Citation: B. Tomita et Cy. Hse, PHENOL-UREA-FORMALDEHYDE (PUF) CO-CONDENSED WOOD ADHESIVES, International journal of adhesion and adhesives, 18(2), 1998, pp. 69-79
Citation: Tf. Shupe et al., DIFFERENCES IN SOME CHEMICAL-PROPERTIES OF INNERWOOD AND OUTERWOOD FROM 5 SILVICULTURALLY DIFFERENT LOBLOLLY-PINE STANDS, Wood and fiber science, 29(1), 1997, pp. 91-97
Citation: Tf. Shupe et al., EFFECT OF SILVICULTURAL PRACTICE AND VENEER GRADE LAYUP ON SOME MECHANICAL-PROPERTIES OF LOBLOLLY-PINE LVL, Forest products journal, 47(9), 1997, pp. 63-69
Citation: Tf. Shupe et al., EFFECTS OF SILVICULTURAL PRACTICE AND MOISTURE-CONTENT LEVEL ON LOBLOLLY-PINE VENEER MECHANICAL-PROPERTIES, Forest products journal, 47(11-12), 1997, pp. 92-96
Citation: Tf. Shupe et al., EFFECTS OF SILVICULTURAL PRACTICE AND VENEER LAYUP ON SOME MECHANICAL-PROPERTIES OF LOBLOLLY-PINE PLYWOOD, Forest products journal, 47(10), 1997, pp. 101-106
Citation: Jy. Gu et al., SYNTHETIC CONDITIONS AND CHEMICAL STRICTU RES OF UREA-FORMALDEHYDE RESINS .3. MOLECULAR-STRUCTURE OF RESIN SYNTHESIZED BY CONDENSATION UNDER STRONGLY ACIDIC CONDITIONS, Mokuzai Gakkaishi, 42(5), 1996, pp. 483-488
Citation: Jy. Gu et al., SYNTHETIC CONDITIONS AND CHEMICAL STRUCTU RES OF UREA-FORMALDEHYDE RESINS .2. SYNTHETIC PROCEDURES INVOLVING A CONDENSATION STEP UNDER STRONGLY ACIDIC CONDITIONS AND THE PROPERTIES OF THE RESINS OBTAINED, Mokuzai Gakkaishi, 42(2), 1996, pp. 149-156
Citation: Jy. Gu et al., SYNTHETIC CONDITIONS AND CHEMICAL STRUCTU RES OF UREA-FORMALDEHYDE RESINS .4. CURING BEHAVIOR OF THE RESINS, Mokuzai Gakkaishi, 42(10), 1996, pp. 992-997
Citation: Y. Yoshida et al., KINETICS ON COCONDENSATION BETWEEN PHENOL AND UREA THROUGH FORMALDEHYDE .3. CONCURRENT REACTIONS OF MONOMETHYLOLPHENOL AND UREA INVOLVING COCONDENSATION AND SELF-CODENSATION, Mokuzai Gakkaishi, 41(7), 1995, pp. 652-658
Citation: Y. Yoshida et al., KINETICS ON COCONDENSATION BETWEEN PHENOL AND UREA THROUGH FORMALDEHYDE .1. PSEUDO-FIRST-ORDER REACTION OF MONOMETHYLOLPHENOL AND UREA, Mokuzai Gakkaishi, 41(6), 1995, pp. 547-554
Citation: Y. Yoshida et al., KINETICS ON COCONDENSATION BETWEEN PHENOL AND UREA THROUGH FORMALDEHYDE .2. CONCURRENT COCONDENSATIONS OF 2,4,6-TRIMETHYLOLPHENOL WITH UREA, Mokuzai Gakkaishi, 41(6), 1995, pp. 555-560
Citation: B. Tomita et Cy. Hse, ANALYSIS ON COCONDENSATION OF MELAMINE AN D UREA THROUGH C-13 ENRICHED FORMALDEHYDE WITH C-13 NUCLEAR-MAGNETIC-RESONANCE SPECTROSCOPY, Mokuzai Gakkaishi, 41(5), 1995, pp. 490-497
Citation: B. Tomita et Cy. Hse, ANALYSES OF COCONDENSATION OF MELAMINE AND UREA THROUGH FORMALDEHYDE WITH CARBON-13 NUCLEAR-MAGNETIC-RESONANCE SPECTROSCOPY, Mokuzai Gakkaishi, 41(3), 1995, pp. 349-354
Citation: Jy. Gu et al., SYNTHETIC CONDITIONS AND CHEMICAL STRUCTU RES OF UREA-FORMALDEHYDE RESINS .1. PROPERTIES OF THE RESINS SYNTHESIZED BY 3 DIFFERENT PROCEDURES, Mokuzai Gakkaishi, 41(12), 1995, pp. 1115-1121
Citation: M. Ohyama et al., CURING PROPERTY AND PLYWOOD ADHESIVE PERFORMANCE OF RESOL-TYPE PHENOL-UREA-FORMALDEHYDE COCONDENSED RESINS, Holzforschung, 49(1), 1995, pp. 87-91
Citation: Lw. Zhao et al., UTILIZATION OF SOFTWOOD KRAFT LIGNIN AS ADHESIVE FOR THE MANUFACTURE OF RECONSTITUTED WOOD, Journal of wood chemistry and technology, 14(1), 1994, pp. 127-145
Citation: B. Tomita et al., SYNTHESIS OF PHENOL-UREA-FORMALDEHYDE COCONDENSED RESINS FROM UF-CONCRETE AND PHENOL, Holzforschung, 48(6), 1994, pp. 522-526
Citation: Jh. Pu et al., CREEP-BEHAVIOR OF SWEETGUM OSB - EFFECT OF LOAD LEVEL AND RELATIVE-HUMIDITY, Forest products journal, 44(11-12), 1994, pp. 45-50
Citation: B. Tomita et Cy. Hse, SYNTHESES AND STRUCTURAL-ANALYSES OF COCO NDENSED RESINS FROM UREA AND METHYLOLPHENOLS, Mokuzai Gakkaishi, 39(11), 1993, pp. 1276-1284
Citation: Awc. Lee et Cy. Hse, EVALUATION OF CEMENT-EXCELSIOR BOARDS MADE FROM YELLOW-POPLAR AND SWEETGUM, Forest products journal, 43(4), 1993, pp. 50-52