Small Sawmills: Their Equipment, Construction, and OperationU.S. Department of Agriculture, 1918 - 68 Seiten |
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Seite 21
... piece of pipe smaller in diameter than the suction pipe and from 2 to 3 feet long , and a cap , screwed upright into the suction pipe close to the pump are always useful , and when the suction pipe is long , in high lifts , or when the ...
... piece of pipe smaller in diameter than the suction pipe and from 2 to 3 feet long , and a cap , screwed upright into the suction pipe close to the pump are always useful , and when the suction pipe is long , in high lifts , or when the ...
Seite 31
... piece of steel and boring a new socket . The tendency to discard saws or scrap " them is very general in all mills , big and little , though in many instances , particularly in small mills , the fault lies with the sawyer and not with ...
... piece of steel and boring a new socket . The tendency to discard saws or scrap " them is very general in all mills , big and little , though in many instances , particularly in small mills , the fault lies with the sawyer and not with ...
Seite 32
... stirrup will not strike it . One piece 6 by 6 inches by 8 feet , is saddled into the two big pieces spanning the saw pit and underneath the far rail of the track . Never make 32 BULLETIN 718 , U. S. DEPARTMENT OF AGRICULTURE .
... stirrup will not strike it . One piece 6 by 6 inches by 8 feet , is saddled into the two big pieces spanning the saw pit and underneath the far rail of the track . Never make 32 BULLETIN 718 , U. S. DEPARTMENT OF AGRICULTURE .
Seite 33
... piece of timber under each end of the husk on top of the cross sills . Head blocks should be 1 inch above the saw collar . Do not line up under the head blocks , but raise the stringers or lower the husk frame until the blocks are in ...
... piece of timber under each end of the husk on top of the cross sills . Head blocks should be 1 inch above the saw collar . Do not line up under the head blocks , but raise the stringers or lower the husk frame until the blocks are in ...
Seite 35
... the amateur sawmill operator should take a pair of dividers or a piece of string and a pencil and lay out several circles representing sizes of different logs , and then draw SMALL SAWMILLS , THEIR EQUIPMENT , ETC. 35 3 Sawing.
... the amateur sawmill operator should take a pair of dividers or a piece of string and a pencil and lay out several circles representing sizes of different logs , and then draw SMALL SAWMILLS , THEIR EQUIPMENT , ETC. 35 3 Sawing.
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12 inches 20 inches axes bevel blow-off blow-off valve boiler boxes bunk cant hooks capacity carriage chain chute circular saw class A mill cost crosscut saw cubic cylinder Discount dray drive edge edger engine and boiler equipment f. o. b. Chicago feed feet long feet per day friction front gang grade hammer handled haul head blocks head saw holes horse horsepower husk frame inches wide inserted-tooth keep kerf Lath length load lumber machine Mandrel pulley mill operator pile pinion planer portable mill pounds pressure properly pump rack rack and pinion raker revolutions per minute rip saws road roll round safety valve Sawdust conveyors sawmill sawyers scale set shaft Shingle skids skidway slabs small mill solid-tooth spark arrester speed steam steel straight straight edge suction pipe surface swamp hook teamster tooth track tree truck tubes usually water gauge weight wheel width wood
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Seite 57 - To find the pressure in pounds per square inch of a column of water, multiply the height of the column in feet by .434. Approximately, we say that every foot elevation is equal to % Ib. pressure per square inch ; this allows for ordinary friction. To find the diameter of a pump cylinder...
Seite 19 - Raise the safety valves cautiously and frequently, as they are liable to become fast In their seats and useless for the purpose intended. 10.
Seite 62 - Circular pitch is the distance from the center of one tooth to the center of the next, measured along the pitch line.
Seite 58 - To compute the capacity of pumping engines, multiply the area of water piston, in inches, by the distance it travels, in inches, in a given time. Deduct 3 per cent for slip and rod displacement. The product divided by 231 gives the number of gallons in time named. To find the...
Seite 61 - Constant of an engine is found by multiplying the area of the piston in square inches by the speed of the piston in feet per minute and dividing the product by 33,000.
Seite 57 - To find the velocity in feet per minute necessary to discharge a given volume of water or liquid in a given time, multiply the number of cubic feet of water by 144, and divide the product by the area of the pipe in inches.
Seite 24 - This distance should be such as to allow of a gentle sag to the belt when in motion. A general rule may be stated thus : Where narrow belts are to be run over small pulleys, 15 feet is a good average, the belt having a sag of i£ to 2 inches.
Seite 58 - Steam is steam containing free moisture in the form of spray or mist, and has the same temperature as dry saturated steam of the same pressure. Saturated Steam is steam in its normal state, that is, steam whose temperature is that due to its pressure; by which is meant steam at the same temperature as that of the water from which it was generated and upon which it rests. Superheated Steam is steam at a temperature above that due to its pressure after leaving the liquid from which it is generated.
Seite 63 - ... the saw line after a cut has been made. The carriage frame is mounted on trucks which travel on tracks, the carriage being actuated by a steam feed, a cable, or a rack-and-pinion device, which propels it back and forth past the head-saw.
Seite 24 - ... 2£ to 4 inches. For main belts working on very large pulleys, the distance should be 25 to 30 feet, the belts working well with a sag of 4 to 5 inches.