BACKGROUND OF THE INVENTION
(a) Field of the Invention
The present invention provides a novel anti-detachment chainwheel having forced recessed face at chain tooth root portion, in which a chain roller (110) sleeved on a chain connecting pivot shaft (109) can be tightened engaged at a forced recessed face at chain tooth root portion (104) while the chainwheel being driven by a chain, thereby improving the shortage of the chain being easily detached from the chainwheel; the anti-detachment chainwheel having forced recessed face at chain tooth root portion provided by the present invention includes unidirectional transmission and bidirectional transmission structures.
(b) Description of the Prior Art
A conventional chainwheel is often utilized for bidirectional forced transmission, and gear teeth are formed in a symmetrical structure; for smoothly guiding the chain into the chainwheel, a symmetrical chevron angled tooth face (103) having a tooth peak (105) at outer side and a wider chain tooth root portion at inner side has to be formed between the tooth shape and the chain roller (110) sleeved on a chain connecting pivot shaft (109) installed between lateral connecting sheets at each segment of the chain; however, one major shortage thereof is that when the chainwheel is driven by the chain, the oblique face formed on the chain tooth has a constant tendency of forcing the chainwheel to be outwardly detached, especially when less quantity of chain tooth being engaged with the chain, or when the chain being driven to swing towards the centrifugal direction under the situation of high speed transmission and altering load, the chain is even more likely to be detached.
SUMMARY OF THE INVENTION
The present invention provides a novel anti-detachment chainwheel having forced recessed face at chain tooth root portion, in which a chain roller (110) sleeved on a chain connecting pivot shaft (109) can be tightened engaged at a forced recessed face at chain tooth root portion (104) while the chainwheel being driven by a chain, thereby improving the shortage of the chain being easily detached from the chainwheel.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is a schematic structural view showing the chain tooth of a conventional chainwheel.
FIG. 2 is a side view showing a conventional chain structure.
FIG. 3 is a front view showing the conventional chain structure.
FIG. 4 is a schematic structural view illustrating the tooth shape of a unidirectional transmission anti-detachment chainwheel composed of a right circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention.
FIG. 5 is a schematic structural view illustrating the tooth shape of a bidirectional transmission anti-detachment chainwheel composed of a right circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention.
FIG. 6 is a schematic structural view illustrating the tooth shape of a unidirectional transmission anti-detachment chainwheel composed of an eccentric circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention.
FIG. 7 is a schematic structural view illustrating the tooth shape of a bidirectional transmission anti-detachment chainwheel composed of an eccentric circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention.
FIG. 8 is a schematic structural view illustrating the tooth shape of a unidirectional transmission anti-detachment chainwheel composed of an oval gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention.
FIG. 9 is a schematic structural view illustrating the tooth shape of a bidirectional transmission anti-detachment chainwheel composed of an oval gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention.
DESCRIPTION OF MAIN COMPONENT SYMBOLS
101: Right circular gear plate
102: Rotation central interface
103: Symmetrical chevron angled tooth face
104: Forced recessed face at chain tooth root portion
105: Tooth peak
106: Chain
107: Eccentric circular gear plate
108: Oval gear plate
109: Chain connecting pivot shaft
110: Chain roller
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
A conventional chainwheel is often utilized for bidirectional forced transmission, and gear teeth are formed in a symmetrical structure; for smoothly guiding the chain into the chainwheel, a symmetrical chevron angled tooth face (103) having a tooth peak (105) at outer side and a wider chain tooth root portion at inner side has to be formed between the tooth shape and the chain roller (110) sleeved on a chain connecting pivot shaft (109) installed between lateral connecting sheets at each segment of the chain; however, one major shortage thereof is that when the chainwheel is driven by the chain, the oblique face formed on the chain tooth has a constant tendency of forcing the chainwheel to be outwardly detached, especially when less quantity of chain tooth being engaged with the chain, or when the chain being driven to swing towards the centrifugal direction under the situation of high speed transmission and altering load, the chain is even more likely to be detached;
The present invention provides a novel anti-detachment chainwheel having forced recessed face at chain tooth root portion, in which a chain roller (110) sleeved on a chain connecting pivot shaft (109) can be tightened engaged at a forced recessed face at chain tooth root portion (104) while the chainwheel being driven by a chain, thereby improving the shortage of the chain being easily detached from the chainwheel; the anti-detachment chainwheel having forced recessed face at chain tooth root portion provided by the present invention includes unidirectional transmission and bidirectional transmission structures, illustrated as followings:
FIG. 1 is a schematic structural view showing the chain tooth of a conventional chainwheel;
FIG. 2 is a side view showing a conventional chain structure;
FIG. 3 is a front view showing the conventional chain structure;
As shown in FIG. 1, FIG. 2 and FIG. 3, for smoothly guiding the chain (106) into the chainwheel through the chain tooth at the outer periphery of a conventional chainwheel during transmission, a symmetrical chevron angled tooth face (103) having a tooth peak (105) at outer side and a wider chain tooth root portion at inner side has to be formed between the tooth shape and the chain roller (110) sleeved on a chain connecting pivot shaft (109) installed between lateral connecting sheets at each segment of the chain; one major shortage thereof is that when the chainwheel is driven by the chain, the oblique face formed on the chain tooth has a constant tendency of forcing the chainwheel to be outwardly detached, especially when less quantity of chain tooth being engaged with the chain, or when the chain being driven to swing towards the centrifugal direction under the situation of high speed transmission and altering load, the chain is even more likely to be detached.
For improving the mentioned shortage, the present invention provides a novel anti-detachment chainwheel having forced recessed face at chain tooth root portion;
FIG. 4 is a schematic structural view illustrating the tooth shape of a unidirectional transmission anti-detachment chainwheel composed of a right circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention;
As shown in FIG. 4, it mainly consists of:
- right circular gear plate (101): the periphery thereof is formed with chain teeth, the center thereof is formed with a mechanism in an aperture or shaft shape or chainwheel teeth having its outer circumference served for transmission for performing right circular rotation thereby forming a rotation central interface (102), one main characteristic thereof is that a root is formed along the tooth peak (105) of chainwheel tooth and inwardly recessed as a chevron angled face, wherein one root portion on the face along the transmission forcing is formed with a forced recessed face at chain tooth root portion (104), thereby coupling the chain roller (110) sleeved on the chain connecting pivot shaft (109) to be tightly engaged at the forced recessed face at chain tooth root portion.
FIG. 5 is a schematic structural view illustrating the tooth shape of a bidirectional transmission anti-detachment chainwheel composed of a right circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention;
As shown in FIG. 5, it mainly consists of:
- right circular gear plate (101): the periphery thereof is formed with chain teeth, the center thereof is formed with a mechanism in an aperture or shaft shape or chainwheel teeth having its outer circumference served for transmission for performing right circular rotation thereby forming a rotation central interface (102), one main characteristic thereof is that a root is formed along the tooth peak (105) of chainwheel tooth and inwardly recessed as a chevron angled face, wherein two root portions on the face along the transmission forcing are respectively formed with a forced recessed face at chain tooth root portion (104), thereby coupling the chain roller (110) sleeved on the chain connecting pivot shaft (109) to be tightly engaged at the forced recessed face at chain tooth root portion.
FIG. 6 is a schematic structural view illustrating the tooth shape of a unidirectional transmission anti-detachment chainwheel composed of an eccentric circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention;
As shown in FIG. 6, it mainly consists of:
- eccentric circular gear plate (107): the periphery thereof is formed with chain teeth, the center thereof is formed with a mechanism in an aperture or shaft shape or chainwheel teeth having its outer circumference served for transmission for performing eccentric circular rotation thereby forming a rotation central interface (102), one main characteristic thereof is that a root is formed along the tooth peak (105) of chainwheel tooth and inwardly recessed as a chevron angled face, wherein one root portion on the face along the transmission forcing is formed with a forced recessed face at chain tooth root portion (104), thereby coupling the chain roller (110) sleeved on the chain connecting pivot shaft (109) to be tightly engaged at the forced recessed face at chain tooth root portion.
FIG. 7 is a schematic structural view illustrating the tooth shape of a bidirectional transmission anti-detachment chainwheel composed of an eccentric circular gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention;
As shown in FIG. 7, it mainly consists of:
- eccentric circular gear plate (107): the periphery thereof is formed with chain teeth, the center thereof is formed with a mechanism in an aperture or shaft shape or chainwheel teeth having its outer circumference served for transmission for performing eccentric circular rotation thereby forming a rotation central interface (102), one main characteristic thereof is that a root is formed along the tooth peak (105) of chainwheel tooth and inwardly recessed as a chevron angled face, wherein two root portions on the face along the transmission forcing are respectively formed with a forced recessed face at chain tooth root portion (104), thereby coupling the chain roller (110) sleeved on the chain connecting pivot shaft (109) to be tightly engaged at the forced recessed face at chain tooth root portion.
FIG. 8 is a schematic structural view illustrating the tooth shape of a unidirectional transmission anti-detachment chainwheel composed of an oval gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention;
As shown in FIG. 8, it mainly consists of:
- oval gear plate (108): the periphery thereof is formed with chain teeth, the center thereof is formed with a mechanism in an aperture or shaft shape or chainwheel teeth having its outer circumference served for transmission for performing oval rotation thereby forming a rotation central interface (102), one main characteristic thereof is that a root is formed along the tooth peak (105) of chainwheel tooth and inwardly recessed as a chevron angled face, wherein one root portion on the face along the transmission forcing is formed with a forced recessed face at chain tooth root portion (104), thereby coupling the chain roller (110) sleeved on the chain connecting pivot shaft (109) to be tightly engaged at the forced recessed face at chain tooth root portion.
FIG. 9 is a schematic structural view illustrating the tooth shape of a bidirectional transmission anti-detachment chainwheel composed of an oval gear plate and formed with a forced recessed face at chain tooth root portion (104), according to the present invention;
As shown in FIG. 9, it mainly consists of:
- oval gear plate (108): the periphery thereof is formed with chain teeth, the center thereof is formed with a mechanism in an aperture or shaft shape or chainwheel teeth having its outer circumference served for transmission for performing oval rotation thereby forming a rotation central interface (102), one main characteristic thereof is that a root is formed along the tooth peak (105) of chainwheel tooth and inwardly recessed as a chevron angled face, wherein two root portions on the face along the transmission forcing are respectively formed with a forced recessed face at chain tooth root portion (104), thereby coupling the chain roller (110) sleeved on the chain connecting pivot shaft (109) to be tightly engaged at the forced recessed face at chain tooth root portion.
According to the anti-detachment chainwheel having forced recessed face at chain tooth root portion, an idle wheel having expanding or retracting force can be optionally adopted.