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Showing posts with label FlowChart. Show all posts
Showing posts with label FlowChart. Show all posts

Wednesday, 27 December 2023

Process flow chart of Garments Merchandising

 

Introduction: Merchandising means to promote and sell a product to the potential customer/buyer. The person, who do this job is called merchandiser. Since the sales process often starts with the eyes, merchandising typically involves presenting products in a visually favorable light, to try and encourage purchases.

But in textile sector merchandising is a process which starts from buyer developing to price submitting, order confirming and then execute the order to ship goods in time with quality is called garments/apparel merchandising. It is the garments whole selling business with foreign buyer or countries.

Job responsibilities of a merchandiser: A merchandiser do some specific work. These are;

  1.  Fabric requirements calculations: Merchandisers calculated total fabric consumption for a garment.
  2.  Accessories requirements calculations: They calculated how many types of accessories and quantity required for a garment.
  3.  Sourcing of fabric: They collected buyer required fabric from different countries and fabric manufacturer.
  4. Sourcing of accessories: They collected buyer required accessories from recommended company.
  5. Costing and pricing: The most important work of a merchandiser is costing and pricing. Here merchandiser negotiate a reasonable price with buyer including all types of cost to produce this garments and profit.
  6. Communication to buyers: A merchandiser need to communicate with buyer from confirming the order to final shipment.

Skilled required for a successful merchandiser: Merchandising is the most valuable and attractive job in recent times for a textile engineer. There are so many foreign and local buying house who offers this type of jobs. Some industries also offer merchandising jobs. But there need some skilled for become a successful merchandiser;

Ø  Good command in English.
Ø  Good knowledge in fiber, yarn, fabrics, dying, printing, colorfastness etc.
Ø  Clear knowledge about quality and quantity production of garments.
Ø  Should be hard worker.
Ø  Should be responsible for this job.
Ø  Must have knowledge in computer literacy, specially in E-mail, Microsoft Office etc.
Ø  Should have ability to improve public relation.
Ø  Should have well behaved personality.
Ø  Should have well knowledge on calculation.

Flow chart or Sequence of merchandising:

Receive order from Buyer
(Sketch or picture, measurement chart, material details)
Consumption
Costing
Negotiation with Buyer
Order receiving
L/C receiving
Back to back L/C opening
Sample developing and Approving
Approval for bulk production
Related work to production planning
Start bulk production
Line inspection
Final inspection by Buyer
Shipment to Buyer



Friday, 15 December 2023

Flow Chart of Jute Spinning

 

Flow Chart of Jute Spinning

Selection of jute for a batch 

Piecing up

Softening or Lubricating 

Conditioning or Piling 

Breaker Card 

Finisher Card 


First Drawing Frame

Second Drawing Frame

Third or Finisher Drawing Frame

Jute spinning

Winding

Beaming

Weaving

Dumping

Calendering

Lapping

Cutting

Hemming

Herackele sewing

Bailing

Shipping




Jute Yarn

Thursday, 14 December 2023

Flow Chart of spinning (Combed Yarn)

 

Flow Chart of spinning (Combed Yarn)

Flow Chart of spinning (Combed Yarn) 


Blow Room
Carding Machine
Draw Frame
Lap former
Comber
Simplex

Ring Frame


Wednesday, 13 December 2023

Flow Chart of Spinning (card yarn)

 

Flow Chart of Spinning (card yarn)


Collection of Fibre Bale
Blow Room
Carding Machine
Draw Frame
Lap former
Comber
Simplex
Ring Frame
Auto Coner

Yarn Package Shipping


Tuesday, 12 December 2023

Flow Chart of Rotor Spinning

 

Flow Chart of Rotor Spinning


Fiber Bale → Blow Room → Lap/Chute 
↓ 
Lap/Chute → Carding → Sliver (Carded) 
↓ 
Carded Sliver → 1st Drawing frame → Drawing Sliver 
↓ 
Drawing Sliver → 2nd Drawing frame → Drawing Sliver 
↓ 
Drawing Sliver → Rotor Spinning → Rotor Yarn 
↓ 
Winding 
↓ 
Reeling 
↓ 
Bundling 
↓ 
Shipping





Figure: Rotor Yarn

Monday, 11 December 2023

Flow Chart of Garment Washing

 

Flow Chart of Garment Washing




Garments from store house  ↓  Count  ↓  Quality check  ↓  Batch  ↓ Washing  ↓  Hydro extractor  ↓  Drying  ↓  Quality check  ↓  Packing  ↓  Delivery


Sunday, 10 December 2023

Flow Chart of Dyeing

 

Flow Chart of Dyeing



Grey Fabric Inspection
Sewing or Stitching
 ↓
Singeing
Desizing
Scouring
Bleaching
Mercerizing
Dyeing
Finishing
Final Inspection

Delivery


Saturday, 9 December 2023

Flow Chart of Marker Making

 

Flow Chart of Marker Making



To check notch or drill mark

Fabric width must be higher than marker width
↓ 
Fabric length must be higher than marker length

Matching of green line
↓ 
Check pattern size and dimension

Matching of check and stripe taking into consideration
↓ 
Considering garments production plan

Cutting table length consideration
↓ 
Pattern direction consideration



Wednesday, 6 December 2023

Flow Chart of Woven fabric Manufacturing

 

Flow Chart of Weaving


Yarn From Spinning

Doubling And Twisting

Winding

Creeling

Warping

Sizing
Drawing-In And Denting

Looming

Weaving (Interlace Warp and Weft Yarn)
Shipment



Figure: Weaving Machine

Process Flow Chart of Effluent Treatment Plant (ETP)

 

Process Flow Chart of Effluent Treatment Plant (ETP)

Collection Tank

Storage Tank

Mixing & Cooling

Neutralization

Chemical Coagulation

Biological Oxidation Tank

Sedimentation & Separation of Sludge

Sludge 
Thickener

Filtration

Discharge to Drain




Tuesday, 5 December 2023

Process Flow Chart of Enzyme Bleach Wash with Tinting

 Chart of Enzyme Bleach Wash with Tinting

Process Flow Chart of Enzyme Bleach Wash with Tinting

Process Flow Chart of Enzyme Bleach Wash with Tinting



Step 01: Desizing 

Water is added (400 Lt)

Garments are added

Machine started running

500 gm Soda Ash added

500 gm Caustic Soda added

200 gm Bio. D added

Steam to raise temp 60°C

Process time 25 minutes

Drop liquor

Wash down twice


Step 02: Enzyme Wash 

Water is added (400 Lt)

Machine started running

200 ml liquid, 400 gm powder type Enzyme added

150 ml Acetic Acid Added

200 gm Anti back added

10 Kg Peumic Stone added

Steam to raise temp 50°C

Process time 60 minutes

Drop liquor


Step 03: Bleaching 

Water is added (400 Lt)

Machine started running

4 Kg KCI (35% Cl2) added

500 gm Soda Ash added

Steam to raise temp 60°C

Process time 10 minutes

Drop liquor


Step 04: Neutral Wash 

Water is added (400 Lt)

Machine started running

500 gm Hypo sulphide added

Steam to raise temp 45°C

Process time 10 minutes

Drop liquor


Step 05: Tinting

Water is added (400 Lt)

Machine started running

0.02% Direct Brown GTL & 0.01% Direct Black V-200 added

4 Kg Salt added

Steam to raise temp 70°C

Process time 20 minutes

Check Shade

Drop the liquor


Step 06: Drying

Garments are then taken out

Hydro extracted

Send to a dryer for drying of garments.


Saturday, 2 December 2023

Flow Chart of Garments Manufacturing

 Garments Manufacturing:
The Ready-Made Garments (RMG) industry is the largest exporting industry in Bangladesh. It contributes about 80% of total export.
The manufacturing process of garment product, especially ready-made garments (RMG) sector is now versatile process both manual and technical points of views. Now the manufacturing process of garments are changed according to the design, order quantity and buyer requirement. 

Garments Manufacturing Flow Chart: 
Garments manufacturing process is classified into four section. These four steps are,


1. Sample Section
 2.Cutting Section
 3.Sewing Section 
4. Finishing Section 

Here, the general flow chart for a common garments order manufacturing is given below:

Order Confirm


Pattern Making


1st Sample Making


Sample Fabric and Accessories Order


Pattern Making with Buyer Comments


Counter Sample Make


Bulk Fabric and Accessories Order


Final Pattern Making


Pattern Grading


Marker Making


Full Fabric and Accessories Receive


Fabric Lying


Cutting


Numbering


Bundling

Sewing


Line Inspection


Finishing Room Checking / Inspection


Measurement Checking


Folding


Packing


Carton


Final Inspection


Ex-factory


Shipment





Thursday, 9 November 2023

Flow Chart of Printing

 

Flow Chart of Printing 


Greycloth 
↓ 
Brushing and Shearing 
↓ 
Singeing 

Desizing 

Scouring 

Bleaching

Mercerizing 

Stentering

Washing 

Drying

Winding/Beaming 

Printing 

Finishing




Figure: Printing

Monday, 30 October 2023

Carding Process

 

Carding Process


Introduction:
Carding is the most important process in spinning. It contributes a lot to the yarn quality. The following process parameters and specifications are to be selected properly to produce a good quality yarn with a lower manufacturing cost cylinder wire(wire angle, height, thickness and population) flat tops specification licker-in wire specification doffer wire specification feed weight draft between feed roller and doffer cylinder grinding doffer grinding flat tops grinding cylinder, flat tops, doffer wire life Licker-in wire life Cylinder speed flat speed Licker-in speed setting between cylinder and flat tops setting between licker-in and feed plate setting between lickerin and under casing elements like, mote knife, combing segment etc. setting between cylinder and doffer setting between cylinder and back stationary flats setting between cylinder and front stationary flats setting between cylinder and cylinder under casing.
Setting of Carding Machine
Setting of Carding Machine


Fig: Carding Machine (Side View)


Cylinder Wire and Cylinder Speed:
Cylinder wire selection is very important, it depends upon cylinder speed, the raw material to be processed and the production rate. The following characteristics of cylinder wire should be considered.
  • Wire angle
  • Tooth depth
  • Wire population
  • Rib thickness
  • Tooth profile
  • Tooth pitch
  • Tooth point
  • Overall wire height

Wire front angle depends on mainly cylinder speed and coefficient of friction of raw material. Higher the cylinder speed, lower the angle for a given fibre. The cylinder speed in turn depends upon the production rate. Higher production means more working space for the fibre is required. It is the wire that keeps the fibre under its influence during carding operation. Therefore the space within the wire should also be more for higher production. Higher cylinder speed also increases the space for the fibre. Therefore higher cylinder speed is required for higher production. In the case of high production carding machines, the cylinder surface is very much higher, therefore even with higher number of fibres fed to the cylinder, the cylinder is renewing the carding surface at a faster rate.

Higher the cylinder speed, higher the centrifugal force created by the cylinder, this tries to eject the fibre from the cylinder, along with the trash. It is the cylinder wire's front angle which overcomes the effect of this force. Low front angle with too low cylinder speed and with high frictional force will result in bad quality, because the fibre transfers from cylinder to doffer will be less. Hence recycling of fibres will take place, which result in more neps and entanglements. The new profile with less free blade avoids loading of the cylinder with fibre and/or trash. This helps in keeping the fibres at the tip of the tooth. The movement of the fibres towards the tip of the tooth coupled with centrifugal action demands an acute front angle to hold the fibre in place during carding. Lack of stiffness associated with fine and/or long fibres necessitates more control during the carding process. This control is obtained by selecting the tooth pitch, which gives the correct ratio of the number of teeth to the fibre length. Tooth pitch reduction is therefore required for exceptionally short fibres and those lack stiffness. Number of points across the carding machine is decided by the rib width. It is selected based on the production rate and fibre dimensions. Finer the fibre, finer the rib width. The trend is to finer rib width for higher production.

The population of a wire is the product of the rib thickness and tooth pitch. The general rule is higher populations for higher production rates, but it depends upon the application. Sharp tooth points penetrate the fibre more easily and help to intensify the carding action. Cut-to-point wires are sharp and they have no land at all. The effective working depth of a cylinder wire tooth for cotton is approximately 0.2mm and for synthetic materials approx.0.4mm. Manmade fibres require more space in their cylinder wire than doe's cotton. More tooth depth allows the fibre to recycled, resulting in damaged fibres and neps. If tooth depth is insufficient, there will be loss of fibre control. This will result in even greater nep generation. Looking into the above details, the following specifications can be used as a guideline.

DOFFER, LICKER-IN AND FLAT TOPS:
The basic function of doffer is to strip the fibres from Cylinder. Please remember that the action between cylinder and doffer is carding action (or combing action or point to point action).
The doffer wire's front angle plays a very important role in releasing the fibre from the cylinder. For most carding applications the optimum angle is 60 degrees.
Increased population over 400 ppsi does not give any advantage in the production of quality yarn. For smaller doffers, 5 mm doffer wire height helps in transferring the fibres from cylinder to doffer.
If the fibre holding capacity of the doffer wire is less due to fibre friction or due to very high doffer speed, it is better to use a doffer wire with striations. For high production carding itis always better to use doffer wire with striations.
Licker-in plays a major role in opening the fibre tufts. In general 85 degrees is used both for synthetic and medium and long cottons. For coarse and dirty cottons 80 degrees can be used.
Strength, hardness and sharpness are very important for Lickerin wire. Licker-in wires should never be ground. Thinner blades penetrate the fibres more efficiently and increase the wire life.
Higher number of rows per inch gives better results. Now up to 12 rows per inch is being used. This is always better compared to 8 rows per inch.
If the wire pitch is not sufficient, it can be compensated by increasing the licker-in speed. Higher licker-in speeds for fine and long cottons will rupture the fibres. Licker-in speed depends upon the fibre type and the production rate.
It is better to use a flat top with more than one population. The general combination is 280/450. This is suitable for both cotton and synthetics. Please remember that the rigidity of the fillets is different for cotton and synthetic. If cotton flat tops are used for synthetic processing, the load on the cylinder will be more, more heat will be produced and hence the probability of cylinder loading due to electrostatic charge will be high.
Instead of using Rigid type flat tops, it is better to use semirigid type flat tops while processing synthetic fibres.

SETTINGS:
The setting between cylinder and doffer is the closest setting in the card. This setting mainly depends upon the cylinder speed, hank of the delivered sliver and the type of wire. Cylinder speed up to 360, the setting should be 0.1mm. For cylinder speeds more than 450, the setting ranges from 0.125 to 0.15.

If the setting between cylinder and doffer is very close, the wires will get polished and this will affect the fibre transfer. If the setting is too wide, the fibres will not be transferred to doffer from the cylinder, hence cylinder will get loaded. While processing synthetic fibres cylinder loading will badly affect the yarn quality. Moreover, it is difficult to improve the wire condition if the loading is severe. \

The only solution would be to change the wire. Therefore enough care should be taken while processing synthetic fibres.

The most critical setting in a carding machine is between cylinder and flat tops. While processing cotton, it can be as close as 0.175 mm provided the mechanical accuracy of flat tops is good. Since most of the cards are with stationary flats at the licker-in side, the setting from the back to front for flats can be 0.25, 0.2.0.2, 0.2, 0.2mm.

Closer the setting between cylinder and flats, better the yarn quality. Neps are directly affected by this setting. Of course, very close setting increase the flat waste. For processing cotton the setting can be 0.25, 0.2, 0.2, 0.2, 0.2mm. For synthetic fibres it can be 0.3, 0.25, 0.25, 0.25, 0.25mm
Most of the cards are with 6 to 1 1 stationary flats at the licker-in side. This setting can start with 0.4 mm and end with 0.25mm.

The wire points can start with 140 ppsi and end with 320 ppsi. The work done by the first few stationary flats is very high; therefore the wear of these flats is also high. It would be better if the first 50% of the flats are changed after 100000 kgs of production and the rest after 150000 kgs of production.

These stationary flats open the material so that, the setting between cylinder and flats can be as close as possible.

The setting between feed plate and Licker-in depends upon the type of feed plate. Conventional feed plate setting is decided mainly by the feed weight and to some extent by the fibre length and type. 

With the latest feed plate and feed roller arrangements, the setting is decided mainly by the fibre length and to some extent by the feed weight.

Normally the setting between the feed plate and Lickr-in is around 0.45 to 0.7mm, depending upon the feed weight and fibre type.

The setting between Licker-in and the first mote knife is around 0.35 to 0.5 mm. This helps to remove the heavier trash particles and dust. Closer the setting, higher the wastage. The setting between 

Licker-in and combing segments is around 0.45 to 0.6. This helps to open the material.

Some cards have two mote knifes in the Licker-in under casing. The setting is around 0.4 to 0.5mm. 

This helps to remove the smaller trash and dust particles.

The setting between the cylinder and stationary flats at Doffer side helps to transfer the fibres to doffer by stripping the fibres to the top of the cylinder wire. This setting can be as close as 0.15mm. 

The number of wire points on stationary flats also plays a major role. It is normally around 300 to 400. For a high production application it can be as high as 600.

For cotton processing, the stationary flats are fixed with a knife attachment. The setting should be as close as possible, i.e. around 0.15mm. This helps to remove the trash particles of very small size.

The setting between cylinder and cylinder under casing should be as per the manufacturer's recommendation. The design of under casing is different for different manufacturers. This setting is very important, as wrong settings will affect the fibre transfer and can also create air turbulence.

SPEEDS:
Higher cylinder speed helps fibre transfer. Higher the production, higher should be the cylinder speed.

Higher cylinder speed improves carding action, thereby imperfections are reduced.

Higher Licker-in speed for coarse fibres and dirty cotton helps to remove the trash and improves, the yarn quality. For fine and long cottons, higher speed results in fibre rupture, therefore, flat waste and comber noil will be more.

Higher flat speed, improves yarn quality and at the same time increases the flat waste.

With the same flat speed, higher the carding production, lower the flat waste and vice-versa.

Very high tension drafts will affect carding U%. It is better to keep the draft between feed rollers to doffer around 75 to 95. The results are found better with these drafts.

WIRE MAINTENANCE:
For a modern cylinder wire of 2mm height, grinding with the normal grinding stone is not recommended. It is better to use TSG grinder to grind the wire every 2nd or 3rd month, so that the 
sharpness of the wire is always maintained.

TSG grinder does not grind the wire, therefore if the wire is worn out very badly the quality improvement using this grinding machine will be nil. Frequent grindings are recommended. If TSG grinder is not available, it is better not to grind 2mm wires.

The number of traverse should increase depending upon the life of the wire. The number of traverse for successive grindings should be like this 3, 5, 10, 17 etc. Anyway the best method is to confirm with the microscope. If the grinding is not sufficient, the number of traverse should be increased.

Doffer is still working with a concept of Land formation. A normal grinding machine will be good for doffer grinding. All the wire points should be touched by the grinding stone. A slow and gradual grinding with the grind-out concept will give the best results. Harsh grindings will result in burr formation on the land. This will increase the number of hooks in the fibre; thereby the effective length of the fibre from this card will be reduced.

Flat tops grinding is very important. Every time a flat top is ground, yarn quality is improved. It is better to use a grinding machine with the emery fillet. Frequent flat tops grinding will result in less neps and the yarn quality will be consistent.

Some mills increase the life of the flat tops compared to cylinder wire. But it is better to change flat tops and cylinder wire together for better and consistent yarn quality.
It is a good practice to check the individual card quality before changing the wire.

Licker-in wire should be changed for every 150000 kgs. Earlier changes will further improve the yarn quality.

Stationary flats should be changed for every 150000 kgs. But it is a good practice to change the first 3 or 6 stationary flats at Licker-in side for every 100000 kgs. This helps to maximize the carding effect between cylinder and doffer which is critical for better yarn quality.


Reference # http://textilelearner.blogspot.com/

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