US2634878A - Plating tank structure - Google Patents

Plating tank structure Download PDF

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Publication number
US2634878A
US2634878A US18166A US1816648A US2634878A US 2634878 A US2634878 A US 2634878A US 18166 A US18166 A US 18166A US 1816648 A US1816648 A US 1816648A US 2634878 A US2634878 A US 2634878A
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United States
Prior art keywords
tank
plating
sections
liner
tank structure
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Expired - Lifetime
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US18166A
Inventor
Messinger William
Donald B Lytle
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TI Gotham Inc
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Time Inc
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    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25DPROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
    • C25D17/00Constructional parts, or assemblies thereof, of cells for electrolytic coating
    • C25D17/02Tanks; Installations therefor

Definitions

  • the present invention relates to plating tanks in which electroplating operations are accomplished and relates, more specifically, to an improved plating tank structure in which long objects may be plated effectively.
  • the invention embodies an improved plating tank structure wherein long objects may be plated while being supported in a vertical position also, preferably rotated while in such position.
  • the present invention proposes to provide a plating tank which is capable of receiving the objects to be plated and supporting them in a vertical position. While in such position, the objects are subjected to a uniform plating action by an electroplating operation in which the desired current density is employed that is uniform and controllable.
  • the present invention provides an improved plating tank structure which is of adequate strength to withstand the structural stresses to which it is subjected, the tank being provided with a liner that is inert to the plating solution and. supported effectively within the tank so that there will be no sagging or other variations from the desired structural relationship that is established when the tank is fabricated.
  • An object of the invention accordingly, is to provide a plating tank structure capable of being mounted in a vertical position and, in such position, providing a desired depth of tank, the interior of the tank being provided with an inert liner that is effectively secured in aligned position and maintained in such position throughout the life of the tank.
  • a further object of the invention is to provide a tank structure of the above character wherein the liner may be assembled and secured in a normal position within the tank, being effectively secured in its normal position and maintained as an effective seal between the plating solution and the outer tank structure.
  • Figure 1 is a view in vertical section, taken through a plating tank constructed in accordance with the present invention and showing a 2 cylinder supported in such tank in position for the plating operation;
  • Figure 2 is an enlarged view of the tank structure shown in Figure 1 and taken in the same plane as the sectional view of Figure 1;
  • Figure 3 is a View in horizontal cross-section
  • Figure 5 is an enlarged partial view in section, taken on the plane of Figures 1 and 2, and showing the connection of the tank section and liners at the adjacent ends thereof;
  • Figure 6 is a view similar to Figure 5 showing the manner in which the sealing connection between the ends of the tank sections and the liner is mounted in its assembled position, the view illustrating the formation of the sealing section prior to the peening operation by which the sealing section is deformed and secured in its final sealing position;
  • Figure 7 is a plan view in somewhat schematic form of one way of supplying electricity to the plating tank structure in order that the electroplating operation may be carried out.
  • the plating structure is illustrated schematically as being mounted within a pit formed by foundation walls [0 and H and a bottom foundation member l2.
  • the walls i0 and Il may be formed with track members I3 upon which flanged wheels [4 rest,
  • the wheels serving to support a traveling carriage I5 on the tracks l3.
  • Carriage l 5 is provided with a support member 16 having a chuck I! which is adapted to secure the shaft l8 of a cylinder is or other article to be plated.
  • a motor 20 is provided to rotate the support l6 and cylinder 19 in a manner which will be readily apparent.
  • a bottom pla'teZl i provided on the base or foundation I2 of the pit and is adapted to support the tank structure indicated generally at 22 and formed of component parts now to be described.
  • the tank structure is formed of a plurality of cylindrical tank sections 23 supported in an aligned position with their ends suitably spaced.
  • the tank sections 23 are welded, as illustrated in Figure 5, to annular U-shaped channel sections 24 so that when they are welded together, they form a continuous tank of desired length and diameter.
  • These elements provide the desired structural strengthfor the plating tank, and the strength and rigidity of the'tank may be reinforced by providing angle irons 25 extending 3 circumferentially. In the form shown in the drawings, four angle irons 25 are indicated around the circumference of the tank and extending lengthwise thereof.
  • the tank is lined with lead, the lining structure being formed with a plurality of cylindrical liner sections 20, formed of lead, and mounted in abutting end to end relationship, as
  • tank sections 23 and channels 24, or the sealing sections 21 may be of sectional formation and peened into position after the tank sections are assembled, the elements of the sealing members 27 being burned into a continuous sealing member so. that an efiective seal andconnection are provided between the adjacent ends of the tank sections 23.
  • the lead liners 26 are then inserted in the position, also illustrated in Figure 5, and are burned together and to the sealing sections 21 at the meeting line indicated at 28, in Figure 5.
  • the burning of the liner sections to the sealing sections 27 has the important advantage of providing support for the liner sections at intervals along the length of the tank section and thus of preventing sagging of the liner sections due to their own weight.
  • the bottom of the tank is provided with lead bottom plates 29 which are burned at their peripheries into the bottom liner 26, thus completing a fluid-tight tank structure and one in which the structure is efifectively sealed from the plating solution carried withinit.
  • a guide bearing 30 is provided, the purpose of the guide bearing being to locate properly the cylinder I9 within the tank 22.
  • the top of the plating tank is formed by providing the uppermost tank section 3
  • An annular conducting ring 35 formed, for example, of copper, is riveted to the flange 3E and angle 32 by means of rivets 30 and is provided with depending flange members 37 spaced circumferentially around the periphery of the ring.
  • Bus bars 38 are connectedto the flanges 37 and insulating plates 39 are provided on thesides of each of the flanges 37.
  • An insulating ring 40 rests upon thetop.
  • hood M is efiectively insulated from the electrical conducting elements by means of ring 40 and plates 39.
  • inlet and outlet pipes 43 and 93a are provided at the bottom of the tank.
  • An overflow outlet 04 is provided adjacent the top of the tank and additional plating solution is introduced into the tank at the top thereof through an annular perforated tube 35 having a supply pipe 45 connected thereto.
  • a plating tank structure has been provided with an inert liner that is continuous and provides a complete seal between the plating solution and the tank structure.
  • the manner of mounting the liner is such as to hold it effectively against sagging and maintain it in a desired assembled position.
  • a plating tank comprising a plurality of tank sections, means supporting the tank sections in spaced, axial alignment with one another, the adjacent spaced ends of the tank sections being undercut when viewed from the interior of the tank, a liner in each tank section, the liners being of a deformable material inert to plating solutions and being mounted in abutting end to end relationship, and band sealing means peened between the spaced undercut ends of the tank sections and overlapping the abutting ends of the liners, the sealing means being of the same inert material as the liners, in looking engagement with the spaced undercut ends of the tank sections and fused to the abutting ends of the liners.

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  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Electroplating Methods And Accessories (AREA)

Description

April 14, 1953 w. MESSINGER ET AL PLATING TANK STRUCTURE 2 SHEETSS 'ET 1 Filed March 51, 1948 FIG. I.
LYTLE INVENTORS.
MESS I N GE R ATTORNEYS.
5 jw lLLlAM 29 BY DONALD a. m
April 14, 1953 w. MESSINGER ETAL PLATING TANK STRUCTURE 2 SHEETS-SHEET 2 Filed March 31, 1948 FIG] nnnnnnnn Tn INVENTORS. WILLIAM MESSINGER DONALD B. LYTLE MTTORNEYS.
'FIGZ.
Patented Apr. 14, 1953 ILATING TANK STRUCTURE William Messinger, Philadelphia, Pa., and Donald B. Lytle, Bronxville, N. Y. said Lytle assignor to Time, Incorporated, New York, N. Y., a corporation of New York Application March 31, 1948, Serial No. 18,166
4 Claims.
The present invention relates to plating tanks in which electroplating operations are accomplished and relates, more specifically, to an improved plating tank structure in which long objects may be plated effectively.
More particularly, the invention embodies an improved plating tank structure wherein long objects may be plated while being supported in a vertical position also, preferably rotated while in such position.
In plating long objects, such as the surface of cylinders and the like, particularly in the plating of chromium, it has been found that a uniform plate is diiilcult to obtain in plating operations wherein the cylinder or other object is supported with its axis in a horizontal position and partially immersed in the plating medium in such position. To accomplish a uniform and proper plating of long objects, such as cylinders and the like, the present invention proposes to provide a plating tank which is capable of receiving the objects to be plated and supporting them in a vertical position. While in such position, the objects are subjected to a uniform plating action by an electroplating operation in which the desired current density is employed that is uniform and controllable.
To accomplish this object, the present invention provides an improved plating tank structure which is of adequate strength to withstand the structural stresses to which it is subjected, the tank being provided with a liner that is inert to the plating solution and. supported effectively within the tank so that there will be no sagging or other variations from the desired structural relationship that is established when the tank is fabricated.
An object of the invention, accordingly, is to provide a plating tank structure capable of being mounted in a vertical position and, in such position, providing a desired depth of tank, the interior of the tank being provided with an inert liner that is effectively secured in aligned position and maintained in such position throughout the life of the tank.
A further object of the invention is to provide a tank structure of the above character wherein the liner may be assembled and secured in a normal position within the tank, being effectively secured in its normal position and maintained as an effective seal between the plating solution and the outer tank structure.
Further objects of the invention will be apparent as it is described in greater detail in connection with the accompanying drawings, wherein Figure 1 is a view in vertical section, taken through a plating tank constructed in accordance with the present invention and showing a 2 cylinder supported in such tank in position for the plating operation;
Figure 2 is an enlarged view of the tank structure shown in Figure 1 and taken in the same plane as the sectional view of Figure 1;
Figure 3 is a View in horizontal cross-section,
taken on the plane 3-3 of Figure 2, andlookin in the direction of the arrows;
lengthwise of the tank and in suitable numberj Figure 4 is a partial View in section, taken on line 44 of Figure 2, and looking in the direction of the arrows;
Figure 5 is an enlarged partial view in section, taken on the plane of Figures 1 and 2, and showing the connection of the tank section and liners at the adjacent ends thereof;
Figure 6 is a view similar to Figure 5 showing the manner in which the sealing connection between the ends of the tank sections and the liner is mounted in its assembled position, the view illustrating the formation of the sealing section prior to the peening operation by which the sealing section is deformed and secured in its final sealing position; and
Figure 7 is a plan view in somewhat schematic form of one way of supplying electricity to the plating tank structure in order that the electroplating operation may be carried out.
Referring to the above drawings, the plating structure is illustrated schematically as being mounted within a pit formed by foundation walls [0 and H and a bottom foundation member l2. The walls i0 and Il may be formed with track members I3 upon which flanged wheels [4 rest,
the wheels serving to support a traveling carriage I5 on the tracks l3.
Carriage l 5 is provided with a support member 16 having a chuck I! which is adapted to secure the shaft l8 of a cylinder is or other article to be plated. A motor 20 is provided to rotate the support l6 and cylinder 19 in a manner which will be readily apparent.
A bottom pla'teZl i provided on the base or foundation I2 of the pit and is adapted to support the tank structure indicated generally at 22 and formed of component parts now to be described.
The tank structure is formed of a plurality of cylindrical tank sections 23 supported in an aligned position with their ends suitably spaced. The tank sections 23 are welded, as illustrated in Figure 5, to annular U-shaped channel sections 24 so that when they are welded together, they form a continuous tank of desired length and diameter. These elements provide the desired structural strengthfor the plating tank, and the strength and rigidity of the'tank may be reinforced by providing angle irons 25 extending 3 circumferentially. In the form shown in the drawings, four angle irons 25 are indicated around the circumference of the tank and extending lengthwise thereof.
Inasmuch as the plating solutions, particularly in chromium plating Operations, are corrosive to metals, such as steel, which are desirably used in the formation of the tank sections and members above described, it is necessary to provide a suitable inert liner to protect the tank section and seal them from the plating solution. To accomplish this, the tank is lined with lead, the lining structure being formed with a plurality of cylindrical liner sections 20, formed of lead, and mounted in abutting end to end relationship, as
illustrated in Figure 1. Prior to inserting the liner: 7
' formed adjacent ends of the tank sections 23, as
illustrated in Figure 6. The sections 27 are quite naturally mounted in the position illustrated in Figure 6. During assembly, tank sections 23 and channels 24, or the sealing sections 21, may be of sectional formation and peened into position after the tank sections are assembled, the elements of the sealing members 27 being burned into a continuous sealing member so. that an efiective seal andconnection are provided between the adjacent ends of the tank sections 23.
After the sealing sections 2! are peened into the position illustrated in Figure 5, the lead liners 26 are then inserted in the position, also illustrated in Figure 5, and are burned together and to the sealing sections 21 at the meeting line indicated at 28, in Figure 5. The burning of the liner sections to the sealing sections 27 has the important advantage of providing support for the liner sections at intervals along the length of the tank section and thus of preventing sagging of the liner sections due to their own weight.
The bottom of the tank is provided with lead bottom plates 29 which are burned at their peripheries into the bottom liner 26, thus completing a fluid-tight tank structure and one in which the structure is efifectively sealed from the plating solution carried withinit. On the lead bottom plates 29, a guide bearing 30 is provided, the purpose of the guide bearing being to locate properly the cylinder I9 within the tank 22.
In order that. suitable electrical connections maybe provided by means of which electroplating operations may be carried out, the top of the plating tank is formed by providing the uppermost tank section 3| with an L-shaped top flange 32 and forming the uppermost lead liner 33 with a top flange 34 that overlies the angle member 32. An annular conducting ring 35 formed, for example, of copper, is riveted to the flange 3E and angle 32 by means of rivets 30 and is provided with depending flange members 37 spaced circumferentially around the periphery of the ring. Bus bars 38 are connectedto the flanges 37 and insulating plates 39 are provided on thesides of each of the flanges 37. An insulating ring 40 rests upon thetop. of the annular ring 35 and supports a ventilating hood 41., which is connected to a. suitable duct 42 for providing a desired suction at the top of the tank to remove fumes escaping by means of the plating operation. The hood M is efiectively insulated from the electrical conducting elements by means of ring 40 and plates 39.
In order that a plating solution may be introduced into the tank and circulated, inlet and outlet pipes 43 and 93a are provided at the bottom of the tank. An overflow outlet 04 is provided adjacent the top of the tank and additional plating solution is introduced into the tank at the top thereof through an annular perforated tube 35 having a supply pipe 45 connected thereto.
From the foregoing, it will be seen that a plating tank structure has been provided with an inert liner that is continuous and provides a complete seal between the plating solution and the tank structure. The manner of mounting the liner is such as to hold it effectively against sagging and maintain it in a desired assembled position.
While the invention has been described with specific reference to the structure shown in the accompanying drawings, it is not to be limited save as defined in the appended claims.
We claim:
1. A plating tank comprising a plurality of tank sections, means supporting the tank sections in spaced, axial alignment with one another, the adjacent spaced ends of the tank sections being undercut when viewed from the interior of the tank, a liner in each tank section, the liners being of a deformable material inert to plating solutions and being mounted in abutting end to end relationship, and band sealing means peened between the spaced undercut ends of the tank sections and overlapping the abutting ends of the liners, the sealing means being of the same inert material as the liners, in looking engagement with the spaced undercut ends of the tank sections and fused to the abutting ends of the liners.
2. A plating tank as defined in claim 1 wherein the sealing means lie against the support means.
3. A plating tank as defined in claim 1 wherein the tank sections, liners and sealing means are cylindrical in cross section.
4. A plating tank as defined in claim 1 wherein the liners and sealing means are of lead.
WILLIAM MESSINGER. DONALD B. LYTLE.
References Cited in the file of this patent UNITED STATES PATENTS Number Name Date 947,130 Rogers Jan. 18, 1910 1,541,749 Hommel June 9, 1925 1,734,909 Jones Nov. 5, 1929 1,788,005 Williams Jan. 6, 1931 1,797,257 Boltz Mar. 24, 1931 2,013,675 Steerup Sept. 10, 1935' 2,084,298 Secrist June 15, 1937 2,209,290 Watts July 23, 1940 2,326,137 Gettelman Aug. 10,1943 2,356,047 Geisinger et a1 Aug. 15, 1944 2,331,890 Ebbets' Aug. 14, 1945- 2,.420338 Ferguson May 6,, 1947 2,439,266 Settle Apr. 6, 1948.
' 1 FOREIGN PATENTS Number Country Date Great Britain nn ljec. 9, 1942
US18166A 1948-03-31 1948-03-31 Plating tank structure Expired - Lifetime US2634878A (en)

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1034947B (en) * 1953-05-28 1958-07-24 Iacellophaneia Invest Company Device for galvanic chrome plating of Heliogravure cylinders
US4216874A (en) * 1977-06-27 1980-08-12 Kiwa Torisu Weld assembled tank
WO2015050969A3 (en) * 2013-10-03 2015-08-20 Neo Industries, Inc. Systems and methods for preparing and plating of work rolls
US9631673B2 (en) 2015-08-24 2017-04-25 Samuel Messinger Stationary bearing race with uniform distribution of wear

Citations (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US947130A (en) * 1907-08-19 1910-01-18 Charles E Rogers Tank.
US1541749A (en) * 1923-02-12 1925-06-09 Joseph M Hommel Method of making barrels
US1734909A (en) * 1925-10-15 1929-11-05 Gen Electric Electroplating tank
US1788005A (en) * 1929-05-07 1931-01-06 Creamery Package Mfg Co Metallic lined tank structure
US1797257A (en) * 1928-01-20 1931-03-24 Fred S Boltz Tank
US2013675A (en) * 1931-04-24 1935-09-10 American Can Co Container
US2084298A (en) * 1934-11-08 1937-06-15 American Sheet & Tin Plate Method of lining metallic vessels
US2209290A (en) * 1937-05-01 1940-07-23 Standard Oil Co Noncorrosive vessel
GB549817A (en) * 1940-02-23 1942-12-09 Elektr App Fr Sauter A G Fab Improvements relating to boilers, hot-water containers, and the like
US2326137A (en) * 1939-03-22 1943-08-10 Gettelman Fredrick Double walled container
US2356047A (en) * 1941-06-12 1944-08-15 Pfaudler Co Inc Container
US2381890A (en) * 1942-06-13 1945-08-14 Babcock & Wilcox Co Method of forming lined pressure vessel connections
US2420038A (en) * 1944-10-23 1947-05-06 Standard Oil Dev Co Lined vessel
US2439266A (en) * 1943-12-16 1948-04-06 Casper A Ruf Method of fabricating tanks

Patent Citations (14)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US947130A (en) * 1907-08-19 1910-01-18 Charles E Rogers Tank.
US1541749A (en) * 1923-02-12 1925-06-09 Joseph M Hommel Method of making barrels
US1734909A (en) * 1925-10-15 1929-11-05 Gen Electric Electroplating tank
US1797257A (en) * 1928-01-20 1931-03-24 Fred S Boltz Tank
US1788005A (en) * 1929-05-07 1931-01-06 Creamery Package Mfg Co Metallic lined tank structure
US2013675A (en) * 1931-04-24 1935-09-10 American Can Co Container
US2084298A (en) * 1934-11-08 1937-06-15 American Sheet & Tin Plate Method of lining metallic vessels
US2209290A (en) * 1937-05-01 1940-07-23 Standard Oil Co Noncorrosive vessel
US2326137A (en) * 1939-03-22 1943-08-10 Gettelman Fredrick Double walled container
GB549817A (en) * 1940-02-23 1942-12-09 Elektr App Fr Sauter A G Fab Improvements relating to boilers, hot-water containers, and the like
US2356047A (en) * 1941-06-12 1944-08-15 Pfaudler Co Inc Container
US2381890A (en) * 1942-06-13 1945-08-14 Babcock & Wilcox Co Method of forming lined pressure vessel connections
US2439266A (en) * 1943-12-16 1948-04-06 Casper A Ruf Method of fabricating tanks
US2420038A (en) * 1944-10-23 1947-05-06 Standard Oil Dev Co Lined vessel

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE1034947B (en) * 1953-05-28 1958-07-24 Iacellophaneia Invest Company Device for galvanic chrome plating of Heliogravure cylinders
US4216874A (en) * 1977-06-27 1980-08-12 Kiwa Torisu Weld assembled tank
WO2015050969A3 (en) * 2013-10-03 2015-08-20 Neo Industries, Inc. Systems and methods for preparing and plating of work rolls
US9863054B2 (en) 2013-10-03 2018-01-09 Neo Industries, Llc Systems and methods for preparing and plating of work rolls
US9631673B2 (en) 2015-08-24 2017-04-25 Samuel Messinger Stationary bearing race with uniform distribution of wear

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