IP Library Granted Patent US 11,312,063
Granted Patent B2
US 11,312,063 · App. 16/039,928 · Granted Apr 26, 2022

Double-sided transcription type sheet/film forming roll apparatus and double-sided transcription type sheet/film forming method

Inventors: Koji Mizunuma (Sunto-Gun, JP); Ryota Oke (Mishima, JP); Tomonori Yamaguchi (Sunto-Gun, JP); Akihiro Iwata (Gotemba, JP)
Assignee: SHIBAURA MACHINE CO., LTD.
B29C59/04B29C43/24B29C43/245B29C43/46B29C48/0011B29C48/0018B29C48/08B29C48/92B29C59/002B29C2043/5825B29C2043/5833B29C2948/92647B29C2948/92942B30B3/005B30B15/0029B30B15/166
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Quick Facts
Patent No.
US 11,312,063
App. No.
16/039,928
Granted
Apr 26, 2022
Kind
B2
Abstract

An apparatus includes a first roll and a second roll on each of which a pattern is formed, a first motor and a second motor to rotate the respective rolls, a shaft direction supporting mechanism to support the second roll along a shaft direction and an axial position adjusting mechanism configured to move the shaft direction supporting mechanism along the shaft direction. The posture of the rotating shaft of the second motor is maintained constant at all times, and the second roll is moved in the shaft direction along the first roll, thereby adjusting the positions of both patterns on the first roll and the second roll along the shaft direction.

Claims (27)

1. A double-sided transcription type sheet/film forming roll apparatus comprising a first roll and a second roll configured to be rotatable in opposition to each other, on each of which a preset pattern is formed and configured to feed a molten resin into a part between the first roll and the second roll to thereby form a sheet or a film on both surfaces of which the patterns are transcribed, the apparatus comprising:

a first motor configured to rotate the first roll;

a second motor including a rotor on which a plurality of permanent magnets are arranged, an attaching surface of the rotor, and a rotating shaft attached to the rotor, the second motor being configured to rotate the second roll;

a disk-like flange part provided at one end of the rotating shaft of the second motor and attached by bolt fastening to the attaching surface concentrically;

a push-pull unit configured to move the first roll toward or away from the second roll;

a power transmission mechanism configured to couple the second motor with the second roll, the power transmission mechanism comprising an intermediate bearing part and first and second shaft couplings, the first shaft coupling the rotating shaft of the second motor and the intermediate shaft part with each other, and the second shaft coupling the rotating shaft of the second roll and the intermediate shaft part with each other, wherein a variation state of the rotating shaft of the second roll created when bringing the first roll close to and away from the second roll is absorbed to be eliminated as the intermediate shaft part is inclined with respect to the first shaft coupling as a base point, thereby maintaining a posture of the rotating shaft of the second motor constant at all times;

a shaft direction supporting mechanism configured to support the second roll along a shaft direction in a state where the second roll is rotatable; and

an axial position adjusting mechanism configured to move the shaft direction supporting mechanism along the shaft direction,

the second roll being configured to move in the shaft direction along the first roll with movement of the shaft direction supporting mechanism, thereby adjusting the positions of both patterns on the first roll and the second roll along the shaft direction.

2. The apparatus of claim 1 , wherein the axial position adjusting mechanism further comprises, in addition to the shaft direction supporting mechanism, an adjusting plate configured to move the second motor and the power transmission device integrally along the shaft direction.

3. The apparatus of claim 2 , wherein the axial position adjusting mechanism comprises a hydraulic actuator configured to move the adjusting plate forward and backward with an oil pressure.

4. The apparatus of claim 3 , wherein the axial position adjusting mechanism comprises a preload mechanism configured to apply a given pressure to the hydraulic actuator.

5. The apparatus of claim 1 , wherein the intermediate shaft part is an integrated single axial member or prepared from a plurality of axial members coupled with each other.

6. The apparatus of claim 1 , wherein the shaft couplings are each a flexible coupling or a ball joint.

7. A double-sided transcription type sheet/film forming roll apparatus comprising a first roll and a second roll configured to be rotatable in opposition to each other, a third roll rotatable in synchronism with the second roll, on each of the second roll and the third roll, a preset pattern is formed and configured to feed a molten resin into a part between the first roll and the second roll to form a sheet or a film on both surfaces of which the patterns are transcribed, as the molten resin passes through between the second roll and the third roll, the apparatus comprising:

a first motor configured to rotate the first roll;

a second motor including a rotor on which a plurality of permanent magnets are arranged, an attaching surface of the rotor, and a rotating shaft attached to the rotor, the second motor being configured to rotate the second roll;

a disk-like flange part provided at one end of the rotating shaft of the second motor and attached by bolt fastening to the attaching surface concentrically;

a push-pull unit configured to move the first roll toward or away from the second roll;

a power transmission mechanism configured to couple the second motor with the second roll,

the power transmission mechanism comprising an intermediate bearing part and first and second shaft couplings, the first shaft coupling the rotating shaft of the second motor and the intermediate shaft part with each other, and the second shaft coupling the rotating shaft of the second roll and the intermediate shaft part with each other, wherein a variation state of the rotating shaft of the second roll created when bringing the first roll close to and away from the second roll is absorbed to be eliminated as the intermediate shaft part is inclined with respect to the first shaft coupling as a base point, thereby maintaining a posture of the rotating shaft of the second motor constant at all times;

a shaft direction supporting mechanism configured to support the second roll along a shaft direction in a state where the second roll is rotatable; and

an axial position adjusting mechanism configured to move the shaft direction supporting mechanism along the shaft direction,

the second roll being configured to move in the shaft direction along the third roll with movement of the shaft direction supporting mechanism, thereby adjusting the positions of both patterns on the second roll and the third roll along the shaft direction.

8. The apparatus of claim 7 , wherein the axial position adjusting mechanism further comprises, in addition to the shaft direction supporting mechanism, an adjusting plate configured to move the second motor and the power transmission device integrally along the shaft direction.

9. The apparatus of claim 7 , wherein the intermediate shaft part is an integrated single axial member or prepared from a plurality of axial members coupled with each other.

10. The apparatus of claim 7 , wherein the shaft couplings are each a flexible coupling or a ball joint.

Assignments (2)
CHANGE OF NAME Recorded Mar 16, 2022
From: TOSHIBA KIKAI KABUSHIKI KAISHA
To: SHIBAURA MACHINE CO., LTD.
Reel/Frame 059278/0228 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2018
From: MIZUNUMA, KOJI; OKE, RYOTA; YAMAGUCHI, TOMONORI; IWATA, AKIHIRO
To: TOSHIBA KIKAI KABUSHIKI KAISHA
Reel/Frame 046528/0292 →
Priority Claims (1)
JP JP2017-141032 · Jul 20, 2017 · national
Continuity (1)
Related Publication 20190022920A1 · Jan 24, 2019