inc | METHOD FOR MIXING LIQUIDS IN CLOSED CONTAINERS |
| US4235553A (en) * | 1978-09-25 | 1980-11-25 | Sears, Roebuck And Co. | Material mixer |
-
1934
- 1934-12-03 US US755839A patent/US2092190A/en not_active Expired - Lifetime
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US4235553A (en) * | 1978-09-25 | 1980-11-25 | Sears, Roebuck And Co. | Material mixer |
| DE3017318A1 (en) * | 1979-05-08 | 1980-11-20 | Graco Inc | METHOD FOR MIXING LIQUIDS IN CLOSED CONTAINERS |
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