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ROTI MAKER MACHINE - SECOND MODEL

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We are provide to all kind of Biscuit Machines Designs & Drawings.We are provide Biscuit Plant Layout Drawings.

ROTI MAKER MACHINE

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Easy handling machine.most effective machine for roti maker.1000 to 2000 roti for one hour.good look machine.easy cleaning in the machine.the machine capacity use 1 kg up to 5 Kg at time.full stainless steel product zone.variable speed start up 10 RPM to 70 RPM.energy efficient direct system.low cost price. This machine cost is only 130000 /- INR.15 TO 20 Days delivery. We are provide to all kind of Biscuit Machines Designs & Drawings.We are provide Biscuit Plant Layout Drawings.

MIXER 900LT

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We are provide to all kind of Biscuit Machines Designs & Drawings. We are provide Biscuit Plant Layout Drawings. OPEN FRAME DESIGN FOR BISCUIT DOUGH MIXER 900 LT (500 Kg) .                 Open frame design, Offer durable, reliable and more efficient mixing. Standard features include a heavy duty 120 0    mechanized chain drive tilt mechanism rotation as standard. Improved sanitation, easy access for maintenance. The mixer arm variable speed start up 10 rpm to 70 rpm. Energy efficient direct system eliminates chains, sprockets, belts and reducing the number of maintenance and lubrication points. Heavy duty stainless steel arm, full stainless steel product zone, Rotary face agitator shaft seals, Positive bowl seals, Optional bi directional tilt mechanism, vary speed drive through inverter, Plc with touch screen operation. Timer/ energy based control system, Water jacketed for cooling or heating. start up 10 rpm to 70 rpm ...

STRUCTURAL STEEL SECTION

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SECTIONAL VIEWS

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What is a sectional views: Although it is imagined that the object is cut by an imaginary section plane its interior construction is viewed by removing the portion of the object between the observer and the section plane while retaining its other portion. Then view of the retained portion of the object exposing its interior construction along with its cut surface is called sectional view. Thus it is a view which not only shows the cut surface of the object but all other its interior details the section plane. How to obtain a sectional view: To obtain a sectional view of an object it should be imagined as though the object is cut by a section plan and the portion of the object between the section plane and the observer is removed as then looking in the direction normal to the section plane the view of the retained portion of the object showing all the other visible details along with the cut surface in drawn as since the process of sectioning is only imaginary all other views ...

RIVETS AND RIVETED JOINTS

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Riveted joints: In riveted joints were classified as one of the types of permanent fastenings. They are generally used to fasten metal plates and steel section in structural works such as bridge and roof trusses and in the construction of pressure vessels such as storage tanks boilers. The field of application of riveted joints has been considerably reduced by the welded joints because of the simplified process of making the welded joint comparative strength and economy. However riveted joints are very effective in designs subjected to pronounced vibration loads where welded joints are less reliable. Riveted joints may also be employed to connect metals which are difficult to weld together and in the joints which permit no heating welded due to possible tempering or warping of the finished machine parts. Rivet: A rivet is a round rod of either mild steel or nonferrous materials such as copper aluminum with a head of any one of the shapes formed at one end during its ma...

KEYS

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A machine derives the energy or power for its working from a prime mover. The power in the form of rotary motion is transmitted from the prime mover to the machine either by connecting the prime mover shaft directly to the machine shaft by a coupling or using intermediate machine elements such as gears or pulleys and belts or sprockets and chains. in all these cases the shaft is secured firmly to the flanges or gears or pulleys or sprockets which are mounted on it to prevent the relative rotation between the two a tight fit of the shaft in the bore will be usually insufficient to secure the shaft to the machine element which is mounted on it. Types of keys: Keys are classified into two main types (1) taper keys (2) parallel or feather keys. A tapered key is of rectangular or square section with uniform width and tapering thickness. It transmits the turning moment between the shaft and the part mounted on it without any rotational and axial motion between them a parallel key i...

DEFLECTION OF BEAMS

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The proper performance of machine parts and structures depends on rigidly. deflection of machine spindle or cutting tools have an adverse effect on accuracy and surface finish of the component the floors of buildings must have sufficient rigidity to carry expected loads design of machine parts and structures are based on deflection of beams the lateral displacement of abeam under the load is termed as deflection. The determination of deflection of beam is essential since it is often required that the maximum defection of the beam should not be greater than the specified value. This chapter confined to the deflection of cantilevers and simply supported beams with point loads and uniformly distributed load. Different equation of deflected beam: Consider small length of the beam dx over which the bending moment may be assumed to be constant and equal. The beam bent due to bending as and small length of the beam ‘ds’ subtend an angle dθ at the center of the curvature (o) of th...

SPRINGS

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Springs are resilient members and are extensively used to absorb shocks. The common application of springs. 1.To control vibration and force due to shock or impact loads. Ex: springs of railway car and automobile. 2.To control the motion of links in mechanism. Ex: springs to maintain contact between cam and its followers. 3.To apply the force to the members. Ex: springs used in balances and dynamo meters. 4.To measure the force. Ex: springs used in clock. Spring materials: Plain carbon steel of 0.9 – 1.0 % carbon is a common material for springs. Steel with 0.85 to 0.95% carbons and 0.3 to 0.4 % manganese is used for large size springs alloy steel such as chrome-vanadium and silicon-manganese steel are used for better grade springs. These alloy possess greater toughness and higher endurance limit and are better suited for springs subjected to fluctuating loads. Chromium steel phosphorous bronze andmonel metal can also be used in special cases to increase fati...

UNITS (SI)

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