CN201817649U - Twill rotary hose braiding machine - Google Patents

Twill rotary hose braiding machine Download PDF

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Publication number
CN201817649U
CN201817649U CN2010205348102U CN201020534810U CN201817649U CN 201817649 U CN201817649 U CN 201817649U CN 2010205348102 U CN2010205348102 U CN 2010205348102U CN 201020534810 U CN201020534810 U CN 201020534810U CN 201817649 U CN201817649 U CN 201817649U
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China
Prior art keywords
twill
cam
keyway
axis hole
pinion
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Expired - Fee Related
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CN2010205348102U
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Chinese (zh)
Inventor
陆忠跃
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Individual
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Individual
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Priority to CN2010205348102U priority Critical patent/CN201817649U/en
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Publication of CN201817649U publication Critical patent/CN201817649U/en
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Expired - Fee Related legal-status Critical Current

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Abstract

The utility model relates to a twill rotary hose braiding machine, which comprises a body, cams, a shuttle box, a shuttle for storing wefts, a warp channel, warps in the warp channel, palm fiber frames a transmission shaft and a rotary shaft; both sides of the palm fiber frame are connected with pull ropes; the pull rope is connected with one end of a spring via a pulley block; the other end of the spring is fixed on the support of the body; a pinion is disposed on the transmission shaft; a bull gear engaged with the pinion is disposed on the rotary shaft at the position relative to the pinion; the rotary shaft is also successively fixed with a first twill cam, a second twill cam, a third twill cam, a fourth twill cam, a fifth twill cam and a sixth twill cam; a pedal is disposed under each twill cam correspondingly; and each pedal is connected with the bottom of a palm fiber frame. The improvement to the original machine in the utility model can save cost, simplify structure and provides more convenience to operation.

Description

Twill rotary hose braiding machine
Technical field
The utility model relates to a kind of rotary hose braiding machine, relates in particular to a kind of twill rotary hose braiding machine.
Background technology
Traditional rotary hose braiding machine can only knit out the band rotary hose, the pliability of band rotary hose and imporosity all do not have the twill rotary hose good, and the tension force of twill rotary hose is big, third dimension is strong, service life is also than the length of band rotary hose, and machine is in running, operating personnel will observe the trend of silk thread constantly, prevent fracture of wire, production has been caused certain difficulty; Also has a kind of braiding machine in the market, it can knit out the twill rotary hose, but its structure is also complicated, the device fabrication cost is higher, be not suitable for the industrial production of modern economyization and the policy guidance of industrial upgrading, in order to adapt to existing situation and development from now on, therefore, need provide a kind of new technical scheme to solve the problems referred to above.
The utility model content
For solving the problems of the technologies described above, the purpose of this utility model provide a kind of simple in structure, cost is low, the twill rotary hose braiding machine of long service life.
The technical scheme in the invention for solving the above technical problem is:
Twill rotary hose braiding machine, comprise body, cam, shuttle box, deposit the shuttle of parallel, the warp passage, warp in the warp passage, the palm fibre frame, power transmission shaft and turning cylinder, described brown frame both sides connect stay cord by hook, described stay cord passes assembly pulley and is connected with spring one end, the described spring other end is fixed on the support of body, described power transmission shaft is provided with pinion, relative pinion position is provided with the gear wheel that is meshed with this pinion on the described turning cylinder, also be fixed with the first twill cam on the described turning cylinder in regular turn, the second twill cam, the 3rd twill cam, the 4th twill cam, the 5th twill cam and the 6th twill cam, all have axis hole in the middle of described each twill cam, have first keyway in the middle of the described first twill cam, the angle α of described first keyway longitudinal centre line and axis hole horizontal center line is 90 °, have second keyway in the middle of the described second twill cam, the angle β of described second keyway longitudinal centre line and axis hole horizontal center line is-150 °, have the 3rd keyway in the middle of described the 3rd twill cam, the angle γ of described the 3rd keyway longitudinal centre line and axis hole horizontal center line is-30 °, have the quadruple linkage groove in the middle of described the 4th twill cam, the angle α ' of described quadruple linkage groove longitudinal centre line and axis hole horizontal center line is 90 °, have the 5th keyway in the middle of described the 5th twill cam, the angle β ' of described the 5th keyway longitudinal centre line and axis hole horizontal center line is-150 °, have the 6th keyway in the middle of described the 6th twill cam, the angle γ ' of described the 6th keyway longitudinal centre line and axis hole horizontal center line is-30 °, the equal correspondence of described each twill cam lower position is provided with a pedal, and described each pedal all is connected with the bottom of a brown frame.
The gearratio of described gear wheel and pinion is 3: 1.
The utility model has the advantages that: cost-saved to the improvement of original machine, structure is simpler, and it is more convenient to operate.
Description of drawings
Below in conjunction with the drawings and specific embodiments the utility model is described in further detail.
Fig. 1 is an overall structure schematic diagram of the present utility model.
Fig. 2 is a backsight part-structure schematic diagram of the present utility model.
Fig. 3 is the structural representation of the first twill cam in the utility model.
Fig. 4 is the structural representation of the second twill cam in the utility model.
Fig. 5 is the structural representation of the 3rd twill cam in the utility model.
Fig. 6 is the structural representation of the 4th twill cam in the utility model.
Fig. 7 is the structural representation of the 5th twill cam in the utility model.
Fig. 8 is the structural representation of the 6th twill cam in the utility model.
Wherein: 1, body, 2, axis hole, 3, assembly pulley, 4, cam, 5, shuttle box, 6, shuttle, 7, warp, 8, spring, 9, stay cord, 10, support, 11, hook, 12, parallel, 13, gear wheel, 14, pinion, 15, the first twill cam, 16, the second twill cam, 17, the 3rd twill cam, 18, the 4th twill cam, 19, the 5th twill cam, 20, the 6th twill cam, 21, first keyway, 22, second keyway, 23, the 3rd keyway, 24, the quadruple linkage groove, 25, the 5th keyway, 26, the 6th keyway, 27, the palm fibre frame, 28, the warp passage, 29, pedal, 30, power transmission shaft, 31, turning cylinder.
The specific embodiment
Extremely shown in Figure 8 as Fig. 1, twill rotary hose braiding machine of the present utility model, comprise body 1, cam 4, shuttle box 5, deposit the shuttle 6 of parallel 12, warp passage 28, warp 7 in the warp passage 28, palm fibre frame 27, power transmission shaft 30 and turning cylinder 31, palm fibre frame 27 both sides connect stay cord 9 by hook 11, stay cord 9 passes assembly pulley 3 and is connected with spring 8 one ends, spring 8 other ends are fixed on the support 10 of body 1, power transmission shaft 30 is provided with pinion 14, relative pinion 14 positions are provided with the gear wheel 13 that is meshed with this pinion 14 on the turning cylinder 31, gear wheel 13 is 3: 1 with the gearratio of pinion 14, also be fixed with the first twill cam 15 on the turning cylinder 31 in regular turn, the second twill cam 16, the 3rd twill cam 17, the 4th twill cam 18, the 5th twill cam 19 and the 6th twill cam 20, all have axis hole 2 in the middle of each twill cam, have first keyway 21 in the middle of the first twill cam 15, the angle α of first keyway, 21 longitudinal centre lines and axis hole 2 horizontal center lines is 90 °, have second keyway 22 in the middle of the second twill cam 16, the angle β of second keyway, 22 longitudinal centre lines and axis hole 2 horizontal center lines is-150 °, have the 3rd keyway 23 in the middle of the 3rd twill cam 17, the angle γ of the 3rd keyway 23 longitudinal centre lines and axis hole 2 horizontal center lines is-30 °, have quadruple linkage groove 24 in the middle of the 4th twill cam 18, the angle α ' of quadruple linkage groove 24 longitudinal centre lines and axis hole 2 horizontal center lines is 90 °, have the 5th keyway 25 in the middle of the 5th twill cam 19, the angle β ' of the 5th keyway 25 longitudinal centre lines and axis hole 2 horizontal center lines is-150 °, have the 6th keyway 26 in the middle of the 6th twill cam 20, the angle γ ' of the 6th keyway 26 longitudinal centre lines and axis hole 2 horizontal center lines is-30 °, the equal correspondence of each twill cam lower position is provided with a pedal 29, and each pedal 29 all is connected with the bottom of a brown frame 27.
The utility model is running like this: the motor that starts twill rotary hose braiding machine, the running of cam 4 drives power transmission shaft 30 and the pinion on it 14 rotates, pinion 14 drives turning cylinder 31 motions by the gear wheel 13 with its engagement, each twill cam forms the rotation of different angles under the drive of turning cylinder 31, because the rotation of 6 twill cams is the motions that drive following corresponding pedal 29 at interval, the motion of a brown frame 27 of each pedal 29 corresponding control, six brown frames 27 clocklike move up and down, the warps 7 that the motion of palm fibre frame 27 drives in the warp passage 28 move up and down, and drive parallel 12 when shuttle 6 moves back and forth and interweave with warp 7 and form the twill rotary hose.The utility model is to the improvement of original machine, and is cost-saved, and structure is simpler, and it is more convenient to operate.

Claims (2)

1. twill rotary hose braiding machine, comprise body, cam, shuttle box, deposit the shuttle of parallel, the warp passage, warp in the warp passage, the palm fibre frame, power transmission shaft and turning cylinder, described brown frame both sides connect stay cord by hook, described stay cord passes assembly pulley and is connected with spring one end, the described spring other end is fixed on the support of body, described power transmission shaft is provided with pinion, relative pinion position is provided with the gear wheel that is meshed with this pinion on the described turning cylinder, it is characterized in that: also be fixed with the first twill cam on the described turning cylinder in regular turn, the second twill cam, the 3rd twill cam, the 4th twill cam, the 5th twill cam and the 6th twill cam, all have axis hole in the middle of described each twill cam, have first keyway in the middle of the described first twill cam, the angle α of described first keyway longitudinal centre line and axis hole horizontal center line is 90 °, have second keyway in the middle of the described second twill cam, the angle β of described second keyway longitudinal centre line and axis hole horizontal center line is-150 °, have the 3rd keyway in the middle of described the 3rd twill cam, described the 3rd keyway longitudinal centre line and axis hole horizontal center line angle γ are-30 °, have the quadruple linkage groove in the middle of described the 4th twill cam, the angle α ' of described quadruple linkage groove longitudinal centre line and axis hole horizontal center line is 90 °, have the 5th keyway in the middle of described the 5th twill cam, the angle β ' of described the 5th keyway longitudinal centre line and axis hole horizontal center line is-150 °, have the 6th keyway in the middle of described the 6th twill cam, the angle γ ' of described the 6th keyway longitudinal centre line and axis hole horizontal center line is-30 °, the equal correspondence of described each twill cam lower position is provided with a pedal, and described each pedal all is connected with the bottom of a brown frame.
2. twill rotary hose braiding machine according to claim 1 is characterized in that: the gearratio of described gear wheel and pinion is 3: 1.
CN2010205348102U 2010-09-16 2010-09-16 Twill rotary hose braiding machine Expired - Fee Related CN201817649U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN2010205348102U CN201817649U (en) 2010-09-16 2010-09-16 Twill rotary hose braiding machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN2010205348102U CN201817649U (en) 2010-09-16 2010-09-16 Twill rotary hose braiding machine

Publications (1)

Publication Number Publication Date
CN201817649U true CN201817649U (en) 2011-05-04

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN2010205348102U Expired - Fee Related CN201817649U (en) 2010-09-16 2010-09-16 Twill rotary hose braiding machine

Country Status (1)

Country Link
CN (1) CN201817649U (en)

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20110504

Termination date: 20150916

EXPY Termination of patent right or utility model