COLD KNIFE HOLDER CAPABLE OF PUSHING AND PULLING OPERATION
20220305682 ยท 2022-09-29
Inventors
Cpc classification
B26B27/00
PERFORMING OPERATIONS; TRANSPORTING
B26B5/00
PERFORMING OPERATIONS; TRANSPORTING
Y02W30/56
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
Abstract
A cold knife holder capable of pushing and pulling operations, includes a main body forming a chamber and a slot, a handle, a detent member, a first spring and a first steel ball. One side of the main body forms a perforation which communicates with the chamber. The handle includes a sleeve, a connecting rod and a grip rod. Both ends of the connecting rod are respectively connected to the sleeve and the grip rod, and the sleeve is pivotally sleeved on the main body, so that the handle is rotated relative to the main body, and the first or second caulking is connected to the perforation, and the detent member is arranged in the chamber. The first steel ball is pivotally embedded in the perforation, so that the detent member drives the first steel ball to be embedded in the first or second caulking, thereby positioning the handle.
Claims
1. A cold knife holder capable of pushing and pulling operation, comprising: a columnar main body, said main body has a first end and a second end, said first end and said second end are opposite to each other in the axial direction of the main body, said main body forms a chamber and a slot, said chamber extends from the first end into said main body, said slot extends from the second end into said main body, so that a blade is inserted in said slot, an abutting surface is formed inside said main body, said chamber is located between said first end and said abutting surface, one side of said main body forms a perforation, said perforation communicates with said chamber; a handle, said handle includes a sleeve, an elongated connecting rod, and a grip rod, wherein one end of said connecting rod is connected to one side of said sleeve, the other end of said connecting rod is connected to said grip rod, so that said grip rod can be gripped by the user, said sleeve is pivotally sleeved on said main body, said sleeve has a pipe wall, one side of said pipe wall facing said main body forms a first caulking and a second caulking, said first caulking and said second caulking are opposite to each other in the radial direction of said sleeve, so that said handle rotates against said main body, and said first caulking or said second caulking communicates with said perforation; a detent member movably arranged in said chamber, so that said detent member reciprocates between a first position and a second position in the axial direction of said main body; a first spring arranged in said chamber, both ends of said first spring prop said abutting surface and said detent member respectively; and a first steel ball pivotally embedded in said perforation, said first steel ball laterally props said detent member, so that said detent member drives said first steel ball to be embedded in said first caulking or said second caulking, and said handle is positioned.
2. The cold knife holder capable of pushing and pulling operation defined in claim 1, wherein one side of said pipe wall facing said main body forms a slot, both ends of said slot communicate with said first caulking and said second caulking respectively.
3. The cold knife holder capable of pushing and pulling operation defined in claim 2, wherein in the radial direction of said sleeve, the depth of said slot is smaller than the depth of said first caulking and said second caulking.
4. The cold knife holder capable of pushing and pulling operation defined in claim 2, wherein said detent member radially shrinks to form a first neck section and a second neck section, the radial distance between said first neck section and said periphery of said main body is smaller than the outside diameter of said first steel ball, so that when said detent member is in the first position, said first steel ball is prominently embedded in said first caulking or said second caulking; the radial distance between one side of said slot far from said main body in the radial direction of said sleeve and said second neck section is equal to or larger than the outside diameter of said first steel ball, so that when said detent member is in said second position, said first steel ball departs from said first caulking or said second caulking.
5. The cold knife holder capable of pushing and pulling operation defined in claim 2, wherein said first caulking and said second caulking penetrate said pipe wall respectively, and the inside diameter of said first caulking and said second caulking is smaller than the outside diameter of said first steel ball.
6. The cold knife holder capable of pushing and pulling operation defined in claim 1, wherein said first caulking and said second caulking penetrate said pipe wall respectively, and the inside diameter of said first caulking and said second caulking is smaller than the outside diameter of said first steel ball.
7. The cold knife holder capable of pushing and pulling operation defined in claim 6, wherein said detent member radially shrinks to form a first neck section and a second neck section, the radial distance between said first neck section and said periphery of said main body is smaller than the outside diameter of said first steel ball, so that when said detent member is in said first position, said first steel ball is prominently embedded in said first caulking or said second caulking; the radial distance between said second neck section and said periphery of said main body is equal to or larger than the outside diameter of said first steel ball, so that when said detent member is in said second position, said first steel ball departs from said first caulking or said second caulking.
8. The cold knife holder capable of pushing and pulling operation defined in claim 1, wherein said main body forms a mounting hole, said mounting hole extends on one side of said slot, a second steel ball and a second spring are arranged in said mounting hole, said second spring pushes said second steel ball, said second steel ball partially protrudes from said slot, so that said second steel ball is prominently embedded in the locating hole of said blade, and said blade is positioned.
9. The cold knife holder capable of pushing and pulling operation defined in claim 1, wherein said connecting rod has an oblique section and a curved section, said oblique section extends from top to bottom towards said grip rod, one end of said curved section is connected to the bottom of said oblique section, the other end of said curved section is connected to the bottom of said grip rod.
10. The cold knife holder capable of pushing and pulling operation defined in claim 1, wherein said main body forms an annular bearing face, said bearing face is located between said first end and said second end, a locating ring is screwed on said main body, said locating ring and said bearing face oppositely limit said sleeve, so as to position said sleeve.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DETAILED DESCRIPTION OF THE INVENTION
[0025] As shown in
[0026] The handle 20 includes a sleeve 21, an elongated connecting rod 22 and a grip rod 23. Wherein one end of the connecting rod 22 is connected to one side of the sleeve 21, the other end of the connecting rod 22 is connected to the grip rod 23, so that the grip rod 23 can be gripped by the user. The sleeve 21 is pivotally sleeved on the main body 10. The sleeve 21 has a pipe wall 212, one side of the pipe wall 212 facing the main body 10 forms a first caulking 214 and a second caulking 216, the first caulking 214 and the second caulking 216 are opposite to each other in the radial direction of the sleeve 21. The first caulking 214 and the second caulking 216 penetrate the pipe wall 212 respectively, hereby the handle 20 can rotate against the main body 10 taking the axial direction of the main body 10 as center, and the first caulking 214 or the second caulking 216 communicates with the perforation 15. The first caulking 214 and the second caulking 216 may not penetrate the pipe wall 212, so as to form a different implementation option.
[0027] The detent member 30 is movably arranged in the chamber 13, so that the detent member 30 reciprocates between a first position 84 and a second position 86 in the axial direction of the main body 10. The first spring 42 is arranged in the chamber 13, both ends of the first spring 42 prop the abutting surface 14 and the detent member 30 respectively. The first steel ball 52 is pivotally embedded in the perforation 15, the first steel ball 52 laterally props the detent member 30, so that the detent member 30 drives the first steel ball 52 to be embedded in the first caulking 214 or the second caulking 216, and then the handle 20 is positioned.
[0028] As the first caulking 214 and the second caulking 216 penetrate the pipe wall 212 respectively, the inside diameter of the first caulking 214 and the second caulking 216 is smaller than the outside diameter of the first steel ball 52, the first steel ball 52 can be partially embedded in the first caulking 214 or the second caulking 216, and the first steel ball 52 cannot depart from the sleeve 21 through the first caulking 214 or the second caulking 216.
[0029] When the detent member 30 is in the first position 84, the detent member 30 compels the first steel ball 52 to be embedded in the first caulking 214, the sleeve 21 cannot rotate as confined by the first steel ball 52. When the detent member 30 moves to the second position 86 in axial direction, the handle 20 can be operated to rotate taking the axial direction of the main body 10 as center. At this point, the pipe wall 212 compels the first steel ball 52 to depart from the first caulking 214 towards the inside of the chamber 13. As the sleeve 21 rotates, when the second caulking 216 is opposite to the perforation 15, the first spring 42 provides a thrust to return the detent member 30 to the first position 84, the detent member 30 drives the first steel ball 52 to be embedded in the second caulking 216, the handle 20 is positioned again.
[0030] The handle 20 is rotated by actuating the detent member 30 to the second position 86, the grip rod 23 can face any one of two opposite sides of the main body 10. The handle 20 can be fixed by actuating the detent member 30 to the first position 84, so as to position the grip rod 23.
[0031] To remove the windshield 92 from the vehicle 90, the sealing element disposed on the windshield 92 facing the compartment 94 of the vehicle 90 is destroyed by the blade 82 (not shown in the figure). The blade 82 is installed on the main body 10, when the blade 82 pierces the sealing element, the operator (not shown in the figure) is on one side of the vehicle 90, gripping the main body 10 with one hand, and gripping the grip rod 23 with the other hand (not shown in the figure), as shown in
[0032] One side of the pipe wall 212 facing the main body 10 forms two slots 218, the slots 218 are opposite to each other in the radial direction of the sleeve 21, both ends of the slots 218 communicate with the first caulking 214 and the second caulking 216 respectively, hereby, when the sleeve 21 rotates against the main body 10, the first steel ball 52 is pivotally embedded in any slot 218.
[0033] The pipe wall 212 can form one slot 218, so as to form a different implementation option. The slot 218 is optionally formed, the pipe wall 212 can be free of the slot 218. When the first caulking 214 and the second caulking 216 do not penetrate the pipe wall 212, in the radial direction of the sleeve 21, the depth of the slot 218 is smaller than the depth of the first caulking 214 and the second caulking 216.
[0034] The detent member 30 is a columnar structure. The detent member 30 is axially located in the chamber 13. The detent member 30 radially shrinks to form a first neck section 31 and a second neck section 32.
[0035] The radial distance between the first neck section 31 and the periphery of the main body 10 is smaller than the outside diameter of the first steel ball 52, when the detent member 30 is in the first position 84, the first steel ball 52 is prominently embedded in the first caulking 214 or the second caulking 216.
[0036] Based on the implementation option where the pipe wall 212 is free of the slot 218, the radial distance between the second neck section 32 and the periphery of the main body 10 is equal to or larger than the outside diameter of the first steel ball 52, when the detent member 30 is in the second position 86, the first steel ball 52 can depart from the first caulking 214 or the second caulking 216.
[0037] Based on the implementation option where the pipe wall 212 forms the slot 218, the radial distance between one side of the slot 218 far from the main body 10 in the radial direction of the sleeve 21 and the second neck section 32 is equal to or larger than the outside diameter of the first steel ball 52, hereby, when the detent member 30 is in the second position 86, the first steel ball 52 departs from the first caulking 214 or the second caulking 216. When the handle 20 is rotated, the first steel ball 52 can be pivotally embedded in the slot 218.
[0038] The detent member 30 forms a ring surface 33, the ring surface 33 is connected to the first neck section 31, the first steel ball 52 oppositely limits the ring surface 33, so that the detent member 30 is located in the main body 10, preventing the detent member 30 from departing from the main body 10 through the first end 11.
[0039] The main body 10 forms a mounting hole 17, the mounting hole 17 extends on one side of the slot 16. A second steel ball 54 and a second spring 44 are arranged in the mounting hole 17. The second spring 44 props the second steel ball 54, the second steel ball 54 partially protrudes from the slot 16, so that the second steel ball 54 is prominently embedded in the locating hole 822 of the blade 82 to position the blade 82. The mounting hole 17 extends on one side of the main body 10. A regulating element 56 is screwed in the mounting hole 17. The second spring 44 props the regulating element 56, the acting force of the second spring 44 applied to the second steel ball 54 can be changed by rotating the regulating element 56, so as to enhance the reliability of the second steel ball 54 in positioning the blade 82.
[0040] The connecting rod 22 has an oblique section 222 and a curved section 224. The oblique section 222 extends from top to bottom towards the grip rod 23. One end of the curved section 224 is connected to the bottom of the oblique section 222. The other end of the curved section 224 is connected to the bottom of the grip rod 23. Hereby, in the radial direction of the main body 10, the oblique section 222 is located between the main body 10 and the grip rod 23. In the preferred embodiment of pushing operation, the oblique section 222 avoids the hand which grips the grip rod 23 slipping to collide with the main body 10, the attitude of the main body 10 and the blade 82 in space remains, and the oblique section 222 and the curved section 224 support the hand which grips the grip rod 23, the reliability of gripping the grip rod 23 is enhanced. If the windshield 92 breaks to form several grains, the connecting rod 22 avoids the hand slipping down to contact the grains, the operational safety is enhanced.
[0041] The main body 10 forms an annular bearing face 18, the bearing face 18 is located between the first end 11 and the second end 12. A locating ring 60 is screwed on the main body 10, the locating ring 60 and the bearing face 18 oppositely limit the sleeve 21, so as to position the sleeve 21.
[0042] The bearing face 18 and the locating ring 60 are optionally formed, based on the implementation option where the pipe wall 212 forms the slot 218, the first steel ball 52 is pivotally embedded in the first caulking 214, the second caulking 216 or the slot 218, the first steel ball 52 can oppositely confine the sleeve 21, it is unnecessary to arrange the bearing face 18 and the locating ring 60.
[0043] The detent member 30 protrudes from the main body 10 through the first end 11 to form a press end 35, so that the detent member 30 can be pressed, and it is convenient to actuate the detent member 30 from the first position 84 to the second position 86.
[0044] Several ridges 19 are formed on the radial periphery of the main body 10, the ridges 19 extend in the axial direction of the main body 10 respectively, so as to enhance the reliability of gripping the main body 10.