US991544A - Adjusting mechanism for rollers. - Google Patents

Adjusting mechanism for rollers. Download PDF

Info

Publication number
US991544A
US991544A US46301208A US1908463012A US991544A US 991544 A US991544 A US 991544A US 46301208 A US46301208 A US 46301208A US 1908463012 A US1908463012 A US 1908463012A US 991544 A US991544 A US 991544A
Authority
US
United States
Prior art keywords
rollers
cam
bar
slots
cams
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
Application number
US46301208A
Inventor
Herman Rosenthal
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US46301208A priority Critical patent/US991544A/en
Application granted granted Critical
Publication of US991544A publication Critical patent/US991544A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F1/00Platen presses, i.e. presses in which printing is effected by at least one essentially-flat pressure-applying member co-operating with a flat type-bed
    • B41F1/26Details
    • B41F1/40Inking units

Definitions

  • This invention relates to improvements in adjusting mechanisms for rollers of that class set forth in my prior application for patent filed June 27, 1907, Serial No. 381,051.
  • Figure 1 illustrates a side view of mechanism embodying my invention with the rollers in normal position.
  • Fig. 2 is an enlarged fragmentary detail showing one of the rollers in adjusted position.
  • Fig. 3 is a section taken on line 33 of Fig. 1.
  • Fig. i is a side elevation of the adjusting cam bar.
  • A indicates one of the end frame members or bars rigidly secured to which is an outwardly directed bar or flange a and guide bars a'a.
  • Bearing blocks BB and B are adjustably engaged between the guides and journaled therein are the shafts ofthe rollers CC and 0
  • Each of said blocks, as shown, is provided with a cam notch or recess in the inner side thereof adjacent the bar or flange a and also a flat face adjacent the notch.
  • Stems 7Jb'b are rigidly secured at one end to the respective bearing blocks which extend through apertures in the bar or flange a and springs b are engaged on the stems between the flanges and heads on the ends of the stems and act to return the rollers to normal as is usual.
  • cam bar D Slidably engaged on the flange or bar a beneath the bearing blocks BB and B and outside of the guide bars is a cam bar D integrally secured to which are the cams cZ(Z and 6?, one adapted to fit in each cam notch or recess when the rollers are in normal position.
  • a guide plate E is rigidly secured to the flange or bar a and at all times retains the cam bar in position.
  • Said plate is provided with obliquely inclined cam slots 6 which communicate at each end with slots extending parallel with the plate and pins (1 rigidly secured to said cam bar D engage normally in the lower of said slots.
  • a lever F pivoted at any suitable place is provided at one end with a pin f which engages in a transverse slot in the end of the cam bar and is adapted when actuated to slide the cam bar longitudinally.
  • Each end of the rollers is provided with an adjusting mechanism.
  • the lever F is actuated which shifts the cam bar transversely of the rollers.
  • the inclined faces of the cams Z to (Z inclusive engaging on the edge of the cam notches easily and quickly forces the rollers away from the rollers or surface which they contact until the cams rest beneath the flat faces of the bearing blocks.
  • the pins in their respective slots have traversed the distance of the lower horizontal slots and engage in the oblique cam slots thereby continuously elevating the rollers until the pins engage in the upper horizontal slots.
  • rollers may be adjusted any desired distance away from the surface they contact by increasing the height of the plate E and consequently the length of the cam slots 6.
  • cam slots may be used and if an exceedingly great adjustment is found necessary, oppositely disposed cams may be secured on the cam bar as shown in my prior application, which increases the ad justment about one third.
  • adjustable bearing blocks cam bars, cams on said bars engaging beneath the blocks and adapted to adjust the rollers by movement of the bar and means adapted to actuate the bar to further adjust the rollers after the limit of the adjustment by the cams.
  • a bar guides secured thereto, notched bearing blocks adjustable on said guides, a cam bar between said blocks and bar, cams thereon engaging in the notches in said bearing block, a plate secured to the first named bar provided with cam slots and pins on the cal bar engaging the cam slots.
  • an outwardly directed flange secured thereto, a plurality of guide bars secured to the flange, bearing blocks adjustably engaged between the guides and provided with a cam notch in the inner side thereof, cam bars, cams on said bars engaging in the notches beneath the bearing blocks and adapted to adjust the rollers by move ment of the bar and means adapted to fur ther adjust the rollers after the limit of the adjustment of the cams.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Preliminary Treatment Of Fibers (AREA)

Description

' H. ROSENTHAL. ADJUSTING MECHANISM FOB. ROLLERS.
' APPLICATION FILED NOV. 17, 1908.
991,544. Patented May 9,1911.
HERMAN ROSENTHAL, OF CHICAGO, ILLINOIS.
ADJUSTING MECHANISM FOR ROLLERS.
Specification of Letters Patent.
Application filed. November 17, 1908.
Patented May 9, 1911. Serial No. 463,012.
To all whom it may concern:
Be it known that I, HERMAN ROSENTHAL, a citizen of the United States, and a resident of Chicago, Cook county, Illinois, have invented certain new and useful Improvements in Adjusting Mechanisms for Rollers; and I do hereby declare that the following is a full, clear, and exact description of the same, reference being had to the accompanying drawings, and to the letters of reference marked thereon, which form a part of this specification.
This invention relates to improvements in adjusting mechanisms for rollers of that class set forth in my prior application for patent filed June 27, 1907, Serial No. 381,051.
Heretofore mechanisms of this class that have been provided for adjusting rollers away from other rollers or surface with which contacting, have proven unsatisfactory inasmuch as the rollers could never be shifted sufficiently to permit free access to the rollers or surface for repairing, cleaning or other purposes.
It is an object of this invention to provide mechanism for simultaneously adjusting a plurality of rollers out of contacting relation with other rollers or surface, a sufiicient distance to permit free access to all of the rolls for any purpose whatsoever.
It is an important object of this invention to provide a multiple cam mechanism capable of affording at least twice the adjustment of any device of this class heretofore known.
It is also a very important object of this invention to provide an adjusting mechanism exceedingly easy to operate, simple and compact in construction, cheap to attach and capable of being secured to any machine.
The invention relates to the matters hereinafter described and more fully pointed out and defined in the appended claims.
In the drawings: Figure 1 illustrates a side view of mechanism embodying my invention with the rollers in normal position. Fig. 2 is an enlarged fragmentary detail showing one of the rollers in adjusted position. Fig. 3 is a section taken on line 33 of Fig. 1. Fig. i is a side elevation of the adjusting cam bar.
As shown in the drawings: A indicates one of the end frame members or bars rigidly secured to which is an outwardly directed bar or flange a and guide bars a'a. a
and a are secured to said bar a in any preferred manner.
Bearing blocks BB and B are adjustably engaged between the guides and journaled therein are the shafts ofthe rollers CC and 0 Each of said blocks, as shown, is provided with a cam notch or recess in the inner side thereof adjacent the bar or flange a and also a flat face adjacent the notch.
Stems 7Jb'b are rigidly secured at one end to the respective bearing blocks which extend through apertures in the bar or flange a and springs b are engaged on the stems between the flanges and heads on the ends of the stems and act to return the rollers to normal as is usual.
Slidably engaged on the flange or bar a beneath the bearing blocks BB and B and outside of the guide bars is a cam bar D integrally secured to which are the cams cZ(Z and 6?, one adapted to fit in each cam notch or recess when the rollers are in normal position.
A guide plate E is rigidly secured to the flange or bar a and at all times retains the cam bar in position. Said plate is provided with obliquely inclined cam slots 6 which communicate at each end with slots extending parallel with the plate and pins (1 rigidly secured to said cam bar D engage normally in the lower of said slots.
A lever F pivoted at any suitable place is provided at one end with a pin f which engages in a transverse slot in the end of the cam bar and is adapted when actuated to slide the cam bar longitudinally.
The operation is as follows: Each end of the rollers is provided with an adjusting mechanism. To adjust the rollers the lever F is actuated which shifts the cam bar transversely of the rollers. During the first half of the movement of said cam bar the inclined faces of the cams (Z to (Z inclusive engaging on the edge of the cam notches easily and quickly forces the rollers away from the rollers or surface which they contact until the cams rest beneath the flat faces of the bearing blocks. At this time the pins in their respective slots have traversed the distance of the lower horizontal slots and engage in the oblique cam slots thereby continuously elevating the rollers until the pins engage in the upper horizontal slots.
It will be seen that the rollers may be adjusted any desired distance away from the surface they contact by increasing the height of the plate E and consequently the length of the cam slots 6.
Inasmuch as part of the adjustment is afiorded by the cams (Z to (Z inclusive and the remainder by the pins and cam slots, an exceedingly easy and continuous adjustment is afforded and the plates E act to guide the cam bars in their movements.
Other forms of cam slots may be used and if an exceedingly great adjustment is found necessary, oppositely disposed cams may be secured on the cam bar as shown in my prior application, which increases the ad justment about one third.
Many details of construction may be varied and I therefore do not desire to limit this application for patent otherwise than necessitated by the prior art.
I claim as my invention:
1. In a roller shifting mechanism adjustable bearing blocks, cam bars, cams on said bars engaging beneath the blocks and adapted to adjust the rollers by movement of the bar and means adapted to actuate the bar to further adjust the rollers after the limit of the adjustment by the cams.
2. In a device of the class described a bar, guides secured thereto, notched bearing blocks adjustable on said guides, a cam bar between said blocks and bar, cams thereon engaging in the notches in said bearing block, a plate secured to the first named bar provided with cam slots and pins on the cal bar engaging the cam slots.
3. In a roller adjusting mechanism, a bar,
guides thereon, bearing blocks having cam notches therein and adjustable on the guides, a plate secured to said bar having cam slots therein, a cam bar below the bearing blocks, cams thereon engaging in the cam notches in the bearing blocks and means secured to the cam bar extending into the cam slots in said plate.
at. in a roller adjusting device a bar, notched bearing blocks, a cam bar, cams thereon engaging in the notches in the block, a guide plate provided with horizontal slots and an oblique cam slot connecting the same and pins or projections engaged to the cam bar and normally extending into one of the horizontal slots adapted to engage in the oblique cam slot.
5. In a device of the class described end frame members, an outwardly directed flange secured thereto, a plurality of guide bars secured to the flange, bearing blocks adjustably engaged between the guides and provided with a cam notch in the inner side thereof, cam bars, cams on said bars engaging in the notches beneath the bearing blocks and adapted to adjust the rollers by move ment of the bar and means adapted to fur ther adjust the rollers after the limit of the adjustment of the cams.
In testimony whereof I have hereunto subscribed my name in the presence of two subscribing Witnesses.
HERMAN ROSENTHAL.
Vitnesses:
K. E. HANNAH, J. W'. ANGELL.
Copies of this patent may be obtained for five cents each, by addressing the Commissioner of Patents, Washington, D. C.
US46301208A 1908-11-17 1908-11-17 Adjusting mechanism for rollers. Expired - Lifetime US991544A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US46301208A US991544A (en) 1908-11-17 1908-11-17 Adjusting mechanism for rollers.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US46301208A US991544A (en) 1908-11-17 1908-11-17 Adjusting mechanism for rollers.

Publications (1)

Publication Number Publication Date
US991544A true US991544A (en) 1911-05-09

Family

ID=3059879

Family Applications (1)

Application Number Title Priority Date Filing Date
US46301208A Expired - Lifetime US991544A (en) 1908-11-17 1908-11-17 Adjusting mechanism for rollers.

Country Status (1)

Country Link
US (1) US991544A (en)

Similar Documents

Publication Publication Date Title
US756902A (en) Punching-machine.
US862791A (en) Elevating means.
US991544A (en) Adjusting mechanism for rollers.
US861355A (en) Multiple punch.
US520711A (en) Movable arm-rest for writing purposes
US1076273A (en) Shoe for elevator-guides.
US1259551A (en) Perforating-machine.
US357228A (en) Machine for bending sheet metal
US998225A (en) Arch-support adjuster.
US55602A (en) Improved machine for making horseshoes
US88624A (en) Improved templet for bending- springs
US293199A (en) Assigsob of qxe-iialf to
US927302A (en) Machine for corrugating sheet metal.
US494899A (en) Space-bar for line-casting machines
US641060A (en) Grid for cotton-openers.
US984009A (en) Means for embossing bread-pans.
US351284A (en) richards
US40665A (en) Bdwaed s
US96533A (en) Improvement in extension-table slides
US1018204A (en) Piano-bench.
US1022670A (en) Mechanical movement.
US891423A (en) Machine for forming concrete blocks.
US942272A (en) Multiple punching-machine.
US608562A (en) Fourths to oliver f
US963616A (en) Crimping-drum.