Preparation of Self-Healing Polyurethane Based on the Phase-Locking Effect and Application for Lost Circulation Control
Ren Wang, Cheng Wang, Yang Bai, Yifu Long, Jie Yang
China National Petroleum Corporation (China) Southwest Petroleum University State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation
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Summary Lost circulation is a critical technical challenge in the process of drilling. Lost circulation materials (LCMs) with self-healing properties offer an effective method for lost circulation control by forming an integrated plugging layer within fractures. The phase-locking effect enables the confinement of dynamic bonds within the hard segment phase of self-healing polyurethane (PU), thereby restricting their kinetic exchange and controlling the self-healing properties of the material. In this work, a PU elastomer (HS-PU) with heat resistance and self-healing properties was prepared by using hydroxyl-terminated polybutadiene (HTPB) as the soft segment and 4,4'-diphenylmethane diisocyanate (MDI) as the hard segment and introducing dynamic disulfide bonds. HS-PU was systematically characterized by Fourier transform infrared (FT-IR) spectroscopy, atomic force microscopy (AFM), and thermogravimetric analysis. HS-PU exhibited excellent water resistance, and the retention rate of the tensile strength was as high as 91.3% after soaking in water for 36 hours. Besides, HS-PU has good heat resistance and can achieve self-healing in the range of 110–150°C, and the self-healing rate increases with increasing temperature. The pressure-bearing capacity of HS-PU at 130 and 150°C is 4 and 3.5 MPa, respectively, and the capacity can reach 13 MPa after the addition of bridge-plugging materials. Moreover, HS-PU still has excellent pressure-bearing performance in water-based muds (WBMs). This work provides a new approach for controlling lost circulation in complex formations at the field and developing heat-resistant self-healing LCM, holding significant practical importance for ensuring safe and efficient drilling operations.
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工程Drilling and Well Engineering
Polymer composites and self-healing · Grouting, Rheology, and Soil Mechanics
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