Pitt K G, Newton J M, Richardson R, Stanley P
School of Pharmacy, University of London, Brunswick Square, UK.
J Pharm Pharmacol. 1989 May;41(5):289-92. doi: 10.1111/j.2042-7158.1989.tb06458.x.
The material tensile strength of a range of convex-faced tablets, compacted under controlled conditions at pressures of 40 and 320 MPa from a size fraction of acetylsalicylic acid, has been assessed. The calculation of the tensile strength sigma 1, from observed fracture loads obtained in diametral compression testing, is based on the equation derived by Pitt et al (1988), namely: (formula; see text) where P is the fracture load, D is the tablet diameter, t is the overall tablet thickness and W is the central cylinder thickness. The strength of a tablet of a given shape compacted at 320 MPa was between two and four times greater than that of a similar tablet compacted at 40 MPa. For the thicker tablets (W/D greater than or equal to 0.2) the material tensile strength was practically independent of shape. For the thinner tablets (W/D = 0.1) the material tensile strength varied considerably with face-curvature, showing a maximum for each of the two compaction pressures at a D/R value of 0.67.
已对一系列凸面片剂的材料拉伸强度进行了评估,这些片剂是在40和320兆帕压力的受控条件下,由乙酰水杨酸的一个粒度级分压制而成。根据在径向压缩试验中获得的观察到的断裂载荷计算拉伸强度σ1,是基于皮特等人(1988年)推导的公式,即:(公式;见正文)其中P是断裂载荷,D是片剂直径,t是片剂总厚度,W是中心圆柱厚度。在320兆帕压力下压制的给定形状片剂的强度比在40兆帕压力下压制的类似片剂的强度大两到四倍。对于较厚的片剂(W/D大于或等于0.2),材料拉伸强度实际上与形状无关。对于较薄的片剂(W/D = 0.1),材料拉伸强度随面曲率变化很大,在D/R值为0.67时,两种压制压力下均出现最大值。