IP Library Granted Patent US 8,848,014
Granted Patent B2
US 8,848,014 · App. 13/200,827 · Granted Sep 30, 2014

Polygon mirror assembly, light scanning unit employing polygon mirror assembly, and image forming apparatus

Inventors: Heon-hee Lim (Suwon-si, KR); Jae-hwan Yoo (Yongin-si, KR); Jin-kwon Chun (Suwon-si, KR); Jong-wuk Ku (Suwon-si, KR)
Assignee: Samsung Electronics Co., Ltd.
G02B26/12G02B5/09
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Quick Facts
Patent No.
US 8,848,014
App. No.
13/200,827
Granted
Sep 30, 2014
Kind
B2
Abstract

A polygon mirror assembly, a light scanning unit employing the polygon mirror assembly, and an image forming apparatus. The polygon mirror assembly includes a polygon mirror formed of a plastic material and having a plurality of reflection surfaces; and a motor unit to support and rotate the polygon mirror, where the polygon mirror is coupled to the motor unit by using an adhesive material.

Claims (41)

1. A polygon mirror assembly comprising:

a polygon mirror formed of a plastic material and having a plurality of reflection surfaces;

a motor unit to support and rotate the polygon mirror, the polygon mirror being coupled to the motor unit by an adhesive material; and

a holder frame coupled to a rotation axis of the motor unit, the polygon mirror being coupled to the holder frame by the adhesive material,

wherein the polygon mirror comprises a hole, a part of the holder frame being inserted into the hole, and the adhesive material uniformly covers an entire innermost diametrical surface of the polygon mirror defining the hole, and

wherein a tilt preventing step having a space to accommodate adhesive material discharged from between the polygon mirror and an outer surface of the holder frame is formed in the innermost surface of the polygon mirror, the tilt preventing step being a groove formed on a lower circumferential surface of the innermost surface of the polygon mirror.

2. The polygon mirror assembly of claim 1 , wherein a tilt preventing groove having a space to accommodate the adhesive material is formed in the holder frame.

3. The polygon mirror assembly of claim 2 , wherein the tilt preventing groove is a groove formed on a surface of the holder frame around the part of the holder frame inserted into the hole of the polygon mirror.

4. The polygon mirror assembly of claim 1 , wherein the adhesive material is any one selected from the group consisting of an ultraviolet (UV)-curable adhesive material, a heat-curable adhesive material, and an instant adhesive material.

5. The polygon mirror assembly of claim 1 , wherein a reflection layer is formed on each of the plurality of reflection surfaces.

6. A polygon mirror assembly comprising:

a polygon mirror formed of a plastic material and having a plurality of reflection surfaces; and

a motor unit to support and rotate the polygon mirror, the polygon mirror being coupled to the motor unit by an adhesive material,

wherein the polygon mirror comprises a hole, a rotation axis of the motor unit is inserted into the hole of the polygon mirror, and the adhesive material uniformly covers an entire innermost diametrical surface of the polygon mirror defining the hole, and

wherein a tilt preventing step having a space to accommodate adhesive material discharged from between the polygon mirror and the rotation axis of the motor unit is formed in the innermost surface of the polygon mirror, the tilt preventing step being a groove formed on a lower circumferential surface of the innermost surface of the polygon mirror.

7. A light scanning unit comprising:

a light source to emit a light beam;

a polygon mirror assembly to deflect the light beam emitted from the light source in a main scanning direction; and

an imaging optical unit to image the light beam deflected by the polygon mirror assembly onto a surface that is to be scanned,

wherein the polygon mirror assembly is formed of a plastic material and comprises a polygon mirror having a plurality of reflection surfaces and a motor unit to support and rotate the polygon mirror,

wherein the polygon mirror is coupled to the motor unit by using an adhesive material,

wherein a holder frame is coupled to a rotation axis of the motor unit, and the polygon mirror is coupled to the holder frame by the adhesive material,

wherein the polygon mirror comprises a hole, and a part of the holder frame is inserted into the hole of the polygon mirror, and the adhesive material uniformly covers an entire innermost diametrical surface of the polygon mirror to define the hole, and

wherein a tilt preventing step having a space to accommodate adhesive material discharged from between the polygon mirror and an outer surface of the holder frame is formed in the innermost surface of the polygon mirror, the tilt preventing step being a groove formed on a lower circumferential surface of the innermost surface of the polygon mirror.

8. The light scanning unit of claim 7 , wherein a tilt preventing groove having a space to accommodate the adhesive material is formed in the holder frame.

9. The light scanning unit of claim 8 , wherein the tilt preventing groove is a groove formed on a surface of the holder frame around the part of the holder frame inserted into the hole of the polygon mirror.

10. The light scanning unit of claim 7 , wherein the adhesive material is any one selected from the group consisting of an ultraviolet (UV)-curable adhesive material, a heat-curable adhesive material, and an instant adhesive material.

11. A light scanning unit comprising:

a light source to emit a light beam;

a polygon mirror assembly to deflect the light beam emitted from the light source in a main scanning direction; and

an imaging optical unit to image the light beam deflected by the polygon mirror assembly onto a surface that is to be scanned,

wherein the polygon mirror assembly is formed of a plastic material and comprises a polygon mirror having a plurality of reflection surfaces and a motor unit to support and rotate the polygon mirror,

wherein the polygon mirror comprises a hole, a rotation axis of the motor unit is inserted into the hole of the polygon mirror, and the adhesive material uniformly covers an entire innermost diametrical surface of the polygon mirror defining the hole, and

wherein a tilt preventing step having a space to accommodate adhesive material discharged from between the polygon mirror and the rotation axis of the motor unit is formed in the innermost surface of the polygon mirror, the tilt preventing step being a groove formed on a lower circumferential surface of the innermost surface of the polygon mirror.

12. An image forming apparatus comprising:

a light scanning unit comprising: a light source to emit a light beam; a polygon mirror assembly to deflect the light beam emitted from the light source in a main scanning direction; an imaging optical unit to image the light beam deflected by the polygon mirror assembly onto a surface that is to be scanned;

a developing unit disposed on a focusing point of the light beam emitted from the light scanning unit, and comprising a plurality of photoreceptors on each of which an electrostatic latent image is formed and a developing roller to develop the electrostatic latent image formed on each of the photoreceptors; and

a transfer unit to transfer an image developed by the developing unit,

wherein the polygon mirror assembly is formed of a plastic material, comprises a polygon mirror having a plurality of reflection surfaces and a motor unit to support and rotate the polygon mirror via an adhesive material,

wherein the polygon mirror comprises a hole, and the adhesive material uniformly covers an entire innermost diametrical surface of the polygon mirror to define the hole, and

wherein a tilt preventing step having a space to accommodate adhesive material discharged from between the polygon mirror and an outer surface of a holder frame coupled to a rotation axis of the motor unit or the rotation axis of the motor unit is formed in the innermost surface of the polygon mirror, the tilt preventing step being a groove formed on a lower circumferential surface of the innermost surface of the polygon mirror.

Assignments (6)
CONFIRMATORY ASSIGNMENT EFFECTIVE NOVEMBER 1, 2018 Recorded Oct 17, 2019
From: HP PRINTING KOREA CO., LTD.
To: HEWLETT-PACKARD DEVELOPMENT COMPANY, L.P.
Reel/Frame 050747/0080 →
CHANGE OF LEGAL ENTITY EFFECTIVE AUG. 31, 2018 Recorded Oct 16, 2019
From: HP PRINTING KOREA CO., LTD.
To: HP PRINTING KOREA CO., LTD.
Reel/Frame 050938/0139 →
CORRECTIVE ASSIGNMENT TO CORRECT THE DOCUMENTATION EVIDENCING THE CHANGE OF NAME PREVIOUSLY RECORDED ON REEL 047370 FRAME 0405. ASSIGNOR(S) HEREBY CONFIRMS THE CHANGE OF NAME. Recorded Nov 21, 2018
From: S-PRINTING SOLUTION CO., LTD.
To: HP PRINTING KOREA CO., LTD.
Reel/Frame 047769/0001 →
CHANGE OF NAME Recorded Aug 17, 2018
From: S-PRINTING SOLUTION CO., LTD.
To: HP PRINTING KOREA CO., LTD.
Reel/Frame 047370/0405 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2017
From: SAMSUNG ELECTRONICS CO., LTD
To: S-PRINTING SOLUTION CO., LTD.
Reel/Frame 041852/0125 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 3, 2011
From: LIM, HEON-HEE; YOO, JAE-HWAN; CHUN, JIN-KWON; KU, JONG-WUK
To: SAMSUNG ELECTRONICS CO., LTD.
Reel/Frame 027152/0459 →
Priority Claims (1)
KR 10-2010-0117524 · Nov 24, 2010 · national
Continuity (1)
Related Publication 20120127252A1 · May 24, 2012