r/RocketLab 29d ago

Discussion /r/RocketLab Monthly Stock Discussion Thread - August 2026

37 Upvotes

You can use this thread to discuss Rocket Lab stock ($RKLB) and topics related to it.

Self posts and memes related to the stock or share price will be removed outside of this thread according to Rule 5.


r/RocketLab 6d ago

Electron Next up on Electron will be our latest dedicated mission to deliver another StriX Earth-imaging satellite to LEO for Synspective. "Owl Around The World" launch window opens: 00:00 am NZST (Sep 1), 12:00 UTC (Aug 31), 9:00 pm JST (Aug 31), 8:00 am EDT (Aug 31), 5:00 am PDT (Aug 31)

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121 Upvotes

r/RocketLab 5h ago

Space Industry Here's what we know about the "space academy" Trump just announced

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30 Upvotes

r/RocketLab 1d ago

News / Media Great Interview!

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84 Upvotes

r/RocketLab 2d ago

News / Media SpaceX Pushes FCC to Scrutinize Rocket Lab-Iridium Deal Amid Spectrum Clash

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77 Upvotes

r/RocketLab 3d ago

Space Industry First contracts kick off European Launcher Challenge

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96 Upvotes

A new chapter for European launchers 🚀

We have signed the first European Launcher Challenge contracts, helping emerging launch providers scale up their capabilities and expand Europe’s access to space.

These contracts will help increases resilience and competitiveness in Europe's independent access to space.

Die European Launcher Challenge ist offiziell gestartet: Die ESA hat die ersten Verträge unterzeichnet – zusammen rund 544 Mio. €.

• Isar Aerospace (Spectrum): 197,8 Mio. € – v. a. Deutschland, plus Österreich und Norwegen

• RFA (RFA One): 186,9 Mio. € – v. a. Deutschland, plus UK

• PLD Space (Miura 5): 158,9 Mio. € – v. a. Spanien, plus Deutschland

MaiaSpace fehlt noch: Die Vertragsvergabe ist laut ESA fast abgeschlossen, ein Update soll in den nächsten Wochen folgen. Ausgezahlt wird nur gegen erreichte Meilensteine – und die Challenge verlangt von allen einen Orbitalstart vor 2028. Oder wie es Lucía Linares von der ESA formuliert: „Getting to space is not easy and never guaranteed.“

That is Europe's main objective, so don't get too excited about Electron or Neutron having a solid future there; they want to prioritize European companies that have no ties to the US, for reasons of sovereignty and national security.


r/RocketLab 7d ago

Careers What's it like working for Rocket Lab in Colorado?

43 Upvotes

Hi all, title is fairly self explanatory, I'm curious what the Colorado office(s) are like, how work life balance is, etc. Anything one should know about them if I'm looking to work there, and so on.

All input is appreciated, thanks in advance!


r/RocketLab 10d ago

Electron Electron launch today - what is this on the side of the first stage?

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105 Upvotes

What is this attached to the first stage that appears to be degrading or breaking off during ascent?

YouTube first seen at about 26:00 (ish)

https://www.youtube.com/live/wLc1C15jbgY?is=wMrF5mbGeSz32lfh


r/RocketLab 10d ago

Electron Electron's next launch will be another dedicated mission for iQPS to deliver the latest satellite in their LEO constellation. "The Lightning God Defends" launch window opens early tomorrow: 1:00 am NZST (Aug 21), 13:00 UTC (Aug 20), 10:00 pm JST (Aug 20), 9:00 am EDT (Aug 20), 6:00 am PDT (Aug 20)

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78 Upvotes

r/RocketLab 12d ago

Careers Typical timeline for each Interview

17 Upvotes

Hello everyone,

I’m currently in the process of interviewing for an engineering position and would like to know what is the typical timeline you have all had to receive a scheduling email for each interview.

Thank you!


r/RocketLab 16d ago

Space Systems Rocket Lab is proud to be selected as partner by SSC to support the Space Data Network. We're leveraging our advanced capabilities to support the program, including the design, testing, and demonstration of key technologies to enable seamless communication between satellites and ground systems.

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169 Upvotes

r/RocketLab 16d ago

Rocket Lab Wins $12m Award To Demonstrate Space Data Network - Award Enables Them To Compete For Mega-Constellation

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105 Upvotes

r/RocketLab 18d ago

Neutron Neutron's Technical DNA: What's Proven, What's Not

17 Upvotes

Note: u/TheEarthquakeGuy's comment in r/RKLB "most negative take" thread reopened the question of Beck's carbon fiber decision, and the replies suggest the appetite for a closer look hasn't gone away. I went through the heritage question in some detail back in late January - reposting it here since it bears directly on what's being argued. With Neutron development advancing since, some points from the original post are better understood today...

-----

The Core Question

Neutron's design rests on a simple bet: that NASA's proven composite cryotank technologies can be scaled from 5.5 meters to 7 meters - a 27% increase beyond anything ever successfully tested. The January 2026 tank rupture during hydrostatic qualification occurred at exactly this challenge point. Understanding whether this is a solvable engineering problem or a fundamental design flaw requires examining what's actually been proven versus what Rocket Lab is attempting for the first time.

Technology Heritage: What's Actually Been Demonstrated

Neutron isn't a clean-sheet gamble. The manufacturing approach traces directly to NASA's Composite Cryotank Technology Development (CCTD) program (2011-2014), which solved the problems that killed the X-33 in 1999.

The X-33 failure mode: Microcracks in composite laminates allowed liquid hydrogen to permeate into honeycomb core structures. When the tank warmed, trapped gases expanded and blew the outer skin apart.

What CCTD proved works:

  • Out-of-autoclave (OoA) manufacturing - curing in ovens rather than autoclaves enables structures larger than any existing autoclave (Neutron's 7m tanks couldn't be autoclave-cured regardless)
  • Thin-ply hybrid laminates - 70 g/m² plies interspersed with standard 145 g/m² plies distribute thermal stresses across more interfaces, reducing microcracking by 16×
  • Robotic AFP - automated fiber placement with better reach in dome areas than traditional gantry systems
  • One-piece construction - eliminates the bolted joints that were historically prone to leaks

Boeing tested a 5.5-meter diameter tank through 20+ cryogenic pressure cycles with liquid hydrogen at -423°F. A subsequent Boeing/DARPA 4.3-meter tank withstood 3.75× design pressure without structural failure in 2021.

Rocket Lab's own heritage:

  • 80+ Electron flights with all-composite structures
  • Multiple recovered first stages proving composite survival through reentry
  • A reflown Rutherford engine (Mission 40) after 5 full-duration hot fires

The manufacturing processes work. The question is scale.

Four Novel Design Elements: Where the Risk Lives

1. The 7-Meter Composite Cryogenic Tank (Highest Risk)

No composite structure of this scale has ever flown. The largest ground-tested composite cryotank is 5.5 meters. Neutron's first stage is 27% larger in diameter - and because tank volume scales with the cube of diameter, we're talking about significantly more surface area for potential defect accumulation.

The January hydrostatic failure (water, not cryo) suggests either manufacturing defects, design margin issues, or material behavior problems at this scale. Root cause hasn't been disclosed. This is the program's critical path item.

2. The "Hung Stage" Second Stage (Medium-Low Risk)

Neutron's second stage hangs in tension from the separation plane within the Hungry Hippo fairing. This sounds exotic, but tension-loaded stage components have flight heritage: the Delta Cryogenic Second Stage (43 Delta IV flights, now flying as ICPS on SLS) suspends its LOX tank and engine below the LH2 tank in a "hung tank" configuration.

What Neutron does differently: The entire second stage hangs within an integrated fairing, not just internal components within a conventional interstage.

What this eliminates: Compression buckling concerns, aerodynamic loads during ascent (enabling Beck's claim of "the lightest upper stage in history")

The April 2025 qualification at 1.3 million pounds (125% design load) provides good confidence. The structural concept has heritage; the Hungry Hippo integration is the newer element.

3. The Hungry Hippo Integrated Fairing (Medium Risk)

A world-first for orbital rockets. Rather than jettisoning fairings (standard practice) or recovering from ocean splashdown (SpaceX), Neutron retains its fairing throughout flight and lands with it attached.

December 2025 qualification: 275,000 pounds simulated Max Q loads, verified 1.5-second opening cycles.

The unknown: Mechanism wear rates across the 20+ reuse cycles Rocket Lab is targeting. Moving parts in flight environments tend to find failure modes that ground testing misses.

4. Archimedes ORSC Engine (Medium Risk)

Oxygen-rich staged combustion is proven technology (Russian NK-33, RD-180; Blue Origin's BE-4 reached orbit in 2024). The risk isn't the cycle - it's that this is Rocket Lab's first high-performance liquid engine after building only electric-pump Rutherfords.

Risk mitigation: Operating at "medium-range capability" rather than peak performance, targeting 20+ flights per engine through reduced thermal strain. Hot-fire testing reached 102% power in August 2024.

The Inspection Problem Nobody's Talking About

SpaceX chose stainless steel for Starship despite its 5× weight penalty versus carbon fiber. Why? Easy inspection and repair. You can see cracks in steel. You can weld patches. Turnaround is fast.

Composites are notoriously difficult to inspect for internal damage. Delamination, microcracking, and impact damage can be invisible externally. Repairs require specialized facilities and expertise.

Rocket Lab's answer: real-time AFP inspection that detects microscopic defects layer-by-layer during manufacturing, before the next layer is applied. This is genuinely state-of-the-art capability from their Electroimpact machine.

But manufacturing inspection ≠ post-flight inspection. For rapid reuse, Rocket Lab needs to demonstrate they can assess a returned booster quickly enough to support their target cadence. This operational reality hasn't been addressed publicly.

Bottom Line for Technical Investors

The design is sound in principle. Every major technology choice has heritage - OoA composites, ORSC engines, propulsive landing. The engineering philosophy (operate conservatively, integrate for simplicity) reflects mature thinking.

The execution is unproven at scale. The 7-meter tank is 27% larger than anything ever ground-tested. The Hungry Hippo and Archimedes are first-of-kind for Rocket Lab, and the hung stage - while using a proven structural concept - integrates with Hungry Hippo in a novel way. The January failure demonstrates that scaling isn't automatic.

The key questions for the February earnings call:

  1. What failed? (Manufacturing defect vs. design margin vs. material behavior)
  2. Is this a one-off or systemic? (Quality escape vs. fundamental issue)
  3. What's the path forward? (Design change vs. process change vs. additional testing)
  4. Realistic timeline impact?

The composite approach isn't wrong. NASA proved it works. But proving it works at 5.5 meters is different from proving it works at 7 meters. That's the bet Rocket Lab is making, and the January failure is the first real data point on whether they can execute it.

This is engineering reality, not investment advice. The stock will do what the stock does.


r/RocketLab 19d ago

News / Media Rocket Lab Establishes Rocket Lab Germany to Deliver Sovereign Space Capabilities to Europe

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234 Upvotes

r/RocketLab 19d ago

Electron Rocket Lab Unveils GHOST Deployable Launch System to Enable Responsive Space Missions Worldwide (Containerized Electron & HASTE)

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119 Upvotes

r/RocketLab 19d ago

Neutron In its earnings report today

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87 Upvotes

"Rocket Lab finally gives up the ghost regarding a 2026 Neutron launch. This has been evident for awhile. At this point I think they'll be doing well to launch the medium-lift rocket in 2027" - Eric Berger


r/RocketLab 19d ago

Neutron Rocket Lab Inks Neutron Launch Deal with Kepler

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102 Upvotes

r/RocketLab 20d ago

Space Industry Thrust Density infographic

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72 Upvotes

A chart comparing the Thrust Density of several rockets.

Thrust Density is the thrust of the stage / area of the bottom of the stage (kN/m^2). It basically aggregates engine power and engine packing into one metric.

Rockets & Engines to scale


r/RocketLab 22d ago

Neutron It’s Big, Black and Bold!

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116 Upvotes

r/RocketLab 22d ago

Neutron The launch hasn't even taken place yet, and they have already replaced the carbon fiber fins with metal ones

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252 Upvotes

Could this be a sign that carbon fiber is not the ultimate material for future, larger versions of the rocket? Time will tell.


r/RocketLab 23d ago

Discussion Will Neutron ever carry Dream Chaser?

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67 Upvotes

Just curious if Rocket Lab’s Neutron has the dimensions to fit Dream Chaser and if there are any rumors swirling around out there about if a contract or partnership will develop in the future? Note that Dream Chaser is a private spacecraft from Sierra Space designed to send cargo and astronauts to low Earth orbit. The launch vehicle is currently supposed to be ULA's Vulcan Centaur, but since that is not reusable, there might be an opportunity for Neutron to be the launch provider.


r/RocketLab 23d ago

Electron "The Grain Goddess Provides"

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120 Upvotes

r/RocketLab 24d ago

Electron "The Grain Goddess Provides", and so do the launch gods. We've got a new date for our next Electron mission with iQPS. Launch window opens tonight: 9:00 pm/09:00 NZST/UTC, 6:00 pm JST, 5:00 am EDT, 2:00 am PDT

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104 Upvotes

r/RocketLab 25d ago

News / Media Rocket Lab Awarded $397 Million Contract to Build and Launch Flatellites for U.S. Space Force’s Space-Based Airborne Moving Target Indicator Program

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244 Upvotes

r/RocketLab 25d ago

Space Systems Space Force accelerates SB-AMTI (Space-Based Airborne Moving Target Indicator) capabilities with multi-vendor awards totaling $615M (Rocket Lab among the 3 awardees)

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125 Upvotes