PUSH-PULL BIT DETACHING AND MOUNTING TOOL
20170348845 ยท 2017-12-07
Inventors
Cpc classification
B25B23/18
PERFORMING OPERATIONS; TRANSPORTING
B25B23/0035
PERFORMING OPERATIONS; TRANSPORTING
B25B21/00
PERFORMING OPERATIONS; TRANSPORTING
B25G1/085
PERFORMING OPERATIONS; TRANSPORTING
International classification
B25G1/08
PERFORMING OPERATIONS; TRANSPORTING
B25B23/18
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A push-pull bit detaching and mounting tool including a casing is described herein. A ratchet wheel seat having a conveying passage is disposed at an end portion of the casing. A ratchet wheel head having bit mounting holes is disposed on the ratchet wheel seat. A ratchet wheel control mechanism is disposed between the ratchet wheel head and the ratchet wheel seat. An accommodating groove is formed on the casing. A bit storage seat is disposed in the accommodating groove. A plurality of storage holes are formed on the bit storage seat in the circumferential direction. A positioning structure is disposed between the bit storage seat and the accommodating groove. The casing has a mounting seat. A push-pull rod having a first permanent magnet at an end portion is disposed on the mounting seat, and an axial positioning mechanism is disposed between the push-pull rod and the mounting seat.
Claims
1. A push-pull bit detaching and mounting tool, comprising a casing (1), wherein an accommodating groove (11) is formed on the casing (1), a bit storage seat (6) capable of rotating in a circumferential direction is disposed in the accommodating groove (11) through mounting structure (5), a plurality of storage holes (61) formed along an axial direction of the bit storage seat (6) and used for storing bits are formed on the bit storage seat (6) in the circumferential direction, and positioning structure (7), capable of aligning any one storage hole (61) with a conveying passage (21) when the bit storage seat (6) rotates in the circumferential direction, is disposed between the bit storage seat (6) and the accommodating groove (11), wherein a mounting seat (8) is disposed at a position located at a back end of the accommodating groove (11) on the casing (1), a push-pull rod (9) is disposed on the mounting seat (8) in an axial sliding manner through guide structure, a first permanent magnet (91) is disposed at an end portion of the push-pull rod (9), the push-pull rod (9) is capable of pushing out the bits in storage holes (61) to bit mounting holes (31) and return the bits in the bit mounting holes (31) into the storage holes (61), and an axial positioning mechanism (81), used for driving the push-pull rod (9) to axially slide and axially positioning the push-pull rod (9) on the mounting seat (8) when the bits are in the bit mounting holes (31), is disposed between the push-pull rod (9) and the mounting seat (8).
2. The push-pull bit detaching and mounting tool according to claim 1, wherein the axial positioning mechanism (81) comprises a sliding push block (811) disposed on the mounting seat (8) through sliding guide structure and capable of axially sliding, a plurality of positioning grooves (812) are formed in the end portion of the push-pull rod (9), a plurality of positioning pins (813) plugged and connected in the positioning grooves (812) in a one-to-one correspondence manner are disposed on an inner side of the sliding push block (811), two locking blocks (814), disposed oppositely and obliquely and respectively located on two sides of the end portion of the push-pull rod (9), are hinged on the mounting seat (8), elastic structure capable of driving the two locking blocks (814) to mutually approach is disposed between the locking blocks (814) and the mounting seat (8), two sides of the end portion of the push-pull rod (9) respectively abut in locking notches (815) on the inner sides of the two locking blocks (814), and pushing structure capable of driving the two locking blocks (814) to mutually depart when the sliding push block (811) axially slides is disposed on the sliding push block (811).
3. The push-pull bit detaching and mounting tool according to claim 2, wherein the pushing structure comprises locking plates (816) respectively disposed on the outer sides of the locking blocks (814), two guide plates (817), disposed to be parallel to each other and respectively located on two sides of the positioning pins (813), are disposed on the inner side of the sliding push block (811), oblique push plates (818) one-to-one corresponding to the locking plates (816) are respectively disposed on end portions close to the positioning pins (813) of the two guide plates (817), the two oblique push plates (818) are disposed oppositely and obliquely, and the outer sides of the end portions of the oblique push plates (818) abut against the inner sides of end portions of the locking plates (816).
4. The push-pull bit detaching and mounting tool according to claim 2, wherein the elastic structure comprises two limiting grooves (82) disposed in the mounting seat (8), slide blocks (83) disposed in the limiting grooves (82) in a sliding manner are disposed on the locking blocks (814), and jacking pressure springs (84) abutting against the slide blocks (83) are disposed in the limiting grooves (82); the sliding guide structure comprises two guide grooves (85) axially formed in an outer side of the mounting seat (8), guide clamping plates (86) are respectively disposed on two sides of the sliding push block (811), and the guide clamping plates (86) are disposed in the guide grooves (85) in a sliding manner.
5. The push-pull bit detaching and mounting tool according to claim 1, wherein the guide structure further comprises a guide seat (87) disposed on the mounting seat (8), a guide hole (88) is formed in the axial direction of the guide seat (87), and the push-pull rod (9) is disposed in the guide hole (88) in a sliding manner.
6. The push-pull bit detaching and mounting tool according to claim 5, wherein the mounting structure (5) comprises a fixing seat (51) disposed at an end portion of the mounting seat (8) and extending downwards, the fixing seat (51) and the ratchet wheel seat (2) form the accommodating groove (11), a first accommodating hole (52) is formed in the center of one end of the bit storage seat (6), a first ball (53) is disposed at an end portion of the first accommodating hole (52), a mounting groove (54) matching with the first ball (53) is formed in a position located below the conveying passage (21) on the ratchet wheel seat (2), a first spring (55) capable of exposing the first ball (53) from the first accommodating hole (52) and abutting in the mounting groove (54) is disposed in the first accommodating hole (52), a second permanent magnet (56) is disposed at the center of the other end of the bit storage seat (6), and a cooperating iron block corresponding to the second permanent magnet (56) is disposed on the fixing seat (51).
7. The push-pull bit detaching and mounting tool according to claim 6, wherein the positioning structure (7) comprises a plurality of positioning slots (71) uniformly formed in the circumferential edge of the end portion of the bit storage seat (6), the number of the positioning slots (71) is equal to the number of the storage holes (61), the positioning slots (71) and the storage holes (61) are disposed in a one-to-one staggering manner, two second accommodating holes (72) are formed on the fixing seat (51), second balls (73) are disposed in the second accommodating holes (72), a cover plate (74) is disposed on the fixing seat (51) through a fastener, two through holes (75) one-to-one corresponding to the second accommodating holes (72) are formed on the cover plate (74), and second springs (76) capable of exposing the second balls (73) from the through holes (75) and abutting in the positioning slots (71) are disposed in the second accommodating holes (72).
8. The push-pull bit detaching and mounting tool according to claim 1, wherein a ratchet wheel seat (2) formed with the conveying passage (21) is disposed at an end portion of the casing (1), a ratchet wheel head (3) having the bit mounting holes (31) communicated with the conveying passage (21) is disposed on the ratchet wheel seat (2), a ratchet wheel control mechanism (4) is disposed between the ratchet wheel head (3) and the ratchet wheel seat (2), and the ratchet wheel control mechanism (4) is used for controlling circumferential rotation direction of the ratchet wheel head (3) and/or locking the ratchet wheel head (3) in the circumferential direction.
9. The push-pull bit detaching and mounting tool according to claim 8, wherein the ratchet wheel control mechanism (4) comprises an adjusting ring (41) sleeved on the ratchet wheel seat (2) in a circumferential rotating manner, a pillow-shaped body (42) is disposed at a position located on the outer side of the adjusting ring (41) on the ratchet wheel seat (2), two pressure spring holes (43) located below the pillow-shaped body (42) are formed on the ratchet wheel seat (2), pressure springs (44) abutting against an end portion of the pillow-shaped body (42) are respectively disposed in the pressure spring holes (43), a pressing sheet (45) is fixed on the adjusting ring (41), an end portion of the pressing sheet (45) is pressed above the middle part of the pillow-shaped body (42), the ratchet wheel head (3) is connected with the ratchet wheel seat (2) through a connecting structure, a plurality of ratchets (46) are disposed on the circumferential inner side of the ratchet wheel head (3), and cooperating portions mutually engaged with the ratchets (46) are respectively disposed at two ends of the pillow-shaped body (42).
10. The push-pull bit detaching and mounting tool according to claim 9, wherein the connecting structure comprises an annular groove (47) formed in an end portion of the ratchet wheel seat (2), the ratchet wheel head (3) is sleeved on the ratchet wheel seat (2) in a circumferential rotating manner, and an opening clamp ring (48) capable of axially positioning the ratchet wheel head (3) is clamped in the annular groove (47).
11. The push-pull bit detaching and mounting tool according to claim 2, wherein the guide structure further comprises a guide seat (87) disposed on the mounting seat (8), a guide hole (88) is formed in the axial direction of the guide seat (87), and the push-pull rod (9) is disposed in the guide hole (88) in a sliding manner.
12. The push-pull bit detaching and mounting tool according to claim 3, wherein the guide structure further comprises a guide seat (87) disposed on the mounting seat (8), a guide hole (88) is formed in the axial direction of the guide seat (87), and the push-pull rod (9) is disposed in the guide hole (88) in a sliding manner.
13. The push-pull bit detaching and mounting tool according to claim 4, wherein the guide structure further comprises a guide seat (87) disposed on the mounting seat (8), a guide hole (88) is formed in the axial direction of the guide seat (87), and the push-pull rod (9) is disposed in the guide hole (88) in a sliding manner.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0019]
[0020]
[0021]
[0022]
[0023] In
DETAILED DESCRIPTION
[0024] A further detailed illustration of the present invention will be given below in combination with the accompanying drawings and specific implementations.
[0025] As shown in
[0026] As shown in
[0027] Wherein, the pushing structure herein includes locking plates 816 which are respectively disposed on the outer sides of the locking blocks 814. Two guide plates 817, which are disposed to be parallel to each other and are respectively located on two sides of the positioning pins 813, are disposed on the inner side of the sliding push block 811. Oblique push plates 818 one-to-one corresponding to the locking plates 816 are respectively disposed on end portions close to the positioning pins 813 of the two guide plates 817. The two oblique push plates 818 are disposed oppositely and obliquely, and the outer sides of the end portions of the oblique push plates 818 abut against the inner sides of the end portions of the locking plates 816. In this case, the oblique push plates 818 push the locking plates 816 to separate the two locking blocks 814. In addition, after the oblique push plates 818 are away from the locking plates 816, the outer sides of the guide plates 817 abut against the inner sides of the locking plates 816, so that the two locking blocks 814 are at a mutually separate state, which is conducive to the axial sliding of the push-pull rod 9.
[0028] The elastic structure herein includes two limiting grooves 82 formed in the mounting seat 8. Slide blocks 83 disposed in the limiting grooves 82 in a sliding manner are disposed on the locking blocks 814. Jacking pressure springs 84 abutting against the slide blocks 83 are disposed in the limiting grooves 82. The sliding guide structure includes two guide grooves 85 which are axially formed in the outer side of the mounting seat 8. Guide clamping plates 86 are respectively disposed on two sides of the sliding push block 811, and the guide clamping plates 86 are disposed in the guide grooves 85 in a sliding manner. Namely, when the locking plates 816 are respectively deviated from the guide plates 817 and the oblique push plates 818, under the action of the jacking pressure springs 84, the two locking blocks 814 mutually approach. To facilitate the axial sliding of the push-pull rod 9, the guide structure therein includes a guide seat 87 disposed on the mounting seat 8. A guide hole 88 is formed in the axial direction of the guide seat 87. The push-pull rod 9 is disposed in the guide hole 88 in a sliding manner to guarantee the push-pull rod 9 to slide along the axial direction.
[0029] Further, the mounting structure 5 in the embodiment includes a fixing seat 51 which is disposed at the end portion of the mounting seat 8 and extends downwards. The fixing seat 51 and the ratchet wheel seat 2 form the above-mentioned accommodating groove 11. A first accommodating hole 52 is formed in the center of one end of the bit storage seat 6. A first ball 53 is disposed at the end portion of the first accommodating hole 52. A mounting groove 54 matching with the first ball 53 is formed in a position located below the conveying passage 21 on the ratchet wheel seat 2. A first spring 55 capable of exposing the first ball 53 from the first accommodating hole 52 and abutting in the mounting groove 54 is disposed in the first accommodating hole 52. A second permanent magnet 56 is disposed at the center of the other end of the bit storage seat 6. A cooperating iron block corresponding to the second permanent magnet 56 is disposed on the fixing seat 51. Therefore, one end of the bit storage seat 6 abuts in the mounting groove 54 through the first ball 53 to be positioned, and the other end of the bit storage seat is positioned by the mutual attraction of the second permanent magnet 56 and the cooperating iron block. In addition, to conveniently rotate the bit storage seat 6, a hand hole is formed in the bottom of the accommodating groove 11. In this way, the bit storage seat 6 is easy to rotate in the circumferential direction and is convenient to detach. Preferably, the positioning structure 7 herein includes a plurality of positioning slots 71 which are uniformly formed in the circumferential edge of the end portion of the bit storage seat 6. The number of the positioning slots 71 is equal to the number of the storage holes 61. The positioning slots 71 and the storage holes 61 are disposed in a one-to-one staggering manner. Two second accommodating holes 72 are formed on the fixing seat 51, and second balls 73 are disposed in the second accommodating holes 72. A cover plate 74 is disposed on the fixing seat 51 through a fastener. Two through holes 75 one-to-one corresponding to the second accommodating holes 72 are formed on the cover plate 74. Second springs 76 capable of exposing the second balls 73 from the through holes 75 and abutting in the positioning slots 71 are disposed in the second accommodating holes 72. Preferably, there are respectively six positioning slots 71 and six storage holes 61 herein, which are uniformly formed in the one-to-one staggering manner. Two mutually disposed positioning slots 71 are located on the same straight line. When the bit storage seat 6 is rotated in the circumferential direction, the second balls 73 enter the positioning slots 71 to fulfill automatic alignment of the storage holes 61 with the conveying passage 21.
[0030] Further, the ratchet wheel control mechanism 4 herein includes an adjusting ring 41 sleeved on the ratchet wheel seat 2 in a circumferential rotating manner. A pillow-shaped body 42 is disposed at a position located on the outer side of the adjusting ring 41 on the ratchet wheel seat 2. Two pressure spring holes 43 located below the pillow-shaped body 42 are formed on the ratchet wheel seat 2. Pressure springs 44 abutting against the end portion of the pillow-shaped body 42 are respectively disposed in the pressure spring holes 43. In addition, a pressing sheet 45 is fixed on the adjusting ring 41. The end portion of the pressing sheet 45 is pressed above the middle part of the pillow-shaped body 42. The ratchet wheel head 3 is connected with the ratchet wheel seat 2 through connecting structure. A plurality of ratchets 46 are disposed on the circumferential inner side of the ratchet wheel head 3. Cooperating portions mutually engaged with the ratchets 46 are respectively disposed at both ends of the pillow-shaped body 42. Therefore, by means of the lever principle, the adjusting ring 41 is rotated to enable the pressing sheet 45 to press the middle part or any end of the pillow-shaped body 42. When the pressing sheet 45 is pressed on the middle part of the pillow-shaped body 42, the pillow-shaped body 42 is at a balanced state, and the cooperating portions on both ends are mutually engaged with the ratchets 46 to lock the ratchet wheel head 3 in the circumferential direction. When the pressing sheet 45 is pressed on any end of the pillow-shaped body 42, the balance of the pillow-shaped body 42 is broken. The end abutting against the pressing sheet 45 of the pillow-shaped body moves downwards. The cooperating portion at the other end is continuously engaged with the ratchets 46 to achieve the unidirectional rotation of the ratchet wheel head 3.
[0031] Wherein, the connecting structure herein includes an annular groove 47 formed in the end portion of the ratchet wheel seat 2. The ratchet wheel head 3 is sleeved on the ratchet wheel seat 2 in a circumferential rotating manner. An opening clamp ring 48 capable of axially positioning the ratchet wheel head 3 is clamped in the annular groove 47. Namely, the ratchet wheel head 3 is connected with the ratchet wheel seat 2 through the opening clamp ring 48 to prevent the both from easily deviating from each other. In addition, the casing 1 herein is gun-shaped and is formed by splicing two half casings 12. a light emitting diode (LED) lamp 13 facing to the ratchet wheel head 3 is disposed on the lower side of the casing 1. The LED lamp 13 is connected with a built-in power supply 14 disposed in the casing 1. A switch 15 located on the casing 1 is disposed between the built-in power supply 14 and the LED lamp 13. Preferably, the switch 15 herein is disposed at a trigger position of the gun-shaped casing 1. Namely, the LED lamp 13 is turned on or turned off by pulling the trigger. In this way, the detaching and mounting tool can be normally used even if in a dark environment.
[0032] The specific embodiments described in this paper are merely exemplary illustration to the spirit of the present invention. Those skilled in the art to which the present invention pertains may make a variety of modifications, supplements or replacements in similar manners on the described specific embodiments, but these modifications, supplements or replacements do not deviate from the spirit of the present invention or exceed the scope defined by the appended claims.
[0033] Furthermore, although these terms in this paper are used for describing the structures and components involved in the embodiments of the present invention, the possibility of using other terms is not excluded. For example, the casing 1, the accommodating groove 11, the half casing 12, the LED lamp 13, the built-in power supply 14, the switch 15, the ratchet wheel seat 2, the conveying passage 21, the ratchet wheel head 3, the bit mounting hole 31, the ratchet wheel control mechanism 4, the adjusting ring 41, the pillow-shaped body 42, the pressure spring hole 43, the pressure spring 44, the pressing sheet 45, the ratchet 46, the annular groove 47, the opening clamp ring 48, the mounting structure 5, the fixing seat 51, the first accommodating hole 52, the first ball 53, the mounting groove 54, the first spring 55, the second permanent magnet 56, the bit storage seat 6, the storage hole 61, the positioning structure 7, the positioning slot 71, the second accommodating hole 72, the second ball 73, the cover plate 74, the through hole 75, the second spring 76, the mounting seat 8, the axial positioning mechanism 81, the sliding push block 811, the positioning groove 812, the positioning pin 813, the locking block 814, the locking notch 815, the locking plate 816, the guide plate 817, the oblique push plate 818, the limiting groove 82, the slide block 83, the jacking pressure spring 84, the guide groove 85, the guide clamping plate 86, the guide seat 87, the guide hole 88, the push-pull rod 9, the first permanent magnet 91, etc. These terms are merely used for describing and explaining the essence of the present invention more conveniently, and explanation of these terms as any additional limitation is contrary to the spirit of the present invention.