Experiment name: Study on Jacquard shedding mechanism.
Introduction:
In weaving if we want to make any design in our fabric we have to separate the warp yarn according to our weave plan. In tappet or dobby shedding we have some limitations in shedding for a critical design. But in jacquard shedding it can be done easily. Jacquard is a shedding device placed on the top of the loom to produce large no of patterns by using a very large no of warp threads separately by means of harness cords, hooks and needles. The figuring capacity of a jacquard is 1800+. It means it can produce design with more than 1800 warp threads by controlling them individually, which is far beyond the capacity of a dobby or tappet loom.
Main parts:
1. Pattern chain.
2. Motor.
3. Pattern cylinder.
4. Needle.
5. Knife.
6. Harness cord.
7. Neck cord. 8.Comber board.
9. Top board
10. Hook.
11. Grid bar
12.Dead weight.
13.Spring board.
14.Needle board.
Shedding mechanism:
For shedding mechanism here punched card are used which is made according to design. One pattern card is used for one pick. With these pattern cards pattern chain is made which is placed on the pattern cylinder. On each pick pattern cylinder rotates 1/4th of the full rotation in clockwise direction. At the same time it oscillates to and fro forming an arc.
With every 1/4th rotation a new card comes front of the cylinder in the hook side and for the two and fro movement the needles enter inside the holes of the punch card. This selection of entrance inside the punches of the needles is actually done according to design.
If a needle enters in the hole of the card the needle remains stationary in its position. So the needle crank also remains stationary in its position. So for the upward movement of the knife the hooks also goes upward along with the warp threads to form the top line.
But if needle gets no perforation to enter, the hook is pushed to the right and as result the needle crank takes away the hook along with it. So when the corresponding knife goes upward it cannot lift the hook with it. Thus the warp ends of those hook remains fixed in its position and form the bottom line.
After certain time the knife releases two hooks which is lifted to form the top line and due to wrap tension and dead weight the heald eye comes down. Its downward movement is controlled by grid bar. Each needle has a spring push at its right and that spring pushes back the needle when the next card comes.
Conclusion:
By this experiment we learned about the jacquard shedding and how it works. It is the finest of all machines for making the designed woven fabrics that have been invented and far superior in capacity to a dobby or tappet loom.
Experiment name: Study on Jacquard shedding mechanism.
Introduction:
In weaving if we want to make any design in our fabric we have to separate the warp yarn according to our weave plan. In tappet or dobby shedding we have some limitations in shedding for a critical design. But in jacquard shedding it can be done easily. Jacquard is a shedding device placed on the top of the loom to produce large no of patterns by using a very large no of warp threads separately by means of harness cords, hooks and needles. The figuring capacity of a jacquard is 1800+. It means it can produce design with more than 1800 warp threads by controlling them individually, which is far beyond the capacity of a dobby or tappet loom.
Main parts:
1. Pattern chain.
2. Motor.
3. Pattern cylinder.
4. Needle.
5. Knife.
6. Harness cord.
7. Neck cord. 8.Comber board.
9. Top board
10. Hook.
11. Grid bar
12.Dead weight.
13.Spring board.
14.Needle board.
Shedding mechanism:
For shedding mechanism here punched card are used which is made according to design. One pattern card is used for one pick. With these pattern cards pattern chain is made which is placed on the pattern cylinder. On each pick pattern cylinder rotates 1/4th of the full rotation in clockwise direction. At the same time it oscillates to and fro forming an arc.
With every 1/4th rotation a new card comes front of the cylinder in the hook side and for the two and fro movement the needles enter inside the holes of the punch card. This selection of entrance inside the punches of the needles is actually done according to design.
If a needle enters in the hole of the card the needle remains stationary in its position. So the needle crank also remains stationary in its position. So for the upward movement of the knife the hooks also goes upward along with the warp threads to form the top line.
But if needle gets no perforation to enter, the hook is pushed to the right and as result the needle crank takes away the hook along with it. So when the corresponding knife goes upward it cannot lift the hook with it. Thus the warp ends of those hook remains fixed in its position and form the bottom line.
After certain time the knife releases two hooks which is lifted to form the top line and due to wrap tension and dead weight the heald eye comes down. Its downward movement is controlled by grid bar. Each needle has a spring push at its right and that spring pushes back the needle when the next card comes.
Conclusion:
By this experiment we learned about the jacquard shedding and how it works. It is the finest of all machines for making the designed woven fabrics that have been invented and far superior in capacity to a dobby or tappet loom.
Experiment name: Study on Tappet shedding mechanism.
Objectives:
1. To know about the different parts formed this shedding.
2. To learn the mechanism of tappet shedding.
Scope of tappet shedding:
Tappets are generally used for heald shedding. Tappet, cam and wipers are names given indiscriminately to those irregular pieces of mechanism to which a rotary motion is given for the purpose of producing, by sliding contact, reciprocating motion in rods and levers. When the rod is to receive a series of lifts, with intervals of rest, the piece is generally called tappet.
Types of tappet:
Various kinds of shedding tappets are used in industries.
They are of two main types:
1. Negative shedding tappet
2. Positive shedding tappet
Main parts:
1. Motor
2. Motor pulley
3. M/C pulley
4. Crank shaft
5. Crank shaft gear
6. Bottom shaft gear
7. Bottom shaft
8. Tappet
9. Connecting rod
10. Heald shaft
11. Top arm
Position of fixation of shedding tappet:
The shedding tappets are may be fixed in different parts of a loom.
Namely-
- Under and over the centre of heald shaft.
- Under and over one end of heald shaft.
- Out side the loom framing.
Driving of shedding tappet:
In our loom tappet gets motion in the following way. At first machine pulley gets drive by belt from motor pulley. Then machine pulley, which is directly joined with the crank shaft, gives motion to bottom shaft. This crank shaft gives motion to bottom shaft via gearing. Two tappets are joined with the bottom shaft. So when bottom shaft moves then the tappets also rotate. When it gets contact with tradle bowl it lifts the tradle levers and the heald shafts are lifted by tradle levers via links. As this is a negative shedding tappet the heald shafts are lowered by their own weight.
Conclusion:
Tappet shedding mechanism is important for driving loom. It is also important for fabric design. By this experiment I learn this mechanism. This would be very helpful in my future life.
Experiment name: Study on Tappet shedding mechanism.
Objectives:
1. To know about the different parts formed this shedding.
2. To learn the mechanism of tappet shedding.
Scope of tappet shedding:
Tappets are generally used for heald shedding. Tappet, cam and wipers are names given indiscriminately to those irregular pieces of mechanism to which a rotary motion is given for the purpose of producing, by sliding contact, reciprocating motion in rods and levers. When the rod is to receive a series of lifts, with intervals of rest, the piece is generally called tappet.
Types of tappet:
Various kinds of shedding tappets are used in industries.
They are of two main types:
1. Negative shedding tappet
2. Positive shedding tappet
Main parts:
1. Motor
2. Motor pulley
3. M/C pulley
4. Crank shaft
5. Crank shaft gear
6. Bottom shaft gear
7. Bottom shaft
8. Tappet
9. Connecting rod
10. Heald shaft
11. Top arm
Position of fixation of shedding tappet:
The shedding tappets are may be fixed in different parts of a loom.
Namely-
- Under and over the centre of heald shaft.
- Under and over one end of heald shaft.
- Out side the loom framing.
Driving of shedding tappet:
In our loom tappet gets motion in the following way. At first machine pulley gets drive by belt from motor pulley. Then machine pulley, which is directly joined with the crank shaft, gives motion to bottom shaft. This crank shaft gives motion to bottom shaft via gearing. Two tappets are joined with the bottom shaft. So when bottom shaft moves then the tappets also rotate. When it gets contact with tradle bowl it lifts the tradle levers and the heald shafts are lifted by tradle levers via links. As this is a negative shedding tappet the heald shafts are lowered by their own weight.
Conclusion:
Tappet shedding mechanism is important for driving loom. It is also important for fabric design. By this experiment I learn this mechanism. This would be very helpful in my future life.
Experiment name: Study on Dobby shedding mechanism.
Objectives:
1. To know about the different parts formed this shedding.
2. To learn the mechanism of dobby shedding.
Introduction:
Dobby is a shedding mechanism placed on the top of the loom in order to produce figured patterns by using large number of healds than the capacity of a tappet. Dobby is also known as a “witch or “wizard”.
Scope of a dobby:
The scope of dobby is limited between a tappet and a jacquard. The number of shafts that can be actuated by a dobby varies between 6 and 40. Theoretically dobby can control 48 shafts (maximum). However, practically it can control 36 shafts in case of wool and allied fibres. Again, for cotton and allied fibers, it can control maximum 24 heald shafts. In these case healds are operated by jacks and levers.
Main parts:
1.Bottom shaft
2.L-lever
3.Upright shaft
4.T-lever
5.Upper draw knife
6.Lower draw knife 7.Upper hook
8.Lower hook
9.S-lever
10.Bulk lever
11.Thumb lever
12.Jack lever
13.Healdshaft
14.Returning spring
15.Motor
16.Crank shaft
17.Pattern cylinder
18.Pattern chain
Dobby shedding mechanism:
Here a climax dobby is described to explain the dobby shedding mechanism. Climax dobby is a double lift double jack-lever negative dobby. Here two jack levers are operated by a single bulk lever. They are joined with the bulk lever by a timber lever and a link. The double lever is fulcrum med at a point and is connected with S-lever.
The S-lever controls two hooks, one upper hook and one lower hook. The hooks are controlled by feelers. One hook is controlled by hooked feeler and other by a connecting needle. The two hooks control two knives that are joined with a T-lever.
The T-lever is fulcrum med and is controlled by an upright shaft and an L-lever. They get motion from motor and machine pulley. When the feeler comes in contact with a peg and when it is not in the contact it goes down.
Conclusion:
Dobby loom is important for its use. We can use 8-12 heald frame in tappet loom but if we want to use more heald frame for more decorative design then we should use dobby loom. This practical helps me to know about the dobby loom and its mechanism. I think this will help me in my future life.
Experiment name: Study on Dobby shedding mechanism.
Objectives:
1. To know about the different parts formed this shedding.
2. To learn the mechanism of dobby shedding.
Introduction:
Dobby is a shedding mechanism placed on the top of the loom in order to produce figured patterns by using large number of healds than the capacity of a tappet. Dobby is also known as a “witch or “wizard”.
Scope of a dobby:
The scope of dobby is limited between a tappet and a jacquard. The number of shafts that can be actuated by a dobby varies between 6 and 40. Theoretically dobby can control 48 shafts (maximum). However, practically it can control 36 shafts in case of wool and allied fibres. Again, for cotton and allied fibers, it can control maximum 24 heald shafts. In these case healds are operated by jacks and levers.
Main parts:
1.Bottom shaft
2.L-lever
3.Upright shaft
4.T-lever
5.Upper draw knife
6.Lower draw knife 7.Upper hook
8.Lower hook
9.S-lever
10.Bulk lever
11.Thumb lever
12.Jack lever
13.Healdshaft
14.Returning spring
15.Motor
16.Crank shaft
17.Pattern cylinder
18.Pattern chain
Dobby shedding mechanism:
Here a climax dobby is described to explain the dobby shedding mechanism. Climax dobby is a double lift double jack-lever negative dobby. Here two jack levers are operated by a single bulk lever. They are joined with the bulk lever by a timber lever and a link. The double lever is fulcrum med at a point and is connected with S-lever.
The S-lever controls two hooks, one upper hook and one lower hook. The hooks are controlled by feelers. One hook is controlled by hooked feeler and other by a connecting needle. The two hooks control two knives that are joined with a T-lever.
The T-lever is fulcrum med and is controlled by an upright shaft and an L-lever. They get motion from motor and machine pulley. When the feeler comes in contact with a peg and when it is not in the contact it goes down.
Conclusion:
Dobby loom is important for its use. We can use 8-12 heald frame in tappet loom but if we want to use more heald frame for more decorative design then we should use dobby loom. This practical helps me to know about the dobby loom and its mechanism. I think this will help me in my future life.