CN107904526A - A kind of combined trainer triangle aluminum alloy frame and its processing method - Google Patents

A kind of combined trainer triangle aluminum alloy frame and its processing method Download PDF

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Publication number
CN107904526A
CN107904526A CN201711168565.0A CN201711168565A CN107904526A CN 107904526 A CN107904526 A CN 107904526A CN 201711168565 A CN201711168565 A CN 201711168565A CN 107904526 A CN107904526 A CN 107904526A
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weight
parts
metal
metallic
aluminum alloy
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洪琦
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Nanchang Institute of Technology
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Nanchang Institute of Technology
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    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C47/00Making alloys containing metallic or non-metallic fibres or filaments
    • C22C47/08Making alloys containing metallic or non-metallic fibres or filaments by contacting the fibres or filaments with molten metal, e.g. by infiltrating the fibres or filaments placed in a mould
    • CCHEMISTRY; METALLURGY
    • C22METALLURGY; FERROUS OR NON-FERROUS ALLOYS; TREATMENT OF ALLOYS OR NON-FERROUS METALS
    • C22CALLOYS
    • C22C49/00Alloys containing metallic or non-metallic fibres or filaments
    • C22C49/02Alloys containing metallic or non-metallic fibres or filaments characterised by the matrix material
    • C22C49/04Light metals
    • C22C49/06Aluminium

Abstract

The invention discloses a kind of combined trainer triangle aluminum alloy frame, include following components in parts by weight:100 120 parts by weight of metallic aluminium, 13 parts by weight of Preparation of Metallic Strontium, 0.65 0.85 parts by weight of manganese metal, 0.40 0.85 parts by weight of magnesium metal, 0.05 0.15 parts by weight of Titanium, 0.10 0.30 parts by weight of lanthanoid metal, 0.25 0.85 parts by weight of crome metal, 0.65 0.95 parts by weight of metallic iron, 1.8 4.8 parts by weight of metallic copper, 1.2 3.2 parts by weight of metallic zinc, 0.01 0.04 parts by weight of neodymium metal, 35 40 parts by weight of titanium-niobium alloy, 10 16 parts by weight of copper molybdenum alloy, 20 25 parts by weight of iron-nickel alloy, 13 parts by weight of silicon sulfide, 5.6 9.6 parts by weight of graphene, 2.5 6.5 parts by weight of rare earth, 10 16 parts by weight of celion powder;The processing method for also disclosing combined trainer triangle aluminum alloy frame;The wear-resisting property of combined trainer triangle aluminum alloy frame is improved, not easy to wear, fluent movements during use, and action criteria;It can work normally in humid conditions, rust-proofing ability is strong, extends the service life of frame;Process is pollution-free, improves operating environment.

Description

A kind of combined trainer triangle aluminum alloy frame and its processing method
Technical field
The present invention relates to sports equipment processing technique field, be specifically a kind of combined trainer triangle aluminum alloy frame and Its processing method.
Background technology
Combined trainer is also multifunctional training equipment, is commonly used in gymnasium, is also often called integrated multifunctional training Equipment.Combined trainer includes main chassis, and the both ends of main chassis are connected to preceding footing and rear footing, the upper surface of main chassis Be connected with adjusting post, including rake and bent portion, the upper end of rake is connected with one end of bent portion, bent portion it is another One end in the middle part of main frame body with being connected, and the bottom of main frame body is placed on preceding footing, and the top of main frame body is connected with curved frame body, main The front surface of frame body is equipped with back cushion, and back cushion rear surface is connected with two torque arm by drawing pin, on the rake of adjusting post Draw the elastic rope adjustment seat of pin connection by adjusting, stretch cord adjustment seat is connected with one end of stretch cord group, stretch cord group it is another One end is connected with the first steel wire rope through stretch cord pulley base, and the first steel wire buckle, the connection of the first steel wire buckle are equipped with by the 3rd pulley There is one end of the second steel wire rope, the other end of the second steel wire rope sequentially passes through each pulley and is connected with steel wire buckle.
Due to combined trainer use more frequently, and the body-building action that can be realized is more, therefore to combined training The indexs such as the intensity of device triangular framing have higher requirement, but existing combined trainer triangular framing is using tradition Material, therefore the index such as wear-resisting property, rustless property and intensity is not well positioned to meet the use of combined trainer, therefore comprehensive The service life for closing training aids is often shorter than other fitness equipments.
The content of the invention
It is an object of the invention to provide a kind of combined trainer triangle aluminum alloy frame, to solve above-mentioned background technology The problem of middle proposition.
To achieve the above object, the present invention provides following technical solution:
A kind of combined trainer triangle aluminum alloy frame, the combined trainer triangle aluminum alloy frame include by According to the following components of parts by weight meter:
Metallic aluminium 100-120 parts by weight, Preparation of Metallic Strontium 1-3 parts by weight, manganese metal 0.65-0.85 parts by weight, magnesium metal 0.40- 0.85 parts by weight, Titanium 0.05-0.15 parts by weight, lanthanoid metal 0.10-0.30 parts by weight, crome metal 0.25-0.85 parts by weight, Metallic iron 0.65-0.95 parts by weight, metallic copper 1.8-4.8 parts by weight, metallic zinc 1.2-3.2 parts by weight, neodymium metal 0.01-0.04 Parts by weight, titanium-niobium alloy 35-40 parts by weight, copper molybdenum alloy 10-16 parts by weight, iron-nickel alloy 20-25 parts by weight, silicon sulfide 1-3 Parts by weight, graphene 5.6-9.6 parts by weight, rare earth 2.5-6.5 parts by weight, celion powder 10-16 parts by weight.
As the further scheme of the present invention:The combined trainer triangle aluminum alloy frame includes according to parts by weight The following components of meter:
110 parts by weight of metallic aluminium, 2 parts by weight of Preparation of Metallic Strontium, 0.75 parts by weight of manganese metal, 0.65 parts by weight of magnesium metal, metal 0.10 parts by weight of titanium, 0.20 parts by weight of lanthanoid metal, 0.55 parts by weight of crome metal, 0.70 parts by weight of metallic iron, 2.8 weight of metallic copper Part, 2.5 parts by weight of metallic zinc, 0.02 parts by weight of neodymium metal, 37 parts by weight of titanium-niobium alloy, 13 parts by weight of copper molybdenum alloy, iron nickel close Golden 23 parts by weight, 2 parts by weight of silicon sulfide, 7.5 parts by weight of graphene, 4.0 parts by weight of rare earth, 13 parts by weight of celion powder.
As further scheme of the invention:The graphene is nanoscale graphite alkene.
As further scheme of the invention:The celion powder is T400-T600.
As further scheme of the invention:The yield strength of the combined trainer triangle aluminum alloy frame is More than 1800MPa, tensile strength are more than 268MPa, and elongation percentage is more than 1.9%.
A kind of processing method of combined trainer triangle aluminum alloy frame, this method comprise the following steps:
S1:Each component raw material is weighed on request;
S2:By metallic aluminium, Preparation of Metallic Strontium, manganese metal, magnesium metal, Titanium, lanthanoid metal, crome metal, metallic iron, metallic copper, Metallic zinc, neodymium metal are added in high-speed mixer and are mixed, and the rotating speed of high-speed mixer is 150-350r/min, during mixing Between be 30-60min, obtain mixture A;
S3:Titanium-niobium alloy, copper molybdenum alloy part, iron-nickel alloy, silicon sulfide, graphene, rare earth, celion powder are added Mixed into high-speed mixer, the rotating speed of high-speed mixer is 85-125r/min, and incorporation time 40-80min, obtains Mixture B;
S4:Mixture B is added in reaction kettle, is reacted 20-25 minutes for 180-260 DEG C in temperature, material C is made;
S5:Mixture A and material C are added in ball mill and be ground at the same time, milling time 4-5.5h, is mixed Compound D;
S6:Mixture D is added in the heating furnace with agitating device, the temperature of heating furnace is 580-650 DEG C, heating Time is 3-5h, obtains fusant E;
S7:Using the technique of discontinuous casting, fusant E is injected into crystallisation vessel, temperature-reduction at constant speed, obtains crystalline solid F;
S8:By crystalline solid F die casts.
As further scheme of the invention:The processing method of the combined trainer triangle aluminum alloy frame, should Method comprises the following steps:
S1:Each component raw material is weighed on request;
S2:By metallic aluminium, Preparation of Metallic Strontium, manganese metal, magnesium metal, Titanium, lanthanoid metal, crome metal, metallic iron, metallic copper, Metallic zinc, neodymium metal are added in high-speed mixer and are mixed, and the rotating speed of high-speed mixer is 200r/min, and incorporation time is 45min, obtains mixture A;
S3:Titanium-niobium alloy, copper molybdenum alloy part, iron-nickel alloy, silicon sulfide, graphene, rare earth, celion powder are added Mixed into high-speed mixer, the rotating speed of high-speed mixer is 100r/min, and incorporation time 55min, obtains mixture B;
S4:Mixture B is added in reaction kettle, is reacted 23 minutes for 220 DEG C in temperature, material C is made;
S5:Mixture A and material C are added in ball mill and be ground at the same time, milling time 5h, obtains mixture D;
S6:Mixture D is added in the heating furnace with agitating device, the temperature of heating furnace is 610 DEG C, heating time For 4h, fusant E is obtained;
S7:Using the technique of discontinuous casting, fusant E is injected into crystallisation vessel, temperature-reduction at constant speed, obtains crystalline solid F;
S8:By crystalline solid F die casts.
As further scheme of the invention:Ratio of grinding media to material is 50 in the ball mill:1-55:1
As further scheme of the invention:The high-speed mixer is double-spiral conical mixer.
Compared with prior art, the beneficial effects of the invention are as follows:
1st, the wear-resisting property of combined trainer triangle aluminum alloy frame is improved, it is not easy to wear, moved during use Make smoothness, and action criteria;
2nd, can work normally in humid conditions, rust-proofing ability is strong, extends the service life of frame;
3rd, process is pollution-free, improves operating environment.
Embodiment
With reference to specific embodiment, the technical solution in the embodiment of the present invention is clearly and completely described, is shown So, described embodiment is only part of the embodiment of the present invention, instead of all the embodiments.Based on the reality in the present invention Apply example, those of ordinary skill in the art's all other embodiments obtained without making creative work, all belong to In the scope of protection of the invention.
Embodiment 1:
The combined trainer triangle aluminum alloy frame includes following components in parts by weight:
100 parts by weight of metallic aluminium, 1 parts by weight of Preparation of Metallic Strontium, 0.65 parts by weight of manganese metal, 0.40 parts by weight of magnesium metal, metal 0.05 parts by weight of titanium, 0.10 parts by weight of lanthanoid metal, 0.25 parts by weight of crome metal, 0.65 parts by weight of metallic iron, 1.8 weight of metallic copper Part, 1.2 parts by weight of metallic zinc, 0.01 parts by weight of neodymium metal, 35 parts by weight of titanium-niobium alloy, 10 parts by weight of copper molybdenum alloy, iron nickel close Golden 20 parts by weight, 1 parts by weight of silicon sulfide, 5.6 parts by weight of graphene, 2.5 parts by weight of rare earth, 10 parts by weight of celion powder.
The graphene is nanoscale graphite alkene.
The celion powder is T400-T600.
The yield strength of the combined trainer triangle aluminum alloy frame is more than 1800MPa, and tensile strength is More than 268MPa, elongation percentage are more than 1.9%.
A kind of processing method of combined trainer triangle aluminum alloy frame, this method comprise the following steps:
S1:Each component raw material is weighed on request;
S2:By metallic aluminium, Preparation of Metallic Strontium, manganese metal, magnesium metal, Titanium, lanthanoid metal, crome metal, metallic iron, metallic copper, Metallic zinc, neodymium metal are added in high-speed mixer and are mixed, and the rotating speed of high-speed mixer is 150r/min, and incorporation time is 30min, obtains mixture A;
S3:Titanium-niobium alloy, copper molybdenum alloy part, iron-nickel alloy, silicon sulfide, graphene, rare earth, celion powder are added Mixed into high-speed mixer, the rotating speed of high-speed mixer is 85r/min, and incorporation time 400min, obtains mixture B;
S4:Mixture B is added in reaction kettle, is reacted 20 minutes for 180 DEG C in temperature, material C is made;
S5:Mixture A and material C are added in ball mill and be ground at the same time, milling time 4h, obtains mixture D;
S6:Mixture D is added in the heating furnace with agitating device, the temperature of heating furnace is 580 DEG C, heating time For 3h, fusant E is obtained;
S7:Using the technique of discontinuous casting, fusant E is injected into crystallisation vessel, temperature-reduction at constant speed, obtains crystalline solid F;
S8:By crystalline solid F die casts.
Ratio of grinding media to material is 50 in the ball mill:1-55:1
The high-speed mixer is double-spiral conical mixer.
Embodiment 2:
The combined trainer triangle aluminum alloy frame includes following components in parts by weight:
110 parts by weight of metallic aluminium, 2 parts by weight of Preparation of Metallic Strontium, 0.75 parts by weight of manganese metal, 0.65 parts by weight of magnesium metal, metal 0.10 parts by weight of titanium, 0.20 parts by weight of lanthanoid metal, 0.55 parts by weight of crome metal, 0.70 parts by weight of metallic iron, 2.8 weight of metallic copper Part, 2.5 parts by weight of metallic zinc, 0.02 parts by weight of neodymium metal, 37 parts by weight of titanium-niobium alloy, 13 parts by weight of copper molybdenum alloy, iron nickel close Golden 23 parts by weight, 2 parts by weight of silicon sulfide, 7.5 parts by weight of graphene, 4.0 parts by weight of rare earth, 13 parts by weight of celion powder.
The graphene is nanoscale graphite alkene.
The celion powder is T400-T600.
The yield strength of the combined trainer triangle aluminum alloy frame is more than 1800MPa, and tensile strength is More than 268MPa, elongation percentage are more than 1.9%.
The processing method of the combined trainer triangle aluminum alloy frame, this method comprise the following steps:
S1:Each component raw material is weighed on request;
S2:By metallic aluminium, Preparation of Metallic Strontium, manganese metal, magnesium metal, Titanium, lanthanoid metal, crome metal, metallic iron, metallic copper, Metallic zinc, neodymium metal are added in high-speed mixer and are mixed, and the rotating speed of high-speed mixer is 200r/min, and incorporation time is 45min, obtains mixture A;
S3:Titanium-niobium alloy, copper molybdenum alloy part, iron-nickel alloy, silicon sulfide, graphene, rare earth, celion powder are added Mixed into high-speed mixer, the rotating speed of high-speed mixer is 100r/min, and incorporation time 55min, obtains mixture B;
S4:Mixture B is added in reaction kettle, is reacted 23 minutes for 220 DEG C in temperature, material C is made;
S5:Mixture A and material C are added in ball mill and be ground at the same time, milling time 5h, obtains mixture D;
S6:Mixture D is added in the heating furnace with agitating device, the temperature of heating furnace is 610 DEG C, heating time For 4h, fusant E is obtained;
S7:Using the technique of discontinuous casting, fusant E is injected into crystallisation vessel, temperature-reduction at constant speed, obtains crystalline solid F;
S8:By crystalline solid F die casts.
Ratio of grinding media to material is 50 in the ball mill:1-55:1
The high-speed mixer is double-spiral conical mixer.
Embodiment 3:
The combined trainer triangle aluminum alloy frame includes following components in parts by weight:
120 parts by weight of metallic aluminium, 3 parts by weight of Preparation of Metallic Strontium, 0.85 parts by weight of manganese metal, 0.85 parts by weight of magnesium metal, metal 0.15 parts by weight of titanium, 0.30 parts by weight of lanthanoid metal, 0.85 parts by weight of crome metal, 0.95 parts by weight of metallic iron, 4.8 weight of metallic copper Part, 3.2 parts by weight of metallic zinc, 0.04 parts by weight of neodymium metal, 40 parts by weight of titanium-niobium alloy, 16 parts by weight of copper molybdenum alloy, iron nickel close Golden 25 parts by weight, 3 parts by weight of silicon sulfide, 9.6 parts by weight of graphene, 6.5 parts by weight of rare earth, 16 parts by weight of celion powder.
The graphene is nanoscale graphite alkene.
The celion powder is T400-T600.
The yield strength of the combined trainer triangle aluminum alloy frame is more than 1800MPa, and tensile strength is More than 268MPa, elongation percentage are more than 1.9%.
A kind of processing method of combined trainer triangle aluminum alloy frame, this method comprise the following steps:
S1:Each component raw material is weighed on request;
S2:By metallic aluminium, Preparation of Metallic Strontium, manganese metal, magnesium metal, Titanium, lanthanoid metal, crome metal, metallic iron, metallic copper, Metallic zinc, neodymium metal are added in high-speed mixer and are mixed, and the rotating speed of high-speed mixer is 350r/min, and incorporation time is 60min, obtains mixture A;
S3:Titanium-niobium alloy, copper molybdenum alloy part, iron-nickel alloy, silicon sulfide, graphene, rare earth, celion powder are added Mixed into high-speed mixer, the rotating speed of high-speed mixer is 125r/min, and incorporation time 80min, obtains mixture B;
S4:Mixture B is added in reaction kettle, is reacted 25 minutes for 260 DEG C in temperature, material C is made;
S5:Mixture A and material C are added in ball mill and be ground at the same time, milling time 5.5h, is mixed Thing D;
S6:Mixture D is added in the heating furnace with agitating device, the temperature of heating furnace is 650 DEG C, heating time For 5h, fusant E is obtained;
S7:Using the technique of discontinuous casting, fusant E is injected into crystallisation vessel, temperature-reduction at constant speed, obtains crystalline solid F;
S8:By crystalline solid F die casts.
Ratio of grinding media to material is 50 in the ball mill:1-55:1
The high-speed mixer is double-spiral conical mixer.
Its performance test results is as shown in the table:
It is obvious to a person skilled in the art that the invention is not restricted to the details of above-mentioned one exemplary embodiment, Er Qie In the case of without departing substantially from spirit or essential attributes of the invention, the present invention can be realized in other specific forms.Therefore, no matter From the point of view of which point, the present embodiments are to be considered as illustrative and not restrictive, and the scope of the present invention is by appended power Profit requires rather than described above limits, it is intended that all in the implication and scope of the equivalency of claim by falling Change is included in the present invention.
Moreover, it will be appreciated that although the present specification is described in terms of embodiments, not each embodiment is only wrapped Containing an independent technical solution, this narrating mode of specification is only that those skilled in the art should for clarity Using specification as an entirety, the technical solutions in the various embodiments may also be suitably combined, forms those skilled in the art It is appreciated that other embodiment.

Claims (9)

  1. A kind of 1. combined trainer triangle aluminum alloy frame, it is characterised in that the combined trainer triangle aluminum alloy frame Frame includes following components in parts by weight:
    Metallic aluminium 100-120 parts by weight, Preparation of Metallic Strontium 1-3 parts by weight, manganese metal 0.65-0.85 parts by weight, magnesium metal 0.40-0.85 Parts by weight, Titanium 0.05-0.15 parts by weight, lanthanoid metal 0.10-0.30 parts by weight, crome metal 0.25-0.85 parts by weight, metal Iron 0.65-0.95 parts by weight, metallic copper 1.8-4.8 parts by weight, metallic zinc 1.2-3.2 parts by weight, neodymium metal 0.01-0.04 weight Part, titanium-niobium alloy 35-40 parts by weight, copper molybdenum alloy 10-16 parts by weight, iron-nickel alloy 20-25 parts by weight, silicon sulfide 1-3 weight Part, graphene 5.6-9.6 parts by weight, rare earth 2.5-6.5 parts by weight, celion powder 10-16 parts by weight.
  2. 2. combined trainer triangle aluminum alloy frame according to claim 1, it is characterised in that the combined trainer Triangle aluminum alloy frame includes following components in parts by weight:
    110 parts by weight of metallic aluminium, 2 parts by weight of Preparation of Metallic Strontium, 0.75 parts by weight of manganese metal, 0.65 parts by weight of magnesium metal, Titanium 0.10 parts by weight, 0.20 parts by weight of lanthanoid metal, 0.55 parts by weight of crome metal, 0.70 parts by weight of metallic iron, 2.8 weight of metallic copper Part, 2.5 parts by weight of metallic zinc, 0.02 parts by weight of neodymium metal, 37 parts by weight of titanium-niobium alloy, 13 parts by weight of copper molybdenum alloy, iron nickel close Golden 23 parts by weight, 2 parts by weight of silicon sulfide, 7.5 parts by weight of graphene, 4.0 parts by weight of rare earth, 13 parts by weight of celion powder.
  3. 3. combined trainer triangle aluminum alloy frame according to claim 1 or 2, it is characterised in that the graphene For nanoscale graphite alkene.
  4. 4. combined trainer triangle aluminum alloy frame according to claim 1 or 2, it is characterised in that the graphitic carbon Fiber powder is T400-T600.
  5. 5. combined trainer triangle aluminum alloy frame according to claim 1 or 2, it is characterised in that the comprehensive instruction The yield strength for practicing device triangle aluminum alloy frame is more than 1800MPa, and tensile strength is more than 268MPa, elongation percentage 1.9% More than.
  6. 6. the processing method of combined trainer triangle aluminum alloy frame according to claim 1, it is characterised in that the party Method comprises the following steps:
    S1:Each component raw material is weighed on request;
    S2:By metallic aluminium, Preparation of Metallic Strontium, manganese metal, magnesium metal, Titanium, lanthanoid metal, crome metal, metallic iron, metallic copper, metal Zinc, neodymium metal are added in high-speed mixer and are mixed, and the rotating speed of high-speed mixer is 150-350r/min, and incorporation time is 30-60min, obtains mixture A;
    S3:Titanium-niobium alloy, copper molybdenum alloy part, iron-nickel alloy, silicon sulfide, graphene, rare earth, celion powder are added to height Mixed in fast mixer, the rotating speed of high-speed mixer is 85-125r/min, and incorporation time 40-80min, is mixed Thing B;
    S4:Mixture B is added in reaction kettle, is reacted 20-25 minutes for 180-260 DEG C in temperature, material C is made;
    S5:Mixture A and material C are added in ball mill and be ground at the same time, milling time 4-5.5h, obtains mixture D;
    S6:Mixture D is added in the heating furnace with agitating device, the temperature of heating furnace is 580-650 DEG C, heating time For 3-5h, fusant E is obtained;
    S7:Using the technique of discontinuous casting, fusant E is injected into crystallisation vessel, temperature-reduction at constant speed, obtains crystalline solid F;
    S8:By crystalline solid F die casts.
  7. 7. the processing method of combined trainer triangle aluminum alloy frame according to claim 6, it is characterised in that the party Method comprises the following steps:
    S1:Each component raw material is weighed on request;
    S2:By metallic aluminium, Preparation of Metallic Strontium, manganese metal, magnesium metal, Titanium, lanthanoid metal, crome metal, metallic iron, metallic copper, metal Zinc, neodymium metal are added in high-speed mixer and are mixed, and the rotating speed of high-speed mixer is 200r/min, and incorporation time is 45min, obtains mixture A;
    S3:Titanium-niobium alloy, copper molybdenum alloy part, iron-nickel alloy, silicon sulfide, graphene, rare earth, celion powder are added to height Mixed in fast mixer, the rotating speed of high-speed mixer is 100r/min, and incorporation time 55min, obtains mixture B;
    S4:Mixture B is added in reaction kettle, is reacted 23 minutes for 220 DEG C in temperature, material C is made;
    S5:Mixture A and material C are added in ball mill and be ground at the same time, milling time 5h, obtains mixture D;
    S6:Mixture D is added in the heating furnace with agitating device, the temperature of heating furnace is 610 DEG C, and heating time is 4h, obtains fusant E;
    S7:Using the technique of discontinuous casting, fusant E is injected into crystallisation vessel, temperature-reduction at constant speed, obtains crystalline solid F;
    S8:By crystalline solid F die casts.
  8. 8. the processing method of the combined trainer triangle aluminum alloy frame according to claim 6 or 7, it is characterised in that Ratio of grinding media to material is 50 in the ball mill:1-55:1.
  9. 9. the processing method of the combined trainer triangle aluminum alloy frame according to claim 6 or 7, it is characterised in that The high-speed mixer is double-spiral conical mixer.
CN201711168565.0A 2017-11-21 2017-11-21 A kind of combined trainer triangle aluminum alloy frame and its processing method Pending CN107904526A (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110978673A (en) * 2019-12-31 2020-04-10 安徽科蓝特铝业有限公司 Aluminum alloy aerial work platform section bar

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Publication number Priority date Publication date Assignee Title
CN102312135A (en) * 2010-06-30 2012-01-11 通用汽车环球科技运作有限责任公司 Improved y alloy y
CN102965602A (en) * 2012-12-14 2013-03-13 南昌工程学院 Wire mesh flexible composite fabric for surface modification and preparation method of wire mesh flexible composite fabric
CN104630581A (en) * 2015-02-10 2015-05-20 苏州科胜仓储物流设备有限公司 Heat-resistant wear-resistant aluminium alloy fluency strip and processing process thereof
CN105238974A (en) * 2015-09-30 2016-01-13 重庆双驰门窗有限公司 Material for aluminum alloy doors and windows and manufacturing process of material

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102312135A (en) * 2010-06-30 2012-01-11 通用汽车环球科技运作有限责任公司 Improved y alloy y
CN102965602A (en) * 2012-12-14 2013-03-13 南昌工程学院 Wire mesh flexible composite fabric for surface modification and preparation method of wire mesh flexible composite fabric
CN104630581A (en) * 2015-02-10 2015-05-20 苏州科胜仓储物流设备有限公司 Heat-resistant wear-resistant aluminium alloy fluency strip and processing process thereof
CN105238974A (en) * 2015-09-30 2016-01-13 重庆双驰门窗有限公司 Material for aluminum alloy doors and windows and manufacturing process of material

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110978673A (en) * 2019-12-31 2020-04-10 安徽科蓝特铝业有限公司 Aluminum alloy aerial work platform section bar

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Application publication date: 20180413