universal power tong manufacturer
The 9-5/8” power tong with Rineer GA15-13 two-speed hydraulic motor, motor valve, lift cylinder valve, rigid sling, FARR® hydraulic backup, configured for compression load cell.
Power tongs are an essential tool in the drilling industry and are used to make up, break out, apply torque and to grip the tubular components. We are distributors for both Starr Power Tongs and McCoy Global hydraulic power tongs in multiple sizes and torque ranges from high torque to low torque that can be used to run both casing, drill pipe and tubing. When determining which power tong is best for your project, you will want to select the power tong that best fits your tubular size ranges and torque required.
All of our power tongs are available with either the McCoy\\\\\\\\\\\\\\\"s patented WinCatt data acquisition software recently updated to the MTT systems or AllTorque\\\\\\\\\\\\\\\"s computer monitoring system for all the torque and turn control system needed in today\\\\\\\\\\\\\\\"s market for the making of tubular connections. Discover our wide selection of McCoy and Starr casing tongs, tubing tongs and power tongs for sale below!
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(From left) Ron Feigel, business development, and Fred Aleksic, product development manager, show off the company’s flagship power tong equipment. Images: Universe Machine
General manufacturing was the shop’s strength. However, in the late 1980s Universe machine found itself focused on product development. The shop designed and engineered a high-quality line of power tongs—a machine used on drilling rigs to screw and unscrew tubing or casing to a specific torque. It was this development that really pushed the shop to branch out into this new area of opportunity. Today Universe Machine’s power tongs and other related products are sold globally.
“Investing and incorporating new technology and focusing on research and development during the pandemic has led to extensive testing and improvements of our existing products,” said Feigel. “We’ve engineered a new line of compact, high-torque power tong equipment, which is currently being introduced to market. We also added a Toshiba TUE-200(S) vertical lathe with live tooling. All of this investment, including retaining skilled, long-term employees, signals to our employees and customers that we can be trusted to continue moving forward, even during difficult times.”
Afghanistan - AFGAlbania - ALBAlgeria - DZAAmerican Samoa - ASMAndorra - ANDAngola - AGOAnguilla - AIAAntigua and Barbuda - ATGArgentina - ARGArmenia - ARMAruba - ABWAustralia - AUSAustria - AUTAzerbaijan Republic - AZEBahamas - BHSBahrain - BHRBangladesh - BGDBarbados - BRBBelarus - BLRBelgium - BELBelize - BLZBenin - BENBermuda - BMUBhutan - BTNBolivia - BOLBosnia and Herzegovina - BIHBotswana - BWABrazil - BRABritish Virgin Islands - VGBBrunei Darussalam - BRNBulgaria - BGRBurkina Faso - BFABurma - MMRBurundi - BDICambodia - KHMCameroon - CMRCanada - CANCape Verde Islands - CPVCayman Islands - CYMCentral African Republic - CAFChad - TCDChile - CHLChina - CHNColombia - COLComoros - COMCongo, Democratic Republic of the - CODCongo, Republic of the - COGCook Islands - COKCosta Rica - CRICote d Ivoire (Ivory Coast) - CIVCroatia, Republic of - HRVCyprus - CYPCzech Republic - CZEDenmark - DNKDjibouti - DJIDominica - DMADominican Republic - DOMEcuador - ECUEgypt - EGYEl Salvador - SLVEquatorial Guinea - GNQEritrea - ERIEstonia - ESTEthiopia - ETHFalkland Islands (Islas Malvinas) - FLKFiji - FJIFinland - FINFrance - FRAFrench Guiana - GUFFrench Polynesia - PYFGabon Republic - GABGambia - GMBGeorgia - GEOGermany - DEUGhana - GHAGibraltar - GIBGreece - GRCGreenland - GRLGrenada - GRDGuadeloupe - GLPGuam - GUMGuatemala - GTMGuernsey - GGGuinea - GINGuinea-Bissau - GNBGuyana - GUYHaiti - HTIHonduras - HNDHong Kong - HKGHungary - HUNIceland - ISLIndia - INDIndonesia - IDNIreland - IRLIsrael - ISRItaly - ITAJamaica - JAMJapan - JPNJersey - JEJordan - JORKazakhstan - KAZKenya - KENKiribati - KIRKorea, South - KORKuwait - KWTKyrgyzstan - KGZLaos - LAOLatvia - LVALebanon - LBNLiechtenstein - LIELithuania - LTULuxembourg - LUXMacau - MACMacedonia - MKDMadagascar - MDGMalawi - MWIMalaysia - MYSMaldives - MDVMali - MLIMalta - MLTMarshall Islands - MHLMartinique - MTQMauritania - MRTMauritius - MUSMayotte - MYTMexico - MEXMicronesia - FSMMoldova - MDAMonaco - MCOMongolia - MNGMontenegro - MNEMontserrat - MSRMorocco - MARMozambique - MOZNamibia - NAMNauru - NRUNepal - NPLNetherlands - NLDNetherlands Antilles - ANTNew Caledonia - NCLNew Zealand - NZLNicaragua - NICNiger - NERNigeria - NGANiue - NIUNorway - NOROman - OMNPakistan - PAKPalau - PLWPanama - PANPapua New Guinea - PNGParaguay - PRYPeru - PERPhilippines - PHLPoland - POLPortugal - PRTPuerto Rico - PRIQatar - QATReunion - REURomania - ROURussian Federation - RUSRwanda - RWASaint Helena - SHNSaint Kitts-Nevis - KNASaint Lucia - LCASaint Pierre and Miquelon - SPMSaint Vincent and the Grenadines - VCTSan Marino - SMRSaudi Arabia - SAUSenegal - SENSerbia - SRBSeychelles - SYCSierra Leone - SLESingapore - SGPSlovakia - SVKSlovenia - SVNSolomon Islands - SLBSomalia - SOMSouth Africa - ZAFSpain - ESPSri Lanka - LKASuriname - SURSwaziland - SWZSweden - SWESwitzerland - CHETaiwan - TWNTajikistan - TJKTanzania - TZAThailand - THATogo - TGOTonga - TONTrinidad and Tobago - TTOTunisia - TUNTurkey - TURTurkmenistan - TKMTurks and Caicos Islands - TCATuvalu - TUVUganda - UGAUkraine - UKRUnited Arab Emirates - AREUnited Kingdom - GBRUnited States - USAUruguay - URUUzbekistan - UZBVanuatu - VUTVatican City State - VATVenezuela - VENVietnam - VNMVirgin Islands (U.S) - VIRWallis and Futuna - WLFWestern Sahara - ESHWestern Samoa - WSMYemen - YEMZambia - ZMBZimbabwe - ZWE
As shown in Figure 1, power tong head torque check system of the present invention comprises detection module 11, Data Enter module 12, data receiver display module 13, data processing chart display module 14 and calibration certificate generation module 15.
Data processing chart display module 14 is for comparing process to the actual torque value of the binding clip of power tong detected by detection module 11 and the standard torque value of this binding clip of power tong, calculate the error of actual torque value and standard torque value, by the standard torque value of this binding clip of power tong, the actual torque value of the binding clip of power tong that detection module 11 detects, error between actual torque value and standard torque value, matching relationship between the standard torque value of this binding clip of power tong and its hydraulic system pressure and the matching relationship between the actual torque value of this binding clip of power tong and its hydraulic system pressure are reflected in calibration chart, and by these calibration result information displaying in software display interface.
Preferably, for the Power Tong installing different tubing, the detection module in power tong head torque check system of the present invention has following three kinds of embodiments.
As shown in Figure 2, the detection module in this embodiment is applicable to carry out verification to the power tong head torque of installing drilling tool and detects.This detection module comprises simulation tubing and torque sensor, and wherein, simulation tubing comprises simulation tubing top connection 21 and simulation tubing lower sub 22; Torque sensor comprises sensor body 23 and torque gauge 24, torque gauge is set in the middle part of sensor body 23, and sensor body 23 being arranged in a part of two parts of torque gauge 24 both sides for detection link 231, another part is coupling shaft 232.Simulation tubing top connection 21 is the top connection of simulation drilling tool, and simulation tubing lower sub 22 is the lower sub of simulation drilling tool, and simulation drilling tool top connection and the lower sub of simulation drilling tool are tubular structure.Simulation drilling tool top connection to be set in sensor body on the detection link 231 on 23, and the internal diameter of this simulation drilling tool top connection equals the diameter detecting link 231; The lower sub of simulation drilling tool is set on the coupling shaft 232 in sensor body 23, and the internal diameter of this simulation drilling tool lower sub equals the diameter of coupling shaft 332.The external diameter of torque gauge 24 equals to simulate the external diameter of drilling tool top connection and the external diameter of simulation drilling tool lower sub.Certainly, this power tong head torque calibration equipment also can verify the power tong head torque of installation two sections of unequal drilling tools of external diameter.Preferably, non-contact torque sensor selected by torque sensor, and the sidewall of detection link 231 in its sensor body 23 is provided with keyway or key (not shown), like this, when using this detection module to verify power tong head torque, the moment of torsion that binding clip of power tong is applied in the top connection of simulation drilling tool is delivered on torque gauge 24 by keyway or key, binding clip of power tong can be measured by torque gauge 24 and be applied to the actual torque of simulating in drilling tool top connection, and then draw the matching relationship of the reality between the hydraulic pressure of this power tong head torque and Power Tong and binding clip moment of torsion.Preferably, detecting key on link 231 sidewall can one optionally in flat key, screw key, spline or square key.Certainly, torque sensor also can select foil gauge torque sensor, utilizes foil gauge on being positioned in its sensor body 23 detection link 231 sidewall to realize the transmission of moment of torsion.
As shown in Figure 3, the power tong head torque that the detection module in this embodiment is applicable to installing oil pipe or sleeve pipe verifies.The difference of this embodiment and the first embodiment is, simulation tubing is simulation oil pipe or analog casing, wherein, simulation tubing top connection 21 is simulation oil pipe (sleeve pipe) top connection, simulation tubing lower sub 22 is simulation oil pipe (sleeve pipe) lower sub, and the external diameter of simulation oil pipe (sleeve pipe) top connection equals the external diameter of simulating oil pipe (sleeve pipe) lower sub, the internal diameter of simulation oil pipe (sleeve pipe) top connection equals the internal diameter of simulating oil pipe (sleeve pipe) lower sub.The end of one end that simulation oil pipe (sleeve pipe) top connection is connected with the detection link 231 in sensor body 23 is provided with circular inner edge boss 211, and the internal diameter of this inner edge boss 211 equals the diameter detecting link 231; The end of one end that simulation oil pipe (sleeve pipe) lower sub is connected with the coupling shaft 232 in sensor body on 23 is provided with circular inner edge boss 221, and the internal diameter of this inner edge boss 221 equals the diameter of coupling shaft 232.Linked together by inner edge boss 211 and detection link 231 in simulation oil pipe (sleeve pipe) top connection, after simulation oil pipe (sleeve pipe) lower sub is linked together by inner edge boss 221 and coupling shaft 232, the external diameter being set in the torque gauge 232 in sensor body 231 is less than the external diameter of simulation oil pipe (sleeve pipe) top connection, and have spacing between the inwall of the sidewall of detection link 231 and simulation oil pipe (sleeve pipe) top connection, there is spacing between the sidewall of coupling shaft 232 and the inwall of simulation oil pipe (sleeve pipe) lower sub.Preferably, the external diameter of torque gauge 232 equals to simulate the internal diameter of oil pipe (sleeve pipe) top connection and the internal diameter of simulation oil pipe (sleeve pipe) lower sub.Preferably, the sidewall detecting link 231 is provided with keyway or the key of transmitting torque and connecting analog oil pipe (sleeve pipe) top connection.
As shown in Figure 4, the power tong head torque that the detection module in this embodiment is also applicable to installing oil pipe or sleeve pipe verifies.The difference of this embodiment and the second embodiment is, the external diameter of the simulation tubing top connection 21 in this embodiment is less than the external diameter of simulation tubing lower sub 22.
Preferably, as shown in Figure 1, Data Enter module 12 comprises parameter input unit 121 and Detection Information input block 122; Wherein, parameter input unit 121 is for inputting the device name of Power Tong to be verified, specifications and models, factory number and manufacturing firm, and the range of Power Tong, accuracy class and indicating value permissible error scope; Detection Information input block 122 is for information, the certificate number of input power pincers affiliated unit, calibration date, calibration location, environment temperature, ambient humidity, identifier, check people, Approved by, and the device name of detection module, device numbering, verification certificate number and verification certificate the term of validity.Like this, the essential information of Data Enter module 12 typing Power Tong, to ensure the information match in verified Power Tong and calibration certificate, is convenient to the calibration certificate that relevant staff consults Power Tong.
Preferably, as shown in Figure 1, data receiver display module 13 comprises data receipt unit 131 and data display unit 132, and the data that data receipt unit 131 detects for receiving detection module 11, the data that data display unit 132 first receives data receipt unit 131 judge and error correction, then the authentic and valid data obtained are shown in the display interface of this power tong head torque check system.Like this, data receiver display module 13 can be avoided the data receiving transmission distortion or the partial data collected by detection module 11 that receives to be shown in the lower display interface of power tong head torque check system as authentic and valid data, and then avoid data processing chart display module 14 effective for non-genuine data to be processed as authentic and valid data.Preferably, carry out data transmission between detection module 11 and data receiver display module 13 by RS232 bus, the data detected to avoid detection module 11 are the distortion because being subject to outer signals interference when being transferred to data receiver display module 13.Preferably, adopt event-driven explanation to realize avoiding data to leak to the data collection that detection module 11 detects and adopt, and then make data receiver display module 13 can receive all data messages being transferred to data receiver display module 13 by detection module 11.Like this, data acquisition program response in time and reliability is high.
Preferably, as shown in Figure 1, data processing chart display module 14 comprises data processing unit 141 and chart display unit 142.Wherein, the actual torque value of binding clip of power tong that data processing unit 141 pairs of detection modules 11 detect and the standard torque value of this binding clip of power tong compare, and calculate the error between the actual torque value of this binding clip of power tong and standard torque value.Chart display unit 142 is by the standard torque value of binding clip of power tong, error between the actual torque value of this binding clip of power tong that the actual torque value of this binding clip of power tong that detection module 11 detects and data processing unit 141 calculate and standard torque value is reacted in calibration chart with data mode, matching relationship between the actual torque value of the matching relationship between the standard torque value of this binding clip of power tong and its hydraulic system pressure and this binding clip of power tong and its hydraulic system pressure is reacted in calibration chart with the form of calibration curve, and this calibration chart is presented in the display interface of this power tong head torque check system.This calibration chart can matching relationship between the standard torque value of matching relationship clearly between the reaction power pincers actual torque value of binding clip and its hydraulic system pressure and this binding clip of power tong and its hydraulic system pressure.Like this, the user that this calibration chart can be this Power Tong reaches expection torque value in the process using this Power Tong provides important reference frame.
Existing composition graphs 1 and Fig. 5 illustrate the process that this power tong head torque check system verifies power tong head torque, and concrete steps are as follows:
Step 502: to the device name of typing Power Tong in Data Enter module 12, specifications and models, factory number and manufacturing firm and range, accuracy class and indicating value permissible error scope on the display interface of this power tong head torque check system, this Power Tong affiliated unit information, certificate number, calibration date, calibration location, environment temperature, ambient humidity, identifier, check people, Approved by and the term of validity of the device name of detection module, device numbering, verification certificate number and verification certificate;
Step 503: start detection module 11 pairs of Power Tongs verify, receives by data receiver display module 13 data that detection module 11 detects, and tests the data detected;
Step 505: in the actual torque value of the binding clip of power tong detected in the 141 pairs of steps 503 of the data processing unit in data processing chart display module 14 and step 502, the standard torque value of the binding clip of power tong of typing compares, and calculates error therebetween;
Step 506: the matching relationship that the chart display unit 142 in data processing chart display module 14 gathers between the standard torque value of matching relationship between the actual torque value of binding clip of power tong and its hydraulic system pressure and this binding clip of power tong and its hydraulic system pressure forms calibration curve, by this calibration curve, the standard torque value of this Power Tong, the actual torque value of this Power Tong and the error between the actual torque value of this Power Tong and standard torque value are reflected in calibration chart, and this calibration chart is presented in the display interface of this power tong head torque check system,
A two-speed Hydra-Shift® motor coupled with a two-speed gear train provides (4) torque levels and (4) RPM speeds. Easily shift the hydraulic motor in low speed to high speed without stopping the tong or tublar rotation, saving rig time.
A patented door locking system (US Patent 6,279,426) for Eckel tongs that allows for latchless locking of the tong door. The tong door swings easily open and closed and locks when torque
is applied to the tong. When safety is important this locking mechanism combined with our safety door interlock provides unparalleled safety while speeding up the turn around time between connections. The Radial Door Lock is patented protected in the following countries: Canada, Germany, Norway, United Kingdom, and the United States.
The field proven Tri-Grip® Backup features a three head design that encompasses the tubular that applies an evenly distributed gripping force. The Tri-Grip®Backup provides exceptional gripping capabilities with either Eckel True Grit® dies or Pyramid Fine Tooth dies. The hydraulic backup is suspended at an adjustable level below the power tong by means of three hanger legs and allowing the backup to remain stationary while the power tong moves vertically to compensate for thread travel of the connection.
Automated hydraulic tong GKSh-12000 "Yurmaty" is designed for fast, safe making up and breaking out of drill pipes with rated sizes from Ø89 mm (3 1/2") to Ø254 mm (10") and controlled by an industrial PC controller with a real-time operating system Windows CE 7.0.
The Tong is mounted on the regular place of drilling tong AKB. Changing of the design of the drilling platform and procedure for approval are not required;