CN210064972U - Stable effectual industrial engineering is carried with lifting by crane equipment - Google Patents

Stable effectual industrial engineering is carried with lifting by crane equipment Download PDF

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Publication number
CN210064972U
CN210064972U CN201920876642.6U CN201920876642U CN210064972U CN 210064972 U CN210064972 U CN 210064972U CN 201920876642 U CN201920876642 U CN 201920876642U CN 210064972 U CN210064972 U CN 210064972U
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CN
China
Prior art keywords
hoisting
supporting
limiting
industrial engineering
stainless steel
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Expired - Fee Related
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CN201920876642.6U
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Chinese (zh)
Inventor
刘慧丽
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Qilu Institute of Technology
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Qilu Institute of Technology
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Priority to CN201920876642.6U priority Critical patent/CN210064972U/en
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Publication of CN210064972U publication Critical patent/CN210064972U/en
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Abstract

The utility model provides a stabilize effectual industrial engineering and carry with lifting by crane equipment, including lifting by crane the base, remove the wheel, the couple lifts by crane, spacing fender dish, control switch, rotatable supporting platform structure consolidates the support base plate structure, and the spacing protection of messenger wire twines the wheel structure, auxiliary stay arm pole, main tributary support arm pole lifts by crane the oil silk rope, the connection piece, U type stainless steel seat, the fixed pulley with lift by crane the link, removal wheel difference bolted connection in the lower surface four corners position that lifts by crane the base. The utility model discloses the setting of handrail, antiskid cover and stopper is favorable to carrying on the convenient rotation to the revolving stage of gripping; the arrangement of the rotating platform, the rotating shaft and the bearing seat is beneficial to rotating and adjusting the angle by using the bearing, so that the requirement of hoisting industrial engineering articles in different directions is met; the upper portion triangle gusset plate, the flange dish is connected on upper portion, and the setting of lower part flange dish and lower part triangle gusset plate is favorable to playing the effect of connecting fixedly, increases stability.

Description

Stable effectual industrial engineering is carried with lifting by crane equipment
Technical Field
The utility model belongs to the technical field of industrial engineering machinery, especially, relate to a stabilize effectual industrial engineering and carry with lifting by crane equipment.
Background
Industrial engineering originated in the united states at the beginning of the 20 th century, and it has been widely used in developed countries against the background of modern industrial production. Modern industrial engineering is a cross engineering subject which is gradually formed and developed on the basis of subjects such as manufacturing engineering, management science, system engineering and the like by taking large-scale industrial production and a social economic system as research objects. The method is a comprehensive technology which optimizes and configures production system elements such as people, equipment, materials, information, environment and the like, and performs system planning, design, evaluation and innovation on production processes such as industry and the like, thereby improving industrial productivity and specializing social and economic benefits, and the content is increasingly wide.
In the placement of industrial works or during transport, hoisting devices are often used.
The invention discloses a conveying and lifting device in industrial engineering, and the conveying and lifting device comprises a bottom plate, wherein a fixed base is arranged on the upper portion of the bottom plate, a lower rotating rod assembly is arranged on the fixed base, the lower portion of the lower rotating rod assembly is hinged to the fixed base, the upper portion of the lower rotating rod assembly is movably connected with an upper rotating rod assembly through a rotating driving mechanism, a clamping assembly is arranged at the tail end of the upper rotating rod assembly, a push rod assembly connected with the lower rotating rod assembly is further arranged on the bottom plate, and the push rod assembly is arranged in an inclined mode. However, the existing hoisting equipment for industrial engineering transportation still has the problems of poor stability, incapability of rotating hoisting and easy tangling of hoisting ropes.
Therefore, the invention of the lifting equipment with good stabilizing effect for industrial engineering transportation is very necessary.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a stabilize effectual industrial engineering and carry with lifting by crane equipment to it is relatively poor to solve current industrial engineering and carry with lifting by crane equipment stability, can not rotate hoist and mount and the easy indiscriminate problem of hoist and mount rope. A lifting device with good stabilizing effect for industrial engineering conveying comprises a lifting base, moving wheels, lifting hooks, a limiting baffle disc, a control switch, a rotatable supporting platform structure, a reinforcing supporting base plate structure, a wire rope limiting protection winding wheel structure, an auxiliary supporting arm rod, a main supporting arm rod, a lifting oil wire rope, a connecting sheet, a U-shaped stainless steel seat, a fixed pulley and a lifting hanging ring, wherein the moving wheels are respectively bolted at four corners of the lower surface of the lifting base; the lifting hook is welded in the middle of the lower surface of the limiting baffle disc; the control switch is arranged at the left position of the front surface of the rotatable supporting platform structure; the rotatable supporting platform structure is arranged on the upper surface of the reinforced supporting base plate structure; the reinforced supporting base plate structure is arranged on the upper surface of the hoisting base; the hoisting wire rope limiting and protecting winding wheel structure is arranged at the left position of the upper surface of the rotatable supporting platform structure; the auxiliary support arm rod is arranged at the right side position of the upper surface of the rotatable support platform structure; the main supporting arm rod is arranged at the right side position of the upper surface of the rotatable supporting platform structure; one end of the hoisting oil wire rope is connected with the hoisting wire rope limiting and protecting winding wheel structure, and the other end of the hoisting oil wire rope is arranged on the upper surface of the fixed pulley and is riveted with the hoisting hanging ring; the connecting sheets are respectively welded on the surfaces of the auxiliary supporting arm rod and the main supporting arm rod; the U-shaped stainless steel seat is connected to the right side of the main support arm rod through a bolt; the fixed pulley is axially connected to the right side position inside the U-shaped stainless steel seat; the hoisting hanging ring is coupled in the middle of the upper surface of the limit baffle disc; the rotatable supporting platform structure comprises a rotating table, a handrail, an anti-skidding sleeve, a limiting block, a rotating shaft, an upper triangular reinforcing plate, a bearing seat and an upper connecting flange plate, wherein the handrail is connected to the middle position of the left side of the rotating table through a bolt; the anti-slip sleeve is sleeved in the middle of the outer surface of the handrail; the limiting block is glued at the left position of the handrail; one end of the rotating shaft is connected to the middle position of the lower surface of the rotating platform through a bolt, and the other end of the rotating shaft is inserted into an inner ring of a ball bearing of the bearing seat; the upper triangular reinforcing plates are respectively welded at the lower parts of the left side and the right side of the bearing seat and are connected with the upper connecting flange plate through bolts.
Preferably, the reinforced support base plate structure comprises a support base frame, support columns, counterweight support rods, support cushion blocks, inclined support rods, a lower connecting flange plate and a lower triangular reinforcing plate, wherein the support columns are connected to the middle position of the upper surface of the support base frame through bolts; the counterweight block supporting rods are respectively bolted at the left side and the right side of the upper surface of the supporting base frame; the supporting cushion blocks are respectively bolted at the upper part and the lower part of the inner side of the counterweight block supporting rod; one end of the inclined strut is respectively bolted at the upper parts of the left side and the right side of the support column, and the other end of the inclined strut is in bolted connection with the upper surface of the support base frame; the lower connecting flange plate is connected to the upper surface of the support column through bolts; the lower triangular reinforcing plates are respectively connected to the left side and the right side of the lower surface of the lower connecting flange plate through bolts and are connected with the supporting column through bolts.
Preferably, the hoisting wire rope limiting and protecting winding wheel structure comprises a winding motor, a winding shaft, an oil wire winding wheel, a limiting cross rod, a left limiting baffle and a right limiting baffle, wherein a coupling of the winding shaft is connected to an output shaft of the winding motor; the oil wire winding wheel is sleeved at the right side position of the outer surface of the winding shaft; the limiting cross rods are transversely embedded in the upper and lower positions of the inner sides of the left limiting baffle and the right limiting baffle respectively; the left limiting baffle is sleeved at the left position of the outer surface of the winding shaft; the right limiting baffle is sleeved at the right position of the outer surface of the winding shaft.
Preferably, a stainless steel ball bearing is embedded in the middle position of the upper side inside the bearing seat; the rotating shaft is in interference fit with an inner ring of the stainless steel ball bearing.
Preferably, the control switch is embedded in the middle position of the left side of the front surface of the rotating platform; the rotating table is a circular stainless steel seat; the auxiliary support arm rod and the main support arm rod are respectively connected with the rotating table through bolts.
Preferably, the upper connecting flange plate and the lower connecting flange plate are connected through bolts; the anti-slip sleeve is a cylindrical silica gel sleeve; the limiting block is a cylindrical rubber block.
Preferably, the winding motor is bolted to the left side of the upper surface of the rotating platform.
Preferably, the hoisting oil wire rope is a stainless steel oil wire rope with the diameter set to be five to ten millimeters; the hoisting oiled silk rope penetrates through a gap between the oiled silk winding wheel and the limiting cross rod, is wound on the outer surface of the oiled silk winding wheel and is riveted with the oiled silk winding wheel.
Preferably, the moving wheel is a rubber universal wheel with a brake pad; the connecting sheet is made of rectangular stainless steel sheets.
Preferably, the support base frame is connected to the upper surface of the hoisting base through bolts; the upper triangular reinforcing plate and the lower triangular reinforcing plate are respectively made of right-angled triangular stainless steel plates; the lower triangular reinforcing plate is arranged at the upper part of the inclined stay bar.
Preferably, the control switch is electrically connected with the winding motor; the winding motor is a forward and reverse rotating motor with the model number of 5IK 40A-D.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses in, the handrail, the setting of antiskid cover and stopper is favorable to carrying out the gripping and plays skid-proof effect, the convenient rotation to the revolving stage.
The utility model discloses in, revolving stage, the setting of rotation axis and bearing frame, be favorable to utilizing the bearing to carry out rotation angle regulation, satisfy lifting by crane not equidirectional industrial engineering articles for use.
The utility model discloses in, upper portion triangle gusset plate, upper portion flange plate, the setting of lower part flange plate and lower part triangle gusset plate are favorable to playing the effect of connecting fixedly, increase the stability of device.
The utility model discloses in, the setting of balancing weight bracing piece and lip block, be favorable to placing the balancing weight of different weight according to the needs that lift by crane, guarantee to lift by crane the stability of equipment.
The utility model discloses in, winding motor, the setting of rotation axis and oil silk winding wheel is favorable to twining lifting by crane the oil silk rope.
The utility model discloses in, spacing horizontal pole, left limit baffle and right limit baffle's setting, be favorable to playing the effect of spacing protection, prevent to lift by crane the slippage of oil silk rope, increase the security that lifts by crane.
The utility model discloses in, the auxiliary stay armed lever, main tributary support armed lever lift by crane the oil silk rope, the connection piece, U type stainless steel seat, the fixed pulley with lift by crane the setting of link, be favorable to articulating the equipment that lifts by crane to needs.
The utility model discloses in, removal wheel specifically adopt the rubber universal wheel that has the brake block, be favorable to removing and fixing this equipment of lifting by crane, increase the convenience of using.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural diagram of the rotatable supporting platform structure of the present invention.
Fig. 3 is a schematic structural view of the structure of the reinforced supporting base plate of the present invention.
Fig. 4 is a schematic structural view of the structure of the spacing protective winding wheel of the sling rope of the present invention.
In the figure:
1. hoisting a base; 2. a moving wheel; 3. lifting the hook; 4. a limiting baffle disc; 5. a control switch; 6. a rotatable support platform structure; 61. a rotating table; 62. a grab bar; 63. an anti-slip sleeve; 64. a limiting block; 65. a rotating shaft; 66. an upper triangular reinforcing plate; 67. a bearing seat; 68. the upper part is connected with a flange plate; 7. reinforcing and supporting the base plate structure; 71. a support base frame; 72. a support pillar; 73. a counterweight support rod; 74. supporting the cushion block; 75. a diagonal brace; 76. the lower part is connected with a flange plate; 77. a lower triangular reinforcing plate; 8. the hoisting wire rope is limited and protected by a winding wheel structure; 81. winding a motor; 82. a winding shaft; 83. an oil silk winding wheel; 84. a limiting cross bar; 85. a left limit baffle; 86. a right limit baffle; 9. an auxiliary support arm; 10. a main support arm; 11. hoisting the oil wire rope; 12. connecting sheets; 13. a U-shaped stainless steel base; 14. a fixed pulley; 15. and (5) hoisting a suspension loop.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example (b):
as shown in the accompanying drawings 1-2, the utility model provides a lifting device with good stabilizing effect for industrial engineering transportation, which comprises a lifting base 1, a moving wheel 2, a lifting hook 3, a limit baffle disc 4, a control switch 5, a rotatable supporting platform structure 6, a reinforcing and supporting base plate structure 7, a hoisting wire rope limit protection winding wheel structure 8, an auxiliary supporting arm rod 9, a main supporting arm rod 10, a hoisting oil wire rope 11, a connecting sheet 12, a U-shaped stainless steel seat 13, a fixed pulley 14 and a lifting hanging ring 15, wherein the moving wheel 2 is respectively bolted at four corners of the lower surface of the lifting base 1; the lifting hook 3 is welded in the middle of the lower surface of the limit baffle disc 4; the control switch 5 is arranged at the left position of the front surface of the rotatable supporting platform structure 6; the rotatable supporting platform structure 6 is arranged on the upper surface of the reinforced supporting base plate structure 7; the reinforced supporting base plate structure 7 is arranged on the upper surface of the lifting base 1; the hoisting wire rope limiting and protecting winding wheel structure 8 is arranged at the left position of the upper surface of the rotatable supporting platform structure 6; the auxiliary support arm rod 9 is arranged at the right side position of the upper surface of the rotatable support platform structure 6; the main support arm rod 10 is arranged at the right position of the upper surface of the rotatable support platform structure 6; one end of the hoisting oil wire rope 11 is connected with the hoisting wire rope limiting and protecting winding wheel structure 8, and the other end of the hoisting oil wire rope is arranged on the upper surface of the fixed pulley 14 and is riveted with the hoisting hanging ring 15; the connecting pieces 12 are respectively welded on the surfaces of the auxiliary support arm rod 9 and the main support arm rod 10; the U-shaped stainless steel seat 13 is connected to the right side of the main support arm rod 10 through a bolt; the fixed pulley 14 is axially connected to the right side position inside the U-shaped stainless steel seat 13; the hoisting hanging ring 15 is coupled in the middle of the upper surface of the limit baffle disc 4; the rotatable supporting platform structure 6 comprises a rotating platform 61, a handrail 62, an anti-skidding sleeve 63, a limiting block 64, a rotating shaft 65, an upper triangular reinforcing plate 66, a bearing seat 67 and an upper connecting flange 68, wherein the handrail 62 is connected to the middle position of the left side of the rotating platform 61 through a bolt; the anti-skid sleeve 63 is sleeved in the middle of the outer surface of the handrail 62; the limiting block 64 is glued at the left position of the handrail 62; one end of the rotating shaft 65 is connected to the middle position of the lower surface of the rotating platform 61 through a bolt, and the other end of the rotating shaft is inserted into the inner ring of the ball bearing of the bearing seat 67; the upper triangular reinforcing plates 66 are respectively welded at the lower parts of the left side and the right side of the bearing seat 67 and are connected with the upper connecting flange 68 through bolts; the lifting base 1 is pushed by holding the grab bar 62 and the anti-skid sleeve 63 by hand, the lifting equipment is moved to the using position under the action of the moving wheel 2, the brake pad on the moving wheel 2 is fixed, and an external balancing weight is placed on the upper part of the supporting cushion block 74 to play a role in reinforcing and stabilizing in order to ensure the stability of the lifting device; the external power supply is switched on, the control switch 5 controls the winding motor 81 to rotate, the hoisting oil wire rope 11 is loosened, the hoisting hook 3 is driven to descend, the hoisting hook 3 is hung on an industrial engineering tool to be hoisted, the control switch 5 controls the winding motor 81 to rotate, the hoisting oil wire rope 11 is contracted, the industrial engineering tool is hoisted to a certain height, the handrail 62 and the anti-skidding sleeve 63 are held by a hand, the rotating platform 61 is rotated, the rotating shaft 65 is driven to rotate in the bearing seat 67, the using position of the industrial engineering tool is controlled, and the winding motor 81 is controlled to retract.
In the above embodiment, as shown in fig. 3, specifically, the reinforced supporting base plate structure 7 includes a supporting base frame 71, supporting columns 72, counterweight supporting rods 73, supporting cushion blocks 74, diagonal supporting rods 75, a lower connecting flange 76 and a lower triangular reinforcing plate 77, and the supporting columns 72 are bolted to the middle positions of the upper surface of the supporting base frame 71; the counterweight block support rods 73 are respectively bolted at the left side and the right side of the upper surface of the support base frame 71; the supporting cushion blocks 74 are respectively bolted at the upper part and the lower part of the inner side of the counterweight supporting rod 73; one end of each inclined strut 75 is respectively bolted at the upper parts of the left side and the right side of the support column 72, and the other end of each inclined strut is connected with the upper surface of the support base frame 71 through bolts; the lower connecting flange 76 is bolted to the upper surface of the support column 72; the lower triangular reinforcing plates 77 are respectively bolted on the left and right sides of the lower surface of the lower connecting flange 76 and are connected with the support columns 72 through bolts.
As shown in fig. 4, in the above embodiment, specifically, the suspension wire rope limiting and protecting winding wheel structure 8 includes a winding motor 81, a winding shaft 82, an oil wire winding wheel 83, a limiting cross bar 84, a left limiting baffle 85 and a right limiting baffle 86, and the winding shaft 82 is coupled to an output shaft of the winding motor 81; the oil silk winding wheel 83 is sleeved at the right side position of the outer surface of the winding shaft 82; the limiting cross rod 84 is transversely embedded in the upper and lower positions of the inner sides of the left limiting baffle 85 and the right limiting baffle 86 respectively; the left limiting baffle 85 is sleeved at the left position of the outer surface of the winding shaft 82; the right limit baffle 86 is sleeved at the right position of the outer surface of the winding shaft 82.
In the above embodiment, specifically, a stainless steel ball bearing is embedded in the middle position of the upper side inside the bearing seat 67; the rotating shaft 65 is in interference fit with an inner ring of the stainless steel ball bearing.
In the above embodiment, specifically, the control switch 5 is embedded in the middle position on the left side of the front surface of the rotating platform 61; the rotating table 61 is a circular stainless steel base; the auxiliary support arm 9 and the main support arm 10 are respectively connected with the rotating platform 61 through bolts.
In the above embodiment, specifically, the upper connecting flange 68 and the lower connecting flange 76 are arranged in a bolt connection manner; the anti-slip sleeve 63 is a cylindrical silica gel sleeve; the limiting block 64 is specifically a cylindrical rubber block.
In the above embodiment, specifically, the winding motor 81 is bolted to the left position on the upper surface of the rotating table 61.
In the above embodiment, specifically, the hoisting oil wire rope 11 is a stainless steel oil wire rope with a diameter set to be five to ten millimeters; the hoisting oiled wire rope 11 penetrates through a gap between the oiled wire winding wheel 83 and the limiting cross bar 84, is wound on the outer surface of the oiled wire winding wheel 83 and is riveted with the oiled wire winding wheel 83.
In the above embodiment, specifically, the moving wheel 2 specifically adopts a rubber universal wheel with a brake pad; the connecting sheet 12 is made of rectangular stainless steel sheet.
In the above embodiment, specifically, the supporting base frame 71 is bolted to the upper surface of the hoisting base 1; the upper triangular reinforcing plate 66 and the lower triangular reinforcing plate 77 are respectively made of right-angled triangular stainless steel plates; the lower triangular reinforcing plate 77 is provided at an upper portion of the diagonal brace 75.
In the above embodiment, specifically, the control switch 5 is electrically connected to the winding motor 81; the winding motor 81 is a forward and reverse rotating motor with the model number of 5IK 40A-D.
Principle of operation
When the lifting device is used, the lifting base 1 is pushed by holding the handrail 62 and the anti-skid sleeve 63, the lifting device is moved to the using position under the action of the moving wheel 2, the brake pad on the moving wheel 2 is fixed, and the external balancing weight is placed on the upper part of the supporting cushion block 74 to play a role in reinforcing and stabilizing in order to ensure the stability of the lifting device; the external power supply is switched on, the control switch 5 controls the winding motor 81 to rotate, the hoisting oil wire rope 11 is loosened, the hoisting hook 3 is driven to descend, the hoisting hook 3 is hung on an industrial engineering tool to be hoisted, the control switch 5 controls the winding motor 81 to rotate, the hoisting oil wire rope 11 is contracted, the industrial engineering tool is hoisted to a certain height, the handrail 62 and the anti-skidding sleeve 63 are held by a hand, the rotating platform 61 is rotated, the rotating shaft 65 is driven to rotate in the bearing seat 67, the using position of the industrial engineering tool is controlled, and the winding motor 81 is controlled to retract.
Utilize technical scheme, or technical personnel in the field are in the utility model discloses under technical scheme's the inspiration, design similar technical scheme, and reach above-mentioned technological effect, all fall into the utility model discloses a protection scope.

Claims (10)

1. The industrial engineering conveying hoisting equipment with good stabilizing effect is characterized by comprising a hoisting base (1), moving wheels (2), a hoisting hook (3), a limiting baffle disc (4), a control switch (5), a rotatable supporting platform structure (6), a reinforcing supporting base plate structure (7), a hoisting wire rope limiting protective winding wheel structure (8), an auxiliary supporting arm rod (9), a main supporting arm rod (10), a hoisting oil wire rope (11), a connecting sheet (12), a U-shaped stainless steel seat (13), a fixed pulley (14) and a hoisting hanging ring (15), wherein the moving wheels (2) are respectively bolted at four corners of the lower surface of the hoisting base (1); the lifting hook (3) is welded in the middle of the lower surface of the limiting baffle disc (4); the control switch (5) is arranged at the left position of the front surface of the rotatable supporting platform structure (6); the rotatable supporting platform structure (6) is arranged on the upper surface of the reinforced supporting base plate structure (7); the reinforced supporting base plate structure (7) is arranged on the upper surface of the hoisting base (1); the hoisting wire rope limiting and protecting winding wheel structure (8) is arranged at the left side position of the upper surface of the rotatable supporting platform structure (6); the auxiliary support arm rod (9) is arranged at the right side position of the upper surface of the rotatable support platform structure (6); the main supporting arm rod (10) is arranged at the right side position of the upper surface of the rotatable supporting platform structure (6); one end of the hoisting oil wire rope (11) is connected with the hoisting wire rope limiting and protecting winding wheel structure (8), and the other end of the hoisting oil wire rope is arranged on the upper surface of the fixed pulley (14) and is riveted with the hoisting hanging ring (15); the connecting pieces (12) are respectively welded on the surfaces of the auxiliary supporting arm rod (9) and the main supporting arm rod (10); the U-shaped stainless steel seat (13) is connected to the right side of the main support arm rod (10) through a bolt; the fixed pulley (14) is connected to the right side of the inside of the U-shaped stainless steel seat (13) in a shaft mode; the hoisting hanging ring (15) is coupled to the middle position of the upper surface of the limiting baffle disc (4) through a shaft; the rotatable supporting platform structure (6) comprises a rotating table (61), a handrail (62), an anti-skidding sleeve (63), a limiting block (64), a rotating shaft (65), an upper triangular reinforcing plate (66), a bearing seat (67) and an upper connecting flange plate (68), wherein the handrail (62) is connected to the middle position of the left side of the rotating table (61) through a bolt; the anti-skid sleeve (63) is sleeved in the middle of the outer surface of the handrail (62); the limiting block (64) is glued at the left position of the handrail (62); one end of the rotating shaft (65) is connected to the middle position of the lower surface of the rotating platform (61) through a bolt, and the other end of the rotating shaft is inserted into an inner ring of a ball bearing of the bearing seat (67); the upper triangular reinforcing plates (66) are respectively welded at the lower parts of the left side and the right side of the bearing seat (67) and are connected with the upper connecting flange (68) through bolts.
2. The industrial engineering conveying hoisting equipment with good stabilizing effect according to claim 1, wherein the reinforced supporting base plate structure (7) comprises a supporting base frame (71), supporting columns (72), counterweight supporting rods (73), supporting cushion blocks (74), inclined supporting rods (75), a lower connecting flange plate (76) and a lower triangular reinforcing plate (77), wherein the supporting columns (72) are bolted at the middle positions of the upper surface of the supporting base frame (71); the counterweight block supporting rods (73) are respectively bolted at the left side and the right side of the upper surface of the supporting base frame (71); the supporting cushion blocks (74) are respectively bolted at the upper part and the lower part of the inner side of the counterweight supporting rod (73); one end of each inclined strut (75) is respectively bolted at the upper parts of the left side and the right side of the support column (72), and the other end of each inclined strut is connected with the upper surface of the support base frame (71) through bolts; the lower connecting flange (76) is connected to the upper surface of the supporting column (72) through bolts; and the lower triangular reinforcing plates (77) are respectively bolted on the left side and the right side of the lower surface of the lower connecting flange plate (76) and are connected with the supporting columns (72) through bolts.
3. The industrial engineering conveying hoisting equipment with good stabilizing effect according to claim 1, wherein the hoisting wire rope limiting and protecting winding wheel structure (8) comprises a winding motor (81), a winding shaft (82), an oil wire winding wheel (83), a limiting cross rod (84), a left limiting baffle (85) and a right limiting baffle (86), and the winding shaft (82) is coupled to an output shaft of the winding motor (81); the oil silk winding wheel (83) is sleeved at the right side position of the outer surface of the winding shaft (82); the limiting cross rod (84) is transversely embedded in the upper and lower positions of the inner sides of the left limiting baffle (85) and the right limiting baffle (86) respectively; the left limiting baffle (85) is sleeved at the left position of the outer surface of the winding shaft (82); the right limiting baffle (86) is sleeved at the right side position of the outer surface of the winding shaft (82).
4. The industrial engineering conveying hoisting equipment with good stabilizing effect as claimed in claim 1, wherein a stainless steel ball bearing is embedded in the middle position of the upper side inside the bearing seat (67); the rotating shaft (65) is in interference fit with an inner ring of the stainless steel ball bearing.
5. The industrial engineering conveying hoisting equipment with good stabilizing effect as claimed in claim 1, wherein the control switch (5) is embedded in the middle position of the left side of the front surface of the rotating platform (61); the rotating table (61) is a circular stainless steel seat; the auxiliary support arm rod (9) and the main support arm rod (10) are respectively connected with the rotating platform (61) through bolts.
6. The industrial engineering transportation lifting equipment with good stabilizing effect as claimed in claim 1, wherein the upper connecting flange (68) and the lower connecting flange (76) are arranged in a bolted connection; the anti-slip sleeve (63) is a cylindrical silica gel sleeve; the limiting block (64) is a cylindrical rubber block.
7. The industrial engineering conveying hoisting equipment with good stabilizing effect according to claim 3, wherein the winding motor (81) is bolted to the left position of the upper surface of the rotating platform (61).
8. The industrial engineering conveying hoisting equipment with good stabilizing effect according to claim 3, wherein the hoisting oil wire rope (11) is a stainless steel oil wire rope with a diameter of five to ten millimeters; the hoisting oiled silk rope (11) penetrates through a gap between the oiled silk winding wheel (83) and the limiting cross rod (84), is wound on the outer surface of the oiled silk winding wheel (83), and is riveted with the oiled silk winding wheel (83).
9. The industrial engineering conveying hoisting equipment with good stabilizing effect as claimed in claim 1, wherein the moving wheel (2) is a rubber universal wheel with a brake pad; the connecting sheet (12) is a rectangular stainless steel sheet.
10. The industrial engineering conveying hoisting equipment with good stabilizing effect according to claim 2, wherein the supporting base frame (71) is bolted to the upper surface of the hoisting base (1); the upper triangular reinforcing plate (66) and the lower triangular reinforcing plate (77) are respectively made of right-angled triangular stainless steel plates; the lower triangular reinforcing plate (77) is arranged at the upper part of the inclined stay bar (75).
CN201920876642.6U 2019-06-12 2019-06-12 Stable effectual industrial engineering is carried with lifting by crane equipment Expired - Fee Related CN210064972U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920876642.6U CN210064972U (en) 2019-06-12 2019-06-12 Stable effectual industrial engineering is carried with lifting by crane equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920876642.6U CN210064972U (en) 2019-06-12 2019-06-12 Stable effectual industrial engineering is carried with lifting by crane equipment

Publications (1)

Publication Number Publication Date
CN210064972U true CN210064972U (en) 2020-02-14

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920876642.6U Expired - Fee Related CN210064972U (en) 2019-06-12 2019-06-12 Stable effectual industrial engineering is carried with lifting by crane equipment

Country Status (1)

Country Link
CN (1) CN210064972U (en)

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