GB2524096B - Magnetic hanging frame for socket bits - Google Patents

Magnetic hanging frame for socket bits Download PDF

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Publication number
GB2524096B
GB2524096B GB1404635.3A GB201404635A GB2524096B GB 2524096 B GB2524096 B GB 2524096B GB 201404635 A GB201404635 A GB 201404635A GB 2524096 B GB2524096 B GB 2524096B
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GB
United Kingdom
Prior art keywords
baseboard
mount
mounting rack
racks
holding
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
GB1404635.3A
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GB201404635D0 (en
GB2524096A (en
Inventor
Kao Jui-Chien
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Jui Chien Kao
Original Assignee
Jui Chien Kao
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Jui Chien Kao filed Critical Jui Chien Kao
Priority to GB1404635.3A priority Critical patent/GB2524096B/en
Publication of GB201404635D0 publication Critical patent/GB201404635D0/en
Publication of GB2524096A publication Critical patent/GB2524096A/en
Application granted granted Critical
Publication of GB2524096B publication Critical patent/GB2524096B/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H3/00Storage means or arrangements for workshops facilitating access to, or handling of, work tools or instruments
    • B25H3/003Holders for drill bits or the like
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H3/00Storage means or arrangements for workshops facilitating access to, or handling of, work tools or instruments
    • B25H3/06Trays
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16MFRAMES, CASINGS OR BEDS OF ENGINES, MACHINES OR APPARATUS, NOT SPECIFIC TO ENGINES, MACHINES OR APPARATUS PROVIDED FOR ELSEWHERE; STANDS; SUPPORTS
    • F16M13/00Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles
    • F16M13/02Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or attaching to, an object, e.g. tree, gate, window-frame, cycle
    • F16M13/022Other supports for positioning apparatus or articles; Means for steadying hand-held apparatus or articles for supporting on, or attaching to, an object, e.g. tree, gate, window-frame, cycle repositionable

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Automatic Disk Changers (AREA)
  • Casings For Electric Apparatus (AREA)

Description

MAGNETIC HANGING FRAME FOR SOCKET BITS 1. Field of the Invention
The present invention relates to a magnetic hanging frame, and more particularly to a magnetic hanging frame for socket bits that can be mounted on a sidewall of a tool cabinet or a display frame conveniently. 2. Description of the Prior Art A conventional hanging frame for socket bits has a track disc and multiple positioning blocks. The track disc has a front surface and multiple racks.
The racks are formed in the front surface of the track disc at intervals. The positioning blocks are slidably mounted in the racks of the track disc. The user can store and display the socket bits by mounting the socket bits around the positioning blocks.
However, though the conventional hanging frame for socket bits can position the socket bits, the conventional hanging frame cannot be mounted on a sidewall of a tool cabinet and needs a large space for storage, and this is inconvenient in use.
To overcome the shortcomings, the present invention provides a magnetic hanging frame for socket bits to mitigate the aforementioned problems.
The main objective of the present invention is to provide a magnetic hanging frame for socket bits that can be mounted on a sidewall of a tool cabinet or a display frame conveniently.
The magnetic hanging frame for socket bits in accordance with the present invention has a track disc, a holding device, and a magnetic device. The track disc has a baseboard, multiple positioning racks, multiple positioning blocks, at least one mounting rack, and multiple holding racks. The baseboard has a top surface, a bottom surface, and two opposite sides including a first side and a second side. The positioning racks are formed on and protrude from the top surface of the baseboard at intervals. The positioning blocks are mounted slidably in the positioning racks of the track disc. The least one mounting rack is formed on and protrudes from the bottom surface of the baseboard, and each one of the at least one mounting rack has a bottom surface, two sides, and two side openings respectively formed through the sides of the mounting rack and communicate with the mounting rack. The holding racks are formed on and protrude from the bottom surface of the baseboard and beside the at least one mounting rack, and each one of the holding racks has two sides and two side openings respectively formed through the sides of the holding rack and communicating with the holding rack. The holding device is detachably connected to the track disc and has multiple closing blocks respectively mounted in the side openings of the at least one mounting rack and the side openings of the holding racks to close the at least one mounting rack and the holding racks. The magnetic device is connected to the track disc or is connected to the holding device, and has at least one magnet mount and at least two locating mounts. The at least one magnet mount is slidably mounted in the at least one mounting rack of the track disc and has an outer base and at least one magnet block. The outer base is slidably mounted in the at least one mounting rack of the track disc and has a bottom abutting the bottom surface of the at least one mounting rack with two opposite sides, two sidewalls upwardly formed on and protruding from the bottom of the outer base and facing to each other, and two extending wings respectively formed with the opposite sides of thebottom of the outer base and extending out of the sidewalls of the outer base. The at least one magnet block is securely mounted on the bottom of the outer base between the sidewalls and the extending wings of the magnet mount. The at least two locating mounts are slidably mounted in the at least one mounting rack, abut against the at least one magnet mount and two of the closing blocks that are mounted in the side openings of the at least one mounting rack to hold the at least one magnet mount securely in the at least one mounting rack. Each one of the at least two locating mounts has a bottom abutting the bottom surface of the at least one mounting rack and having two sides, and one of the sides of the bottom of the locating mount abuts against the sidewalls and the at least one magnet block of the at least one magnet mount, a top, and a locating groove formed through the sides of the bottom of the locating mount and accommodating one of the extending wings. IN THE DRAWINGS:
Fig. 1 is a front perspective view of a first embodiment of a magnetic hanging frame in accordance with the present invention;
Fig. 2 is a rear perspective view of the magnetic hanging frame in Fig. 1; Fig. 3 is an exploded rear perspective view of the magnetic hanging frame in Fig. 2;
Fig. 4 is an enlarged and exploded rear perspective view of the magnetic hanging frame in Fig. 3;
Fig. 5 is an enlarged side view in partial section of the magnetic hanging frame across line 5-5 in Fig. 2;
Fig. 6 is an enlarged side view in partial section of the magnetic hanging frame across line 6-6 in Fig. 2;
Fig. 7 is an operational perspective view of the magnetic hanging frame in Fig. 1, mounted on a sidewall of a tool cabinet;
Fig. 8 is a front perspective view of a second embodiment of a magnetic hanging frame in accordance with the present invention;
Fig. 9 is a rear perspective view of the magnetic hanging frame in Fig. 8;
Fig. 10 is an exploded rear perspective view of the magnetic hanging frame in Fig. 9;
Fig. 11 is an enlarged and exploded rear perspective view of the magnetic hanging frame in Fig. 10;
Fig. 12 is an enlarged side view in partial section of the magnetic hanging frame across line 12-12 in Fig. 9;
Fig. 13 is an enlarged side view in partial section of the magnetic hanging frame across line 13-13 in Fig. 9;
Fig. 14 is an operational perspective view of the magnetic hanging frame in Fig. 8, held by a user;
Fig. 15 is an operational perspective view of the magnetic hanging frame in Fig. 8, mounted on a sidewall of a tool cabinet; and
Fig. 16 is an enlarged and operational perspective view of a positioning block of a track disc of the magnetic hanging frame in Figs. 1 and 8.
With reference to Figs. 1 to 3, a first embodiment of a magnetic hanging frame for socket bits in accordance with the present invention has a track disc 10, a holding device 20 and a magnetic device 30.
The track disc 10 is made by aluminum extrusion, is elongated and has a baseboard 11, multiple positioning racks 12, multiple positioning blocks 13, at least one mounting rack 14 and multiple holding racks 15.
The baseboard 11 may be rectangular in shape and has a top surface, a bottom surface, a length, and two opposite sides including a first side and a second side. The positioning racks 12 are formed on and protrude from the top surface of the baseboard 11 at intervals, and each positioning rack 12 has a length equal to the length of the baseboard 11. The positioning blocks 13 are mounted slidably in the positioning racks 12 of the track disc 10 to hold socket bits on the track disc 10. With reference to Fig. 16, each one of the positioning blocks 13 has a bottom panel 131 and a mounting head 132. The bottom panel 131 is circular, is slidably and rotatably mounted in one of the positioning racks 12 and has a top surface. The mounting head 132 is a hollow rectangular block, is formed on and protrudes from the top surface of the bottom panel 131 and has a sidewall, two elongated holes 133, an elastic segment 134 and a protrusion 135. The elongated holes 133 are formed through the sidewall of the mounting head 132. The elastic segment 134 is formed on the sidewall of the mounting head 132 between the elongated holes 133 and has an outer surface. The protrusion 135 is formed on and protrudes from the outer surface of the elastic segment 134 to engage an internal surface of a socket bit.
The at least one mounting rack 14 is formed on and protrudes from the bottom surface of the baseboard 11, and each one of the at least one mounting rack 14 has a width (W), a top surface, a bottom surface, two sides, two side openings 141 and a mouth 142. The side openings 141 are respectively formed through the sides of the mounting rack 14 and communicate with the mounting rack 14. The mouth 142 is formed through the top surface of the mounting rack 14 and has a width (M) narrower than the width (W) of the mounting rack 14 (M<W). The holding racks 15 are formed on and protrude from the bottom surface of the baseboard 11 and beside the at least one mounting rack 14, and each holding rack 15 has two sides and two side openings 151. The side openings 151 are respectively formed through the sides of the holding rack 15 and communicate with the holding rack 15.
The holding device 20 is detachably connected to the track disc 10 and has multiple closing blocks 21. The closing blocks 21 are respectively mounted in the side openings 141, 151 of the at least one mounting rack 14 and the holding racks 15 to close the at least one mounting rack 14 and the holding racks 15.
With referenced to Figs. 3 and 4, the magnetic device 30 is connected to the track disc 10 and has at least one magnet mount 31 and at least two locating mounts 32.
The at least one magnet mount 31 is made of metal, is slidably mounted in the at least one mounting rack 14 and has an outer base 311 and at least one magnet block 312. The outer base 311 is slidably mounted in the at least one mounting rack 14 and has a bottom, two sidewalls 313 and two extending wings 314. The bottom of the outer base 311 abuts the bottom surface of the at least one mounting rack 14 and has two opposite sides. The sidewalls 313 are upwardly formed on and protrude from the bottom of the outer base 311 into the mouth 142 of the at least one mounting rack 14 and face to each other. The extending wings 314 are respectively formed with the opposite sides of the bottom of the outer base 311 and extend out of the sidewalls 313 of the outer base 311, and each one of the extending wings 314 has a width (E). With further referenced to Fig. 6, the at least one magnet block 312 is magnetically mounted on the bottom of the outer base 311 between the sidewalls 313 and the extending wings 314.
With referenced to Figs. 4 to 6, the at least two locating mounts 32 are slidably mounted in the at least one mounting rack 14, abut against the at least one magnet mount 31 and two of the closing blocks 21 that are mounted in the side openings 141 of the at least one mounting rack 14 to hold the at least one magnet mount 31 securely in the at least one mounting rack 14. Each one of the at least two locating mounts 32 has a bottom, a top, a locating groove 321 and a middle protrusion 322. The bottom of the locating mount 32 abuts the bottom surface of the at least one mounting rack 14 and has two sides. One of the sides of the bottom of the locating mount 32 abuts against the sidewalls 313 and the at least one magnet block 312 of the at least one magnet mount 31.
The locating groove 321 is formed through the sides of the bottom of the locating mount 32, accommodates one of the extending wings 314 and has a width (G) wider than the width (E) of the extending wing 314 (G>E). That is, the at least one magnet mount 31 is held in the at least one mounting rack 14 by the locating grooves 321 of the at least two locating mounts 32 mounted around the extending wings 314 of the at least one magnet mount 31.
The middle protrusion 322 is upwardly formed on and protrudes from the top of the locating mount 32, extends into the mouth 142 of the at least one mounting rack 14 and has a width (P) narrower than the width (M) of the mouth 142 of the at least one mounting rack 14 (P<M). Preferably, in the first embodiment of the present invention, the magnetic device 30 has two magnet mounts 31 and three locating mounts 32 mounted in the at least one mounting rack 14 of the track disc 10. The three locating mounts 32 are mounted between two of the closing blocks 21 of the holding device 20 and the two magnet mounts 31 to hold the magnet mounts 31 securely in the at least one mounting rack 14.
In operation, with referenced to Figs. 1, 2 and 7, the user can store socket bits by mounting the socket bits around the positioning blocks 13 of the track disc 10. After mounting and storing the socket bits with the track disc 10, the user can mount the magnetic hanging frame on a sidewall 51 of a tool cabinet 50 conveniently by the magnetic forces of the at least one magnet block 312 of the at least one magnet mount 31 attracted to the sidewall 51 of the tool cabinet 50. Then, the socket bits can be mounted and displayed on the sidewall 51 of the tool cabinet 50 with the magnetic hanging frame conveniently. Accordingly, no space in the tool cabinet 50 is needed for storing the magnetic hanging frame.
With referenced to Figs. 8 to 10, a second embodiment of a magnetic hanging frame for socket bits in accordance with the present invention has a similar structures as the first embodiment of the magnetic hanging frame for socket bits. The differences between the second embodiment and the first embodiment are the holding device 20A and the magnetic device 30A. In the second embodiment, the track disc 10A also has the baseboard 11A, the positioning racks 12A, the positioning blocks 13A, the at least one mounting rack 14A and the holding racks 15A. The holding device 20A is detachably connected to the track disc 10A and has multiple fixing boards 22A, a first supporting mount 23 A and a second supporting mount 24A. The fixing boards 22A may be quadrate, are movably mounted in the holding racks 15A adjacent to the opposite sides of the baseboard 11 A. Each fixing board 22A has a fixing hole 221A formed through the fixing board 22A.
With further reference to Figs. 11 to 13, the first supporting mount 23A is made by aluminum extrusion, is connected to the bottom surface and the first side of the baseboard 11 A, and has a top, a bottom, an outer side, an inner side, multiple through holes 231A, multiple screw bolts 232A, a side panel 234A, a holding board 235A and a connecting rack 236A. The through holes 231A are formed through the bottom and the top of the first supporting mount 23A at intervals and respectively align with the fixing holes 221A of the fixing boards 22A that are mounted on the first side of the baseboard 11 A. The screw bolts 232A are respectively mounted through the through holes 231A of the first supporting mount 23A and are respectively and securely mounted in the fixing holes 221A of the fixing boards 22A via the holding racks 15 A to connect the first supporting mount 23A securely to the fixing boards 22A at the first side of the baseboard 11A and to connect the first supporting mount 23A securely to the bottom surface of the baseboard 11 A.
The side panel 234Ais formed on and upwardly protrudes from the outer side of the first supporting mount 23A to close the positioning racks 12A and the holding racks 15 A at the first side of the baseboard 11A to prevent the positioning blocks 13 A from separating from the first side of the baseboard 11 A. The side panel 234A has a free side. The holding board 235A is formed on and transversally protrudes from the free side of the side panel 234A for a user to hold the holding board 235A. The connecting rack 236A is formed on and transversally protrudes from the inner side of the first supporting mount 23A below the holding racks 15A and the at least one mounting rack 14A at the first side of the baseboard 11A and has a connecting hole 23 7A formed through the connecting rack 236A.
The second supporting mount 24A is made by aluminum extrusion and is connected to the bottom surface and the second side of the baseboard 11A. The second supporting mount 24A has a top, a bottom, an outer side, an inner side, multiple through holes 241 A, multiple screw bolts 242A, a side panel 244A, a holding board 245A and a connecting rack 246A. The through holes 241A are formed through the top and the bottom of the second supporting mount 24A at intervals and respectively align with the fixing holes 221A of the fixing boards 22A that are mounted on the second side of the baseboard 11 A. The screw bolts 242A are respectively mounted through the through holes 241A of the second supporting mount 24A and are respectively and securely mounted in the fixing holes 221A of the fixing boards 22A via the holding racks 15A to connect the second supporting mount 24A securely with the fixing boards 22A at the second side of the baseboard 11A and to connect the second supporting mount 24A securely to the bottom surface of the baseboard 11 A.
The side panel 244Ais formed on and upwardly protrudes from the outer side of the second supporting mount 24A to close the positioning racks 12A and the holding racks 15A at the second side of the baseboard 11A to prevent the positioning blocks 13 A from separating from the second side of the baseboard 11 A. The side panel 244A has a free side. The holding board 245A is formed on and transversally protrudes from the free side of the side panel 244A for a user to hold the holding board 245A. The connecting rack 246A is formed on and transversally protrudes from the inner side of the second supporting mount 24A below the holding racks 15 A and the at least one mounting rack 14A at the second side of the baseboard 11 A, and has a connecting hole 247A formed through the connecting rack 246A.
Accordingly, the supporting mounts 23A, 24A are respectively connected to the opposite sides of the baseboard 11A to reinforce the structural strength of the track disc 10A.
The magnetic device 30A is connected to the track disc 10A and has at least two attracting modules, and each one of the attracting modules has an outer base 33A and at least one magnet block 34A.
The outer base 33A is made of metal, is mounted securely in the connecting rack 23 6A, 246A of one of the supporting mounts 23 A, 24A and has an outer surface, a mounting hole 331A and a fastener 332A. The mounting hole 331A is formed through the outer base 33A and aligns with the connecting hole 237A, 247A of said one of the supporting mounts 23 A, 24A. The fastener 332A is mounted through the connecting hole 23 7A, 247A of said one of the supporting mounts 23A, 24A and is securely mounted in the mounting hole 331A of the outer base 33A to connect and mount the outer base 33A securely in the connecting rack 23 6A, 246A of said one of the supporting mounts 23 A, 24A.
The at least one magnet block 34A is magnetically mounted on the outer surface of the outer base 3 3 A. Preferably, each one of the attracting modules has two magnet blocks 34A securely mounted on the outer surface of the outer base 33 A beside the fastener 332A.
When using the second embodiment of the magnetic hanging frame for socket bits in accordance with the present invention, the user can store socket bits by mounting the socket bits around the positioning blocks 13 A of the track disc 10A. After mounting and storing the socket bits with the track disc 10A, the user can mount the magnetic hanging frame on a sidewall 51 of a tool cabinet 50 conveniently by the magnetic forces of the magnet blocks 34A attracted to the sidewall 51 of the tool cabinet 50. Then, the socket bits can be mounted and displayed on the sidewall 51 of the tool cabinet 50 with the magnetic hanging frame as shown in Fig. 15. Accordingly, no space in the tool cabinet 50 is needed for storing the magnetic hanging frame.
In addition, with further reference to Fig. 13, the holding device 20A and the magnetic device 30A are mounted on the bottom surface of the baseboard 11A and this can prevent the holding racks 15A and the at least one mounting rack 14A from scratching the sidewall 51 of the tool cabinet 50 when the magnetic hanging frame is mounted on the sidewall 51 of the tool cabinet 50. Furthermore, with reference to Fig. 14, the holding boards 235A, 245A of the supporting mounts 23 A, 24A respectively extend out of the opposite sides of the baseboard 11A of the track disc 10A. Then, the user can carry the magnetic hanging frame conveniently by holding the holding boards 23 5A, 245A by hands. Additionally, with reference to Figs. 1, 8 and 16, in the two embodiments of the present invention, when a socket bit is mounted around the mounting head 132, 132A of each one of the positioning blocks 13, 13A, since the bottom panel 131, 131A is circular and can be rotated relative to a corresponding positioning rack 12, 12A. Then, the user can adjust the sides of the socket bits that have size landmarks to turn to a same direction by rotate the socket bits, and this can enable the user to store, arrange and manage the socket bits conveniently and quickly Even though numerous characteristics and advantages of the present invention have been set forth in the foregoing description, together with details of the structure and features of the invention, the disclosure is illustrative only. Changes may be made in the details, especially in matters of shape, size, and arrangement of parts within the principles of the invention to the full extent indicated by the broad general meaning of the terms in which the appended claims are expressed.

Claims (8)

CLAIMS:
1. A magnetic hanging frame for socket bits comprising: a track disc (10) having a baseboard (11) having a top surface; a bottom surface; and two opposite sides including a first side and a second side; multiple positioning racks (12) formed on and protruding from the top surface of the baseboard (11) at intervals; multiple positioning blocks (13) mounted slidably in the positioning racks (12) of the track disc (10); at least one mounting rack (14) formed on and protruding from the bottom surface of the baseboard (11), and each one of the at least one mounting rack (14) having a bottom surface, two sides and two side openings (141) respectively formed through the sides of the mounting rack (14) and communicating with the mounting rack (14); and multiple holding racks (15) formed on and protruding from the bottom surface of the baseboard (11) and beside the at least one mounting rack (14), and each one of the holding racks (15) having two sides and two side openings (151) respectively formed through the sides of the holding rack (15) and communicating with the holding rack (15); a holding device (20) detachably connected to the track disc (10) and having multiple closing blocks (21) respectively mounted in the side openings (141) of the at least one mounting rack (14) and the side openings (151) of the holding racks (15) to close the at least one mounting rack (14) and the holding racks (15); and a magnetic device (30) connected to the track disc (10) and having at least one magnet mount (31) slidably mounted in the at least one mounting rack (14) of the track disc (10) and having an outer base (311) slidably mounted in the at least one mounting rack (14) of the track disc (10) and having a bottom abutting the bottom surface of the at least one mounting rack (14) and having two opposite sides; two sidewalls (313) upwardly formed on and protruding from the bottom of the outer base (311) and facing to each other; and two extending wings (314) respectively formed with the opposite sides of the bottom of the outer base (311) and extending out of the sidewalls (313) of the outer base (311); at least one magnet block (312) securely mounted on the bottom of the outer base (311) between the sidewalls (313) and the extending wings (314) of the magnet mount (31); and at least two locating mounts (32) slidably mounted in the at least one mounting rack (14), abutting against the at least one magnet mount (31) and two of the closing blocks (21) that are mounted in the side openings (141) of the at least one mounting rack (14) to hold the at least one magnet mount (31) securely in the at least one mounting rack (14), and each one of the at least two locating mounts (32) having a bottom abutting the bottom surface of the at least one mounting rack (14) and having two sides, and one of the sides of the bottom of the locating mount (32) abutting against the sidewalls (313) and the at least one magnet block (312) of the at least one magnet mount (31); a top; and a locating groove (321) formed through the sides of the bottom of the locating mount (32) and accommodating one of the extending wings (314).
2. The magnetic hanging frame as claimed in claim 1, wherein each one of the at least one mounting rack (14) has a width (W); a top surface; and a mouth (142) formed through the top surface of the mounting rack (14) and having a width (M) narrower than the width (W) of the mounting rack (14); and the sidewalls (313) of each one of the at least one magnet mount (31) extend into the mouth (142) of the at least one mounting rack (14).
3. The magnetic hanging frame as claimed in claim 2, wherein each one of the extending wings (314) of the outer base (311) of each one of the at least one magnet mount (31) has a width (E); and the locating groove (321) of each one of the at least two locating mounts (32) has a width (G) wider than the width (E) of the extending wing (314).
4. The magnetic hanging frame as claimed in claim 3, wherein each one of the at least two locating mounts (32) has a middle protrusion (322) upwardly formed on and protruding from the top of the locating mount (32), extending into the mouth (142) of the at least one mounting rack (14) and having a width (P) narrower than the width (M) of the mouth (142) of the at least one mounting rack (14).
5. The magnetic hanging frame as claimed in claim 4, wherein each one of the positioning blocks (13) has a bottom panel (131) being circular, slidably and rotatably mounted in one of the positioning racks (12) and having a top surface; and a mounting head (132) being a hollow rectangular block, formed on and protruding from the top surface of the bottom panel (131) and having a sidewall; two elongated holes (133) formed through the sidewall of the mounting head (132); an elastic segment (134) formed on the sidewall of the mounting head (132) between the elongated holes (133) and having an outer surface; and a protrusion (135) formed on and protruding from the outer surface of the elastic segment (134).
6. A magnetic hanging frame for socket bits comprising: a track disc (10A) having a baseboard (11A) having a top surface; a bottom surface; and two opposite sides including a first side and a second side; multiple positioning racks (12A) formed on and protruding from the top surface of the baseboard (11 A) at intervals; multiple positioning blocks (13A) mounted slidably in the positioning racks (12A) of the track disc (10A); and multiple holding racks (15A) formed on and protruding from the bottom surface of the baseboard (11 A); a holding device (20A) detachably connected to the track disc (10A) and having multiple fixing boards (22A) movably mounted in the holding racks (15A) adjacent to the opposite sides of the baseboard (11 A), and each fixing board (22A) having a fixing hole (221 A) formed through the fixing board (22A); a first supporting mount (23A) connected to the bottom surface and the first side of the baseboard (11 A) and having atop; a bottom; an inner side; multiple through holes (231 A) formed through the bottom and the top of the first supporting mount (23A) at intervals and respectively aligning with the fixing holes (221 A) of the fixing boards (22A) that are mounted on the first side of the baseboard (11A); multiple screw bolts (232A) respectively mounted through the through holes (231 A) of the first supporting mount (23A) and respectively and securely mounted in the fixing holes (221 A) of the fixing boards (22A) via the holding racks (15A) to connect the first supporting mount (23A) securely to the fixing boards (22A) at the first side of the baseboard (11A) and to connect the first supporting mount (23 A) securely to the bottom surface of the baseboard (11 A); and a connecting rack (23 6A) formed on and transversally protruding from the inner side of the first supporting mount (23A) below the holding racks (15A) at the first side of the baseboard (11 A) and having a connecting hole (23 7A) formed through the connecting rack (23 6A) of the first supporting mount (23A); and a second supporting mount (24A) connected to the bottom surface and the second side of the baseboard (11 A), and having atop; a bottom; an inner side; multiple through holes (241 A) formed through the top and the bottom of the second supporting mount (24A) at intervals and respectively aligning with the fixing holes (221 A) of the fixing boards (22A) that are mounted on the second side of the baseboard (11 A); multiple screw bolts (242A) respectively mounted through the through holes (241 A) of the second supporting mount (24A) and respectively and securely mounted in the fixing holes (221 A) of the fixing boards (22A) via the holding racks (15A) to connect the second supporting mount (24A) securely with the fixing boards (22A) at the second side of the baseboard (11A) and to connect the second supporting mount (24A) securely to the bottom surface of the baseboard (11A); and a connecting rack (246A) formed on and transversally protruding from the inner side of the second supporting mount (24A) below the holding racks (15A) at the second side of the baseboard (11 A) and having a connecting hole (247A) formed through the connecting rack (246A) of the second supporting mount (24A); and a magnetic device (30A) connected to the track disc (10A) and having at least two attracting modules, and each one of the attracting modules having an outer base (3 3 A) mounted securely in the connecting rack (23 6A, 246A) of one of the supporting mounts (23 A, 24 A) and having an outer surface; a mounting hole (331 A) formed through the outer base (33A) and aligning with the connecting hole (237A, 247A) of one of the supporting mounts (23A, 24A); and a fastener (3 32A) mounted through the connecting hole (237A, 247A) of said one of the supporting mounts (23 A, 24A) and securely mounted in the mounting hole (331 A) of the outer base (3 3 A) to connect the outer base (3 3 A) securely mounted in the connecting rack (23 6A, 246A) of said one of the supporting mounts (23 A, 24A); and at least one magnet block (3 4A) mounted on the outer surface of the outer base (33A).
7. The magnetic hanging frame as claimed in claim 6, wherein the first supporting mount (23 A) has an outer side; a side panel (234A) formed on and upwardly protruding from the outer side of the first supporting mount (23 A) to close the positioning racks (12A) and the holding racks (15 A) at the first side of the baseboard (11A) to prevent the positioning blocks (13A) from separating from the first side of the baseboard (11 A), and the side panel (234A) having a free side; and a holding board (23 5A) formed on and transversally protruding from the free side of the side panel (234A); and the second supporting mount (24A) has an outer side; a side panel (244A) formed on and upwardly protruding from the outer side of the second supporting mount (24A) to close the positioning racks (12A) and the holding racks (15A) at the second side of the baseboard (11A) to prevent the positioning blocks (13 A) from separating from the second side of the baseboard (11 A), and the side panel (244A) having a free side; and a holding board (245A) formed on and transversally protruding from the free side of the side panel (244A) of the second supporting mount (24A).
8. The magnetic hanging frame as claimed in claim 7, wherein each one of the positioning blocks (13A) has a bottom panel (131A) being circular, slidably and rotatably mounted in one of the positioning racks (12A) and having a top surface; and a mounting head (132A) being a hollow rectangular block, formed on and protruding from the top surface of the bottom panel (131A) and having a sidewall; two elongated holes (133A) formed through the sidewall of the mounting head (132A); an elastic segment (134A) formed on the sidewall of the mounting head (132A) between the elongated holes (133A) and having an outer surface; and a protrusion (135A) formed on and protruding from the outer surface of the elastic segment (134A).
GB1404635.3A 2014-03-14 2014-03-14 Magnetic hanging frame for socket bits Expired - Fee Related GB2524096B (en)

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2527299B (en) * 2014-06-16 2016-12-28 Kao Jui-Chien Magnetic hanging frame for hand tools
US9452524B1 (en) * 2015-07-22 2016-09-27 Jui-Chien Kao Composite tool holder
US9522467B1 (en) * 2015-07-22 2016-12-20 Jui-Chien Kao Composite tool holder

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4927020A (en) * 1989-03-13 1990-05-22 Frank Randy Holder for socket wrench heads
US8336709B1 (en) * 2008-09-04 2012-12-25 Geibel Ronald J Magnetic tool holder

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4927020A (en) * 1989-03-13 1990-05-22 Frank Randy Holder for socket wrench heads
US8336709B1 (en) * 2008-09-04 2012-12-25 Geibel Ronald J Magnetic tool holder

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Effective date: 20200314