Monday, 23 December 2013

Spinning standards for mill planning

TM values for various staples:

If the staple length of fibre is 7/8” than TM value would be 4.75 and if staple length increases by 1/16” than TM value goes down by 0.1.

Machine its draft, doubling and waste%
Machine
Draft
Doubling
Waste%
Blow room
According to the count to be spun
Card
90-120
According to the count and between 3.5-5.5%
Draw frame
6-8
6-8
0.5
Lap former
1.2-1.7
16-24
0.5
Super lap former
2-5
24-60
0.5
Sliver lap
1.3-1.7
16-24
0.5
Ribbon lap
6
6
0.5
Comber
Old 40-70
New 40-90
6
4
<6 scratch comb
6-10 semi comb
10-18 regular comb
18-25 double comb
Simplex
8-12
If required 2
0.5
Slubber
3-5
0.5
Inter
4-6
0.5
Roving
5-8
If required 2
0.5
Ring frame
Conv.
10-20
2
Modern
20-50
2
Rotor
Conv.
100-150
2-3
Modern
100-250
2-3
Winding
1
M/c and its production capacity in terms of speed:

1. Blow room:

Production capacity in terms of speedEfficiency %
With chut feed system= 300-500 Kg90
With 2 scutcher per blow room line and lap roll dia. 10” and rpm 7(+/-)1. The production varies from 180-240 Kg/hr/line90

2. Card:

Production capacity in terms of speed
TypeDoffer rpmEfficiency
Conv.5-1590-92%
SHP10-2090-92%
HP20-4090-92%
VHP40-12090-92%

3. Draw frame:

Production capacity in terms of speed
TypeEfficiencyNo of deliveryMpm
Conv.70-75%420-30
SHP70-75%3200
HP70-75%2250-500
VHP70-75%1750-1000

4. Lap former and super lap former:

Delivery speed-50-70 mpm
Efficiency-70-75%

5. Comber:

Feed per nip- 3.5 to 7mm
TypeNeps/minNo of headsNo of deliveryEfficiency
Conv.60-706190
HP15-2258290
VHPUpto 4008290

6. Speed frame:

TypeSpindle speedNo of spindlesEfficiency
Slubber500-5507285
Inter55-60013885
Roving600-100016890
Simplex1200-150013285

7. Ring frame:

Ring diaCountSpindle rpmEfficiency
50<201200090
4520-401350090
4240-601450090
4260-801550090
38>801650090
TM values for speed frame
machineStaple length
7/8”1”1 (1/4)”1(1/2)”
Slubber1.210.950.7-0.8
Inter/simplex1.21.10.950.7-0.8
Roving-1.210.8-.9
The value for PET and VR for length of sliver and devices 2 or 3 is 0.6

8. Winding machine specification:

Delivery rate 1000-2000 mpm
Efficiency- 90%
No. Of spindle- 60
Maintenance allounce
machine% maintenance allounce
Blow room-
Card10% of total no of cards
DF
LF
Comber
Simplex
RF2% on number of spindle
Rotor-do-

9. Rotor specification:

Rotor rpm 80000-100000 rpm
Efficiency- 90%

Quality requirements of Warp and Weft in weaving

TO CARRY OUT WEAVING MOST PROFITABLE, THE AIM SHOULD BE:-
- For maximum production (per loom and per operative).
- For best quality.
- To achieve this quality of warp and weft should be good. Poor quality of warp and weft causes frequent breakages. So loom has to be stopped frequently which badly affects productivity. Poor quality of warp and weft can lead to production of fabric with inferior quality. SO FOR THE BEST RESULT IN WEAVING , THE BEST QUALITY OF WARP AND WEFT IS THE MUST.
 WARP:-
1. To produce fabric of uniform quality, the tension of warp threads across the width should be same i.e if there are 500 ends, tension of all of them should be same. Similarly the tension of warp sheet as it is unwound from weaver’s beam should also be same.
2. The end should be free from any place that can cause breakage during weaving or can give bad appearance to the cloth. E.g.
(a)A weak place can cause breakage during weaving.
(b)A thick place can cause breakage and give bad appearance.
(c)A thin place can cause bad appearance. Particularly thinner place continuing over a long distance, say 1 or 2m will give bad appearance, as in that portion a fine crack like appearance may be seen.
3. During weaving warp threads are kept under considerable tension and are subjected to the abrasive action of the healds, other moving parts and also of the neighbouring threads of warp. The warp threads should be strong enough to resist these actions without breaking.
WEFT
The weft is supplied to weaving by using any of the following,
(a) For shuttle looms weft is wound on pirns. The pirn fits in to a shuttle. The shuttle is projected into the shed. So supply of weft is in the form of pirn wound with weft.
(b) For shuttle looms fitted with “UNFIL” loom winder, pirn winding is done by a special mechanism on loom itself. So supply of weft is in form of cones or cheese.
(c) For looms in which insertion of weft is not by shuttle carrying pirn are called shuttle-less looms. In these looms (generally) weft insertion takes place from one side of the loom. The weft is withdrawn from the packages such as cones or cheeses and it is inserted into the shed by some carrier (gripper, rapier or air jet or water jet).
As Stated above pirn or cone or cheese can be the package of weft supply. Here also the unwinding tension should be as uniform as possible to produce the fabric of uniform quality and also any factor, such as slough off, entanglement etc., that can cause breakage of weft, should be taken care off. The weft thread should be free from weak places, thick places, thin places, etc., that can cause breakage or give bad appearance to the fabric

Technologies for the clothing industry

Synergies among makers of machinery, as well as systems and plants and the clothing industry aim both to the optimisation of the garment and to its suitability to be used according the customer’s demand.
As a consequence organisation of the production on one side, methods applied, machines, and component materials (from the fabric to the accessories) play a synergetic role which determines the product quality.
Organisation and information management, logistics, as well as specific hardware and software packages for CAD and CAM systems are representative of the high technological level offered by the Italian manufacturers

Receipt of goods:
At their reception, all pieces must be immediately provided with a bar code with the following information: fabric variant, colour variant, real fabric width, total length, net length after detection of flaw lengths, entry date into the warehouse.
Today also the clothing manufacturing companies need to have a range of equipment for printing labels and bar codes. These printers through a serial or parallel port can be connected to any system.

Fabric inspection and detection of faults:
Fabric quality control involves the control of a series of characteristics, such as dimensional stability, shade uniformity, colour stability at fusing and ironing temperatures, light and stain removal fastness, weft squareness, consistent tensile strength, wear resistance, resistance to seam sliding pressure. Finishing products must not hinder fusing, and must not cause fabric stripiness and creases; selvedge must be regular, not too loose, not too tight or too large.
To make these controls easier Italian inspection machine makers offer a series of options, suitable both for woven and knitted/elasticised fabrics. Programmable automatic winding machines are also offered for cutting optimisation.
An interesting development is a final control for measuring and controlling colour directly on any type of inspection table for any type of textile product. Thanks to an advanced system of colorimetric quality control an exact interpretation and evaluation of the readings is provided. Advantages include automatic calculation of tolerances, instrumental control of colour differences (center/selvedges, header/end), no need of tests for sample sets, and speeding up of the control process.

Piece transport from storehouse to spreading department:
A keen problem is “what to do” with the flaw lengths appearing during spreading. A solution is the CAD marking system, which is able to study and calculate the various possibilities for fault cutting-out, and the number of superimposed fabric layers needed after flaw removing. This information, together those concerning length of marking, number of layers for each single step, size, fabric/colour variant, is to be stored in the central computer for subsequent use not only by the spreader but also the robotised truck (which has to draw pieces from the warehouse), and the carousel for feeding individual piece to the spreader.
Many options of spreading equipment provide flexibility in fabric handling, and are available from Italian manufacturers, either with cradle or programmed loading of the rolls without the help of the chuck.
Special solutions are offered for tubular fabrics, big rolls up to 400 kg, home linen. A high tech solution is a two-roll spreader, which may be used to obtain the multilayer stack for laser cutting the car safety air bags. This technology can be also applied for simultaneous spreading of the three layers composing the tie material or to couple already during preading filling and fabric of windcheaters.
New fabric spreading technologies are becoming popular: these technologies are the natural answer to a more and more pressing market request, that is tailor made clothing. Customers who are no more satisfied of already made-up suits are increasing more and more; they require tailor made clothing with fabrics and sizes chosen by them. To satisfy these requirements, new completely automated lines are being planned for the motion of fabric rolls, spreading and cutting of predetermined length fabrics which will feed the systems for shape cutting. These lines, inserted in CIM systems, allow the making up of “tailor made” suits at low costs and in short time.

Pattern grading and marking:
For these two operations, in the sector of CAD for the clothing industry, a wide range of the most recent and known software packages has been developed enabling high operating speed thanks to personal computers of the latest generation. The system is composed of a workstation with digitizer table, where the identification of the pattern design is performed. The subsequent step is carried out on a workstation for the construction of the basic model and the marking. After completing these operations, the system is arranged for interfacing with automatic cutting.

Cutting systems and cutting machines:
For the cutting room various systems are offered so to meet the most diverse requirements not only of the medium and big clothing manufacturers, but also for small sized companies. The wide range of machines offered can handle the cutting of single-layer fabrics up to 15.5 cm stocked piles.

Sewing machines:
The sector of sewing machines shows continuous updating and improvement. The trend is towards the use of more and more flexible and automatic sewing units able to perform some sequential sewing operations. On the other hand there is still the need to manufacture low cost sewing machines for the developing countries. Since present day fashion needs lead more and more to continuous model changes, clothing manufacturers very often have to increase the number of machines, with consequent high investment. This problem finds a solution in adopting a flexible modular system putting together three basic units: a cylinder bed sewing machine, a cuttingsewing machine and a flat a flat bed unit that can be completed by a series of universal kit for loop stitch goods (used for underwear, corsetry and knitwear). Advantages claimed for this system consist in: a complete production system that carries out sewing operations with very high performance, possibility of modifying the initial configuration, adapting it to new production needs, possibility of technological updating without having to replace the machine, justifiable investment also in case of fashion changes. A machine with shortened cylinder bed on the left of the needles and differential feed is offered for top stitching of pre-existent seams. A new subclass unit for top stitching the seams on medium-heavy knitwear has been prepared for smoothly sew crossed seams with high thickness. It equipped with thread cutting device. Also launched a brand new unit for flat topstitched assembly seams with bartacking on light and medium outerwear in a single operation.
The automatic units adopting a multistitch method allow to reduce operation times by about 50/60%, reduce the operation steps and hence the dwelling time of the semifinished garment in the cutting room. A series of units carries out the flat and topstitched assembly seams in one single phase without interruption. They are equipped with two heads, the first one with horizontal needle bar for the assembly seams, the second one with vertical needle bar for topstitching. The sewing system adopts a new method for the introduction of the fabric into the automatic unit. In fact the two fabric edges to be assembled are presenting themselves in open state, with the right side turned towards the operator, making easier the coupling of striped and chequered fabrics. For attaching pockets on shirts, working clothes and pyjamas etc., machinery with flexible systems controlled by microchips that can fold pockets, sewing them, and pile the garments in an automatic cycle. These machines offer high productivity, constant quality and the possibility to programme various sewing patterns that can be adapted to the different pocket models. The wide range of models offered include high frequency “sewing” systems for synthetic fabrics, which fuse by means of an 800 W ultrasound generator and a vibrating ultrasound group. The fusion speed can programmed up to 50 m/min and is driven by means of a treadle.
Quilting:
Quilts are a popular home decoration element. Electronics broadens potential of quilting machines making them more versatile. An Italian company is engaged in the production of a series of models which mount a serious challenge to machine embroidery. The newest models of quilters, can operate at around 1,000 stitches/minute and are built with a quilting width up to 114 ins (290 cm). With three needle bars the patterning potential is immense. Giant rotating hooks with 700-mm bobbins are used in this machine which has
tack and jump mode. This is a means of still further creating more interesting surface effects.
Developments on these machines is aimed to a system of automatically cutting embroidery threads, and this will serve to conserve thread when a needles produces a discrete pattern and then needs to travel to a different position to perform its next task.

Embroidery:
The Schiffli embroidery machines are now offered with computer control. The design preparation for multihead embroidery machines is today a normal practice. Besides punching of patterns on graphic screens and advanced systems for data processing of machine programs, one can use laser discs containing 20,000 patterns each, and affording to  immediately write the embroidery design on the machine disc, so that production can start at once.

Knitwear linking:
The knitwear linking is carried out exclusively to sew full-fashioned knitted goods which are loaded onto pins so that the ribs of both webs perfectly match thus avoiding the risk of sliding.
Linking machines can be quipped with one or two needles and hook- or straight-shaped needles (different stitch formation obtained). Linking machines can have internal needle (the stitch is loaded from the plain side) or external needle (the stitch is loaded on the reverse side). The working speed can reach 1,500 stitches per minute; the quantity of needles per inch ranges from seven to sixteen; in special machines it can range from 2 to max 24 needles per inch. It’s also worth mentioning that some knitwear linking machines are equipped with microcomputer to synchronise all the speed values: adjusting sewing speed, prefeeding of rib borders, and positive drive pullers, which are controlled individually by conventional motors, in order to allow accurate alignment of the ribs.

Ironing and pressing:
This sector includes a great number of units that are used for different purposes, and sees the leadership of Italian makers.
There are automatic, pneumatic and rotary ironing presses for all pieces of clothing; ironing systems for intermediate and final ironing include pneumatic toppers for trousers ironing, steaming dummies, finishing cabinets, heated vacuum boards, and the blowironing units.
All ironing machines and systems are now equipped with electronic systems so that crucial parameters such as speed, temperature and pressure may be set. The safety systems installed have been further improved for a better safeguard of the staff operating on the machines.

Finishing:
The importance of finishing is becoming more and more crucial in the textile/clothing sector thanks also to the new “informal comfort” standard suggested by the fashion dictations in the last few years which started in the past with a new kind of treatment for jeans. Now the finished garment needs to be a “high-profile” piece of clothing not only from a purely technical point of view but also in terms of esthetical content, which must be in line with the visual, hand, and colour trends.
A wide and continuously evolving range of washers and tumblers especially studied for garment washing, dyeing and drying have been developed to allow many kinds of treatments such as bleaching and stone washing, and to obtain delavé and used look. Also worth remembering is the continuous evolution of drum type washing machines and the driers, available in a vast range of models specifically designed for washing, dyeing and drying operations on garments.

Folding and packaging:
At the end of the production line, garments are arranged with reference tags, put into a bag and packed according to the forwarding specifications. These operations are carried out by means of folding and packing machines (for shirts, home linen, and underwear the complete process of folding and packing is carried out automatically in only one operation). A series of other systems are used to pile-up, pack, wrap-up and tie-up the garments.

Double-layer fabrics produced on the face to face principle

Face-to-face weaving represents an alternative method of manufacture of the cut warp fabrics in which two fabrics are woven simultaneously and the pile is produced without the aid of wires. Two separate ground fabrics with a space between them, each with its own warp and weft, are woven on the unstitched double fabric principle, while the pile warp threads interlace alternately with the picks of both fabrics and thus are common to both. The distance between the ground fabrics is regulated according to the required length of pile and as the textures pass forward the pile threads extending between them are cut by means of a transversely reciprocating knife during the weaving process. Upper fabric is thus formed the lower fabric with the pile facing up, and the upper fabric with a similar pile facing down. The fabrics pass in contact with separate take-up rollers and are wound on two fabrics. Fig.1 illustrates double-layer fabrics produced on the face-to-face principle
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Fig. 1: Double-layer fabrics produced on the face-to-face principle

TooLs Used in GARMENT Construction

Besides a sewing machine in good condition, well selected sewing equipment and pressing equipment are essential for making garments of good quality and appearance. Sewing box / kit: First and foremost, one should have a box or basket with compartments for keeping the things needed for sewing.

SEWING AND EMBROIDERY TOOLS:

Hand Sewing Needles: They are found in sizes from the very fine 9 to the heavy 18. The best quality needles are made of hand ground steel. For hand sewing medium length needles with a short oval eye is selected. Crewel needles designed for embroidery work have a long oval eye.
Sewing Machine Needles:They are found in sizes from the fine 9 to the heavy 18. The needles are made to fit the specific make and model of each sewing machine. The needle size should conform to the weight, thickness, and kind of fabric.
Sewing thread: With the wide and ever increasing range of fabrics available in the market, it is important to know the right sewing thread for the various types of fabrics. The right kind of thread is important in sewing as both the thread and the garment should share the same characteristics, as they have to be laundered and ironed together, they should shrink and stretch together.
Pins: These come in different sizes for use in different fabrics. The right choice of pins is most essential for good workmanship, speed, and convenience in sewing. Use silk or stainless steel pins. The ball point pins are useful for fine knits. The other types of pins are dressmaker pin (a pin of medium diameter but quite suitable for most sewing needs), and silk (a very slender pin with a needle point to be used on delicate fabrics).
Thimbles: These are necessary for efficient and accurate hand sewing. A metal thimble should fit snugly on the middle finger of the needle holding hand. There are two types of thimbles: an open-ended thimble, preferred by tailors, and the more common closed-ended thimble, called the dressmakers thimble (Fig.2a).
image
Embroidery Frame: This is used for keeping the fabric stretched while the work is being carried out.
Embroidery Threads: These are available in a variety of colours in six stranded skeins. One can use two or three strands at a time.
Stiletto: This is a sharp pointed instrument for punching holes in material. It is used for forming holes in material. It is used for forming eyelets in belts and for embroidery work.
Bodkin: This is a flat needle with a blunt end and a large eye for threading elastic and tape
CUTTING TOOLS
The following types of shears and scissors are made for both right-handed and left- handed cutting. All cutting tools must be kept sharp, clean, and grease-free for accurate cuts.
Bent-Handle Shears: They are 8 to 10 inches long (Fig. 2b). They are used for cutting all types of fabrics. Shears differ from scissors in that they have one small ring handle for the thumb and a large ring handle for the second, third and fourth fingers.
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Scissors: They are 5 to 6 inches long. They are used for light cutting, trimming, clipping corners, and cutting curves. These have round handles for both the blades. They are designed for snipping threads and trimming seams. They should be held so that the wider blade is above the narrower blade.
image
Pinking Shears: They are 9 to 10 inches long (Fig. 2d). They produce a notched cutting line (zig zag) which gives a neat appearance to the inside of garments.
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Button Hole Scissors: These can be adjusted so as to cut button holes in any size required (Fig. 2e). They are useful if one needs to make many button holes
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Electric Scissors These are used in most sample rooms. They are ideal for cutting silk, nylon, and soft, hard-to-cut fabric (Fig. 2f).
image
MEASURING TOOLS
Measuring Tape: It has a smooth surface that is clearly marked with increments of inches and centimeters on both sides. It is usually about ½ inch to ¼ inch wide and 60 inches long, and has 1/8 divisions (Fig. 2g). At one end of the tape is attached a brass strip about 3 inches long and at the other end, a small brass covering.
image
Rulers: They are used in sample room which are either clear plastic or metal. It is useful to have 2 rulers: one is 1 inch wide and 6 inches long, and the second is 2 inches wide and 18 inches long.
Yardstick or meter scale: It is available in 36 inches or 45 inches in length in wood or metal. They are useful for checking grain lines when fixing pattern pieces on material and for drawing long seam lines on fabric or paper.
L Square: It is an L-shaped metal ruler; the long arm measures 24 inches, the short arm 14 inches. This has a perfect right angle corner and is used to draw lines at right angles at the time of drafting. It is helpful during the process of “straightening fabric” to check whether the corners of the fabric have got the right-angled structure
image
Skirt Marker:
They mark hem length accurately. Markers are adjustable and are available for use with chalk powder or pins. A six-inch gauge can be made of cardboard or bought from a shop (Fig. 2i). It is useful as a measuring guide for marking width of hems, pleats, seam allowances etc. accurately. Notches are provided at regular intervals along the gauge. One edge of the notch is at right angles to the straight. While measuring or marking, use the straight edge of the notch as a guide.
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MARKING TOOLS
Tracing Wheel: It is used to transfer the pattern markings-including seams, darts and pocket placements to the wrong side of the fabric with the aid of tracing paper. The small serrated edge tracing wheel is appropriate for most fabrics (Fig.2j). A smooth edge tracing wheel is used on fine or knit fabrics to avoid snagging the yarns.
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Tracing Paper: It is a wax-coated paper used with the tracing wheel to transfer pattern markings to the wrong side of the fabric
Tailors Chalk: It is made of wax or stone chalk that is used to transfer markings to fabric when white carbon is not visible. Stone chalk is also available in pencil form. This is available in assorted colours and in rectangular or triangular shapes.
PRESSING TOOLS
Iron: This keep an automatic iron handy for pressing fabric before cutting, during construction and after the garment is completed.
Steam Iron: It has an adjustable temperature control, and is equipped with a thumb press for automatic steam. Distilled water is heated, and the resulting steam can be released with the thumb press while pressing.
Ironing Board:  It is used for hand pressing which is padded and of convenient height. One may use an ordinary table covered with sheet and blanket for this purpose.
Sleeve Board: This is a well-padded miniature of a full-sized ironing board and is used to press sleeves and hard-to-reach small details (Fig. 2k). It has a tapered end on one side and a round end on the other side.
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Press cloth: Fabric used for press cloth should be colourfast and should be washed or boiled to remove all sizing.
MISCELLANEOUS TOOLS
Awl: It is a small, sharp-pointed tool used to punch small, round holes for marking on paper or leathers.
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Seam Ripper: It is used to remove basting stitches and to rip out unnecessary machine stitches (Fig. 2m).
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Loop Turner: Is a long wire with a latch hook, used for turning bias strips to make spaghetti straps and narrow belts.
Dress Form: This is a padded form of body and may be made of wood, cardboard, plaster of paris, reinforced plastic. This is a necessity in all sample rooms for designing and fittings.
Paper: It is for pattern making purposes and fabric cutting. This soft paper comes in rolls of plain paper or paper with blue dots or other markings at set intervals.
Three-Way Mirror: It is used for model fittings.
Orange-stick: This is a long tool whose point can be inserted into the corners of collars, seams, etc., so as to give a neat pointed appearance.
Cutting board or table: This is a table of convenient height and size is a definite aid in cutting and constructing garments. 5’ x 3’ is a desirable size with 2″ x 6″ height.

Summary:A variety of tools and equipment are used for performing various functions such as sewing, cutting, measuring, pressing, etc. A knowledge about these tools will help us to choose the right tool to complete a particular task in the process of garment construction.

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