Claims
- 1. Apparatus for producing packing sheets, said apparatus comprising spaced calendar stands,
- a heated cylinder of large diameter rotably supported by said calender stands,
- a motor for driving said heated cylinder in rotation,
- said heated cylinder having a cylindrical circumferential surface on which a packing sheet is progressively formed by application of a rubber composition containing fibers to said surface during successive revolutions of said heated cylinder,
- an unheated cylinder having a smaller diameter than said heated cylinder and having a cylindrical circumferential surface,
- means for supporting said unheated cylinder for rotation and for movement toward and away from said heated cylinder and means for exerting a force in a direction to move said unheated cylinder toward said heated cylinder to press said circumferential surface of said unheated cylinder into engagement with said packing sheet as it is progressively formed on said circumferential surface of said heated cylinder,
- a controllable variable speed motor for driving said unheated cylinder in rotation in a direction opposite to the direction of rotation of said heated cylinder,
- means for controlling the speed of rotation of said motor for driving said unheated cylinder,
- first sensing means, positioned adjacent the circumference of said heated cylinder, for sensing the lineal circumferential speed of said heated cylinder and producing a signal representing said speed,
- second sensing means, positioned adjacent the circumference of said unheated cylinder, for sensing the lineal circumferential speed of said unheated cylinder and producing a signal representing said speed,
- third sensing means for sensing the increasing thickness of a packing sheet as it is progressively formed on said circumferential surface of said heated cylinder and producing a signal representing said thickness, and
- a micro-processor having a first input connected with said first sensing means for receiving said signal representing the lineal circumferential speed of said heated cylinder, a second input connected with said second sensing means for receiving said signal representing the lineal circumferential speed of said unheated cylinder, a third input connected with said third sensing means for receiving said signal representing the increasing thickness of said packing sheet as it is being formed on said circumferential surface of said heated cylinder and an output connected with said means for controlling the speed of said motor for driving said unheated cylinder to drive said unheated cylinder at a lineal circumferential speed equal to the lineal peripheral surface speed of said packing sheet on said circumferential surface of said heated cylinder and thereby preventing said unheated cylinder from exerting a shearing action on said packing sheet on said circumferential surface of said heated cylinder.
- 2. Apparatus according to claim 1, in which said motor for driving said heated cylinder is also a controllable variable speed motor and in which
- means is provided for controlling the speed of said motor for driving said heated cylinder, and
- said micro-processor is provided with a second output connected with said means for controlling the speed of said motor for driving said heated cylinder.
- 3. Apparatus according to claim 1, in which said means for sensing the lineal circumferential speed of said heated cylinder comprises uniformly circumferentially spaced marks on the circumference of said heated cylinder and a sensor which is positioned adjacent the circumference of said heated cylinder and which produces a pulse upon the passage of each of said marks.
- 4. Apparatus according to claim 1, in which said means for sensing the lineal circumferential speed of said unheated cylinder comprises uniformly circumferentially spaced marks on the circumference of said unheated cylinder and a sensor which is positioned adjacent the circumference of said unheated cylinder and which produces a pulse upon the passage of each of said marks.
- 5. Apparatus according to claim 1, in which said micro-processor comprises a digital switching network.
- 6. Apparatus according to claim 1, in which said third sensing means for sensing the thickness of a packing sheet formed on said heated cylinder comprises a sensor for sensing the position of the axis of rotation of said unheated cylinder relative to the axis of rotation of said heated cylinder.
- 7. Apparatus according to claim 1, in which said third sensing means for sensing the thickness of a packing sheet formed on said circumferential surface of said heated cylinder comprises a feeler roller engageable with the surface of said packing sheet.
- 8. Apparatus for producing packing sheets, said apparatus comprising spaced calender stands,
- a heated cylinder of large diameter rotatably supported by said calender stands,
- a motor for driving said heated cylinder in rotation,
- said heated cylinder having a cylindrical circumferential surface on which a packing sheet is progressively formed by application of a rubber composition containing fibers to said surface during successive revolutions of said heated cylinder,
- an unheated cylinder having a smaller diameter than said heated cylinder and having a cylindrical circumferential surface,
- means for supporting said unheated cylinder for rotation about an axis parallel to the axis of rotation of said heated cylinder and for movement toward and away from said heated cylinder and means for exerting a force in a direction to move said unheated cylinder toward said heated cylinder to press said circumferential surface of said unheated cylinder into engagement with said packing sheet as it is progressively formed on said circumferential surface of said heated cylinder,
- a controllable variable speed motor for driving said unheated cylinder in rotation in a direction opposite to the direction of rotation of said heated cylinder,
- means for controlling the speed of rotation of said motor for driving said unheated cylinder,
- first sensing means, positioned adjacent the circumference of said heated cylinder, for sensing the lineal circumferential speed of said heated cylinder and producing a signal representing said speed,
- second sensing means, positioned adjacent the circumference of said unheated cylinder, for sensing the lineal circumferential speed of said unheated cylinder and producing a signal representing said speed,
- third sensing means for sensing the increasing thickness of a packing sheet as it is progressively formed on said circumferential surface of said heated cylinder and producing a signal representing said thickness,
- a micro-processor having a first input connected with said first sensing means for receiving said signal representing lineal circumferential speed of said heated cylinder, a second input connected with said second sensing means for receiving said signal representing the lineal circumferential speed of said unheated cylinder, a third output connected with said third sensing means for receiving said signal representing the increasing thickness of said packing sheet on said circumferential surface of said heated cylinder and an output connected with said means for controlling the speed of rotation of said motor for driving said unheated cylinder, and
- selector switch means for switching said micro-processor between a mode in which said micro-processor controls the speed of rotation of said motor for driving said unheated cylinder to drive said unheated cylinder at a lineal circumferential speed equal to the peripheral surface speed of said packing sheet on said heated cylinder and a mode in which said micro-processor controls the speed of rotation of said motor for driving said unheated cylinder at a lineal circumferential speed which deviates, to a controlled degree, from the lineal peripheral surface speed of said packing sheet on said heated cylinder.
- 9. Apparatus according to claim 8, in which said first sensing means for sensing the lineal circumferential speed of said heated cylinder comprises uniformally circumferentially spaced marks on the circumference of said heated cylinder and a sensor which is positioned adjacent the circumference of said heated cylinder and which produces a pulse upon the passage of each of said marks.
- 10. Apparatus according to claim 8, in which said second sensing means for sensing the lineal circumferential speed of said unheated cylinder comprises uniformly spaced marks on the circumference of said unheated cylinder and a sensor which is positioned adjacent the circumference of said unheated cylinder and which produces a pulse upon the passage of each of the said marks.
- 11. Apparatus according to claim 8, in which said third sensing means for sensing the thickness of a packing sheet on said heated cylinder comprises means for sensing the position of the axis of rotation of said unheated cylinder relative to the axis of rotation of said heated cylinder.
- 12. Apparatus according to claim 8, in which said third sensing means for sensing the thickness of a packing sheet on rotation of said heated cylinder comprises at least one feeler roller engageable with the surface of said packing sheet.
- 13. A method of controlling the operation of apparatus for producing packing sheets, said apparatus comprising
- spaced calender stands,
- a heated cylinder of large diameter which has a smooth cylindrical circumferential surface and which is supported by said calender stands for rotation about its axis,
- a motor for driving said heated cylinder in rotation,
- an unheated cylinder having a smaller diameter than said heated cylinder and having a smooth cylindrical circumferential surface,
- means for supporting said unheated cylinder for rotation about an axis parallel to the axis of rotation of said heated cylinder and for movement toward and away from said heated cylinder, and
- a controllable variable speed motor for driving said unheated cylinder in rotation,
- said method comprising the steps of:
- driving said heated cylinder in rotation at a selected speed,
- applying rubber composition containing fibers uniformly to said circumferential surface of said heated cylinder as it rotates to form a packing sheet progressively on said circumferential surface of said heated cylinder during a plurality of revolutions of said heated cylinder,
- exerting a force on said unheated cylinder in a direction to move said unheated cylinder toward said heated cylinder and thereby press the circumferential surface of said unheated cylinder with engagement with an outer surface of said packing sheet being formed on said circumferential surface of said heated cylinder,
- sensing the increasing thickness of said packing sheet as it is being progressively formed on said circumferential surface of said heated cylinder, and
- controlling the speed of rotation of said unheated cylinder as a function of said sensed lineal circumferential surface speed of said heated cylinder, said sensed lineal circumferential surface speed of said unheated cylinder and said sensed thickness of said packing sheet being progressively formed on said circumferential surface of said heated cylinder to rotate said unheated cylinder at a lineal circumferential surface speed equal to the lineal peripheral outer surface speed of said packing sheet on said circumferential surface of said heated cylinder and thereby prevent shearing action on said packing sheet.
- 14. A method of controlling the operation of apparatus for producing packing sheets, said apparatus comprising
- spaced calender stands,
- a heated cylinder of large diameter which has a smooth cylindrical circumferential surface and which is supported by said calender stands for rotation about its axis,
- a motor for driving said heated cylinder in rotation,
- an unheated cylinder having a smaller diameter than said heated cylinder and having a smooth cylindrical circumferential surface,
- means for supporting said unheated cylinder for rotation about an axis parallel to the axis of rotation of said heated cylinder and for movement toward and away from said heated cylinder, and
- a controllable variable speed motor for driving said unheated cylinder in rotation,
- said method comprising the steps of:
- driving said heated cylinder in rotation at a selected speed,
- applying rubber composition containing fibers uniformly to said circumferential surface of said heated cylinder as it rotates to form a packing sheet progressively on said circumferential surface of said heated cylinder during a plurality of revolutions of said heated cylinder,
- exerting a force on said unheated cylinder in a direction to move said unheated cylinder toward said heated cylinder and thereby press the circumferential surface of said unheated cylinder into engagement with an outer surface of said packing sheet being formed on said circumferential surface of said heated cylinder,
- sensing the increasing thickness of said packing sheet as it is being progressively formed on said circumferential surface of said heated cylinder, and
- controlling the speed of rotation of said cylinders as a function of said sensed lineal circumferential surface speed of said heated cylinder, said sensed lineal circumferential surface speed of said unheated cylinder and said sensed thickness of said packing sheet being progressively formed on said circumferential surface of said heated cylinder for a selected period of time to rotate said unheated cylinder at a lineal circumferential surface speed equal to the lineal peripheral outer surface speed of said packing sheet on said circumferential surface of said heated cylinder, and
- controlling the speed of rotation of said cylinders as a function of said sensed lineal circumferential surface speed of said heated cylinder, said sensed lineal circumferential surface speed of said unheated cylinder and said sensed thickness of said packing sheet being progressively formed on said circumferential surface of said heated cylinder for another selected period of time to rotate said unheated cylinder at a lineal circumferential surface speed which deviates in a controlled direction and amount from the lineal peripheral outer surface speed of said packing sheet on said circumferential surface of said heated cylinder to align fibers in said rubber composition.
- 15. A method of controlling the operation of apparatus for producing a packing sheet according to claim 14, in which the speed of rotation of said cylinders is controlled for a first period of time from the beginning of forming a packing sheet to rotate said unheated cylinder at a lineal peripheral speed equal to the lineal peripheral outer surface speed of said packing sheet being formed on said circumferential surface of said heated cylinder to prevent shearing action on said packing sheet and, after said packing sheet has attained a selected thickness, the speed of rotation of said cylinders is controlled to rotate said unheated cylinder at a lineal circumferential surface speed which deviates in a selected direction and amount from the lineal peripheral outer surface speed of said packing sheet and thereby align fibers contained in said rubber composition.
Priority Claims (1)
Number |
Date |
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Kind |
4011410 |
Apr 1990 |
DEX |
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Parent Case Info
This is a continuation of application Ser. No. 07/681,992, filed Apr. 8, 1991, now abandoned.
US Referenced Citations (11)
Continuations (1)
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Number |
Date |
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Parent |
681992 |
Apr 1991 |
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