CN111907046B - Tennis racket handle inner handle skin winding device - Google Patents

Tennis racket handle inner handle skin winding device Download PDF

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Publication number
CN111907046B
CN111907046B CN202010662692.1A CN202010662692A CN111907046B CN 111907046 B CN111907046 B CN 111907046B CN 202010662692 A CN202010662692 A CN 202010662692A CN 111907046 B CN111907046 B CN 111907046B
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Prior art keywords
sliding
workbench
assembly
plate
block
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CN111907046A (en
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蒋楠
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Liaocheng Yungoutong Information Technology Co ltd
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Liaocheng Yungoutong Information Technology Co ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C53/00Shaping by bending, folding, twisting, straightening or flattening; Apparatus therefor
    • B29C53/56Winding and joining, e.g. winding spirally
    • B29C53/58Winding and joining, e.g. winding spirally helically
    • B29C53/60Winding and joining, e.g. winding spirally helically using internal forming surfaces, e.g. mandrels
    • B29C53/62Winding and joining, e.g. winding spirally helically using internal forming surfaces, e.g. mandrels rotatable about the winding axis
    • B29C53/66Winding and joining, e.g. winding spirally helically using internal forming surfaces, e.g. mandrels rotatable about the winding axis with axially movable winding feed member, e.g. lathe type winding
    • B29C53/665Coordinating the movements of the winding feed member and the mandrel
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C53/00Shaping by bending, folding, twisting, straightening or flattening; Apparatus therefor
    • B29C53/80Component parts, details or accessories; Auxiliary operations
    • B29C53/8008Component parts, details or accessories; Auxiliary operations specially adapted for winding and joining
    • B29C53/8091Cutting the ends, surface finishing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29LINDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
    • B29L2031/00Other particular articles
    • B29L2031/52Sports equipment ; Games; Articles for amusement; Toys
    • B29L2031/5245Rackets

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Surgical Instruments (AREA)

Abstract

The invention relates to an inner handle skin winding device, in particular to an inner handle skin winding device for a tennis racket handle. The invention aims to solve the technical problem of how to provide a tennis racket handle inner handle skin winding device which does not need to manually wind an inner handle skin. In order to solve the above technical problems, the present invention provides an inner handle skin wrapping device for a tennis racket handle, comprising: the two sides of the bottom of the workbench are connected with supporting legs; the driving assembly is arranged on the workbench; the rotary component is arranged on one side, close to the driving component, of the workbench, and the driving component is in transmission connection with the rotary component; the belt conveying assembly is mounted on the driving assembly. The driving assembly can drive the rotating assembly to work, the rotating assembly can rotate the tennis racket, the inner handle skin on the driving assembly can be pulled out by rotating the tennis racket, and the inner handle skin can be wound on the handle by rotating the tennis racket.

Description

Tennis racket handle inner handle skin winding device
Technical Field
The invention relates to an inner handle skin winding device, in particular to an inner handle skin winding device for a tennis racket handle.
Background
In order to prevent the fibrous tissue inside the handle of the tennis racket from being damaged by sweat, air, harmful elements, etc., and to extend the life of the handle of the tennis racket, it is necessary to wind an inner handle cover around the handle of the tennis racket before the tennis racket is shipped. At present, the process of winding the inner handle skin of the tennis racket handle is generally manually carried out, when the inner handle skin is manually wound, the tennis racket is manually rotated and moved forward, so that the inner handle skin is uniformly wound on the tennis racket handle, and a worker needs to rotate a wrist for a long time, so that the wrist is easily aching or injured.
Therefore, the development of a tennis racket handle inner handle skin wrapping device which does not need to manually wrap the inner handle skin is needed.
Disclosure of Invention
(1) Technical problem to be solved
The invention aims to overcome the defect that the inner handle skin is uniformly wound on the handle of the tennis racket by manually rotating the tennis racket, and the technical problem to be solved by the invention is to provide a device for winding the inner handle skin on the handle of the tennis racket without manually winding the inner handle skin.
(2) Technical scheme
In order to solve the above technical problems, the present invention provides an inner handle skin wrapping device for a tennis racket handle, comprising: the two sides of the bottom of the workbench are connected with supporting legs; the driving assembly is arranged on the workbench; the rotary component is arranged on one side, close to the driving component, of the workbench, and the driving component is in transmission connection with the rotary component; the belt conveying assembly is mounted on the driving assembly.
Preferably, the drive assembly comprises: a servo motor, wherein the servo motor is arranged on one side of the workbench; the two sides of the top of the workbench are both connected with supporting plates; the screw rod is connected with the screw rod between the backup pad of rotary type, and the screw rod is connected with servo motor.
Preferably, the rotating assembly comprises: the top of the workbench is connected with one side of one support plate; the first vertical plate is rotatably connected with the placing plate; the belt is connected between the placing plate and the servo motor; one side of the first vertical plate is connected with a guide rod; the guide rod is connected with the second vertical plate in a sliding manner; the second vertical plate is connected with a second sliding column in a sliding manner; one end of the first sliding column is connected with a limiting plate; the other end of the first sliding column is connected with a baffle; the first sliding column is sleeved with a first return spring, one end of the first return spring is in contact with the baffle, and the other end of the first return spring is in contact with the second vertical plate; the screw, second riser one side rotary type is connected with the screw.
Preferably, the tape feed assembly comprises: the screw rod is connected with a first sliding block in a sliding manner, and the first sliding block is connected with the workbench in a sliding manner; the first sliding block is connected with a connecting plate; one side of the connecting plate is fixedly connected with the first chuck; the rotating shaft is rotatably connected to the first chuck; the rotating shaft is sleeved with the second chuck; the bayonet lock is inserted at one side of the rotating shaft close to the second chuck.
Preferably, still include movable spacing subassembly, movable spacing subassembly includes: the other side of the workbench is connected with two second sliding blocks in a sliding manner; the second sliding block is connected with a second connecting rod; the first connecting rod is connected with a button which is electrically connected with the servo motor; the button is connected with the first bolt in a rotating mode; the first pressing plate is connected to the first bolt.
Preferably, a shear assembly is further included, the shear assembly comprising: the third sliding block is connected to one side, close to the guide rod, of the workbench in a sliding manner; the third sliding block is rotatably connected with a second bolt; the bottom of the second bolt is connected with a second pressure plate; one side of the third sliding block, which is close to the second bolt, is connected with a second connecting rod; the second connecting rod is connected with two guide blocks; the guide block is connected with a second sliding column in a sliding manner; one end of the second sliding column is connected with the wedge block; the other end of the second sliding column is connected with a cutter; the second reset spring is connected between the wedge block and the guide block; the other side of the connecting plate is connected with a push block which is matched with the wedge-shaped block.
(3) Advantageous effects
The driving assembly can drive the rotating assembly to work, the rotating assembly can enable the tennis racket to rotate, the inner handle skin on the driving assembly can be pulled out by rotating the tennis racket, the inner handle skin can be wound on the handle by rotating the tennis racket, the inner handle skin can move backwards by operating the driving assembly, so that the inner handle skin can be uniformly wound on the handle of the tennis racket, manual winding of the inner handle skin is not needed, the inner handle skin can be cut by the cutting assembly, and the inner handle skin is not needed to be cut manually.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic perspective view of the driving assembly of the present invention.
Fig. 3 is a schematic perspective view of the rotating assembly of the present invention.
Fig. 4 is a perspective view of the tape feed assembly of the present invention.
Fig. 5 is a schematic perspective view of the movable limiting assembly of the present invention.
Fig. 6 is a perspective view of a shear assembly according to the present invention.
Fig. 7 is an enlarged view of the present invention a.
The labels in the figures are: 1-support leg, 2-workbench, 3-driving component, 31-servo motor, 32-screw rod, 33-support plate, 4-rotating component, 41-first vertical plate, 42-placing plate, 43-belt, 44-guide rod, 45-second vertical plate, 46-first sliding column, 47-limiting plate, 48-baffle, 49-first reset spring, 410-screw, 5-belt conveying component, 51-first sliding block, 52-connecting plate, 53-rotating shaft, 54-first clamping chuck, 55-clamping pin, 56-second clamping chuck, 6-movable limiting component, 61-second sliding block, 62-first connecting rod, 63-button, 64-first bolt, 65-first pressing plate, 7-shearing component, 71-a third slide block, 72-a second bolt, 73-a second pressure plate, 74-a second connecting rod, 75-a guide block, 76-a second sliding column, 77-a second return spring, 78-a wedge block, 79-a cutter, 710-a push block and 100-a tennis racket.
Detailed Description
The invention is further described below with reference to the figures and examples.
Example 1
A tennis racket handle inner handle skin winding device is shown in figures 1-4 and comprises supporting legs 1, a workbench 2, a driving assembly 3, a rotating assembly 4 and a belt conveying assembly 5, wherein the supporting legs 1 are connected to the front side and the rear side of the bottom of the workbench 2, the driving assembly 3 and the rotating assembly 4 are respectively installed on the workbench 2, the driving assembly 3 is in transmission connection with the rotating assembly 4, and the belt conveying assembly 5 is installed on the driving assembly 3.
Drive assembly 3 is including servo motor 31, screw rod 32 and backup pad 33, and servo motor 31 is installed to 2 leading flank of workstation, and both sides all are connected with backup pad 33 around the 2 tops of workstation, and the rotary type is connected with screw rod 32 between two backup pads 33, screw rod 32 front end and servo motor 31's output shaft.
The rotating component 4 comprises a first vertical plate 41, a placing plate 42, a belt 43, a guide rod 44, a second vertical plate 45, a first sliding column 46, a limit plate 47, a baffle plate 48, a first return spring 49 and a screw 410, wherein the top of the workbench 2 at the left side of the front side supporting plate 33 is connected with the first vertical plate 41, the upper part of the first vertical plate 41 is rotatably connected with the placing plate 42, the belt 43 is connected between the front part of the placing plate 42 and an output shaft of the servo motor 31, the lower part of the rear side surface of the first vertical plate 41 is connected with the guide rod 44, the guide rod 44 is slidably connected with the second vertical plate 45, the upper part of the second vertical plate 45 is slidably connected with the first sliding column 46, the rear end of the first sliding column 46 is connected with the limit plate 47, the front end of the first sliding column 46 is connected with the baffle plate 48, the first return spring 49 is sleeved on the first sliding column 46, the front end of the first return spring 49 is contacted with the rear side surface of the baffle plate 48, the rear end of the first return spring 49 is contacted with the front side surface of the second vertical plate 45, the lower side of the left part of the second vertical plate 45 is connected with a screw 410 in a threaded connection mode.
The belt conveying assembly 5 comprises a first sliding block 51, a connecting plate 52, a rotating shaft 53, a first chuck 54, a clamping pin 55 and a second chuck 56, the first sliding block 51 is connected to the screw rod 32 in a threaded connection mode, the bottom of the first sliding block 51 is connected with the top of the workbench 2 in a sliding mode, the connecting plate 52 is connected to the top of the first sliding block 51, the first chuck 54 is fixedly connected to the upper portion of the front side face of the connecting plate 52, the rotating shaft 53 is connected to the front side face of the first chuck 54 in a rotating mode, the second chuck 56 is sleeved on the rotating shaft 53, and the clamping pin 55 is connected to the rotating shaft 53 of the front side of the second chuck 56 in a threaded connection mode.
When the inner shank skin is to be wound, the bayonet 55 is manually unscrewed from the rotating shaft 53, the second chuck 56 is removed from the rotating shaft 53, the inner shank skin is then fitted over the rotating shaft 53, the second chuck 56 is then fitted back onto the rotating shaft 53, and the bayonet 55 is screwed onto the rotating shaft 53. The screw 410 can be unscrewed from the second riser 45 afterwards, then can be according to the length of tennis racket 100 forward or backward the second riser 45, the second riser 45 removes and drives the part on it and remove, after baffle 48 removed to suitable position, stop moving the second riser 45 to screw 410 back on the second riser 45, so can be fixed with the second riser 45, prevent that the second riser 45 from removing by oneself. Then, the blocking plate 48 is pressed backward, the first return spring 49 is compressed, then the handle end of the tennis racket 100 is placed on the placing plate 42, the blocking plate 48 is released, the blocking plate 48 can be moved forward to be reset under the action of the first return spring 49, and the tennis racket 100 can be fixed on the placing plate 42 through the cooperation of the first return spring 49 and the blocking plate 48. Then the end of the inner handle skin is manually wound on the handle of the tennis racket 100, then the servo motor 31 is started to rotate clockwise, the servo motor 31 rotates clockwise to enable the placing plate 42 to rotate through the belt 43, the placing plate 42 rotates to drive the tennis racket 100 to rotate, the tennis racket 100 rotates to be capable of tearing out the inner handle skin, and the tennis racket 100 rotates to be capable of enabling the inner handle skin to be wound on the handle of the tennis racket. The servo motor 31 rotates clockwise to rotate the screw rod 32 clockwise, the screw rod 32 rotates clockwise to move backwards through the first sliding block 51, the first sliding block 51 moves backwards to drive the components on the first sliding block to move backwards, so that the inner handle leather can move backwards, and the inner handle leather can be uniformly wound on the handle of the tennis racket 100. After the inner handle skin is wound on the handle of the tennis racket 100, the servo motor 31 is closed, then the inner handle skin is manually cut off, the tennis racket 100 is taken off from the placing plate 42, then the servo motor 31 is started to rotate anticlockwise, so that the first sliding block 51 moves forwards and is reset, and after the first sliding block 51 moves forwards and is reset, the servo motor 31 is closed; the operation is repeated, and the inner handle skin can be wound repeatedly. So 3 work of drive assembly of this device can drive 4 work of runner assembly, 4 work of runner assembly can make tennis racket 100 rotate, tennis racket 100 rotates and can tear out the inner handle skin on the drive assembly 3, tennis racket 100 rotates and can make the winding of inner handle skin on its handle, 3 work of drive assembly can make the inner handle skin move backward to the winding that the inner handle skin can be even is on the handle of tennis racket 100, and then need not artifical manual winding inner handle skin.
Example 2
On the basis of embodiment 1, as shown in fig. 1 and 5, the device further includes a movable limiting assembly 6, the movable limiting assembly 6 includes a second slider 61, a first connecting rod 62, a button 63, a first bolt 64 and a first pressing plate 65, the two second sliders 61 are slidably connected to the right side surface of the workbench 2, the two second sliders 61 are symmetrical front and back, the top of the second slider 61 is connected with the first connecting rod 62, the top end of the first connecting rod 62 is connected with the button 63, the button 63 is electrically connected with the servo motor 31, the button 63 is connected with the first bolt 64 in a threaded connection manner, and the bottom end of the first bolt 64 is connected with the first pressing plate 65.
The button 63 is then moved forward or backward according to the length of the handle of the tennis racket 100, and after the button 63 is moved to a proper position, the button 63 is stopped and the first bolt 64 is rotated clockwise to move the first pressing plate 65 downward, and after the first pressing plate 65 is moved downward to contact the top of the table 2, the first bolt 64 is stopped rotating clockwise, so that the button 63 can be fixed and the button 63 is prevented from moving by itself. The rear push button 63 can turn off the servo motor 31 when the first slider 51 moves backward to be in contact with the rear push button 63, and the front push button 63 can turn off the servo motor 31 when the first slider 51 moves forward to be in contact with the front push button 63, so that it is not necessary to manually turn off the servo motor 31 manually.
Example 3
On the basis of embodiment 2, as shown in fig. 1, 6 and 7, the shearing device 7 further comprises a shearing assembly 7, the shearing assembly 7 comprises a third sliding block 71, a second bolt 72, a second pressing plate 73, a second connecting rod 74, a guide block 75, a second sliding column 76, a second return spring 77, a wedge block 78, a cutter 79 and a pushing block 710, the top of the workbench 2 on the right side of the guide rod 44 is slidably connected with the third sliding block 71, the third sliding block 71 is connected with the second bolt 72 in a threaded connection manner, the bottom end of the second bolt 72 is connected with the second pressing plate 73, the top of the third sliding block 71 on the front side of the second bolt 72 is connected with the second connecting rod 74, the front side surface of the second connecting rod 74 is connected with two guide blocks 75, the two guide blocks 75 are vertically symmetrical, the guide block 75 is slidably connected with two second sliding columns 76, the two second sliding columns 76 are longitudinally symmetrical, the top ends of the two second sliding columns 76 on the upper side are connected with the wedge block 78, also be connected with wedge 78 between the bottom of two second travelers 76 of downside, be connected with cutter 79 between the bottom of two second travelers 76 of upside, also be connected with cutter 79 between the top of two second travelers 76 of downside, be connected with two second reset spring 77 between wedge 78 and the guide block 75, second reset spring 77 overlaps respectively on second traveler 76, two second reset spring 77 front and back symmetries, the left side of connecting plate 52 trailing flank is connected with ejector pad 710, ejector pad 710 and wedge 78 cooperation.
The third slider 71 can be moved forward or backward according to the length of the handle of the tennis racket 100, the third slider 71 moves to drive the components thereon to move, so that the cutter 79 can move, the third slider 71 stops moving after the cutter 79 moves to a proper position, then the second bolt 72 is rotated clockwise to move the second pressing plate 73 downward, and after the second pressing plate 73 moves downward to contact with the top of the workbench 2, the second bolt 72 stops rotating clockwise, so that the third slider 71 can be fixed to prevent the third slider 71 from moving by itself. The backward and forward movement of the connecting plate 52 drives the pushing block 710 to move backward and forward, after the pushing block 710 moves backward to contact with the wedge blocks 78, the pushing block 710 continues to move backward, the two cutters 79 can be close to each other through the two wedge blocks 78, and the second return spring 77 is compressed accordingly. The two cutters 79 cooperate to cut the inner shank skin in close proximity to one another, thus eliminating the need for manual cutting of the inner shank skin. After the push block 710 moves forward out of contact with the wedge block 78, the two cutters 79 can be separated from each other and reset by the second return spring 77.
The above examples are merely representative of preferred embodiments of the present invention, and the description thereof is more specific and detailed, but not to be construed as limiting the scope of the present invention. It should be noted that, for those skilled in the art, various changes, modifications and substitutions can be made without departing from the spirit of the present invention, and these are all within the scope of the present invention. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (1)

1. The utility model provides a tennis racket handle twines inner handle skin device which characterized in that includes:
the two sides of the bottom of the workbench (2) are connected with the supporting legs (1);
the driving component (3) is arranged on the workbench (2);
the rotary component (4) is mounted on one side, close to the driving component (3), of the workbench (2), and the driving component (3) is in transmission connection with the rotary component (4);
the belt conveying assembly (5) is mounted on the driving assembly (3);
the drive assembly (3) comprises:
a servo motor (31), wherein the servo motor (31) is arranged on one side of the workbench (2);
the two sides of the top of the workbench (2) are connected with the supporting plates (33);
the screw rods (32) are rotatably connected between the supporting plates (33), and the screw rods (32) are connected with the servo motor (31);
the rotating assembly (4) comprises:
the top of the workbench (2) close to one of the supporting plates (33) is connected with a first vertical plate (41);
a placing plate (42), wherein the first vertical plate (41) is rotatably connected with the placing plate (42);
a belt (43), wherein the belt (43) is connected between the placing plate (42) and the servo motor (31);
a guide rod (44), wherein one side of the first vertical plate (41) is connected with the guide rod (44);
the guide rod (44) is connected with a second vertical plate (45) in a sliding manner;
the first sliding column (46) is connected with the second vertical plate (45) in a sliding way;
one end of the first sliding column (46) is connected with the limiting plate (47);
the other end of the first sliding column (46) is connected with a baffle (48);
the first return spring (49) is sleeved on the first sliding column (46), one end of the first return spring (49) is in contact with the baffle (48), and the other end of the first return spring (49) is in contact with the second vertical plate (45);
the screw (410) is rotatably connected to one side of the second vertical plate (45);
the tape feed assembly (5) comprises:
the screw rod (32) is connected with a first sliding block (51) in a sliding manner, and the first sliding block (51) is connected with the workbench (2) in a sliding manner;
the first sliding block (51) is connected with a connecting plate (52);
the first chuck (54) is fixedly connected to one side of the connecting plate (52);
a rotating shaft (53), wherein the rotating shaft (53) is rotatably connected to the first chuck (54);
the second chuck (56), the second chuck (56) is sleeved on the rotating shaft (53);
the bayonet lock (55) is inserted into one side of the rotating shaft (53) close to the second chuck (56);
still include movable spacing subassembly (6), movable spacing subassembly (6) include:
the other side of the workbench (2) is connected with two second sliding blocks (61) in a sliding manner;
the first connecting rod (62) is connected to the second sliding block (61);
the button (63), the first connecting rod (62) is connected with the button (63), and the button (63) is electrically connected with the servo motor (31);
the button (63) is connected with the first bolt (64) through a rotary mode;
the first pressing plate (65) is connected to the first bolt (64);
further comprising a shearing assembly (7), the shearing assembly (7) comprising:
a third sliding block (71), wherein one side of the workbench (2) close to the guide rod (44) is connected with the third sliding block (71) in a sliding manner;
the second bolt (72) is rotatably connected to the third sliding block (71);
the bottom of the second bolt (72) is connected with a second pressure plate (73);
one side, close to the second bolt (72), of the third sliding block (71) is connected with a second connecting rod (74);
the second connecting rod (74) is connected with two guide blocks (75);
the guide block (75) is connected with the second sliding column (76) in a sliding way;
one end of the second sliding column (76) is connected with the wedge block (78);
the other end of the second sliding column (76) is connected with a cutter (79);
a second return spring (77), wherein the second return spring (77) is connected between the wedge block (78) and the guide block (75);
the other side of the connecting plate (52) is connected with a push block (710), and the push block (710) is matched with the wedge block (78).
CN202010662692.1A 2020-07-10 2020-07-10 Tennis racket handle inner handle skin winding device Active CN111907046B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
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CN111907046B true CN111907046B (en) 2022-08-05

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