IP Library Granted Patent US 11,642,752
Granted Patent B2
US 11,642,752 · App. 16/311,614 · Granted May 9, 2023

Porous polyurethane polishing pad and process for preparing the same

Inventors: Jang Won Seo (Busan, KR); Hyuk Hee Han (Gyeonggi-do, KR); Hye Young Heo (Gyeonggi-do, KR); Joonsung Ryou (Gyeonggi-do, KR); Young Pil Kwon (Gyeonggi-do, KR)
Assignee: SK ENPULSE CO., LTD.
B24B37/24C08J9/122C08J9/32C08J2203/22C08J2205/044C08J2375/04
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Quick Facts
Patent No.
US 11,642,752
App. No.
16/311,614
Granted
May 9, 2023
Kind
B2
Abstract

Embodiments relate to a porous polyurethane polishing pad for use in a chemical mechanical planarization and a process for preparing the same. It is possible to control the size and distribution of pores in the porous polyurethane polishing pad by using thermally expanded microcapsules and an inert gas as a gas phase foaming agent, whereby the polishing performance thereof can be adjusted.

Claims (20)

1. A porous polyurethane polishing pad, which comprises a polyurethane resin and pores distributed in the polyurethane resin,

wherein the polyurethane resin is obtained from a urethane-based prepolymer, a curing agent, a solid phase foaming agent, a reaction rate controlling agent, and a silicone-based surfactant which are mixed to mold the mixture while pores are formed,

wherein the solid phase foaming agent is employed in an amount of 1 part by weight to 3 parts by weight based on 100 parts by weight of the urethane-based prepolymer,

wherein, in a distribution diagram of the sum of the cross-sectional areas of pores by the pore size, the pore size at the maximum peak is in the range of 50 μm to 65 μm, and

wherein, in the distribution diagram of the sum of the cross-sectional areas of pores by the pore size, the pore size at the maximum peak is 50 μm to 65 μm, the sum of the cross-sectional areas of pores having a pore size smaller than the pore size at the maximum peak is larger than the sum of the cross-sectional areas of pores having a pore size larger than the pore size at the maximum peak by 5 μm or more, and

the difference between the sum of the cross-sectional areas of pores having a pore size smaller than the pore size at the maximum peak and the sum of the cross-sectional areas of pores having a pore size larger than the pore size at the maximum peak by 5 μm or more is 50% to 95% based on 100% of the sum of the cross-sectional areas of the entire pores.

2. The porous polyurethane polishing pad of claim 1 , wherein, in the distribution diagram of the sum of the cross-sectional areas of pores by the pore size,

the pore size at the maximum peak is larger than the average pore size,

the average pore size is 35 μm to 55 μm, and

the sum of the cross-sectional areas of pores having a pore size smaller than the pore size at the maximum peak is 70% to 90% based on 100% of the sum of the cross-sectional areas of the entire pores.

3. The porous polyurethane polishing pad of claim 1 , wherein, in the distribution diagram of the sum of the cross-sectional areas of pores by the pore size, the sum of the cross-sectional areas of pores having a pore size smaller than the pore size at the maximum peak by 20 μm or more is larger than the sum of the cross-sectional areas of pores having a pore size larger than the pore size at the maximum peak by 5 μm or more, and

the sum of the cross-sectional areas of pores having a pore size smaller than the pore size at the maximum peak by 20 μm or more is 30% to 50% based on 100% of the sum of the cross-sectional areas of the entire pores.

4. The porous polyurethane polishing pad of claim 1 , wherein, in the distribution diagram of the sum of the cross-sectional areas of pores by the pore size, the pore size at the maximum peak is larger than the average pore size by 10 μm to 60 μm.

5. The porous polyurethane polishing pad of claim 1 , wherein the pores comprise pores formed by a solid phase foaming agent, and

the pores formed by a solid phase foaming agent comprise pores having a pore size smaller than the pore size at the maximum peak.

6. A process for preparing a porous polyurethane polishing pad, which comprises:

injecting an inert gas when a urethane-based prepolymer, a curing agent, a solid phase foaming agent, a reaction rate controlling agent, and a silicone-based surfactant are mixed to mold the mixture while pores are formed, wherein the solid phase foaming agent is employed in an amount of 1 part by weight to 3 parts by weight based on 100 parts by weight of the urethane-based prepolymer,

wherein, in a distribution diagram of the sum of the cross-sectional areas of pores by the pore size, the pore size at the maximum peak is in the range of 50 μm to 65 μm,

wherein, in the distribution diagram of the sum of the cross-sectional areas of pores by the pore size, the pore size at the maximum peak is 50 μm to 65 μm, and the sum of the cross-sectional areas of pores having a pore size smaller than the pore size at the maximum peak is larger than the sum of the cross-sectional areas of pores having a pore size larger than the pore size at the maximum peak by 5 μm or more, and

the difference between the sum of the cross-sectional areas of pores having a pore size smaller than the pore size at the maximum peak and the sum of the cross-sectional areas of pores having a pore size larger than the pore size at the maximum peak by 5 μm or more is 50% to 95% based on 100% of the sum of the cross-sectional areas of the entire pores.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 2, 2025
From: SK ENPULSE CO., LTD.
To: ENPULSE CO., LTD.
Reel/Frame 071277/0667 →
CHANGE OF NAME Recorded Feb 13, 2023
From: SKC SOLMICS CO., LTD.
To: SK ENPULSE CO., LTD.
Reel/Frame 062717/0084 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2021
From: SKC CO., LTD.
To: SKC SOLMICS CO., LTD.
Reel/Frame 055685/0677 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 28, 2018
From: SEO, JANG WON; HAN, HYUK HEE; HEO, HYE YOUNG; RYOU, JOONSUNG; KWON, YOUNG PIL
To: SKC CO., LTD.
Reel/Frame 047869/0491 →
Priority Claims (2)
KR 10-2017-0116069 · Sep 11, 2017 · national
KR 10-2017-0116108 · Sep 11, 2017 · national
Continuity (1)
Related Publication 20210229237A1 · Jul 29, 2021