US934572A - Means for facilitating the production of steam. - Google Patents

Means for facilitating the production of steam. Download PDF

Info

Publication number
US934572A
US934572A US45979108A US1908459791A US934572A US 934572 A US934572 A US 934572A US 45979108 A US45979108 A US 45979108A US 1908459791 A US1908459791 A US 1908459791A US 934572 A US934572 A US 934572A
Authority
US
United States
Prior art keywords
rod
disks
core
disk
arms
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US45979108A
Inventor
Joseph Leon Marie Alphonse Reis
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US45979108A priority Critical patent/US934572A/en
Application granted granted Critical
Publication of US934572A publication Critical patent/US934572A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F28—HEAT EXCHANGE IN GENERAL
    • F28F—DETAILS OF HEAT-EXCHANGE AND HEAT-TRANSFER APPARATUS, OF GENERAL APPLICATION
    • F28F13/00—Arrangements for modifying heat-transfer, e.g. increasing, decreasing
    • F28F13/06—Arrangements for modifying heat-transfer, e.g. increasing, decreasing by affecting the pattern of flow of the heat-exchange media
    • F28F13/12—Arrangements for modifying heat-transfer, e.g. increasing, decreasing by affecting the pattern of flow of the heat-exchange media by creating turbulence, e.g. by stirring, by increasing the force of circulation

Definitions

  • the object of the present invention is to so improve the construction of such devices that the same shall be constructed or yond this, the object of the invention is to so that the course of the steam in the tube' can be elongated to such an extent as to obtain the maximum useful effect.
  • the device according to this invention which is to be introduced into the tube is constructed of a number of separate plates of a diameter slightly less than the interior diameter of the tube in which they are to be'inserted, and these separate plates are threaded upon a bar or rod, the rod passing through perforations in the said plates, and means are provided whereby the said plates are held at the requisite .distance apart, and alsoare held in some cases at the requisite angle relatively to eachother in a circular direction.
  • a helix of the desired reduced pitch may be produced by constructing each ofthe separate plates in the form of a disk, and dividing the disk in a radial direction through the outer circumference for a distance and then continuing that division through segments of a circle on either side of same, and a disk so divided can have its two arms bent in reverse directions uponthus a form of helix will be produced, the
  • the whole structure can be held together by nuts screwed upon the ends of the rod.
  • Figure 1 shows in plan and Fig. 2 in side elevation one of the disks with the divisions formed therein
  • Figs. 3 and 4 are similar views showing the bars or arms of the dlsk bent in reverse directions. Both Figs. 1 and 3 also illustrate the polygonal perforation.
  • Fig. 5 is an elevation of one end portion of the rod on which the disks are to be threaded
  • Fig, 6 is a cross section of the said rod.
  • Fig. 7 is anelevation
  • Fig. 8 an end ⁇ lGW of one of the tubular distance pieces.
  • vFig. 9 is a sectional elevation show- 4 1 is clearly shown at Figs. 9 and 10.
  • Fig. 10 is a cross section taken on the line X Y of Fig. 9.
  • a number of metal disks are provided of a diameter slightly less than the interior diameter of the tube in which the structure is to be placed, and each of these disks 1, as at Figs. 1 and 2, is formed with a central perforation 2 of polygonal form, it being understood that such perforation may be square, hexagonal, octagonal, or a polygon having any number of sides desired.
  • the disk 1 is radially divided as at 3, Fig. 1 and that division is continued in a segmental course for any desired distance as at. 4 and 5 upon either side of the radial division.
  • Each of what may be termed the arms 6 and 7 thus produced is thenbent out of the plane of the disk as for example as shown at Figs. 3 and 4, where one arm 7 is bent to one side, of the plane of the disk, and the other arm 6 to the other side.
  • a rod 8 is then provided, as shown for instance at Figs. 5 and 6 in order to form a core, and the rod is of a section as shown at Fig. 6 to suit and fit the polygonal perforation 2 of the disk, the rod bein formed at its ends to receive nuts or the like.
  • a number oi distance pieces 9, Figs. 7 and 8 are provided, consisting of short lengths of plain tube.
  • a distance piece such as 9 is slipped over the rod 8 until it rests against the flange of the nut, or washer retained thereby, at the end of the rod, and then one of the disks is threaded over the rod 8 and allowed to pass down until it rests in contact with the distance piece.
  • a means by which the built-up structure is centralized in the boiler tube and the means there shown consists of two circular section parts 10 which may be united at their ends or a single part bent into a U-shape.
  • a. partor parts is or are slid into the tube and then the built up agitator is passed into the said tube so that the disks slide upon the said parts.
  • Such a structure according to this invention can be easily,removed from the boiler tube whatever may be the degree of incrustation, and this can be efiected by removing the bar 8 from the core and immediately all the distance pieces and disks will be detached from one another and will "all down the tube or can be removed piecemeal.
  • the pitch of the helix can be varied to any extent without complicating the construction, and that although'in the device illustrated-by way of example the disks are arranged so that the contacting ends of their arms form an approximate helix, yet it will be obvious that the disks may be arranged upon the rod with other than a regular angular advance and so produce a sinuous course, or even the disks might merely each have a sector-like portion cut away and then be arranged upon the rod with a desired angular advance upon one another, but I have found the helical arrangement which 1' have described by way of ex ample to be the most preferable form.
  • a device of the character described in combination, a core rod, a. number of disks threaded on said core rod, said disks having openings therein, means whereby said disks are held at the requisite distance apart, and means whereby the disks are held with their openings at the requisite angle relatively to each other in a circular direction.
  • a core-rod said rod having a polygonal section, a number of disks threaded on said rod, each disk being provided with a radial division and with segmental divisions forming arms, said arms being" bent out of the plane of the disk and tubular distance pieces also threaded upon the core-rod, whereby the disks are held at the requisite distance apart.
  • a core-rod said rod having a polygonal section, a number of disks threaded on said rod, each disk being provided with a central perforation of a shape to suit the core-rod and with a radial division and segmental divisions forming arms, said arms being bent out of the plane of the disk,-the said disks being located upon the core-rod at angles in advance of each other in a circular direction and tubular distance pieces also threaded upon the core-rod, whereby the disks are held at the requisite distance apart.
  • a core-rod said rod having a polygonal section, a number of disks threaded on said rod, each disk being provided with a central perforation of a shape to suit the core-rod and with a radial division andsegmental divisions forming arms,
  • said arms being bent out of theplane of the disk, the said disks being located upon the core-rod at angles in advance of each other in a circular direction, the arms of a disk contacting with the arms of other disks whereby an approximate helical passage is produced, and tubular distance pieces also threaded upon the core-rod whereby the disks are held at the requisite distance apart.
  • a core-rod said rod having a polygonal section, a number of disks, each disk being provided with a central perforation of a shape to suit the core-rod and with a radial division and segmental divisions forming arms, said arms being bent out of the plane of the disk, the said disks being threaded on the core-rod at angles in advance of each other in a circular direction and the arms of a disk contacting with arms of other disks whereby an approximate helical passage is produced, tubular distance pieces also threaded upon the core-rod, whereby the disks are held at the requisite distance apart and means provided upon the ends of the core-rod whereby the whole structure is held together, substantially as described.

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Thermal Sciences (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Treatment Of Fiber Materials (AREA)

Description

J. L. M. A. REIS. I MEANS FOR FACILITATING THE PRODUCTION OF STEAM.
' APPLICATION FILED OCT. 27, 1908.
' Patented Se EBTS WITH/3555 J. L. M. A. REIS.
LITATING THE PRODUGTIO IIIIIIIIIIIIIIIIIIIIIIIIII 8.
934,572. Patented Sept. 21, 1909. 2 EEEEEEEEEEEE 2.
JOSEPH LEON MARIE ALPHONSE IRE-IS, 0F AN'IWERP, BELGIUM.
MEANS FOR FACILITATING THE PRODUCTION OF STEAM.
Specification of Letters Patent.
Patented Sept. 21, 19U9.
Application filed October 27, 1908. Serial No. 459,791.
To all whom it may concern;
Be it known that I, JOSEPH LnoN MARIE ALPHONSE Rnis, a subject of Belgium, residing at Antwerp, in the Kingdom of Belgium, have invented new and useful Improvements in Means for Facilitating the Production of Steam, of which the following is a specification. This invention relates to improvements in those devices which are intended to be introduced into the water tubes of steam boilers in order to assist vaporization. Such devices as have been heretofore proposed have consisted either. of a supporting bar or plate carrying wings which have been arranged at an incline to the axis of the tube, or they have consisted of bars or metal plates twisted into a helix. Nowwith either of the above stated forms of such devices as hitherto constructed, there has been the disadvantage that the said devices cannot easily be taken to pieces, nor can they be easily withdrawn from the tubes in which they are located; thus for instance owing to deposits and incrustations in the tubes the small clearance which the device inserted therein possessed is taken up and eifectually prevents such constructions being withdrawn except with great incdnvenience and the cost of much labor.
\Vhen the device inserted into a water tube of a boiler is in the form of a helix, the course of the bubbles of steam generated cannot be sufiiciently elongated owing to the impossibility of twisting or bending a strip of sheet metal into the form of a helix, while at the same time giving ita sufficiently small pitch, that is, the co1ls cannot be brought sulficiently close together to obtain the maximum useful effect by a sufficiently elongated course of travel of the steam generated. Beyond this, as before stated, such a construction can only with the greatest difficult-y be extracted from the tube in which it is placed after it has been used for a short period.
Nowthe object of the present invention is to so improve the construction of such devices that the same shall be constructed or yond this, the object of the invention is to so that the course of the steam in the tube' can be elongated to such an extent as to obtain the maximum useful effect. To attain these ends, the device according to this invention which is to be introduced into the tube is constructed of a number of separate plates of a diameter slightly less than the interior diameter of the tube in which they are to be'inserted, and these separate plates are threaded upon a bar or rod, the rod passing through perforations in the said plates, and means are provided whereby the said plates are held at the requisite .distance apart, and alsoare held in some cases at the requisite angle relatively to eachother in a circular direction. With such a construction, upon the rod carrying the said plates being withdrawn, the plates will become detached from one another and canthen be easily extracted or allowed to fall from the tube in which they are located. Nith such a structure, a helix of the desired reduced pitch may be produced by constructing each ofthe separate plates in the form of a disk, and dividing the disk in a radial direction through the outer circumference for a distance and then continuing that division through segments of a circle on either side of same, and a disk so divided can have its two arms bent in reverse directions uponthus a form of helix will be produced, the
disks being separated from each other by loose separate tubular distance pieces, and
the whole structure can be held together by nuts screwed upon the ends of the rod.
The invention will be more readily understood by the following description, having reference to the accompanying drawings, wherein,
Figure 1 shows in plan and Fig. 2 in side elevation one of the disks with the divisions formed therein, and Figs. 3 and 4 are similar views showing the bars or arms of the dlsk bent in reverse directions. Both Figs. 1 and 3 also illustrate the polygonal perforation. Fig. 5 is an elevation of one end portion of the rod on which the disks are to be threaded, and Fig, 6 is a cross section of the said rod. Fig. 7 is anelevation, and Fig. 8 an end \lGW of one of the tubular distance pieces. vFig. 9 is a sectional elevation show- 4 1 is clearly shown at Figs. 9 and 10.
ing the device assembled, and placed in the water tube of a steam generator, and Fig. 10 is a cross section taken on the line X Y of Fig. 9.
Referring to the drawings, a number of metal disks are provided of a diameter slightly less than the interior diameter of the tube in which the structure is to be placed, and each of these disks 1, as at Figs. 1 and 2, is formed with a central perforation 2 of polygonal form, it being understood that such perforation may be square, hexagonal, octagonal, or a polygon having any number of sides desired.
The disk 1 is radially divided as at 3, Fig. 1 and that division is continued in a segmental course for any desired distance as at. 4 and 5 upon either side of the radial division. Each of what may be termed the arms 6 and 7 thus produced is thenbent out of the plane of the disk as for example as shown at Figs. 3 and 4, where one arm 7 is bent to one side, of the plane of the disk, and the other arm 6 to the other side. A rod 8 is then provided, as shown for instance at Figs. 5 and 6 in order to form a core, and the rod is of a section as shown at Fig. 6 to suit and fit the polygonal perforation 2 of the disk, the rod bein formed at its ends to receive nuts or the like. Beyond this, a number oi distance pieces 9, Figs. 7 and 8 are provided, consisting of short lengths of plain tube.
To assemble the described parts to form an approximate helical agitator for insertion into the water tube of asteam generator, a distance piece such as 9 is slipped over the rod 8 until it rests against the flange of the nut, or washer retained thereby, at the end of the rod, and then one of the disks is threaded over the rod 8 and allowed to pass down until it rests in contact with the distance piece. Another tubular distance piece is then passed over the rod 8 and following this the next disk is threaded onto the rod, but is not threaded onto the rod so radial division is in the same plane as the radial division of the first d sk, but inste it is threaded on so that the is in angular advance of the V radial of the first dish that is to sa the second u n I n n J disk is iven a slight turn in res cot to the first disli. This mode of assembling is con" tinued until the rod has received its fuli supply of distance pieces and disks, and they are secured on the red by apply rig nut and washer or flanged nut to the en the said rod, and it will be found t. arms of the disl-ts contact and slightl lap at their ends, the arms of one dish a the arms of the disks upon either side 03. i and so an approximate helix is this may be of pitch scoot a of at the over lengths of the distance pieces and the degree to which the arms are bent outward from either side of each disk. This arrangement At Figs-9 and 10 there is also shown a means by which the built-up structure is centralized in the boiler tube and the means there shown consists of two circular section parts 10 which may be united at their ends or a single part bent into a U-shape. Such a. partor parts is or are slid into the tube and then the built up agitator is passed into the said tube so that the disks slide upon the said parts. Such a structure according to this invention can be easily,removed from the boiler tube whatever may be the degree of incrustation, and this can be efiected by removing the bar 8 from the core and immediately all the distance pieces and disks will be detached from one another and will "all down the tube or can be removed piecemeal. It will be readily understood that with such a device the pitch of the helix can be varied to any extent without complicating the construction, and that although'in the device illustrated-by way of example the disks are arranged so that the contacting ends of their arms form an approximate helix, yet it will be obvious that the disks may be arranged upon the rod with other than a regular angular advance and so produce a sinuous course, or even the disks might merely each have a sector-like portion cut away and then be arranged upon the rod with a desired angular advance upon one another, but I have found the helical arrangement which 1' have described by way of ex ample to be the most preferable form.
Having thus described my invention, what ll claim is:
1. In. a device of the character described, in combination, a core rod, a. number of disks threaded on said core rod, said disks having openings therein, means whereby said disks are held at the requisite distance apart, and means whereby the disks are held with their openings at the requisite angle relatively to each other in a circular direction.
2. In a device of the character described, in combination a core-rod, a number of disks threaded on said core-rod, each dish; having portion of its surface bent out oi the plane said disk, means whereby the said disks held at the requisite distance apart and means whereby the disks are held at the requisite angle relatively to each other in a circular direction.
3. In a device of the character described in combination a core-rod, a number of disks threaded on said core-rod, each dist: having a portion of its surface bent out of the plane otsaid dish, and tubular distance pieces also eaded upon the core-rod, whereby the disks are held the requisite distance apart teams 4. In a device of the character described in combination a corerod, a number of disks threaded on said rod, each disk having a portion of its surface bent out of the plane of said disk, tubular distance pieces also threa'ded upon the core-rod, whereby the disks are held at the requisite distance apart and means whereby the disks are held at the requisite'angle relatively to each other ina circular direction. Y
5. In a device of the character described in combination, a core-rod, said rod having a,
polygonal section, a number of disks threaded on said rod, each disk having a portion of its surface bent outof the plane of said disk and a central perforation of a shape to suit the core-rod and tubular distance pieces also threaded upon the core-rod, whereby the disks are held at the requisite distance apart.
6. In a device of the character described, in combination, a core-rod, said rod having a polygonal section, a number of disks threaded on said rod, each disk being provided with a radial division and with segmental divisions forming arms, said arms being" bent out of the plane of the disk and tubular distance pieces also threaded upon the core-rod, whereby the disks are held at the requisite distance apart.
7. In a device of the character described, in combination, a core-rod, said rod having a polygonal section, a number of disks threaded on said rod, each disk being provided with a central perforation of a shape to suit the core-rod and with a radial division and segmental divisions forming arms, said arms being bent out of the plane of the disk,-the said disks being located upon the core-rod at angles in advance of each other in a circular direction and tubular distance pieces also threaded upon the core-rod, whereby the disks are held at the requisite distance apart.
8. In a device of the character described, in combination, a core-rod, said rod having a polygonal section, a number of disks threaded on said rod, each disk being provided with a central perforation of a shape to suit the core-rod and with a radial division andsegmental divisions forming arms,
said arms being bent out of theplane of the disk, the said disks being located upon the core-rod at angles in advance of each other in a circular direction, the arms of a disk contacting with the arms of other disks whereby an approximate helical passage is produced, and tubular distance pieces also threaded upon the core-rod whereby the disks are held at the requisite distance apart.
9. In a device of the character descrlbed, in combination, a core-rod, said rod having a polygonal section, a number of disks, each disk being provided with a central perforation of a shape to suit the core-rod and with a radial division and segmental divisions forming arms, said arms being bent out of the plane of the disk, the said disks being threaded on the core-rod at angles in advance of each other in a circular direction and the arms of a disk contacting with arms of other disks whereby an approximate helical passage is produced, tubular distance pieces also threaded upon the core-rod, whereby the disks are held at the requisite distance apart and means provided upon the ends of the core-rod whereby the whole structure is held together, substantially as described.
In testimony whereof I have signed my name to this specification in the presence of two subscribing witnesses.
JOSEPH LEON MARIE ALPHONSE REIS.
Witnesses: 1
GREGORY PHMLAN, T. L. HAYE.
US45979108A 1908-10-27 1908-10-27 Means for facilitating the production of steam. Expired - Lifetime US934572A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US45979108A US934572A (en) 1908-10-27 1908-10-27 Means for facilitating the production of steam.

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US45979108A US934572A (en) 1908-10-27 1908-10-27 Means for facilitating the production of steam.

Publications (1)

Publication Number Publication Date
US934572A true US934572A (en) 1909-09-21

Family

ID=3002995

Family Applications (1)

Application Number Title Priority Date Filing Date
US45979108A Expired - Lifetime US934572A (en) 1908-10-27 1908-10-27 Means for facilitating the production of steam.

Country Status (1)

Country Link
US (1) US934572A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4294323A (en) * 1979-09-13 1981-10-13 Cryogenics Unlimited Cryogenic powered vehicle
US20080277009A1 (en) * 2007-05-10 2008-11-13 Fluid-Quip, Inc. Multiple helical vortex baffle

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4294323A (en) * 1979-09-13 1981-10-13 Cryogenics Unlimited Cryogenic powered vehicle
US20080277009A1 (en) * 2007-05-10 2008-11-13 Fluid-Quip, Inc. Multiple helical vortex baffle
US8696192B2 (en) * 2007-05-10 2014-04-15 Fluid-Quip, Inc. Multiple helical vortex baffle

Similar Documents

Publication Publication Date Title
US2026680A (en) Flue cleaner
US469731A (en) Boiler-tube
US1517852A (en) Brush or broom
US647676A (en) Means or apparatus for cleaning tubes of tubular boilers.
US205029A (en) Improvement in fence-wires
DE434293C (en) High-pressure steam generator arranged inside the flame tube of a flame tube boiler
DE520940C (en) Hanging superheater for water tube boiler
DE738293C (en) Device for holding flue gas-heated pipe bundles
US1174220A (en) Flue-scraper.
US726193A (en) Mechanical water-purifying device for boilers.
DE347480C (en) Device for preheating the combustion air for boiler firing
US1372784A (en) Reel
DE897419C (en) Pipe for heat exchanger
DE332388C (en) Filling bodies for washing, reaction, absorption, separating devices, etc. like
US945125A (en) Tube-cleaner for water-tubes in steam-boilers.
US1715919A (en) Boiler water preheater
AT48636B (en) Water tube boiler.
AT116832B (en) Rustless gas generator.
DE1601794A1 (en) Steam generator
DE958563C (en) Water tube ship boiler
DE434091C (en) Standing water tube boiler with fire box and the boiler jacket surrounding the same
DE46223C (en) Steam boiler made up of concentric, hollow-cylindrical, alternating water spaces and puffs of fire
US1688603A (en) Wall or baffle tile for water-tube boilers
DE323355C (en) Device for the simultaneous rolling in and flaring of pipes
AT41467B (en) Rotating grate for gas generators.