Toner for developing electrostatic latent image
A toner for developing an electrostatic latent image includes toner particles. An average aspect ratio of the toner particles, having predetermined diameters of at least 3 μm and less than 10 μm, is in the range from about 0.820 to about 0.900, and the difference between the maximum value and minimum value among the average aspect ratios D3, D4, D5, D6, D7, D8, and D9 is up to 0.07. Dn represents an average aspect ratio of those toner particles having a diameter of at least n μm and less than n+1 μm.
1. A toner for developing an electrostatic latent image comprising toner particles having diameters of at least 3 μm and less than 4 μm, toner particles having diameters of at least 4 μm and less than 5 μm, toner particles having diameters of at least 5 μm and less than 6 μm, toner particles having diameters of at least 6 μm and less than 7 μm, toner particles having diameters of at least 7 μm and less than 8 μm, toner particles having diameters of at least 8 μm and less than 9 μm, and toner particles having diameters of at least 9 μm and less than 10 μm,
wherein the toner particles have faces provided by chamfering,
wherein an average aspect ratio of the toner particles having predetermined diameters of at least 3 μm and less than 10 μm is in a range from about 0.820 to about 0.900, and
wherein the difference between a maximum value and a minimum value among the average aspect ratios D3 (D3 represents an average aspect ratio of the toner particles having diameters of at least 3 μm and less than 4 μm), D4 (D4 represents an average aspect ratio of the toner particles having diameters of at least 4 μm and less than 5 μm), D5 (D5 represents an average aspect ratio of the toner particles having diameters of at least 5 μm and less than 6 μm), D6 (D6 represents an average aspect ratio of the toner particles having diameters of at least 6 μm and less than 7 μm), D7 (D7 represents an average aspect ratio of the toner particles having diameters of at least 7 μm and less than 8 μm), D8 (D8 represents an average aspect ratio of the toner particles having diameters of at least 8 μm and less than 9 μm), and D9 (D9 represents an average aspect ratio of the toner particles having diameters of at least 9 μm and less than 10 μm) is up to about 0.07.
2. The toner for developing an electrostatic latent image according to claim 1 , wherein an average circularity of the toner particles having the diameters of at least 3 μm and less than 10 μm is in a range from about 0.965 to about 0.980.
3. The toner for developing an electrostatic latent image according to claim 2 , wherein the average circularity of the toner particles having the diameters of at least 3 μm and less than 10 μm is in a range from about 0.968 to about 0.980.
4. The toner for developing an electrostatic latent image according to claim 1 , wherein a volume average particle diameter is in a range from about 5 μm to about 10 μm.
5. The toner for developing an electrostatic latent image according to claim 1 , wherein the percentage of toner particles having a particle diameter of up to about 4.0 μm is up to about 8%.
6. The toner for developing an electrostatic latent image according to claim 1 , wherein a standard deviation of a volume distribution of the diameter of the toner particles is up to about 1.25.
7. The toner for developing an electrostatic latent image according to claim 1 , wherein a standard deviation of each of the average aspect ratios D3, D4, D5, D6, D7, D8 and D9 is in a range from about 0.0190 to about 0.0233.