CN113714428A - Truncation equipment capable of adjusting truncation length of reinforcing steel bar for building - Google Patents
Truncation equipment capable of adjusting truncation length of reinforcing steel bar for building Download PDFInfo
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- CN113714428A CN113714428A CN202110974172.9A CN202110974172A CN113714428A CN 113714428 A CN113714428 A CN 113714428A CN 202110974172 A CN202110974172 A CN 202110974172A CN 113714428 A CN113714428 A CN 113714428A
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21F—WORKING OR PROCESSING OF METAL WIRE
- B21F11/00—Cutting wire
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B21—MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
- B21F—WORKING OR PROCESSING OF METAL WIRE
- B21F23/00—Feeding wire in wire-working machines or apparatus
- B21F23/005—Feeding discrete lengths of wire or rod
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Abstract
The invention relates to a cutting device, in particular to a cutting device capable of adjusting the cutting length of a steel bar for a building. The invention provides a truncation device capable of adjusting truncation length of a steel bar for a building, which can adjust truncation length and is convenient to operate. The utility model provides an equipment of cuting of adjustable reinforcing bar length is cuted to building, including: a base; the universal wheels are rotatably arranged around the bottom of the base; the base is provided with a first shell; a push handle is arranged on one side of the first shell; the cut-off component is arranged in the first shell; the cylinder is arranged on the upper side of the cut-off component; scissors are arranged on the lower side of the cutting component. People start the cylinder, and the telescopic link of cylinder can drive the briquetting and reciprocate, when the briquetting moved down and the scissors contact, can drive the outside opening in the scissors, because under lever principle's effect, the scissors downside can be closed to the inboard, when scissors and reinforcing bar contact to cut the reinforcing bar.
Description
Technical Field
The invention relates to a cutting device, in particular to a cutting device capable of adjusting the cutting length of a steel bar for a building.
Background
The steel bar cutting machine is one of the indispensable equipments for cutting steel bar, and is mainly used for fixed-length cutting of steel bar in the engineering of building construction, bridge, tunnel, power station and large-scale water conservancy.
Present bar cutter is mostly manual control, and the position of the good required bar length apart from the bar cutter edge of a knife of manual work is measured, drags the edge of a knife that the reinforcing bar passed bar cutter through the workman until measuring good position, and another workman controls the blanking of bar cutter, and the workman guides the reinforcing bar of truncation to windrow platform, and the workman returns the edge of a knife position and continues to drag the reinforcing bar. The workman drags the reinforcing bar to the assigned position and cuts, has the personal error of reinforcing bar unloading length, and the workman drags the reinforcing bar reciprocal, has increased intensity of labour.
Aiming at the defects in the prior art, the invention provides the truncation equipment capable of adjusting the truncation length of the reinforcing steel bar for the building, which can adjust the truncation length and is convenient to operate.
Disclosure of Invention
In order to overcome the workman and drag the reinforcing bar to the assigned position and cut, there is the personal error of reinforcing bar unloading length, the reciprocal reinforcing bar that drags of workman has increased intensity of labour's shortcoming, technical problem: the utility model provides a can adjust and cut length and convenient operation's adjustable reinforcing bar for building equipment of cuting of length.
The technical scheme is as follows: the utility model provides an equipment of cuting of adjustable reinforcing bar length is cuted to building, including: a base; the universal wheels are rotatably arranged around the bottom of the base; the base is provided with a first shell; a push handle is arranged on one side of the first shell; the cut-off component is arranged in the first shell; the cylinder is arranged on the upper side of the cut-off component; the scissors are arranged on the lower side of the cutting-off component; the adjusting component is arranged on one side inside the first shell.
Preferably, the cutoff member includes: the upper side in the first shell is provided with a first supporting rod, and the first supporting rod is connected with the air cylinder; the base is provided with a support frame, and one side of the support frame is symmetrically and rotatably connected with the scissors; the two sides of the top of the support frame are provided with first guide rods; the pressing block is arranged between the upper sides of the first guide rods in a sliding mode and connected with a telescopic rod of the air cylinder, and the pressing block is matched with the scissors; a supporting cylinder is arranged on one side of the base; a collecting frame is arranged on one side of the base; the torsional springs are symmetrically connected between the scissors and the supporting frame and are respectively sleeved on the scissors.
Preferably, the adjusting assembly comprises: the clamping teeth are symmetrically arranged on one side inside the first shell; two first supporting blocks are symmetrically arranged on one side inside the first shell; the first sliding rod is arranged between the first supporting blocks on the two sides of the first sliding rod in a sliding manner; the first springs are connected between the first sliding rod and the first supporting block and are respectively sleeved on the first supporting block; the middle parts of the first clamping blocks and the first sliding rods are respectively provided with a first clamping block in a sliding manner, and the first clamping blocks are matched with the clamping teeth; the first stop block is arranged between the first stop blocks; the handle is arranged on the upper side of the first stop block, and the handle is matched with the first shell in a sliding mode.
Preferably, still including spacing subassembly, spacing subassembly is including: the second supporting blocks are symmetrically arranged on two sides in the first shell; the lower sides of the second supporting blocks are both provided with second sliding rods in a sliding manner; the second stop block is arranged between the inner sides of the second sliding rods on the two sides; the second springs are connected between the second sliding rod and the second supporting block and are respectively sleeved on the second sliding rod; the third supporting blocks are arranged on two sides inside the first shell; the ejector rod is arranged between the upper sides of the third supporting blocks in a sliding mode, and the ejector rod is matched with the pressing block; and a third spring is connected between the ejector rod and the third supporting block and sleeved on the ejector rod.
Preferably, the device further comprises a pushing assembly, wherein the pushing assembly comprises: the second shell is arranged on one side of the first shell; the second supporting block is arranged on the two sides of the inner side of the second shell; the upper sides of the fourth supporting blocks are provided with groove blocks; the rotating shafts are rotatably arranged on the inner sides of the groove blocks; the spring is connected between the rotating shaft and the groove block and sleeved on the rotating shaft respectively; the belt is wound between the lower sides of the rotating shafts and matched with the supporting cylinder.
Preferably, the device further comprises a clamping assembly, wherein the clamping assembly comprises: the bottom of the support frame is symmetrically provided with fifth supporting blocks; a third slide bar is arranged on the lower side of each fifth supporting block in a sliding manner, and the third slide bar is matched with the second slide bar; the fourth springs are connected between the third sliding rod and the fifth supporting block and are respectively sleeved on the third sliding rod; the inner sides of the clamping blocks and the third sliding rod are provided with the clamping blocks.
Preferably, the locking device further comprises a locking assembly, wherein the locking assembly comprises: the clamping rods are arranged on one sides of the third sliding rods; the two sides of the bottom of the supporting frame are provided with second supporting rods; the inner sides of the second supporting rods are respectively provided with a second clamping block in a sliding manner, and the second clamping blocks are respectively matched with the clamping rods; the fifth springs are connected between the second clamping blocks and the second supporting rod and are respectively sleeved on the second clamping blocks; the second guide rod is arranged on the middle side of the top of the support frame; the pull rod is arranged in the middle of the second guide rod in a sliding mode, the upper side of the pull rod is matched with the pressing block, and the lower side of the pull rod is matched with the second clamping block.
Preferably, the first support rod is connected with the cylinder through a bolt.
The beneficial effects are that: people start the cylinder, and the telescopic link of cylinder can drive the briquetting and reciprocate, when the briquetting moved down and the scissors contact, can drive the outside opening in the scissors, because under lever principle's effect, the scissors downside can be closed to the inboard, when scissors and reinforcing bar contact to cut the reinforcing bar.
When the briquetting moved down and the ejector pin contact, can drive the ejector pin and move down, when the ejector pin moved down and the contact of second slide bar, can drive the second slide bar and move to the inboard, the second slide bar can drive the second stopper and move to the inboard, thereby the second stopper carries on spacingly with the reinforcing bar for the position of cuting is more accurate.
When the second slide bar moves to the inboard and contacts with the third slide bar, can drive the third slide bar and move to the inboard, the fourth spring takes place deformation, and the third slide bar can drive the clamp splice and move to the inboard, thereby the clamp splice presss from both sides the reinforcing bar tightly for the skew can not take place for the position of the in-process reinforcing bar of being cut off, has improved people's work efficiency.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a partial sectional structural schematic view of the present invention.
Fig. 3 is a perspective view of the cut-off assembly of the present invention.
Fig. 4 is a schematic perspective view of an adjustment assembly of the present invention.
Fig. 5 is a schematic perspective view of the spacing assembly of the present invention.
Fig. 6 is a schematic perspective view of the pushing assembly of the present invention.
Fig. 7 is a perspective view of the clamping assembly of the present invention.
Fig. 8 is a perspective view of the locking assembly of the present invention.
In the reference symbols: 1-a base, 2-a universal wheel, 3-a first shell, 4-a pushing handle, 5-a cylinder, 6-a scissors, 7-a cutting component, 701-a first supporting rod, 702-a supporting frame, 703-a first guide rod, 704-a pressing block, 705-a supporting cylinder, 706-a collecting frame, 707-a torsional spring, 8-an adjusting component, 801-a latch, 802-a first supporting block, 803-a first sliding rod, 804-a first spring, 805-a first stop block, 806-a first stop block, 807-a handle, 9-a limiting component, 901-a second supporting block, 902-a second sliding rod, 903-a second stop block, 904-a second spring, 905-a third supporting block, 906-a mandril, 907-a third spring and 10-a pushing component, 1001-second housing, 1002-fourth support block, 1003-groove block, 1004-rotation shaft, 1005-clockwork spring, 1006-belt, 11-clamping component, 1101-fifth support block, 1102-third slide bar, 1103-fourth spring, 1104-clamping block, 12-locking component, 1201-clamping bar, 1202-second support bar, 1203-second clamping block, 1204-fifth spring, 1205-second guide bar, 1206-pull bar.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings.
Example 1
The utility model provides an adjustable reinforcing bar cuts equipment of cuting of length for building, as shown in fig. 1-4, including base 1, universal wheel 2, first shell 3, push away 4, cylinder 5, scissors 6, cut subassembly 7 and adjusting part 8, base 1 bottom rotary type all around is equipped with universal wheel 2, be equipped with first shell 3 on the base 1, 3 front sides of first shell are equipped with push away 4, the inside subassembly 7 that cuts that is equipped with of first shell 3, it is equipped with cylinder 5 to cut 7 upsides of subassembly, it is equipped with scissors 6 to cut 7 downside of subassembly, the inside rear side of first shell 3 is equipped with adjusting part 8.
The cutting-off component 7 comprises a first supporting rod 701, a supporting frame 702, a first guide rod 703, a pressing block 704, a supporting cylinder 705, a collecting frame 706 and a torsion spring 707, the first supporting rod 701 is arranged on the upper side inside the first shell 3, the first supporting rod 701 is connected with the air cylinder 5, the supporting frame 702 is arranged on the base 1, the left side and the right side of the front side of the supporting frame 702 are connected with the scissors 6 in a rotating mode, the first guide rod 703 is arranged on the left side and the right side of the top of the supporting frame 702, the pressing block 704 is arranged between the upper sides of the first guide rods 703 in a sliding mode, the pressing block 704 is connected with an expansion rod of the air cylinder 5, the pressing block 704 is matched with the scissors 6, the supporting cylinder 705 is arranged on the front side of the base 1, the collecting frame 706 is arranged on the rear side of the base 1, the torsion springs 707 are symmetrically connected between the scissors 6 and the supporting frame 702, and the torsion springs 707 are respectively sleeved on the scissors 6.
The adjusting assembly 8 comprises a latch 801, first supporting blocks 802, a first sliding rod 803, a first spring 804, a first stopper 805, a first clamping block 806 and a handle 807, wherein the latch 801 is symmetrically arranged at the rear side inside the first shell 3, two first supporting blocks 802 are symmetrically arranged at the rear side inside the first shell 3, the first sliding rod 803 is slidably arranged between the first supporting blocks 802 at the front side and the rear side, the first spring 804 is connected between the first sliding rod 803 and the first supporting block 802, the first spring 804 is respectively sleeved on the first supporting blocks 802, the first clamping block 806 is slidably arranged at the middle part of the first sliding rod 803, the first clamping block 806 is mutually matched with the latch 801, the first stopper 805 is arranged between the first clamping blocks 806, the handle 807 is arranged at the upper side of the first stopper 805, and the handle 807 is slidably matched with the first shell 3.
People penetrate a reinforcing steel bar through the supporting cylinder 705, then contact a section of the reinforcing steel bar with the first stop block 805, the first clamping block 806 is in contact fit with the latch 801 in an initial state, so that the first clamping block 806 and the first stop block 805 are fixed, people move the handle 807 upwards, the handle 807 drives the first clamping block 806, the first sliding rod 803 and the first stop block 805 to move upwards, the first spring 804 deforms, when the first clamping block 806 is separated from the latch 801, people can move the handle 807 forwards and backwards, the handle 807 drives the first stop block 805 and the first latch 801 to move forwards and backwards, after the position is adjusted to a specified position, the handle 807 is released, the first clamping block 806 and the first stop block 805 are driven to move downwards to reset under the reset action of the first spring 804, the first clamping block 806 is continuously matched with the latch 801, at the moment, people start the air cylinder 5, the telescopic rod of the air cylinder 5 drives the pressing block 704 to move upwards and downwards, when briquetting 704 moves down and scissors 6 contacts, can drive 6 lateral opening on the scissors, deformation takes place for torsional spring 707, because under the effect of lever principle, 6 downside of scissors can be closed to the inboard, when scissors 6 contacts with the reinforcing bar, thereby cut the reinforcing bar, when briquetting 704 rebound with add when breaking away from, because under the reset action of torsional spring 707, can drive scissors 6 and reset, thereby the reinforcing bar of cutting can the downstream drop to collect in the frame 706, after work, people close cylinder 5, will collect the reinforcing bar in the frame 706 and collect can.
Example 2
On the basis of embodiment 1, as shown in fig. 5 to 8, the portable electronic device further includes a limiting component 9, the limiting component 9 includes a second supporting block 901, a second sliding rod 902, a second stopper 903, a second spring 904, a third supporting block 905, a top bar 906 and a third spring 907, the second supporting block 901 is symmetrically disposed on the left and right sides inside the first housing 3, the second sliding rod 902 is slidably disposed on the lower side of the second supporting block 901, the second stopper 903 is disposed between the inner sides of the second sliding rod 902 on the front and rear sides, the second spring 904 is connected between the second sliding rod 902 and the second supporting block 901, the second spring 904 is respectively sleeved on the second sliding rod 902, the third supporting block 905 is disposed on the left and right sides inside the first housing 3, the top bar 906 is slidably disposed between the upper sides 905 of the third supporting block, the top bar 906 and the pressing block are mutually matched, the third spring 907 is connected between the top bar 906 and the third supporting block 905, a third spring 907 is fitted over the top bar 906.
When briquetting 704 moves down and the contact of ejector pin 906, can drive ejector pin 906 downstream, third spring 907 takes place the deformation, when ejector pin 906 moves down and the contact of second slide bar 902, can drive second slide bar 902 and move to the inboard, second spring 904 takes place the deformation, second slide bar 902 can drive second stopper 903 and move to the inboard, second stopper 903 thereby carries on spacingly with the reinforcing bar, make the position of cuting more accurate, when briquetting 704 upward movement and ejector pin 906 break away from, because under the reset action of third spring 907, can drive ejector pin 906 rebound to reset, when ejector pin 906 breaks away from with second slide bar 902, because under the reset action of second spring 904, can drive second slide bar 902 and second stopper 903 and move to the outside and reset.
The push component 10 comprises a second shell 1001, a fourth supporting block 1002, a groove block 1003, a rotating shaft 1004, a clockwork spring 1005 and a belt 1006, the second shell 1001 is arranged on the front side of the first shell 3, the fourth supporting block 1002 is arranged on the left side and the right side of the inner side of the second shell 1001, the groove block 1003 is arranged on the upper side of the fourth supporting block 1002, the rotating shaft 1004 is arranged on the inner side of the groove block 1003 in a rotating mode, the clockwork spring 1005 is connected between the rotating shaft 1004 and the groove block 1003, the clockwork spring 1005 is sleeved on the rotating shaft 1004 respectively, the belt 1006 is wound between the lower sides of the rotating shaft 1004, and the belt 1006 and the supporting cylinder 705 are matched with each other.
People open second shell 1001, outside pulling belt 1006, belt 1006 can drive rotation axis 1004 forward rotation, clockwork spring 1005 takes place deformation, then people contact reinforcing bar one end and belt 1006, after the reinforcing bar is cut off, because under clockwork spring 1005's the effect that resets, can drive rotation axis 1004 reverse rotation, rotation axis 1004 can tighten up belt 1006, thereby belt 1006 promotes the reinforcing bar to the rear side, thereby make automatic feeding work, people's work efficiency has been improved.
The clamping device comprises a clamping assembly 11, the clamping assembly 11 comprises a fifth supporting block 1101, a third sliding bar 1102, a fourth spring 1103 and a clamping block 1104, the fifth supporting block 1101 is symmetrically arranged at the bottom of a supporting frame 702, the third sliding bar 1102 is arranged on the lower side of the fifth supporting block 1101 in a sliding mode, the third sliding bar 1102 and the second sliding bar 902 are matched with each other, the fourth spring 1103 is connected between the third sliding bar 1102 and the fifth supporting block 1101, the fourth spring 1103 is respectively sleeved on the third sliding bar 1102, and the clamping block 1104 is arranged on the inner side of the third sliding bar 1102.
When the second slide bar 902 moves to the inner side and contacts with the third slide bar 1102, the third slide bar 1102 is driven to move to the inner side, the fourth spring 1103 deforms, the third slide bar 1102 drives the clamp 1104 to move to the inner side, the clamp 1104 clamps the steel bar, the position of the cut steel bar cannot deviate in the process of being cut, the work efficiency of people is improved, when the second slide bar 902 moves to the outer side and is separated from the third slide bar 1102, and the third slide bar 1102 and the clamp 1104 can be driven to move to the outer side to reset under the reset action of the fourth spring 1103.
The locking device is characterized by further comprising a locking assembly 12, the locking assembly 12 comprises a clamping rod 1201, a second supporting rod 1202, a second clamping block 1203, a fifth spring 1204, a second guide rod 1205 and a pull rod 1206, the clamping rod 1201 is arranged on the front side of the third sliding rod 1102, the second supporting rod 1202 is arranged on the left side and the right side of the bottom of the supporting frame 702, a second clamping block 1203 is arranged on the inner side of the second supporting rod 1202 in a sliding mode, the second clamping block 1203 is matched with the clamping rod 1201 respectively, the fifth spring 1204 is connected between the second clamping block 1203 and the second supporting rod 1202, the fifth spring 1204 is sleeved on the second clamping block 1203 respectively, the second guide rod 1205 is arranged on the middle side of the top of the supporting frame 702, the pull rod 1206 is arranged on the middle of the second guide rod 1205 in a sliding mode, the upper side of the pull rod 1206 is matched with the pressing block 704, and the lower side of the pull rod 1206 is matched with the second clamping block 1203.
In an initial state, the upper side of the pull rod 1206 contacts the pressing block 704, the lower side of the pull rod 1206 contacts the second clamping block 1203, the fifth spring 1204 is in a deformation state, when the pressing block 704 moves downwards to be separated from the pull rod 1206, the pull rod 1206 and the second clamping block 1203 are driven to move downwards due to the reset action of the fifth spring 1204, when the third sliding rod 1102 moves inwards, the clamping rod 1201 is driven to move inwards, when the clamping rod 1201 contacts the second clamping block 1203, the second clamping block 1203 is driven to move upwards, when the clamping rod 1201 continues to move inwards to be separated from the second clamping block 1203, the second clamping block 1203 moves downwards to clamp the clamping rod 1201, so that the operation convenience of people is improved, when the pressing block 704 moves upwards to be contacted with the pull rod 1206, the pull rod 1206 is driven to move upwards, the second clamping block 1203 is driven to move upwards by the pull rod 1206, the fifth spring 1204 deforms, and when the second clamping block 1203 is separated from the clamping rod 1201, the pull rod 1206 will thus move to the outside to reset.
The embodiments described above are provided to enable persons skilled in the art to make or use the invention and that modifications or variations can be made to the embodiments described above by persons skilled in the art without departing from the inventive concept of the present invention, so that the scope of protection of the present invention is not limited by the embodiments described above but should be accorded the widest scope consistent with the innovative features set forth in the claims.
Claims (8)
1. The utility model provides an equipment of cuting of adjustable reinforcing bar length for building which characterized in that, including:
a base (1);
the universal wheel (2) is rotatably arranged around the bottom of the base (1);
the base (1) is provided with a first shell (3);
a push handle (4), wherein one side of the first shell (3) is provided with the push handle (4);
the cut-off component (7) is arranged in the first shell (3);
the cylinder (5) is arranged on the upper side of the cut-off component (7);
scissors (6) are arranged at the lower side of the cutting-off component (7);
the adjusting component (8) is arranged on one side inside the first shell (3).
2. The cutting device for the adjustable cutting length of the steel bars for buildings according to claim 1, characterized in that the cutting component (7) comprises:
the upper side in the first shell (3) is provided with a first supporting rod (701), and the first supporting rod (701) is connected with the cylinder (5);
the supporting frame (702) is arranged on the base (1), and one side of the supporting frame (702) is symmetrically connected with the scissors (6) in a rotating manner;
the first guide rods (703) are arranged on two sides of the top of the support frame (702);
the pressing block (704) is arranged between the upper sides of the first guide rods (703) in a sliding mode, the pressing block (704) is connected with a telescopic rod of the air cylinder (5), and the pressing block (704) is matched with the scissors (6);
a supporting cylinder (705), wherein the supporting cylinder (705) is arranged on one side of the base (1);
the collecting frame (706) is arranged on one side of the base (1);
torsion springs (707) are symmetrically connected between the scissors (6) and the support frame (702), and the torsion springs (707) are respectively sleeved on the scissors (6).
3. The cutting device for the cutting length of the constructional adjustable steel bars according to claim 2, characterized in that the adjusting assembly (8) comprises:
the clamping teeth (801) are symmetrically arranged on one side inside the first shell (3);
the first supporting block (802), two first supporting blocks (802) are symmetrically arranged on one side inside the first shell (3);
the first sliding rod (803) is arranged between the first supporting blocks (802) at two sides of the first sliding rod (803) in a sliding manner;
the first springs (804) are connected between the first sliding rod (803) and the first supporting block (802), and the first springs (804) are respectively sleeved on the first supporting block (802);
the middle parts of the first clamping blocks (806) and the first sliding rods (803) are respectively provided with the first clamping blocks (806) in a sliding manner, and the first clamping blocks (806) are matched with the clamping teeth (801);
the first stop block (805) is arranged between the first clamping blocks (806);
a handle (807), a handle (807) is arranged on the upper side of the first block (805), and the handle (807) is in sliding fit with the first shell (3).
4. The truncation equipment of adjustable length for truncation of reinforcing steel bars for building according to claim 3, further comprising a limiting component (9), wherein the limiting component (9) comprises:
the second supporting blocks (901) are symmetrically arranged on two sides in the first shell (3);
a second sliding rod (902) is arranged on the lower side of the second supporting block (901) in a sliding manner;
a second stop block (903), wherein the second stop block (903) is arranged between the inner sides of the second sliding rods (902) on the two sides;
the second springs (904) are connected between the second sliding rod (902) and the second supporting block (901), and the second springs (904) are respectively sleeved on the second sliding rod (902);
the third supporting block (905), and the third supporting block (905) is arranged on two sides in the first shell (3);
the ejector rod (906) is arranged between the upper sides of the third supporting blocks (905) in a sliding mode, and the ejector rod (906) is matched with the pressing block (704);
and a third spring (907) is connected between the ejector rod (906) and the third supporting block (905), and the third spring (907) is sleeved on the ejector rod (906).
5. The apparatus for cutting off the length of the steel bar for construction according to claim 4, further comprising a pushing assembly (10), wherein the pushing assembly (10) comprises:
a second housing (1001), wherein the second housing (1001) is arranged on one side of the first housing (3);
the fourth supporting block (1002), the second shell (1001) is equipped with the fourth supporting block (1002) on both sides of inboard;
the upper sides of the groove blocks (1003) and the fourth supporting block (1002) are provided with the groove blocks (1003);
a rotating shaft (1004), wherein the rotating shaft (1004) is rotatably arranged at the inner side of the groove block (1003);
the spring springs (1005) are connected between the rotating shaft (1004) and the groove block (1003), and the spring springs (1005) are respectively sleeved on the rotating shaft (1004);
the belt (1006) is wound between the lower sides of the rotating shafts (1004), and the belt (1006) is matched with the supporting cylinder (705).
6. The cutting device for the cutting length of the constructional adjustable steel bars according to claim 5, which further comprises a clamping assembly (11), wherein the clamping assembly (11) comprises:
the bottom of the supporting frame (702) is symmetrically provided with the fifth supporting block (1101);
a third sliding rod (1102) is arranged on the lower side of the fifth supporting block (1101) in a sliding mode, and the third sliding rod (1102) is matched with the second sliding rod (902);
a fourth spring (1103) is connected between the third sliding rod (1102) and the fifth supporting block (1101), and the fourth springs (1103) are respectively sleeved on the third sliding rod (1102);
the inner sides of the clamp blocks (1104) and the third sliding rod (1102) are provided with the clamp blocks (1104).
7. The adjustable steel bar chopping device for building of claim 6, further comprising a locking assembly (12), wherein the locking assembly (12) comprises:
the clamping rods (1201) are arranged on one sides of the third sliding rods (1102);
the two sides of the bottom of the supporting frame (702) are provided with second supporting rods (1202);
the inner sides of the second supporting rods (1202) are respectively provided with a second fixture block (1203) in a sliding manner, and the second fixture blocks (1203) are respectively matched with the fixture rods (1201);
a fifth spring (1204) is connected between the second fixture block (1203) and the second support rod (1202), and the fifth springs (1204) are respectively sleeved on the second fixture block (1203);
the second guide rod (1205), the second guide rod (1205) is set up in the top middle side of the supporting arm (702);
pull rod (1206), second guide bar (1205) middle part slidable type is equipped with pull rod (1206), mutually supports between pull rod (1206) upside and briquetting (704), mutually supports between pull rod (1206) downside and second fixture block (1203).
8. The cutting device for the adjustable cutting length of the steel bars for buildings according to claim 2, wherein the first support rod (701) is connected with the cylinder (5) through a bolt.
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CN202110974172.9A CN113714428B (en) | 2021-08-24 | 2021-08-24 | Cutting equipment for building adjustable steel bar cutting length |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN115007603A (en) * | 2022-04-25 | 2022-09-06 | 江苏益铨数控科技有限公司 | Construction waste reinforcing bar packing apparatus with cut function |
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CN112806178A (en) * | 2021-01-21 | 2021-05-18 | 刘梦婷 | Equipment is decided to over-and-under type view trees deadwood |
CN112872243A (en) * | 2021-01-15 | 2021-06-01 | 江西清江建设发展有限公司 | Specified length cutting equipment for reinforcing steel bar for house building |
CN213313258U (en) * | 2020-10-16 | 2021-06-01 | 贵州工程应用技术学院 | But table tennis training is with height-adjusting's table tennis table |
CN113000737A (en) * | 2021-03-26 | 2021-06-22 | 五冶集团上海有限公司 | Construction steel bar cuts device |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN115007603A (en) * | 2022-04-25 | 2022-09-06 | 江苏益铨数控科技有限公司 | Construction waste reinforcing bar packing apparatus with cut function |
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