DRIVE BLADE LUBRICATION ASSEMBLY AND POWERED FASTENER DRIVER CONTAINING THE SAME
20170326715 ยท 2017-11-16
Inventors
- Xingxing CHEN (Dongguan City, CN)
- Jingfeng ZHOU (Dongguan City, CN)
- Liguo MA (Dongguan City, CN)
- Jinlin ZHOU (Dongguan City, CN)
Cpc classification
B25C1/04
PERFORMING OPERATIONS; TRANSPORTING
B25C1/188
PERFORMING OPERATIONS; TRANSPORTING
B25C1/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25C1/04
PERFORMING OPERATIONS; TRANSPORTING
B25C1/00
PERFORMING OPERATIONS; TRANSPORTING
B25C1/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A drive blade lubrication assembly for use in a powered fastener driver (10). The powered fastener driver (10) contains a drive blade (42) which snap-fits with a reciprocating piston (58) by a blade seal (103) assembly. The drive blade lubrication assembly contains a lubricant applying member adapted to apply lubricant to a portion of the drive blade (42); and a lubricant storing device which is in fluid communication with the lubricant applying member. The lubricating storing device is adapted to replenish the lubricant in the lubricant applying member. A powered fastener driver (10) containing a drive blade lubrication assembly is also described. The use of the lubricant storing device in the present invention ensures that lubricant is continuously supplied to the drive blade (42) after long time usage of the powered fastener driver (10), so that friction between the drive blade and the blade seal assembly is minimized
Claims
1. A powered fastener driver comprising a cylinder, a reciprocating piston configured within said cylinder to create a pressure differential; a drive blade at least partially accommodated in said cylinder and operable to drive a fastener upon a driving force resulted from said pressure differential; said drive blade passing though said reciprocating piston and slidable with respect to the latter; wherein said power fastener driver further comprising: a blade seal located in said reciprocating piston; said blade seal fitting with said drive blade so that said drive blade is adapted to move relative to said reciprocating piston; a lubricant applying member adapted to apply lubricant to a portion of said drive blade; and a lubricant storing device which is in fluid communication with said lubricant applying member; said lubricating storing device adapted to replenish said lubricant in said lubricant applying member.
2. The powered fastener driver according to claim 1, wherein said lubricant applying member is a channel formed in said reciprocating piston which fluidly connects said lubricant storing device to said portion of said drive blade.
3. The powered fastener driver according to claim 2, wherein said channel is aligned to be substantially perpendicular to a length of said drive blade which is encompassed by said blade seal.
4. The powered fastener driver according to claim 2, wherein said channel is shielded from the exterior of said reciprocating piston by a covering member.
5. The powered fastener driver according claim to 4, wherein said at least a portion of said covering member is superimposed with a dust blocking layer; when said portion of said covering member wears out, said dust blocking layer continuing to block dusts in said exterior of said reciprocating piston from entering said channel.
6. The powered fastener driver according to claim 1, wherein said lubricant storing device is positioned in said reciprocating piston at a location separated from said blade seal along a longitudinal direction of said drive blade.
7. The powered fastener driver according to claim 1, wherein said lubricant storing device is positioned at a location separated from said blade seal along a radial direction of said reciprocating piston.
8. The powered fastener driver according to claim 1, wherein said lubricant storing device is a hollow portion formed in said reciprocating piston which is capable of storing a volume of said lubricant.
9. The powered fastener driver according to claim 1, wherein said lubricant is grease oil.
10. A drive blade lubrication assembly for use in a powered fastener driver, the powered fastener driver comprising a drive blade fitting with a reciprocating piston by a blade seal; said drive blade lubrication assembly comprising: a lubricant applying member adapted to apply lubricant to a portion of said drive blade; and a lubricant storing device which is in fluid communication with said lubricant applying member; said lubricating storing device adapted to replenish said lubricant in said lubricant applying member.
11. The drive blade lubrication assembly according to claim 10, wherein said lubricant applying member is a channel formed in said reciprocating piston which fluidly connects said lubricant storing device to said portion of said drive blade.
12. The drive blade lubrication assembly according to claim 11, wherein said channel is aligned to be substantially perpendicular to a length of said drive blade which is encompassed by said blade seal.
13. The drive blade lubrication assembly according to claim 11, wherein said channel is shielded from the exterior of said reciprocating piston by a covering member.
14. The drive blade lubrication assembly according to claim 13, wherein said at least a portion of said covering member is superimposed with a dust blocking layer; when said portion of said covering member wears out, said dust blocking layer continuing to block dusts in said exterior of said reciprocating piston from entering said channel.
15. The drive blade lubrication assembly according to claim 10, wherein said lubricant storing device is positioned in said reciprocating piston at a location separated from said blade seal along a longitudinal direction of said drive blade.
16. The drive blade lubrication assembly according to claim 10, wherein said lubricant storing device is positioned at a location separated from said blade seal along a radial direction of said reciprocating piston.
17. The drive blade lubrication assembly according to claim 10, wherein said lubricant storing device is a hollow portion formed in said reciprocating piston which is capable of storing a volume of said lubricant.
18. The drive blade lubrication assembly according to claim 10, wherein said lubricant is grease oil.
19. A powered fastener driver comprising: a cylinder; a reciprocating piston within the cylinder; a seal positioned within the reciprocating piston; a drive blade operable to drive a fastener, the drive blade extending through the seal and slidable with respect to the reciprocating piston; a reservoir defined in the reciprocating piston containing a lubricant therein; and a channel extending between the reservoir and the drive blade to direct lubricant toward the drive blade.
20. The powered fastener driver of claim 19, further comprising a dust cover at least partially defining the channel.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
[0029] Before any embodiments of the invention are explained in detail, it is to be understood that the invention is not limited in its application to the details of construction and the arrangement of components set forth in the following description or illustrated in the following drawings. The invention is capable of other embodiments and of being practiced or of being carried out in various ways.
DETAILED DESCRIPTION
[0030]
[0031] With reference to
[0032] In the above-mentioned embodiment, the drive blade is at its one end fixedly connected to the drive piston. On the other hand the drive blade snap-fits with the reciprocating piston. As a result, there is a blade seal assembly configured in the reciprocating piston of the fastener driver, which allows for slidably fit between the reciprocating piston and the drive blade, but also separates the vacuum in the vacuum chamber from the other portion of the cylinder, so as to maintain the pressure differential on the two sides. The blade seal is preferably movable between a first position, where the blade seal blocks an air leakage path and thus achieves airtight sealing, and a second position where the leakage path is unblocked and the sealing effect no longer exists. The change of the blade seal's position can be made by relative movement between the reciprocating piston and the drive blade. However, no matter which position the blade seal is located at, the blade seal always encompasses a certain portion of the drive blade while maintaining a generally tight, sliding fit between the blade seal and the drive blade. In the next part of the description, a drive blade lubrication assembly configured in the powered fastener drivers will be described which effectively introduces and maintains lubricant (such as grease oil) on the portion of the drive blade adjacent to the blade seal.
[0033] Turning now to
[0034] As shown in
[0035] During continuous usage of the powered fastener driver, any grease oil originally applied on the surface of the drive blade (for example applied during manufacture of the fastener driver) will gradually leak out through the movement of the drive blade relative to the blade seal. In addition, the grease oil may gradually diffuse and thus leaves the blade surface. However, due to the presence of the grease pool, any loss of the grease oil on the drive blade will be replenished by that in the grease pool. The drive blade therefore can be always kept at the status where grease oil is present on the drive blade to reduce the friction between the blade and the blade seal. As a result, the performance of the powered fastener driver will not deteriorate over time because of depletion of the grease oil, and the fasteners will always be strike out by the powered fastener driver without any impedance resulted from friction between the blade and the blade seal.
[0036] In another embodiment as illustrated in
[0037] In another embodiment as illustrated in
[0038] While the invention has been illustrated and described in detail in the drawings and foregoing description, the same is to be considered as illustrative and not restrictive in character, it being understood that only exemplary embodiments have been shown and described and do not limit the scope of the invention in any manner. It can be appreciated that any of the features described herein may be used with any embodiment. The illustrative embodiments are not exclusive of each other or of other embodiments not recited herein. Accordingly, the invention also provides embodiments that comprise combinations of one or more of the illustrative embodiments described above. Modifications and variations of the invention as herein set forth can be made without departing from the spirit and scope thereof, and, therefore, only such limitations should be imposed as are indicated by the appended claims.
[0039] In the above embodiment the lubricant used in the drive blade lubrication assembly is grease oil, although those skilled in the art would appreciate that any other types of liquid lubricant can also be used in the drive blade lubrication assembly of the present invention.