The invention relates to fishing line dispensers and packaging. More particularly, the invention relates to fishing line packaging capable of holding and dispensing fishing line from multiple spools.
Avid fishermen oftentimes will make use of fishing line of various diameters, depending on the environmental conditions, type of tackle and other reasons. Therefore, it is desirable to provide fishermen with fishing line of various diameters packaged in a single dispenser wherein a selected line may be easily dispensed and wherein the packaging may be used for storage until the line is needed.
A multi-pack packaging for fishing line has a cylindrical housing with an open top end, an enclosed bottom end, an inside diameter and a longitudinal axis. Multiple spools of fishing line may be located within the cylindrical housing. For example, a first spool, a second spool and a third spool may be received within the cylindrical housing, wherein each of the spools have a hub connected to an upper flange and a lower flange. A greater or lesser number of spools may also be used. An upper flange and a lower flange of each spool have an outside diameter that is slightly smaller than the inside diameter of the cylindrical housing to permit rotation of the spools within the cylindrical housing.
In one embodiment, a first length of fishing line is wound around the hub of a first spool, wherein the first length has a first diameter. A second length of fishing line is wound around the hub of a second spool, the second length having a second diameter. A third length of fishing line is wound around the hub of a third spool, wherein the third length has a third diameter.
A friction reducing disk is located between the first spool, the second spool, and the third spool. Additionally, a friction reducing disk may be located adjacent to the upper flange of the first spool and adjacent to the lower flange of the third spool. The friction reducing disks are provided for permitting each of the spools to rotate more easily and to rotate substantially independently of the other spools.
A first, second and third clip are provided on their respective spools between the upper flange and the lower flange of each spool. The clips surround a length of fishing line wrapped around the hub of each spool. Each clip defines a gap through which an end of the fishing line can protrude. Each spool is located adjacent to an orifice defined by the side wall of the cylindrical housing so that the lengths of the fishing line can extend through an adjacent orifice to allow easy access by a user.
The fishing line package provides a convenient storage container for fishing line of various sizes. Additionally, the clips discussed above prevent the line in each spool from inadvertently unwinding. The friction reducing disks facilitate rotation of a single spool while substantially preventing rotation of adjacent spools. The storage container additionally permits a prospective purchaser to view the line within the package before purchase. These and other advantages will become evident from the following description and claims.
The present invention consists of a package containing multiple spools of fishing line wherein each spool moves independently from the others. The package contains one hole for each spool of fishing line, allowing a user to unspool a single fishing line while the remaining lines remain unspooled.
Referring to
Bottom surface 24 (
Lid structure 30 has cylindrical portion 32 having a top end 34, a bottom end 36 (best seen in
First spool 42 is received within cylindrical housing 12. First spool 42 has hub 44 connected to upper flange 46 and lower flange 48. Upper flange 46 and lower flange 48 have an outside diameter that is slightly smaller than the inside diameter of housing 12. Upper flange 46 and lower flange 48 each define finger detent 50 on the outside diameter of each of flanges 46, 48 to facilitate removal of first spool 42 from housing 12.
Second spool 52 is received within cylindrical housing 12. Second spool 52 has hub 54 connected to upper flange 56 and lower flange 58. Upper flange 56 and lower flange 58 have an outside diameter that is slightly smaller than the inside diameter of housing 12. Upper flange 56 and lower flange 58 each define finger detent 60 on the outside diameter of each of flanges 56, 58 to facilitate removal of second spool 52 from housing 12.
Third spool 62 is received within cylindrical housing 12. Third spool 62 has hub 64 connected to upper flange 66 and lower flange 68. Upper flange 66 and lower flange 68 have an outside diameter that is slightly smaller than the inside diameter of housing 12. Upper flange 66 and lower flange 68 each define finger detent 70 on the outside diameter of each of flanges 56, 58 to facilitate removal of third spool 62 from housing 12.
First length 72 of fishing line is wound around hub 44 of first spool 42. First length 72 has a first diameter and first terminal end 74. Second length 76 of fishing line is wound around hub 54 of second spool 52. Second length 76 preferably has a second diameter and defines second terminal end 78. Third length 80 of fishing line is wound around hub 64 of third spool 62. Third length 76 preferably has a third diameter and defines third terminal end 82.
First clip 84 surrounds first length 72 of fishing line. First clip 84 has first end 86 and second end 88. First clip 84 defines clip orifice 85 through which first terminal end 74 of fishing line 72 can protrude for extending through first orifice 18 of housing 12.
Second clip 94 surrounds second length 76 of fishing line. Second clip 94 has first end 96 and second end 98. Second clip 94 defines clip orifice 95 through which second terminal end 78 of fishing line can protrude for extending through second orifice 20 of housing 12.
Third clip 104 surrounds third length 80 of fishing line. Third clip 104 has first end 106 and second end 108. Third clip 104 defines clip orifice 105 through which terminal end 82 of fishing line can protrude for extending through third orifice 22 of housing 12.
First friction reducing disk 110 is located between lower flange 48 of first spool 42 and upper flange 56 of second spool 52. Second friction reducing disk 112 is located between lower flange 58 of second spool 52 and upper flange 66 of third spool 62. Third friction reducing disk 114 is located between lower flange 68 of third spool 62 and bottom surface 24 of housing 12. Friction relieving disks 110, 112, 114 are preferably made of PVC or another low friction material to permit spools 42, 52, 62 to rotate substantially independent of one another.
Circular product identifying disk 116 is located adjacent to top surface 40 of lid structure 30. Product identifying strip 118 is located within cylindrical housing 12. Strip 118 surrounds first spool 42, second spool 52, and third spool 62. When located within housing 12, strip 118 defines an opening 120 that permits viewing of a portion of line 72, 76, and 80 of spools 42, 52, 62.
Thus, the present invention is well adapted to carry out the objectives and attain the ends and advantages mentioned above as well as those inherent therein. While presently preferred embodiments have been described for purposes of this disclosure, numerous changes and modifications will be apparent to those of ordinary skill in the art. Such changes and modifications are encompassed within the spirit of this invention as defined by the claims.