A ventilated perspiration-wicking-type casual leather shoe, comprising a sole (1), a shoe body (2), and an upper (3). The shoe body (2) and the upper (3) are positioned above the sole (1). A front surface wall of the shoe body (2) is provided with a first through hole (4), and a rear surface wall of the upper (3) is provided with a second through hole (5). Side through holes (6) and an air-permeable opening (9) are provided on a side wall of the shoe body (2) and a side wall of the upper (3). The front side of the inside of the shoe body (2) is provided with a first inner interlayer (10), while the rear side of the inside of the shoe body (2) is provided with a second inner interlayer (14). A circulation state is formed between the front and rear and spaces inside the shoe via the first through hole (4) provided on the toecap part of the shoe body (2), the second through hole (5) provided on the upper (3), and the air-permeable opening (9) provided on the side of the shoe body (2), in conjunction with a front air-permeable hole (11) and the second inner interlayer (14) provided on the first inner interlayer (10) and the second inner interlayer (14). By means of a U-shaped ventilating surface (7) and an inverted triangle-shaped ventilating surface (8) on the shoe body (2) and the upper (3), the perspiration-wicking performance of the casual leather shoe is increased, ensuring efficiency in said shoe.
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